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I received my PhD degree at the University of Santiago de Compostela at Spain in 2011. After a two-year post-doctoral position at the International Iberian Nanotechnology Laboratory (INL) at Braga, Portugal, and four years as staff researcher in the Life Sciences Department, I have led the group of Nanomedicine and the Advanced (magnetic) Theranostic Nanostructures Lab since 2017 (tenured from 2019). I have been research visitor at the University of Texas at Austin in 2006 and Imperial College London in 2016. My research focuses on the engineering of multifunctional (para)magnetic nanostructures based systems as nanomedical platforms for theranostic applications, mainly focused on magnetic resonance imaging (MRI), magnetic hyperthermia (MH) and drug delivery (DD). Currently, my principal research group interests are the synthesis, characterization and bio-functionalization of complex magnetic nanostructures to develop more efficient disease-targeted imaging diagnosis and magnetic-assisted therapies, such as single and multimodal (T1, T2) MRI contrast agents, label free and stimuli responsive switchable MRI/optical probes, image-guided DD, high throughput nano-effectors for MH and MH-induced DD, among others. The development of inorganic-organic magnetic hybrid nanocomposites able to deliver combinatorial therapies (i.e. thermochemotehrapy) and allow multimodal imaging diagnosis, constitutes one of the main settled long-term research topics of my group. Our multidisciplinary expertise, collected from our interdisciplinary team composed of materials chemists, biochemists, biologists and pharmacists, covers from the synthesis, smart functionalization and in-depth characterization of different nanostructures to their functional validation in 2D and 3D advanced models, such as spheroids and organoids, and also in vivo. In the last years, significant contributions have been delivered about the development of high-performance MRI and magnetic hyperthermia mediators to build more complex nanosystems with theranostic application in cancer therapy (e.g. triple negative breast cancer, melanoma, colorectal cancer, among others), bone tissue engineering and food related applications. I have been involved in several major competitive research projects funded by national, EU and international sources. As an example, I am currently the PI at INL of 1 EU-H2020 (PANA), 1 INTERREG-POCTEP (2IQBioneuro) and 5 FCT projects (i.e. MAGTARGETON, NANOTHER, RT4Chip4Theranostics, etc.) in addition to act as co-PI and team member of 4 more European and National funded projects. Regarding supervision activities, I have accumulated an extensive (co)direction activity that includes 40 researchers among postdocs (9), PhDs (3), MSc (6), PhD visiting researchers (14) and summer students (8). I have published about 70 articles in high-impact factor international peer-reviewed journals, h=19, three (3) book chapters in the field of materials science and MNPs applied to nanomedicine have been granted 2 patents, and participated in the formation of 1 nanotechnology based Start-up Company (NANOGAP). I am member of numerous scientific committees and evaluation boards, as well as reviewer of several funding agencies abroad, high-impact factor scientific journals and PhD defence juries.
Identificação

Identificação pessoal

Nome completo
Manuel Bañobre-López

Nomes de citação

  • Bañobre-López, Manuel

Identificadores de autor

Ciência ID
D21F-FF0C-3915
ORCID iD
0000-0003-4319-2631

Idiomas

Idioma Conversação Leitura Escrita Compreensão Peer-review
Espanhol; Castelhano Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1)
Galego Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1)
Inglês Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1)
Português Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador independente (B1) Utilizador proficiente (C1)
Formação
Grau Classificação
2011/06/24
Concluído
Physical Chemistry (Doctor)
Especialização em Química de Estado Sólido
Universidade de Santiago de Compostela - Campus Vida, Espanha
"Chemical, magnetic and electronic properties of NaxCoO2 and related compounds" (TESE/DISSERTAÇÃO)
10/10 cum laude
2002
Concluído
Nanotechnology (DEA)
Especialização em Solid State Chemistry
Universidade de Santiago de Compostela - Campus Vida, Espanha
"Synthesis and magnetic properties of Cr2O3 nanoparticles" (TESE/DISSERTAÇÃO)
10/10
2000/08
Concluído
n/a (Graduado)
Universidade de Santiago de Compostela - Campus Vida, Espanha
"Licenciatura en Quimica" (TESE/DISSERTAÇÃO)
8/10
Percurso profissional

Ciência

Categoria Profissional
Instituição de acolhimento
Empregador
2017/02/14 - Atual Investigador Coordenador (carreira) (Investigação) International Iberian Nanotechnology Laboratory, Portugal
International Iberian Nanotechnology Laboratory, Portugal
2013/07/10 - 2017/02/14 Investigador principal (carreira) (Investigação) International Iberian Nanotechnology Laboratory, Portugal
International Iberian Nanotechnology Laboratory, Portugal
2011/10/13 - 2013/07/09 Pós-doutorado (Investigação) International Iberian Nanotechnology Laboratory, Portugal
International Iberian Nanotechnology Laboratory, Portugal
2006/10/12 - 2011/10/12 Investigador Contratado (Investigação) Universidade de Santiago de Compostela - Campus Vida, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
2003/01/01 - 2006/09/30 Investigador (Investigação) Gobierno de Espana Ministerio de Educación Cultura y Deporte, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
2001/04/01 - 2002/09/30 Investigador (Investigação) Xunta de Galicia Consellería de Cultura Educacion e Ordenación Universitaria, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
2000/11/01 - 2000/12/30 Investigador (Investigação) Universidade de Santiago de Compostela - Campus Vida, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
2000/06/01 - 2000/08/30 Investigador (Investigação) GAIRESA, Espanha
GAIRESA, Espanha

Docência no Ensino Superior

Categoria Profissional
Instituição de acolhimento
Empregador
2005/03/01 - 2005/03/30 Assistente Estagiário (Docente Universitário) Gobierno de Espana Ministerio de Educación Cultura y Deporte, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
2004/02/01 - 2004/02/29 Assistente Estagiário (Docente Universitário) Gobierno de Espana Ministerio de Educación Cultura y Deporte, Espanha
Universidade de Santiago de Compostela - Campus Vida, Espanha
Projetos

Bolsa

Designação Financiadores
2023/02/01 - 2026/04/30 Alternative PROteins from MIcrobial fermentation of non-conventional SEA sources for Next-Generation food, feed and non-food bio-based applications
101112378
Investigador responsável
Horizon 2020
Em curso
2015/01/01 - 2017/04/05 Invennta
InveNNta
Bolseiro de Integração na Investigação
International Iberian Nanotechnology Laboratory, Portugal
Servicio Galego de Saúde
Concluído

Projeto

Designação Financiadores
2019 - 2022 Fostering a R&I network in biological Chemistry for diagnostic and treatment of neurological diseases (2IQBIONEURO)
0624_2IQBIONEURO_6_E
Investigador
International Iberian Nanotechnology Laboratory, Portugal
EP - INTERREG V A España Portugal (POCTEP)
Em curso
2018 - 2022 Safety Testing in the Life Cycle of Nanotechnology-Enabled Medical Technologies for Health -SAFE-N-MEDTECH
H2020-NMBP-TO-IND-2018-2020
Investigador
International Iberian Nanotechnology Laboratory, Portugal
European Commission Joint Research Centre
Em curso
2018/06/01 - 2021/05/31 Real time Liver-on-a-chip platform with integrated micro(bio)sensors for preclinical validation of graphene-based magnetic nanocarriers towards cancer theranostics - RTChip4Theranostics
PTDC/EMD-EMD/29394/2017
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2018 - 2021 Local specific treatment of triple-negative-breast-cancer through externally triggered target-less drug carriers – MagTargetON
(02/SAICT/2017) - 031142
Investigador responsável
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2018 - 2021 Self-reporting immunostimulating formulation for on-demand cancer therapy with realtime treatment response monitoring – SELF-i
(02/SAICT/2017) - 028052
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2018 - 2021 An advanced microCooling System based on inovative NanoFluids and acoustic streaming- NFsCoolingSystem
(02/SAICT/2017) - 030171
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2018 - 2021 Development of advanced strategies and solutions for muscle tissue engineering based on electromechanical microenvironments - MusclEng
(02/SAICT/2017) - 028237
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
2018 - 2021 REEs-free high-performance permanent magnets based on exchange-spring and high anisotropy phases- CritMag
(02/SAICT/2017) - 028745
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2016 - 2020 EU-H2020-Promoting active ageing: functional nanostructures for Alzheimer’s disease at ultra-early stages (PANA).
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
European Commission
Em curso
2018 - 2019 TAM’s targeted and externally controlled nanotheranostics of triple-negative-breast-cancer – NANOTHER
(UTAP-EXPL/NTec/0038/2017)
Investigador responsável
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Concluído
2018 - 2019 Two dimensional magnetic semiconductors – 2DMS
(UTAPEXPL/NTec/0046/2017)
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
2017 - 2019 Magnetic nanocomposite hydrogels from biopolymers as smart delivery systems
(PT-DZ 2015)
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Em curso
2016 - 2018 N2020 - Nanotechnology based functional solutions.
NORTE-01-0145-FEDER-000019)
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Fundação para a Ciência e a Tecnologia
Concluído
2016 - 2018 N2020 - Cancer: Advancing Cancer Research: from basic knowledge to application
NORTE-01-0145-FEDER-000029)
Investigador
Fundação para a Ciência e a Tecnologia
2016 - 2018 COST ACTION TD1402, Multifunctional Nanoparticles for Magnetic Hyperthermia and Indirect Radiation Therapy (RADIOMAG)
RADIOMAG
Investigador
International Iberian Nanotechnology Laboratory, Portugal
European Commission
Concluído
2016 - 2017 Development of nanoparticles as MRI probes for diagnosis and monitoring –(InveNNta2) - Research Laboratory in Clinical Neurosciences
-
Outra
International Iberian Nanotechnology Laboratory, Portugal
Concluído
2016 - 2017 Magnetic nanowires and their 3D arrays for advanced technologies (MAGNO)
-
Outra
Concluído
2014 - 2017 Synthesis and characterization of magnetic nanosystems associated to co-polymers and polysaccharides for a controlled drug delivery.
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
2015 - 2016 Theranostic Magnetic Nanoparticles For Cancer Diagnosis and Treatment: Magnetic Properties and Controlled Release of Anticancer Drugs.
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
2015 - 2016 Externally actuated dual T1/T2 MRI probes
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
Royal Society of Chemistry
Concluído
2014 - 2016 Preparation and characterization of magnetic nanoparticles for health and environmental applications.
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
2013 - 2016 A common European approach to the regulatory testing of nanomaterials (NANoREG)
NPM.2012.1.3-3 (2013)
Investigador
International Iberian Nanotechnology Laboratory, Portugal
European Commission
Concluído
2013 - 2016 Self assembled nanostructures and functionalization protocols for biomedical, food quality, and environment control (B-self)
SAESCTN-PIIC&DT/1/2011
Investigador
International Iberian Nanotechnology Laboratory, Portugal
European Commission
2013 - 2015 Innovation in Nanobiomedicine (InveNNta)
-
Investigador
International Iberian Nanotechnology Laboratory, Portugal
EP - INTERREG V A España Portugal (POCTEP)
Concluído
2008 - 2012 Magnetic scaffolds for in vivo tissue engineering (MAGISTER)
NMP3-LA-2008-214685
Investigador
European Commission
Concluído
2006 - 2011 Nanotechnologies in biomedicine. Consolider Ingenio Program
-
Investigador
Ministery of Education and Science
2006 - 2008 Magneto-Plasmonic nanostructures for high-sensitive biosensors
-
Investigador
Ministery of Education and Science
Concluído
Produções

Publicações

Artigo em conferência
  1. Tampieri, A.; Sandri, M.; D’Alessandro, T.; Banobre-Lopez, M.; Rivas, J.. "Innovative Biomimetic Hybrid Composites to Repair Multifunctional Anatomical Region". 2010.
    Publicado • 10.1115/biomed2010-32059
  2. Tampieri, A.; Sandri, M.; D'Alessandro, T.; Banobre-Lopez, M.; Rivas, J.. "Innovative biomimetic hybrid composites to repair multifunctional anatomical region". 2010.
    10.1115/BioMed2010-32059
Artigo em revista
  1. Ana Raquel Bertão; Filipe Teixeira; Viktoriya Ivasiv; Pier Parpot; Cristina Almeida-Aguiar; António M. Fonseca; Manuel Bañobre-López; Fátima Baltazar; Isabel C. Neves. "Correction to “Machine Learning-Assisted Optimization of Drug Combinations in Zeolite-Based Delivery Systems for Melanoma Therapy”". ACS Applied Materials & Interfaces (2024): https://doi.org/10.1021/acsami.4c04116.
    10.1021/acsami.4c04116
  2. Ana Raquel Bertão; Filipe Teixeira; Viktoriya Ivasiv; Pier Parpot; Cristina Almeida-Aguiar; António M. Fonseca; Manuel Bañobre-López; Fátima Baltazar; Isabel C. Neves. "Machine Learning-Assisted Optimization of Drug Combinations in Zeolite-Based Delivery Systems for Melanoma Therapy". ACS Applied Materials & Interfaces (2024): https://doi.org/10.1021/acsami.3c18224.
    10.1021/acsami.3c18224
  3. Ana Raquel Bertão; Viktoriya Ivasiv; Cristina Almeida-Aguiar; Patricia R. Correia; António M. Fonseca; Manuel Bañobre-López; Fátima Baltazar; Isabel C. Neves. "Preliminary evaluation of zeolite-based platforms as potential dual drug delivery systems against microbial infections in the tumor microenvironment". Microporous and Mesoporous Materials (2024): https://doi.org/10.1016/j.micromeso.2023.112871.
    10.1016/j.micromeso.2023.112871
  4. Melania Maglio; Maria Sartori; Alessandro Gambardella; Tatiana Shelyakova; Valentin Alek Dediu; Matteo Santin; Yolanda Piñeiro; et al. "Bone Regeneration Guided by a Magnetized Scaffold in an Ovine Defect Model". International Journal of Molecular Sciences (2023): https://doi.org/10.3390/ijms24010747.
    10.3390/ijms24010747
  5. Scialla S., Hanafy MS., Wang J-L., Genicio N., Silva M., Costa M., Oliveira-Pinto S., Baltazar F., Gallo J., Cui Z., Bañ. Autor correspondente: Scialla S., Hanafy MS., Wang J-L., Genicio N., Silva M., Costa M., Oliveira-Pinto S., Baltazar F., Gallo J., Cui Z., Bañ. "Targeted Treatment of Triple-Negative-Breast Cancer Through pH-Triggered Tumour Associated Macrophages Using Smart Theranostic Nanoformulations.". International Journal of Pharmaceutics 632 5 (2023): 122575.
    Publicado
  6. Beatriz Brito; Maria Rosaria Ruggiero; Thomas W. Price; Milene da Costa Silva; Núria Genicio; Annah J. Wilson; Olga Tyurina; et al. "Redox double-switch cancer theranostics through Pt(iv) functionalised manganese dioxide nanostructures". Nanoscale (2023): https://doi.org/10.1039/D3NR00076A.
    10.1039/D3NR00076A
  7. Stefania Scialla; Nuria Genicio; Beatriz Brito; Malgorzata Florek-Wojciechowska; Graeme J. Stasiuk; Danuta Kruk; Manuel Bañobre-López; Juan Gallo. "Insights into the Effect of Magnetic Confinement on the Performance of Magnetic Nanocomposites in Magnetic Hyperthermia and Magnetic Resonance Imaging". ACS Applied Nano Materials (2022): https://doi.org/10.1021/acsanm.2c03537.
    10.1021/acsanm.2c03537
  8. Reinaldo R. Souza; Vera Faustino; Inês M. Gonçalves; Ana S. Moita; Manuel Bañobre-López; Rui Lima. "A Review of the Advances and Challenges in Measuring the Thermal Conductivity of Nanofluids". Nanomaterials (2022): https://doi.org/10.3390/nano12152526.
    10.3390/nano12152526
  9. Sanna Sillankorva; Liliana Pires; Lorenzo M. Pastrana; Manuel Bañobre-López. "Antibiofilm Efficacy of the Pseudomonas aeruginosa Pbunavirus vB_PaeM-SMS29 Loaded onto Dissolving Polyvinyl Alcohol Microneedles". Viruses (2022): https://doi.org/10.3390/v14050964.
    10.3390/v14050964
  10. Mónica Cerqueira; Efres Belmonte-Reche; Juan Gallo; Fátima Baltazar; Manuel Bañobre-López. "Magnetic Solid Nanoparticles and Their Counterparts: Recent Advances towards Cancer Theranostics". Pharmaceutics 14 3 (2022): 506-506. https://doi.org/10.3390/pharmaceutics14030506.
    10.3390/pharmaceutics14030506
  11. Cátia Vieira Rocha; Victor Gonçalves; Milene Costa da Silva; Manuel Bañobre-López; Juan Gallo. "PLGA-Based Composites for Various Biomedical Applications". International Journal of Molecular Sciences 23 4 (2022): 2034-2034. https://doi.org/10.3390/ijms23042034.
    10.3390/ijms23042034
  12. Adriano Santos Silva; Jose Luis Diaz de Tuesta; Thais Sayuri Berberich; Simone Delezuk Inglez; Ana Raquel Bertão; Ihsan Çaha; Francis Leonard Deepak; Manuel Bañobre-López; Helder Teixeira Gomes. "Doxorubicin delivery performance of superparamagnetic carbon multi-core shell nanoparticles: pH dependence, stability and kinetic insight". Nanoscale (2022): https://doi.org/10.1039/D1NR08550F.
    10.1039/D1NR08550F
  13. R.R. Souza; Vera Faustino; J.D. Oliveira; Inês M. Gonçalves; João M. Miranda; Ana S. Moita; A.L.N. Moreira; et al. "A novel and extremely stable nanofluid based on iron oxide nanoparticles: Experimental investigations on the thermal performance". Thermal Science and Engineering Progress 26 (2021): 101085-101085. https://doi.org/10.1016/j.tsep.2021.101085.
    10.1016/j.tsep.2021.101085
  14. Elena Navarro-Palomares; Lorena García-Hevia; Esperanza Padín-González; Manuel Bañobre-López; Juan C. Villegas; Rafael Valiente; Mónica L. Fanarraga. "Targeting Nanomaterials to Head and Neck Cancer Cells Using a Fragment of the Shiga Toxin as a Potent Natural Ligand". Cancers 13 19 (2021): 4920-4920. https://doi.org/10.3390/cancers13194920.
    10.3390/cancers13194920
  15. Marta Ribeiro; Meriem Boudoukhani; Efres Belmonte-Reche; Nuria Genicio; Sanna Sillankorva; Juan Gallo; Carlos Rodríguez-Abreu; Nadji Moulai-Mostefa; Manuel Bañobre-López. "Xanthan-Fe3O4 Nanoparticle Composite Hydrogels for Non-Invasive Magnetic Resonance Imaging and Magnetically Assisted Drug Delivery". ACS Applied Nano Materials (2021): https://doi.org/10.1021/acsanm.1c00932.
    10.1021/acsanm.1c00932
  16. Filipe Camarneiro; Juanita Bocquel; Juan Gallo; Manuel Bañobre-López; Kirstine Berg-Sørensen; Ulrik Lund Andersen; Alexander Huck; Jana B. Nieder. "Magnetic Field Mapping Around Individual Magnetic Nanoparticle Agglomerates Using Nitrogen-Vacancy Centers in Diamond". Particle & Particle Systems Characterization (2021): 2100011-2100011. https://doi.org/10.1002/ppsc.202100011.
    10.1002/ppsc.202100011
  17. Beatriz D. Cardoso; Ana Rita O. Rodrigues; Manuel Bañobre-López; Bernardo G. Almeida; Carlos O. Amorim; Vítor S. Amaral; Paulo J. G. Coutinho; Elisabete M. S. Castanheira. "Magnetoliposomes Based on Shape Anisotropic Calcium/Magnesium Ferrite Nanoparticles as Nanocarriers for Doxorubicin". Pharmaceutics 13 8 (2021): 1248-1248. https://doi.org/10.3390/pharmaceutics13081248.
    10.3390/pharmaceutics13081248
  18. Ana Mafalda Pinto; Alberta Faustino; Lorenzo M. Pastrana; Manuel Bañobre-López; Sanna Sillankorva. "Pseudomonas aeruginosa PAO 1 In Vitro Time–Kill Kinetics Using Single Phages and Phage Formulations—Modulating Death, Adaptation, and Resistance". Antibiotics 10 7 (2021): 877-877. https://doi.org/10.3390/antibiotics10070877.
    10.3390/antibiotics10070877
  19. Teresa Lage; Raquel O. Rodrigues; Susana Catarino; Juan Gallo; Manuel Bañobre-López; Graça Minas. "Graphene-Based Magnetic Nanoparticles for Theranostics: An Overview for Their Potential in Clinical Application". Nanomaterials (2021): https://doi.org/10.3390/nano11051073.
    10.3390/nano11051073
  20. Reinaldo Rodrigues de Souza; Vera Faustino; Inês Maia Gonçalves; João Mário Miranda; Ana Sofia Moita; Antônio L. N. Moreira; Manuel Bañobre-López; Rui Lima. "Experimental Studies of the Sedimentation, Stability and Thermal Conductivity of Two Different Nanofluids". Engineering Proceedings 4 1 (2021): 35-35. https://doi.org/10.3390/Micromachines2021-09589.
    10.3390/Micromachines2021-09589
  21. Bañobre-López, Manuel. "Effect of hyperthermia from magnetic nanoparticles on Salmonella enterica planktonic populations and biofilms". LWT-Food Science and Technology (2021):
    Submetido
  22. Bañobre-López, Manuel. "Magnetic lipid nanovehicles synergize the controlled thermal release of chemotherapeutics with magnetic ablation while enabling non-invasive monitoring by MRI for melanoma theranostics". Bioactive Materials (2021):
    No prelo
  23. Neto, Davino M.A.; da Costa, Luelc S.; de Menezes, Fernando L.; Fechine, Lillian M.U.D.; Freire, Rafael M.; Denardin, Juliano C.; Bañobre-López, Manuel; et al. "A novel amino phosphonate-coated magnetic nanoparticle as MRI contrast agent". Applied Surface Science 543 (2021): 148824. http://dx.doi.org/10.1016/j.apsusc.2020.148824.
    Publicado • 10.1016/j.apsusc.2020.148824
  24. Milene Costa da Silva; Cátia Vieira Rocha; Manuel Bañobre-López; Juan Gallo. "Stimulation and Suppression of the Innate Immune System through Nanotechnology". ACS Applied Nano Materials (2021): https://doi.org/10.1021/acsanm.0c03424.
    10.1021/acsanm.0c03424
  25. Valdivia, Lourdes; García-Hevia, Lorena; Bañobre-López, Manuel; Gallo, Juan; Valiente, Rafael; López Fanarraga, Mónica. "Solid Lipid Particles for Lung Metastasis Treatment". Pharmaceutics 13 1 (2021): 93. http://dx.doi.org/10.3390/pharmaceutics13010093.
    Publicado • 10.3390/pharmaceutics13010093
  26. A F M Rodrigues; P M C Torres; M J S Barros; R Presa; N Ribeiro; J C C Abrantes; J H Belo; et al. "Effective production of multifunctional magnetic-sensitive biomaterial by an extrusion-based additive manufacturing technique". Biomedical Materials 16 1 (2020): 015011-015011. https://doi.org/10.1088/1748-605X/abac4c.
    Publicado • 10.1088/1748-605X/abac4c
  27. Rodrigues, Raquel O.; Sousa, Patrícia C.; Gaspar, João; Bañobre-López, Manuel; Lima, Rui; Minas, Graça. "Organ-on-a-Chip: A Preclinical Microfluidic Platform for the Progress of Nanomedicine". Small 16 51 (2020): 2003517. http://dx.doi.org/10.1002/smll.202003517.
    Publicado • 10.1002/smll.202003517
  28. Ong, Yong Sze; Bañobre-López, Manuel; Costa Lima, Sofia A.; Reis, Salette. "A multifunctional nanomedicine platform for co-delivery of methotrexate and mild hyperthermia towards breast cancer therapy". Materials Science and Engineering: C 116 (2020): 111255. http://dx.doi.org/10.1016/j.msec.2020.111255.
    Publicado • 10.1016/j.msec.2020.111255
  29. Jiménez-López, Julia; García-Hevia, Lorena; Melguizo, Consolación; Prados, Jose; Bañobre-López, Manuel; Gallo, Juan. "Evaluation of Novel Doxorubicin-Loaded Magnetic Wax Nanocomposite Vehicles as Cancer Combinatorial Therapy Agents". Pharmaceutics 12 7 (2020): 637. http://dx.doi.org/10.3390/pharmaceutics12070637.
    Publicado • 10.3390/pharmaceutics12070637
  30. Moura, Carolina L.; Gallo, Juan; García-Hevia, Lorena; Pessoa, Otília D. L.; Ricardo, Nágila M. P. S.; Bañobre-López, Manuel. "Cover Feature: Magnetic Hybrid Wax Nanocomposites as Externally Controlled Theranostic Vehicles: High MRI Enhancement and Synergistic Magnetically Assisted Thermo/Chemo Therapy (Chem. Eur. J. 20/2020)". Chemistry – A European Journal 26 20 (2020): 4434-4434. http://dx.doi.org/10.1002/chem.202000810.
    10.1002/chem.202000810
  31. Carolina L. Moura; Juan Gallo; Lorena García-Hevia; Otília D. L. Pessoa; Nágila M. P. S. Ricardo; Manuel Bañobre-López. "Magnetic Hybrid Wax Nanocomposites as Externally Controlled Theranostic Vehicles: High MRI Enhancement and Synergistic Magnetically Assisted Thermo/Chemo Therapy". Chemistry – A European Journal 26 20 (2020): 4531-4538. https://doi.org/10.1002/chem.201904709.
    10.1002/chem.201904709
  32. Ana M. Pinto; Miguel A. Cerqueira; Manuel Bañobre-Lópes; Lorenzo M. Pastrana; Sanna Sillankorva. "Bacteriophages for Chronic Wound Treatment: From Traditional to Novel Delivery Systems". Viruses 12 2 (2020): 235-235. https://doi.org/10.3390/v12020235.
    10.3390/v12020235
  33. Pardo, Alberto; Pelaz, Beatriz; Gallo, Juan; Bañobre-López, Manuel; Parak, Wolfgang J.; Barbosa, Silvia; del Pino, Pablo; Taboada, Pablo. "Synthesis, Characterization, and Evaluation of Superparamagnetic Doped Ferrites as Potential Therapeutic Nanotools". Chemistry of Materials 32 6 (2020): 2220-2231. http://dx.doi.org/10.1021/acs.chemmater.9b04848.
    10.1021/acs.chemmater.9b04848
  34. Bañobre-López, Manuel. "Synthesis, characterization, and evaluation of superparamagnetic doped ferrites as potential therapeutic nanotools". Chemistry of Materials 32 6 (2020): 2220-2231. https://doi.org/10.1021/acs.chemmater.9b04848.
    Publicado
  35. Bañobre-López, Manuel. "Dye-doped biodegradable nanoparticle SiO2 coating on zinc- and iron-oxide nanoparticles to improve biocompatibility and for in vivo imaging studies". Nanoscale 12 10 (2020): 6164-6175.
    Aceite para publicação
  36. Kadri, Ines; Elleuch, Slim; Tavares, Carlos Jose; Bañobre-López, Manuel; François, Michel; Rekik, Walid. "Chemical preparation, crystal structure, Hirshfeld surface analysis, spectroscopy, DFT studies, thermal decomposition and magnetic measurements of (C4H12N2)[FeCl3(H2O)3]Cl2". Inorganic Chemistry Communications 112 (2020): 107748. http://dx.doi.org/10.1016/j.inoche.2019.107748.
    10.1016/j.inoche.2019.107748
  37. Raquel O. Rodrigues; Patrícia C. Sousa; João Gaspar; Bañobre-López, Manuel; Rui Lima; Graça Minas. "“Organs-on-a-chip: an advanced microfluidic platform for theranostic screening in nanomedicine”". Bionsensors and Biolectronics (2020):
    Submetido
  38. Vieira Rocha, Cátia; Costa da Silva, Milene; Bañobre-López, Manuel; Gallo, Juan. "(Para)magnetic hybrid nanocomposites for dual MRI detection and treatment of solid tumours". Chemical Communications 56 61 (2020): 8695-8698. http://dx.doi.org/10.1039/d0cc03020a.
    Publicado • 10.1039/d0cc03020a
  39. Silva, Pedro L.; Savchuk, Oleksandr A.; Gallo, Juan; García-Hevia, Lorena; Bañobre-López, Manuel; Nieder, Jana B.; Pedro L. Silva; et al. "Mapping intracellular thermal response of cancer cells to magnetic hyperthermia treatment". Nanoscale 12 42 (2020): 21647-21656. http://dx.doi.org/10.1039/c9nr10370h.
    Publicado • 10.1039/c9nr10370h
  40. Cátia Vieira Rocha; Milene Costa da Silva; Manuel Bañobre-López; Juan Gallo. "(Para)magnetic hybrid nanocomposites for dual MRI detection and treatment of solid tumours". Chemical Communications (2020): https://doi.org/10.1039/D0CC03020A.
    10.1039/D0CC03020A
  41. Elena Navarro-Palomares; Paula González-Saiz; Carlos Renero-Lecuna; Rosa Martín-Rodríguez; Fernando Aguado; David González-Alonso; Luis Fernández Barquín; et al. "Dye-doped biodegradable nanoparticle SiO2 coating on zinc- and iron-oxide nanoparticles to improve biocompatibility and for in vivo imaging studies". Nanoscale (2020): https://doi.org/10.1039/C9NR08743E.
    10.1039/C9NR08743E
  42. Ribeiro, Rui S.; Gallo, Juan; Bañobre-López, Manuel; Silva, Adrián M.T.; Faria, Joaquim L.; Gomes, Helder T.. "Enhanced performance of cobalt ferrite encapsulated in graphitic shell by means of AC magnetically activated catalytic wet peroxide oxidation of 4-nitrophenol". Chemical Engineering Journal 376 (2019): 120012. http://dx.doi.org/10.1016/j.cej.2018.09.173.
    10.1016/j.cej.2018.09.173
  43. Rita Sofia Garcia Ribeiro; Sarah Belderbos; Pierre Danhier; Juan Gallo; Bella Manshian; Bernard Gallez; Manuel Bañobre; et al. "

    Targeting tumor cells and neovascularization using RGD-functionalized magnetoliposomes

    ". International Journal of Nanomedicine Volume 14 (2019): 5911-5924. https://doi.org/10.2147/IJN.S214041.
    10.2147/IJN.S214041
  44. Carvalho, André; Gallo, Juan; Pereira, David; Valentão, Patrícia; Andrade, Paula; Hilliou, Loic; Ferreira, Paula; Bañobre-López, Manuel; Martins, José. "Magnetic Dehydrodipeptide-Based Self-Assembled Hydrogels for Theragnostic Applications". Nanomaterials 9 4 (2019): 541. http://dx.doi.org/10.3390/nano9040541.
    10.3390/nano9040541
  45. Vilas-Boas, Vânia; Espiña, Begoña; Kolen’ko, Yury V.; Bañobre-López, Manuel; Brito, Marina; Martins, Verónica; Duarte, José Alberto; et al. "Effectiveness and Safety of a Nontargeted Boost for a CXCR4-Targeted Magnetic Hyperthermia Treatment of Cancer Cells". ACS Omega 4 1 (2019): 1931-1940. http://dx.doi.org/10.1021/acsomega.8b02199.
    10.1021/acsomega.8b02199
  46. Vilaça, Natália; Gallo, Juan; Fernandes, Rui; Figueiredo, Francisco; Fonseca, António M.; Baltazar, Fátima; Neves, Isabel C.; Bañobre-López, Manuel. "Synthesis, characterization and in vitro validation of a magnetic zeolite nanocomposite with T2-MRI properties towards theranostic applications". Journal of Materials Chemistry B 7 21 (2019): 3351-3361. http://dx.doi.org/10.1039/c9tb00078j.
    10.1039/c9tb00078j
  47. Natália Vilaça; Juan Gallo; Rui Fernandes; Francisco Figueiredo; António M. Fonseca; Fátima Baltazar; Isabel C. Neves; Manuel Bañobre-López. "Synthesis, characterization and in vitro validation of a magnetic zeolite nanocomposite with T2-MRI properties towards theranostic applications". Journal of Materials Chemistry B (2019): https://doi.org/10.1039/C9TB00078J.
    10.1039/C9TB00078J
  48. Rodrigues, Raquel O.; Baldi, Giovanni; Doumett, Saer; Garcia-Hevia, Lorena; Gallo, Juan; Bañobre-López, Manuel; Dražic, Goran; et al. "Multifunctional graphene-based magnetic nanocarriers for combined hyperthermia and dual stimuli-responsive drug delivery". Materials Science and Engineering: C 93 (2018): 206-217. http://dx.doi.org/10.1016/j.msec.2018.07.060.
    10.1016/j.msec.2018.07.060
  49. Poon, Christopher; Gallo, Juan; Joo, Johan; Chang, Timothy; Bañobre-López, Manuel; Chung, Eun Ji. "Hybrid, metal oxide-peptide amphiphile micelles for molecular magnetic resonance imaging of atherosclerosis". Journal of Nanobiotechnology 16 1 (2018): http://dx.doi.org/10.1186/s12951-018-0420-8.
    Publicado • 10.1186/s12951-018-0420-8
  50. García-Hevia, Lorena; Bañobre-López, Manuel; Gallo, Juan. "Recent Progress on Manganese-Based Nanostructures as Responsive MRI Contrast Agents". Chemistry - A European Journal 25 2 (2018): 431-441. http://dx.doi.org/10.1002/chem.201802851.
    10.1002/chem.201802851
  51. Rodrigues, Raquel; Baldi, Giovanni; Doumett, Saer; Gallo, Juan; Bañobre-López, Manuel; Dražic, Goran; Calhelha, Ricardo; et al. "A Tailor-Made Protocol to Synthesize Yolk-Shell Graphene-Based Magnetic Nanoparticles for Nanomedicine". C 4 4 (2018): 55. http://dx.doi.org/10.3390/c4040055.
    10.3390/c4040055
  52. Bañobre-López, M; Gaudisson, T; Rivas, J; Ammar, S; Valenzuela, R Valenzuela. "Local RF-Heating by Using High-Density Nanostructured Magnetic Garnet Ceramic". International Journal of Magnetics and Electromagnetism 4 1 (2018): 1-5. http://dx.doi.org/10.35840/2631-5068/6514.
    10.35840/2631-5068/6514
  53. Garcia Ribeiro, Rita Sofia; Gysemans, Conny; da Cunha, João Paulo Monteiro Carvalho Mori; Manshian, Bella B.; Jirak, Daniel; Kriz, Jan; Gallo, Juan; et al. "Magnetoliposomes as Contrast Agents for Longitudinal in vivo Assessment of Transplanted Pancreatic Islets in a Diabetic Rat Model". Scientific Reports 8 1 (2018): http://dx.doi.org/10.1038/s41598-018-29136-9.
    10.1038/s41598-018-29136-9
  54. Silvanose Biju; Juan Gallo; M. Bañobre-López; Bella B. Manshian; Stefaan J. Soenen; Uwe Himmelreich; Luce Vander Elst; Tatjana N. Parac-Vogt. "Front Cover: A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window (Chem. Eur. J. 29/2018)". Chemistry – A European Journal 24 29 (2018): 7273-7273. https://doi.org/10.1002/chem.201801814.
    10.1002/chem.201801814
  55. Guldris, Noelia; Gallo, Juan; García-Hevia, Lorena; Rivas, José; Bañobre-López, Manuel; Salonen, Laura M.. "Orthogonal Clickable Iron Oxide Nanoparticle Platform for Targeting, Imaging, and On-Demand Release". Chemistry - A European Journal 24 34 (2018): 8624-8631. http://dx.doi.org/10.1002/chem.201800389.
    10.1002/chem.201800389
  56. Biju, Silvanose; Gallo, Juan; Bañobre-López, M.; Manshian, Bella B.; Soenen, Stefaan J.; Himmelreich, Uwe; Vander Elst, Luce; Parac-Vogt, Tatjana N.. "A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window". Chemistry – A European Journal 24 29 (2018): 7388-7397. http://dx.doi.org/10.1002/chem.201800283.
    10.1002/chem.201800283
  57. Vilas-Boas, Vânia; Espiña, Begoña; Kolen'ko, Yury V.; Bañobre-Lopez, Manuel; Duarte, José A.; Martins, Verónica C.; Petrovykh, Dmitri Y.; Freitas, Paulo P.; Carvalho, Felix D.. "Combining CXCR4-targeted and nontargeted nanoparticles for effective unassisted in vitro magnetic hyperthermia". Biointerphases 13 1 (2018): 011005. http://dx.doi.org/10.1116/1.5009989.
    10.1116/1.5009989
  58. Manuel Bañobre-López; Lorena García-Hevia; M. Fatima Cerqueira; Francisco Rivadulla; Juan Gallo. "Front Cover: Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents (Chem. Eur. J. 6/2018)". Chemistry - A European Journal (2018): https://doi.org/10.1002/chem.201705893.
    10.1002/chem.201705893
  59. Vilaça, Natália; Totovao, Ricardo; Prasetyanto, Eko Adi; Miranda-Gonçalves, Vera; Morais-Santos, Filipa; Fernandes, Rui; Figueiredo, Francisco; et al. "Internalization studies on zeolite nanoparticles using human cells". Journal of Materials Chemistry B 6 3 (2018): 469-476. http://dx.doi.org/10.1039/c7tb02534c.
    10.1039/c7tb02534c
  60. Natália Vilaça; Ricardo Totovao; Eko Adi Prasetyanto; Vera Miranda-Gonçalves; Filipa Morais-Santos; Rui Fernandes; Francisco Figueiredo; et al. "Internalization studies on zeolite nanoparticles using human cells". Journal of Materials Chemistry B (2018): https://doi.org/10.1039/C7TB02534C.
    10.1039/C7TB02534C
  61. Nerio Fontaiña-Troitiño; Miguel A. Ramos-Docampo; Martín Testa-Anta; Benito Rodríguez-González; Manuel Bañobre-López; Laura Bocher; Keith P. McKenna; et al. "Antiphase boundaries in truncated octahedron-shaped Zn-doped magnetite nanocrystals". Journal of Materials Chemistry C 6 47 (2018): 12800-12807. https://doi.org/10.1039/C8TC05731A.
    10.1039/C8TC05731A
  62. Cardoso, Vanessa Fernandes; Francesko, António; Ribeiro, Clarisse; Bañobre-López, Manuel; Martins, Pedro; Lanceros-Mendez, Senentxu. "Advances in Magnetic Nanoparticles for Biomedical Applications". Advanced Healthcare Materials 7 5 (2017): 1700845. http://dx.doi.org/10.1002/adhm.201700845.
    10.1002/adhm.201700845
  63. Bañobre-López, Manuel; García-Hevia, Lorena; Cerqueira, M. Fatima; Rivadulla, Francisco; Gallo, Juan; Manuel Bañobre-López; Lorena García-Hevia; et al. "Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents". Chemistry - A European Journal 24 6 (2017): 1295-1303. http://dx.doi.org/10.1002/chem.201704861.
    10.1002/chem.201704861
  64. Chuncai Zhou; Yue Yuan; Panyu Zhou; Fangyingkai Wang; Yuanxiu Hong; Nuosha Wang; Shuogui Xu; Jianzhong Du. "Highly Effective Antibacterial Vesicles Based on Peptide-Mimetic Alternating Copolymers for Bone Repair". Biomacromolecules (2017): https://doi.org/10.1021/acs.biomac.7b01209.
    10.1021/acs.biomac.7b01209
  65. Neto, Davino M. A.; Freire, Rafael M.; Gallo, Juan; Freire, Tiago M.; Queiroz, Danilo C.; Ricardo, Nágila M. P. S.; Vasconcelos, Igor F.; et al. "Rapid Sonochemical Approach Produces Functionalized Fe3O4 Nanoparticles with Excellent Magnetic, Colloidal, and Relaxivity Properties for MRI Application". The Journal of Physical Chemistry C 121 43 (2017): 24206-24222. http://dx.doi.org/10.1021/acs.jpcc.7b04941.
    10.1021/acs.jpcc.7b04941
  66. Iglesias-Rey, Ramón; Vieites-Prado, Alba; Argibay, Bárbara; Campos, Francisco; Bañobre-López, Manuel; Sobrino, Tomás; Rivas, José; Castillo, José. "Magnetocaloric effect for inducing hypothermia as new therapeutic strategy for stroke: A physical approach". Journal of Applied Biomedicine 15 1 (2017): 33-38. http://dx.doi.org/10.1016/j.jab.2016.09.006.
    10.1016/j.jab.2016.09.006
  67. Du, Shuoren; Hernández-Gil, Javier; Dong, Hao; Zheng, Xiaoyu; Lyu, Guangming; Bañobre-López, Manuel; Gallo, Juan; et al. "Design and validation of a new ratiometric intracellular pH imaging probe using lanthanide-doped upconverting nanoparticles". Dalton Trans. 46 40 (2017): 13957-13965. http://dx.doi.org/10.1039/c7dt02418e.
    10.1039/c7dt02418e
  68. Gallo, J.; Harriss, B. I.; Hernández-Gil, J.; Bañobre-López, M.; Long, N. J.. "Probing T1–T2 interactions and their imaging implications through a thermally responsive nanoprobe". Nanoscale 9 31 (2017): 11318-11326. http://dx.doi.org/10.1039/c7nr01733b.
    10.1039/c7nr01733b
  69. Bañobre-López, Manuel; Bran, Cristina; Rodríguez-Abreu, Carlos; Gallo, Juan; Vázquez, Manuel; Rivas, José. "A colloidally stable water dispersion of Ni nanowires as an efficient T2-MRI contrast agent". Journal of Materials Chemistry B 5 18 (2017): 3338-3347. http://dx.doi.org/10.1039/c7tb00574a.
    10.1039/c7tb00574a
  70. Almeida,Raimundo R. de; Gallo,Juan; Silva,Aiêrta C. C. da; Silva,Ana K. O. da; Pessoa,Otilia D. L.; Araújo,Tamara G.; Leal,Luzia K. A. M.; et al. "Preliminary Evaluation of Novel Triglyceride-Based Nanocomposites for Biomedical Applications". Journal of the Brazilian Chemical Society (2017): http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50532017000801547.
    10.21577/0103-5053.20170007
  71. Manuel Bañobre-López; Cristina Bran; Carlos Rodríguez-Abreu; Juan Gallo; Manuel Vázquez; José Rivas. "A colloidally stable water dispersion of Ni nanowires as an efficient T2-MRI contrast agent". Journal of Materials Chemistry B 5 18 (2017): 3338-3347. https://doi.org/10.1039/C7TB00574A.
    10.1039/C7TB00574A
  72. J. Gallo; B. I. Harriss; J. Hernández-Gil; M. Bañobre-López; N. J. Long. "Probing T1–T2 interactions and their imaging implications through a thermally responsive nanoprobe". Nanoscale 9 31 (2017): 11318-11326. https://doi.org/10.1039%2Fc7nr01733b.
    10.1039/C7NR01733B
  73. Guldris, Noelia; Argibay, Bárbara; Gallo, Juan; Iglesias-Rey, Ramón; Carbó-Argibay, Enrique; Kolen’ko, Yury V.; Campos, Francisco; et al. "Magnetite Nanoparticles for Stem Cell Labeling with High Efficiency and Long-Term in Vivo Tracking". Bioconjugate Chemistry 28 2 (2016): 362-370. http://dx.doi.org/10.1021/acs.bioconjchem.6b00522.
    10.1021/acs.bioconjchem.6b00522
  74. Grillo, Renato; Gallo, Juan; Stroppa, Daniel G.; Carbó-Argibay, Enrique; Lima, Renata; Fraceto, Leonardo F.; Bañobre-López, Manuel. "Sub-Micrometer Magnetic Nanocomposites: Insights into the Effect of Magnetic Nanoparticles Interactions on the Optimization of SAR and MRI Performance". ACS Applied Materials & Interfaces 8 39 (2016): 25777-25787. http://dx.doi.org/10.1021/acsami.6b08663.
    10.1021/acsami.6b08663
  75. Meikle, S.T.; Piñeiro, Y.; Bañobre López, M.; Rivas, J.; Santin, M.. "Surface functionalization superparamagnetic nanoparticles conjugated with thermoresponsive poly(epsilon-lysine) dendrons tethered with carboxybetaine for the mild hyperthermia-controlled delivery of VEGF". Acta Biomaterialia 40 (2016): 235-242. http://dx.doi.org/10.1016/j.actbio.2016.04.043.
    10.1016/j.actbio.2016.04.043
  76. Rodrigues, Raquel O.; Bañobre-López, Manuel; Gallo, Juan; Tavares, Pedro B.; Silva, Adrián M. T.; Lima, Rui; Gomes, Helder T.. "Haemocompatibility of iron oxide nanoparticles synthesized for theranostic applications: a high-sensitivity microfluidic tool". Journal of Nanoparticle Research 18 7 (2016): http://dx.doi.org/10.1007/s11051-016-3498-7.
    10.1007/s11051-016-3498-7
  77. Pineiro, Y.; Vargas-Osorio, Z.; Banobre-Lopez, M.; Kolen'ko, Yu. V.; Lopez-Quintela, M. A.; Rivas, J.. "Relevant Parameters for Magnetic Hyperthermia in Biological Applications: Agglomeration, Concentration, and Viscosity". IEEE Transactions on Magnetics 52 7 (2016): 1-4. http://dx.doi.org/10.1109/tmag.2016.2516645.
    10.1109/tmag.2016.2516645
  78. Guldris, Noelia; Argibay, Bárbara; Kolen’ko, Yury V.; Carbó-Argibay, Enrique; Sobrino, Tomás; Campos, Francisco; Salonen, Laura M.; et al. "Influence of the separation procedure on the properties of magnetic nanoparticles: Gaining in vitro stability and T1–T2 magnetic resonance imaging performance". Journal of Colloid and Interface Science 472 (2016): 229-236. http://dx.doi.org/10.1016/j.jcis.2016.03.040.
    10.1016/j.jcis.2016.03.040
  79. Gallo, J.; Vasimalai, N.; Fernandez-Arguelles, M. T.; Bañobre-López, M.. "Green synthesis of multimodal ‘OFF–ON’ activatable MRI/optical probes". Dalton Transactions 45 44 (2016): 17672-17680. http://dx.doi.org/10.1039/c6dt02840c.
    10.1039/c6dt02840c
  80. Gonçalves, Ana I.; Rodrigues, Márcia T.; Carvalho, Pedro P.; Bañobre-López, Manuel; Paz, Elvira; Freitas, Paulo; Gomes, Manuela E.. "Exploring the Potential of Starch/Polycaprolactone Aligned Magnetic Responsive Scaffolds for Tendon Regeneration". Advanced Healthcare Materials 5 2 (2015): 213-222. http://dx.doi.org/10.1002/adhm.201500623.
    10.1002/adhm.201500623
  81. Samal, Sangram K.; Goranov, Vitaly; Dash, Mamoni; Russo, Alessandro; Shelyakova, Tatiana; Graziosi, Patrizio; Lungaro, Lisa; et al. "Multilayered Magnetic Gelatin Membrane Scaffolds". ACS Applied Materials & Interfaces 7 41 (2015): 23098-23109. http://dx.doi.org/10.1021/acsami.5b06813.
    10.1021/acsami.5b06813
  82. Deepak, Francis Leonard; Bañobre-López, Manuel; Carbó-Argibay, Enrique; Cerqueira, M. Fátima; Piñeiro-Redondo, Yolanda; Rivas, José; Thompson, Corey M.; et al. "A Systematic Study of the Structural and Magnetic Properties of Mn-, Co-, and Ni-Doped Colloidal Magnetite Nanoparticles". The Journal of Physical Chemistry C 119 21 (2015): 11947-11957. http://dx.doi.org/10.1021/acs.jpcc.5b01575.
    10.1021/acs.jpcc.5b01575
  83. Samal, Sangram K.; Dash, Mamoni; Shelyakova, Tatiana; Declercq, Heidi A.; Uhlarz, Marc; Bañobre-López, Manuel; Dubruel, Peter; et al. "Biomimetic Magnetic Silk Scaffolds". ACS Applied Materials & Interfaces 7 11 (2015): 6282-6292. http://dx.doi.org/10.1021/acsami.5b00529.
    10.1021/acsami.5b00529
  84. Keasberry, Natasha A.; Bañobre-López, Manuel; Wood, Christopher; Stasiuk, Graeme. J.; Gallo, Juan; Long, Nicholas. J.. "Tuning the relaxation rates of dual-mode T1/T2 nanoparticle contrast agents: a study into the ideal system". Nanoscale 7 38 (2015): 16119-16128. http://dx.doi.org/10.1039/c5nr04400f.
    10.1039/c5nr04400f
  85. Vázquez-Vázquez, Carmen; Sanlés-Sobrido, Marcos; Rodríguez-González, Benito; Spuch-Calvar, Miguel; Bañobre-López, Manuel; Rivas, José; Pérez-Lorenzo, Moisés; Salgueiriño, Verónica; Correa-Duarte, Miguel A.. "Kinetic impact of Pt seed morphology on the highly controlled growth of Ni-based nanostructures". RSC Advances 5 64 (2015): 52033-52040. http://dx.doi.org/10.1039/c5ra05814g.
    10.1039/c5ra05814g
  86. Kolen’ko, Yury V.; Bañobre-López, Manuel; Rodríguez-Abreu, Carlos; Carbó-Argibay, Enrique; Deepak, Francis Leonard; Petrovykh, Dmitri Y.; Cerqueira, M. Fátima; et al. "High-Temperature Magnetism as a Probe for Structural and Compositional Uniformity in Ligand-Capped Magnetite Nanoparticles". The Journal of Physical Chemistry C 118 48 (2014): 28322-28329. http://dx.doi.org/10.1021/jp5106949.
    10.1021/jp5106949
  87. Banobre-Lopez, Manuel; Pineiro-Redondo, Yolanda; Sandri, Monica; Tampieri, Anna; De Santis, Roberto; Dediu, Valentin Alek; Rivas, Jose. "Hyperthermia Induced in Magnetic Scaffolds for Bone Tissue Engineering". IEEE Transactions on Magnetics 50 11 (2014): 1-7. http://dx.doi.org/10.1109/tmag.2014.2327245.
    10.1109/tmag.2014.2327245
  88. Banobre-Lopez, Manuel; Pineiro-Redondo, Yolanda; Sandri, Monica; Tampieri, Anna; De Santis, Roberto; Dediu, Valentin Alek; Rivas, Jose. "Hyperthermia Induced in Magnetic Scaffolds for Bone Tissue Engineering". IEEE Transactions on Magnetics 50 11 (2014): 1-7. http://dx.doi.org/10.1109/tmag.2014.2327245.
    10.1109/tmag.2014.2327245
  89. Gaudisson, T.; Vázquez-Victorio, G.; Bañobre-López, M.; Nowak, S.; Rivas, J.; Ammar, S.; Mazaleyrat, F.; Valenzuela, R.. "The Verwey transition in nanostructured magnetite produced by a combination of chimie douce and spark plasma sintering". Journal of Applied Physics 115 17 (2014): 17E117. http://dx.doi.org/10.1063/1.4863164.
    10.1063/1.4863164
  90. Kolen’ko, Yury V.; Bañobre-López, Manuel; Rodríguez-Abreu, Carlos; Carbó-Argibay, Enrique; Sailsman, Alexandra; Piñeiro-Redondo, Yolanda; Cerqueira, M. Fátima; et al. "Large-Scale Synthesis of Colloidal Fe3O4 Nanoparticles Exhibiting High Heating Efficiency in Magnetic Hyperthermia". The Journal of Physical Chemistry C 118 16 (2014): 8691-8701. http://dx.doi.org/10.1021/jp500816u.
    10.1021/jp500816u
  91. Dionigi, Chiara; Lungaro, Lisa; Goranov, Vitaly; Riminucci, Alberto; Piñeiro-Redondo, Yolanda; Bañobre-López, Manuel; Rivas, José; Dediu, Valentin. "Smart magnetic poly(N-isopropylacrylamide) to control the release of bio-active molecules". Journal of Materials Science: Materials in Medicine 25 10 (2014): 2365-2371. http://dx.doi.org/10.1007/s10856-014-5159-7.
    10.1007/s10856-014-5159-7
  92. Banobre-Lopez, M.; Pineiro-Redondo, Y.; Sandri, M.; Tampieri, A.; De Santis, R.; Dediu, V.A.; Rivas, J.. "Hyperthermia induced in magnetic scaffolds for bone tissue engineering". IEEE Transactions on Magnetics 50 11 (2014): http://www.scopus.com/inward/record.url?eid=2-s2.0-84916243552&partnerID=MN8TOARS.
    10.1109/TMAG.2014.2327245
  93. Bañobre-López, Manuel; Teijeiro, Antonio; Rivas, Jose. "Magnetic nanoparticle-based hyperthermia for cancer treatment". Reports of Practical Oncology & Radiotherapy 18 6 (2013): 397-400. http://dx.doi.org/10.1016/j.rpor.2013.09.011.
    10.1016/j.rpor.2013.09.011
  94. Rodrigues, D.; Bañobre-López, M.; Espiña, B.; Rivas, J.; Azeredo, J.. "Effect of magnetic hyperthermia on the structure of biofilm and cellular viability of a food spoilage bacterium". Biofouling 29 10 (2013): 1225-1232. http://dx.doi.org/10.1080/08927014.2013.834893.
    10.1080/08927014.2013.834893
  95. Banobre-Lopez, M.; Rodrigues, D.; Espina, B.; Azeredo, J.; Rivas, J.. "Control of Bacterial Cells Growths by Magnetic Hyperthermia". IEEE Transactions on Magnetics 49 7 (2013): 3508-3511. http://dx.doi.org/10.1109/tmag.2013.2247384.
    10.1109/tmag.2013.2247384
  96. Gloria, A.; Russo, T.; D'Amora, U.; Zeppetelli, S.; D'Alessandro, T.; Sandri, M.; Bañobre-López, M.; et al. "Magnetic poly(e-caprolactone)/iron-doped hydroxyapatite nanocomposite substrates for advanced bone tissue engineering". Journal of The Royal Society Interface 10 80 (2013): 20120833. http://dx.doi.org/10.1098/rsif.2012.0833.
    10.1098/rsif.2012.0833
  97. Dionigi, Chiara; Piñeiro, Yolanda; Riminucci, Alberto; Bañobre, Manuel; Rivas, José; Dediu, Valentin. "Regulating the thermal response of PNIPAM hydrogels by controlling the adsorption of magnetite nanoparticles". Applied Physics A 114 2 (2013): 585-590. http://dx.doi.org/10.1007/s00339-013-7620-8.
    10.1007/s00339-013-7620-8
  98. Banobre-Lopez, M.; Rodrigues, D.; Espina, B.; Azeredo, J.; Rivas, J.. "Control of bacterial cells growths by magnetic hyperthermia". IEEE Transactions on Magnetics 49 7 (2013): 3508-3511. http://www.scopus.com/inward/record.url?eid=2-s2.0-84880774745&partnerID=MN8TOARS.
    10.1109/TMAG.2013.2247384
  99. Rodriguez, C.; Banobre-Lopez, M.; Kolen'ko, Yu. V.; Rodriguez, B.; Freitas, P.; Rivas, J.. "Magnetization Drop at High Temperature in Oleic Acid-Coated Magnetite Nanoparticles". IEEE Transactions on Magnetics 48 11 (2012): 3307-3310. http://dx.doi.org/10.1109/tmag.2012.2194273.
    10.1109/tmag.2012.2194273
  100. Rivas, J.; Bañobre-López, M.; Piñeiro-Redondo, Y.; Rivas, B.; López-Quintela, M.A.. "Magnetic nanoparticles for application in cancer therapy". Journal of Magnetism and Magnetic Materials 324 21 (2012): 3499-3502. http://dx.doi.org/10.1016/j.jmmm.2012.02.075.
    10.1016/j.jmmm.2012.02.075
  101. Rivas, J.; Bañobre-López, M.; Piñeiro-Redondo, Y.; Rivas, B.; López-Quintela, M.A.. "Magnetic nanoparticles for application in cancer therapy". Journal of Magnetism and Magnetic Materials 324 21 (2012): 3499-3502. http://dx.doi.org/10.1016/j.jmmm.2012.02.075.
    10.1016/j.jmmm.2012.02.075
  102. Puig, J.; Hoppe, C. E.; Fasce, L. A.; Pérez, C. J.; Piñeiro-Redondo, Y.; Bañobre-López, M.; López-Quintela, M. A.; Rivas, J.; Williams, R. J. J.. "Superparamagnetic Nanocomposites Based on the Dispersion of Oleic Acid-Stabilized Magnetite Nanoparticles in a Diglycidylether of Bisphenol A-Based Epoxy Matrix: Magnetic Hyperthermia and Shape Memory". The Journal of Physical Chemistry C 116 24 (2012): 13421-13428. http://dx.doi.org/10.1021/jp3026754.
    10.1021/jp3026754
  103. Tampieri, Anna; D’Alessandro, Teresa; Sandri, Monica; Sprio, Simone; Landi, Elena; Bertinetti, Luca; Panseri, Silvia; et al. "Intrinsic magnetism and hyperthermia in bioactive Fe-doped hydroxyapatite". Acta Biomaterialia 8 2 (2012): 843-851. http://dx.doi.org/10.1016/j.actbio.2011.09.032.
    10.1016/j.actbio.2011.09.032
  104. Rodríguez, C.; Bañobre-López, M.; Kolen'Ko, Yu.V.; Rodríguez, B.; Freitas, P.; Rivas, J.. "Magnetization drop at high temperature in oleic acid-coated magnetite nanoparticles". IEEE Transactions on Magnetics 48 11 (2012): 3307-3310. http://www.scopus.com/inward/record.url?eid=2-s2.0-84867805328&partnerID=MN8TOARS.
    10.1109/TMAG.2012.2194273
  105. Bañobre-López, M.; Piñeiro-Redondo, Y.; De Santis, R.; Gloria, A.; Ambrosio, L.; Tampieri, A.; Dediu, V.; Rivas, J.. "Poly(caprolactone) based magnetic scaffolds for bone tissue engineering". Journal of Applied Physics 109 7 (2011): 07B313. http://dx.doi.org/10.1063/1.3561149.
    10.1063/1.3561149
  106. Bañobre-López, M.; Piñeiro-Redondo, Y.; De Santis, R.; Gloria, A.; Ambrosio, L.; Tampieri, A.; Dediu, V.; Rivas, J.. "Poly(caprolactone) based magnetic scaffolds for bone tissue engineering". Journal of Applied Physics 109 7 (2011): 07B313. http://dx.doi.org/10.1063/1.3561149.
    10.1063/1.3561149
  107. Piñeiro-Redondo, Yolanda; Bañobre-López, Manuel; Pardiñas-Blanco, Iván; Goya, Gerardo; López-Quintela, M Arturo; Rivas, José. "The influence of colloidal parameters on the specific power absorption of PAA-coated magnetite nanoparticles". Nanoscale Research Letters 6 1 (2011): 383. http://dx.doi.org/10.1186/1556-276x-6-383.
    10.1186/1556-276x-6-383
  108. Piñeiro-Redondo, Y.; Bañobre-López, M.; Pardiñas-Blanco, I.; Goya, G.; López-Quintela, M.A.; Rivas, J.. "The influence of colloidal parameters on the specific power absorption of PAA-coated magnetite nanoparticles". Nanoscale Research Letters 6 (2011): 1-7. http://www.scopus.com/inward/record.url?eid=2-s2.0-84856041516&partnerID=MN8TOARS.
    10.1186/1556-276X-6-383
  109. Rivadulla, Francisco; Bañobre-López, Manuel; Quintela, Camilo X.; Piñeiro, Alberto; Pardo, Victor; Baldomir, Daniel; López-Quintela, Manuel Arturo; et al. "Questionable collapse of the bulk modulus in CrN". Nature Materials 9 4 (2010): 284-284. http://dx.doi.org/10.1038/nmat2723.
    10.1038/nmat2723
  110. Sanles-Sobrido, Marcos; Bañobre-López, Manuel; Salgueiriño, Veronica; Correa-Duarte, Miguel A.; Rodríguez-González, Benito; Rivas, José; Liz-Marzán, Luis M.. "Tailoring the magnetic properties of nickel nanoshells through controlled chemical growth". Journal of Materials Chemistry 20 35 (2010): 7360. http://dx.doi.org/10.1039/c0jm01107j.
    10.1039/c0jm01107j
  111. Rivadulla, Francisco; Bañobre-López, Manuel; Quintela, Camilo X.; Piñeiro, Alberto; Pardo, Victor; Baldomir, Daniel; López-Quintela, Manuel Arturo; et al. "Reduction of the bulk modulus at high pressure in CrN". Nature Materials 8 12 (2009): 947-951. http://dx.doi.org/10.1038/nmat2549.
    10.1038/nmat2549
  112. Ban~obre-Lo´pez, Manuel; Rivadulla, Francisco; Lo´pez-Quintela, M. Arturo; Rivas, Jose´. "Competing Magnetism and Superconductivity in NaxCoO2at Half Doping". Journal of the American Chemical Society 131 28 (2009): 9632-9633. http://dx.doi.org/10.1021/ja8100177.
    10.1021/ja8100177
  113. Va´zquez-Va´zquez, Carlos; Ban~obre-Lo´pez, Manuel; Mitra, Atanu; Lo´pez-Quintela, M. Arturo; Rivas, Jose´. "Synthesis of Small Atomic Copper Clusters in Microemulsions". Langmuir 25 14 (2009): 8208-8216. http://dx.doi.org/10.1021/la900100w.
    10.1021/la900100w
  114. Salgueiriño-Maceira, Verónica; Correa-Duarte, Miguel A.; Bañobre-López, Manuel; Grzelczak, Marek; Farle, Michael; Liz-Marzán, Luis M.; Rivas, José. "Magnetic Properties of Ni/NiO Nanowires Deposited onto CNT/Pt Nanocomposites". Advanced Functional Materials 18 4 (2008): 616-621. http://dx.doi.org/10.1002/adfm.200700846.
    10.1002/adfm.200700846
  115. Rivadulla, F.; Bañobre-López, M.; García-Hernández, M.; López-Quintela, M. A.; Rivas, J.. "Possible quantum criticality inNaxCoO2". Physical Review B 73 5 (2006): http://dx.doi.org/10.1103/physrevb.73.054503.
    10.1103/physrevb.73.054503
  116. Rivadulla, F.; Bañobre-López, M.; García-Hernández, M.; López-Quintela, M.A.; Rivas, J.. "Possible quantum criticality in Nax Co O2". Physical Review B - Condensed Matter and Materials Physics 73 5 (2006): http://www.scopus.com/inward/record.url?eid=2-s2.0-33144482537&partnerID=MN8TOARS.
    10.1103/PhysRevB.73.054503
  117. Bañobre-López, M.; Rivadulla, F.; Caudillo, R.; López-Quintela, M. A.; Rivas, J.; Goodenough, J. B.. "Role of Doping and Dimensionality in the Superconductivity of NaxCoO2". Chemistry of Materials 17 8 (2005): 1965-1968. http://dx.doi.org/10.1021/cm0500760.
    10.1021/cm0500760
  118. Vázquez-Vázquez, Carlos; Bañobre-López, Manuel; López-Quintela, M.A.; Hueso, Luis E.; Rivas, José. "Evidence of weak ferromagnetism in chromium(III) oxide particles". Journal of Magnetism and Magnetic Materials 272-276 (2004): 1547-1548. http://dx.doi.org/10.1016/j.jmmm.2003.12.260.
    10.1016/j.jmmm.2003.12.260
  119. Ba obre-L pez, Manuel; V zquez-V zquez, Carlos; Rivas, Jos ; L pez-Quintela, M Arturo. "Magnetic properties of chromium (III) oxide nanoparticles". Nanotechnology 14 2 (2003): 318-322. http://dx.doi.org/10.1088/0957-4484/14/2/342.
    10.1088/0957-4484/14/2/342
Capítulo de livro
  1. Rivas, J.; Kolen'ko, Y.V.; Bañobre-López, M.. "Magnetic Nanocolloids". In Nanocolloids, 75-129. Elsevier, 2016.
    10.1016/b978-0-12-801578-0.00003-5
  2. Bañobre-López, Manuel; Piñeiro, Y.; López-Quintela, M. Arturo; Rivas, José. "Magnetic Nanoparticles for Biomedical Applications". In Handbook of Nanomaterials Properties, 457-493. Springer Berlin Heidelberg, 2014.
    10.1007/978-3-642-31107-9_29
  3. Espiña, Begoña; Martins, Verónica C.; Bañobre-López, Manuel; Freitas, Paulo P.; Rivas, José. "Nanotechnology Applications in Aquatic Toxins". In Seafood and Freshwater Toxins, 521-550. CRC Press, 2014.
    Publicado • 10.1201/b16662-18
Poster em conferência
  1. Milene Costa da Silva; Cátia Martins; Susana P. G. Costa; Manuela M. Raposo; Bañobre-López, Manuel; Juan Gallo. "SELF-i: Self-reporting immunostimulating formulation for on-demand cancer therapy with real time treatment response monitoring". Trabalho apresentado em Nanomed Europe 2019, 2019.
  2. Nuria Genicio; Yolanda Piñeiro; Jose Rivas; Uwe Himmelreich; Juan Gallo; Bañobre-López, Manuel. "Towards a standardised workflow for the characterisation of nanoparticle bioconjugates". Trabalho apresentado em Nanomed Europe 2019, 2019.
  3. Fuerte-Rodríguez, Silvia; Juan Gallo; Bañobre-López, Manuel; Arias, José L.. "Formulation and characterization of theranostic magnetopolimeric nanoparticles". Trabalho apresentado em Nanomed Europe 2019, 2019.
  4. Lorena G. Hevia; Stefania Scialla; Efres Belmonte; I. Casafont; M. L. Fanarraga; Juan Gallo; Bañobre-López, Manuel. "Magnetic Hybrid Nanocomposites as theranostic platform for cancer theranostics". Trabalho apresentado em Nanomed Europe 2019, 2019.
  5. Teresa Lage; Raquel O. Rodrigues; Jessica R. P. Oliveira; Nuria Genicio; Fátima Cerqueira; Juan Gallo; Helder T. Gomes; et al. "Graphene-based magnetic nanoparticles as smart multifunctional theranostic nanosystems". Trabalho apresentado em Nanomed Europe 2019, 2019.
  6. Beatriz Brito; Bañobre-López, Manuel; Graeme J. Stasiuk; Juan Gallo. "Real-time drug release monitoring through dual T1/T2 nanostructures". Trabalho apresentado em Nanomed Europe 2019, 2019.
  7. Ana Raquel Bertão; Natália Vilaça; Sara Granja; Marta Costa; António M. Fonseca; Bañobre-López, Manuel; Fátima Baltazar; Isabel C. Neves. "In vitro and in vivo efficacy evaluation of drug delivery systems based on zeolites". Trabalho apresentado em Nanomed Europe 2019, 2019.
  8. Cátia Rocha; Bañobre-López, Manuel; Juan Gallo. "(Para)magnetic solid lipid nanocarriers for early detection and treatment of solid tumors". Trabalho apresentado em Nanomed Europe 2019, 2019.
  9. Marta Ribeiro; Meriem Boudoukhani; Efres Belmonte; Juan Gallo; Nadji Moulai-Mostefa; Bañobre-López, Manuel. "Multifunctional magnetic nanocomposite hydrogels as smart delivery systems.". Trabalho apresentado em Nanomed Europe 2019, 2019.
  10. Meriem Boudoukhani; Kaouther Ezzeroug; Marta Ribeiro; Sonia Lefnaoui; Juan Gallo; Bañobre-López, Manuel; NadjiMoulai-Mostefa. "Rheological Characterization of Magnetic Hydrogels as composite materials for biomedical applications". Trabalho apresentado em Nanomed Europe 2019, 2019.
  11. Bañobre-López, Manuel. "Opportunities of a functionalization with magnetic and plasmonic nanostructures.". Trabalho apresentado em XI Scientific Workshop – Cell Therapy and Regenerative Medicine, 2018.
  12. Lorena García-Hevia; Juan Gallo; Bañobre-López, Manuel. "Theranostic effects of a new magnetic nanocomposite". Trabalho apresentado em International Conference On Nanomedicine And Nanobiotechnology – ICONAN 2018, 2018.
  13. Lorena García-Hevia; Juan Gallo; Bañobre-López, Manuel. "New magnetic nanocomposites for theranostic applications". Trabalho apresentado em Imaginenano. NanoSpain, 2018.
  14. Lorena García-Hevia; Juan Gallo; Bañobre-López, Manuel. "Magnetic nanocomposites as versatile theranostic agents". Trabalho apresentado em XII Spanish-Portuguese Conference on Controlled Drug Delivery, 2018.
  15. M. Karageorgou; J. Gallo; C. Tsoukalas; S. Xanthopoulos; M. Paravatou-Petsotas; D. Stamopoulos; Bañobre-López, Manuel; P. Bouziotis. "Chelator-free Radiolabeling of Iron Oxide Nanoparticles with 68Ga For Dual-Modality PET/MR Imaging.". Trabalho apresentado em RADIOMAG Cost Action Meeting, 2017.
  16. Lorena García-Hevia; Juan Gallo; Bañobre-López, Manuel. "In vitro Validation of Theranostic Magnetic Solid Lipid Nanoparticles: Enhanced Magnetic Resonance Imaging and Combined Cancer Thermo/Chemo-Therapy". Trabalho apresentado em BioMAP 17, 2017.
  17. V. Vilas-Boas; B. Espiña; Y.V. Kolen’ko; Bañobre-López, Manuel; V. Martins; P. Freitas; F. Carvalho; et al. "Targeting chemokine receptor CXCR4 with magnetic particles to eliminate leukaemia cells with magnetic hyperthermia". Trabalho apresentado em 52nd Congress of the European Societies of Toxicology (EUROTOX), 2016.
    10.1016/j.toxlet.2016.06.1930
  18. J. Gallo; C. L. Moura; N. M. P. S. Ricardo; Bañobre-López, Manuel. "Organic-inorganic magnetic hybrids as multifunctional imaging and therapeutic agents.". Trabalho apresentado em Engineering Conferences International (ECI). Nanotechnology in Medicine: from Molecules to Humans., 2016.
  19. Ramón Iglesias; Alba Vieites-Prado; Bárbara Argibay; Francisco Campos; Bañobre-López, Manuel; Tomás Sobrino; José Rivas; José Castillo. "Magnetocloric effect for inducing hypothermia as new therapeutic strategy for stroke". Trabalho apresentado em Nanotech 2016, 2016.
  20. J. Gallo; Bañobre-López, Manuel. "Advanced Magnetic (theranostic) Nanostructures". Trabalho apresentado em RADIOMAG Cost Action Meeting, 2016.
  21. N. Guldris; B. Argibay; Y. V. Kolen’ko; E. Carbó-Argibay; J. Gallo; R. Iglesias; F.Campos; et al. "Superparamagnetic Iron Oxide Nanoparticles for Stem Cell Tracking by Magnetic Resonance Imaging". Trabalho apresentado em Nanotech France 2015, 2015.
  22. Rodrigues, Diana Alexandra Ferreira; Bañobre-López, Manuel; Espiña, Begoña; Rivas, José; Azeredo, Joana. "Control of planktonic bacterial cells and biofilms through magnetic hyperthermia". Trabalho apresentado em Biofilms 5, 2012.
  23. Bañobre-López, Manuel; D. Rodrigues; B. Espiña; J. Rivas; J. Azeredo. "Control of planktonic bacterial cells and biofilms through magnetic hyperthermia.". Trabalho apresentado em Biofilms 5, 2012.
  24. Bañobre-López, Manuel; I. González; C. X. Quintela; F. Rivadulla. "On the origin of the X(T) temperature dependent magnetic susceptibility and large thermoelectric power in metallic layered-cobaltites". Trabalho apresentado em NGSCES 2011 (New generation in strongly correlated electron systems), 2011.
  25. Bañobre-López, Manuel; Y. Piñeiro-Redondo; R. De Santis; A. Gloria; L. Ambrosio; A. Tampieri; A. Dediu; J. Rivas. "Poly(caprolactone) based magnetic scaffolds for bone tissue engineering.". Trabalho apresentado em 55th MMM Conference., 2010.
  26. Bañobre-López, Manuel; Y. Piñeiro-Redondo; G. F. Goya; J. Rivas. "The influence of colloidal parameters on the specific power absorption of magnetite nanoparticles with core-shell structure.". Trabalho apresentado em Trends in Nanotechnology (TNT 2010), 2010.
  27. Bañobre-López, Manuel; J. Rivas. "Magnetic Scaffolds for in-vivo Tissue Engineering.". Trabalho apresentado em Nanofutures., 2010.
  28. Bañobre-López, Manuel; C. X. Quintela; F. Rivadulla; M. Arturo López-Quintela; J. Rivas. "Thermoelectric energy conversion in cobalt oxides.". Trabalho apresentado em Nanofutures., 2010.
  29. Bañobre-López, Manuel; C. Vázquez-Vázquez; A. Mitra; M. A. López-Quintela; J. Rivas. "Synthesis of small atomic copper clusters in microemulsions". Trabalho apresentado em Nanodots and Diagnostics (FLUOROMAG), 2009.
  30. Bañobre-López, Manuel; F. Rivadulla; M. A. López-Quintela; J. Rivas. "New magnetic states and its relationship with superconductivity in NaxCoO2, x~0.5.". Trabalho apresentado em JEMS 2008, 2008.
  31. Bañobre-López, Manuel; F. Rivadulla; M. A. López-Quintela; J. Rivas. "Structural, magnetic and thermoelectric properties of MxCoO2 (M = Li, Na, K, Ca, Sr).". Trabalho apresentado em GEFES 2008, 2008.
  32. Bañobre-López, Manuel; F. Rivadulla; M.A. López-Quintela; J. Rivas. "Possible quantum criticality in NaxCoO2". Trabalho apresentado em 1st International Workshop on the physical properties of lamellar cobaltates., 2006.
  33. C. Vázquez Vázquez; S. Blanco Canosa; Bañobre-López, Manuel; M.A. López Quintela; J. Rivas. "Properties of magnetic nanoparticles inserted into mesoporous silica matrices.". Trabalho apresentado em 4th Internatioal Conference on Inorganic Materials., 2004.
  34. Bañobre-López, Manuel; F. Rivadulla; M.A. López Quintela; J. Rivas. "Signatures of a quantum phase transition in NaxCoO2". Trabalho apresentado em 4th Internatioal Conference on Inorganic Materials., 2004.
  35. Bañobre-López, Manuel; F. Rivadulla; M. A. López-Quintela; J. Rivas. "Comportamiento crítico cuántico en NaxCoO2.". Trabalho apresentado em III Reunión Nacional de Física del Estado Sólido., 2004.
  36. Bañobre-López, Manuel; C. Vázquez Vázquez; M.A. López Quintela; Luis E. Hueso; J. Rivas.. "Evidence of weak ferromagnetism in Cr2O3.". Trabalho apresentado em International Conference on Magnetism, 2003.
  37. Bañobre-López, Manuel; C. Vázquez Vázquez; M.A. López Quintela; J. Rivas. "Propiedades de nanopartículas de óxido de cromo (III) recubiertas de sílice". Trabalho apresentado em V Reunión del Grupo Especializado de Coloides e Interfases., 2003.
  38. Bañobre-López, Manuel; C. Vázquez Vázquez; M.A. López Quintela; J. Rivas. "Magnetic properties of Chromium (III) oxide nanoparticles.". Trabalho apresentado em Trends in Nanotechnology TNT2002, 2002.
  39. Bañobre-López, Manuel; C. Vázquez Vázquez; M.A. López Quintela; J. Rivas. "Synthesis of Chromium (III) oxide nanoparticles of controlled size.". Trabalho apresentado em Third International Conference on Inorganic Materials, 2002.
  40. C. Vázquez Vázquez; Bañobre-López, Manuel; M.A. López Quintela; J. Rivas. "Nanoparticles of controlled particle size.". Trabalho apresentado em 5th Latin America Workshop on Magnetism, Magnetic Materials and their Applications., 2001.
Pré-impressão
  1. Lorena García-Hevia; Andreia Patrícia Magalhães; Nuria Genicio; Íñigo Casafont; Milene Costa da Silva; Mónica López Fanarraga; Manuel Bañobre-López; Juan Gallo. "The critical role of spatio-temporal control in combinatorial chemo- and magnetic hyperthermia thermo-therapy: ‘the where’, ‘the how’ and ‘the when’". 2023. https://doi.org/10.1101/2023.06.15.545102.
    10.1101/2023.06.15.545102
Tese / Dissertação
  1. Carvalho, André Filipe Gonçalves de. "Preparation and characterisation of magnetic dehydropeptide-based hydrogels". Mestrado, 2018. http://hdl.handle.net/1822/64395.

Propriedade Intelectual

Patente
  1. Bañobre-López, Manuel. 2016. "Nanopartículas lipídicas sólidas a base de cera de carnaúba com potencial aplicação em hipertermia magnetica e imagen por ressonancia magnetica.". Brasil.
  2. Anna Tampieri; Elena Landi; Monica Sandri; Jose Rivas; Bañobre-López, Manuel. 2010. "Intrinsically Magnetic Hydroxyapatite". Itália.
Atividades

Apresentação oral de trabalho

Título da apresentação Nome do evento
Anfitrião (Local do evento)
2021/06/06 Magnetic Nanoparticles for Medicinal Chemistry
2020/10/02 INL_Health BioEurope
virtual
2020/10/01 Theranostics with magnetic nanostructures XIII scientific meeting, Cellular therapy and regenerative medicine
University of A Coruña (A Coruña)
2020/02/26 Magnetic polymer nanocomposites: opportunities in imaging and therapy applications Polymer Connect
Polymer Connect
2020/02/01 T1-T2 interactions in dual MRI contrast agents, a chemical perspective 3rd EuRelax workshop
EuRelax Cost Action (Estónia)
2020/01/01 Magnetic nanoparticles in Biomedicine INTERNATIONAL SEMINAR ON FRONTIERS IN CHEMISTRY (IFSC-2020)
(Chennai, Índia)
2019/12/05 Magnetic Nanoparticles in Nanomedicine: from the Chemistry to the Application Thematic School on Seismology, Nanosciences And Nanotechnologies, Oncology , Algerian-Portuguese Cooperation
(Algiers, Argélia)
2019/12/05 Magnetic nanocomposite hydrogels from biopolymers as smart delivery systems Thematic School on Seismology, Nanosciences And Nanotechnologies, Oncology , Algerian-Portuguese Cooperation
(Algiers, Argélia)
2019/12/05 Magnetic Nanocomposites as Versatile Carriers for Cancer Theranostics Thematic School on Seismology, Nanosciences And Nanotechnologies, Oncology , Algerian-Portuguese
(Algiers, Argélia)
2019/05/24 The power of magnetic nanoparticles in nanomedicine: from the chemistry to the application. 4th Symposium on Medicinal Chemistry
(Braga, Portugal)
2019/01/18 Advanced magnetic nanostructures for imaging, therapy and theranostic applications Winter School 2019 ‘Nanotechnology for Therapy and Diagnostics’
(Braga, Portugal)
2018/12/11 Advanced Magnetic Nanostructures for Imaging and Theranostic Applications 2nd workshop C2TN – Radiation for Science and Society
(Lisbon, Portugal)
2018/11/08 Opportunities of a functionalization with magnetic and plasmonic nanostructures XI Scientific Workshop – Cell Therapy and Regenerative Medicine
(A Coruña, Espanha)
2018/07 Magnetic Nanocomposites as Versatile Carriers for Cancer Theranostics BIT’s 8th Annual International Symposium of Drug Delivery Systems 2018
(San Petersburg, Rússia)
2018/06/18 Preclinical Validation of Magnetic Nanocomposites for Cancer Theranostics E-MRS 2018 Spring Meeting
(Strasbourg, França)
2018/06/16 Advanced (magnetic) Theranostic Nanostructures: from the Chemistry to the pre-clinical validation Preclinical PET/MR workshop
(Dijon, França)
2018/06/16 Responsive T1 MRI contrast agents for cancer imaging’ 1st preclinical MRI-PET Workshop
(Dijon, França)
2018/05 Magnetic nanoparticles for imaging, therapy and theranostic applications Workshop BINA-INL
(Ramat Gan , Israel)
2018/03/15 Tunable performance of manganese oxide nanostructures as MRI contrast agents Imaginenano 2018
(Bilbao, Espanha)
2017/11 Magnetic Nanoparticles as building blocks for high performance magnetic resonance imaging probes. 2st Thematic meeting of teh Galician Nanomedicine Network: Imaging & Biosensing
(Santiago de Compostela, Espanha)
2017/10 Chelator-free Radiolabeling of Iron Oxide Nanoparticles with 68Ga For Dual-Modality PET/MR Imaging European Association of Nuclear Medicine Conference
(Viena, Áustria)
2017/08 Theranostic Magnetic Solid Lipid Nanoparticles: Enhanced Magnetic Resonance Imaging and Combined Cancer Thermo/Chemo-Therapy ChinaNano 2017.
(Beijing, China)
2017/08 Magnetic Nanoparticles as Building Blocks in Complex Hybrid Nanostructures for Advanced Imaging and Theranostic Applications EMN Magnetic Nanomaterials
(Lyon, França)
2017/08 The Verwey Transition in Magnetite XXVI International Materials Research Congress
(Cancún, México)
2017/04/09 Magnetic Solid Lipid Nanocomposites for theranostic applications 8th Symposium on Bioengineering
(Porto, Portugal)
2017/03 Hyperthermia produced by magnetic nanoparticles as an alternative method to control a major foodborne pathogen NanoSpain 2017
(San Sebastian, Espanha)
2016/11/22 Magnetic Solid Lipid Nanocomposites as ultra-high MRI contrast enhancers and magnetic hyperthermia induced drug delivery vehicles NanoBio&Med 2016
(Barcelona, Espanha)
2016/11 Development of stimuli-responsive graphene-based yolk-shell magnetic nanoparticles for controlled release of anticancer drugs. XXII Encontro Luso-Galego de Química
(Bragança, Portugal)
2016/10 MnO2 Nanostructures: Responsive and Versatile Molecular Imaging Probes NanoS&T 2016
(Singapura)
2016/09 Advanced magnetic nanostructures as contrast agents for MRI applications Quatum Lab workshop
(Braga, Portugal)
2016/09 Ultra-high transversal relaxivity and hyperthermia-induced drug delivery in superparamagnetic solid lipid nanoparticles Trends on Nanotechnology TNT2016
(Friboug, Suiça)
2016/04/29 Iron Oxide Nanoparticles with Glucosamine-Modified Coating for Highly Efficient Labelling of Mesenchymal Stem Cells 5th Portuguese Young Chemists Meeting
(Guimarães, Portugal)
2016/02 Tuning the relaxation rates of dual mode T1/T2 nanoparticle contrast agents: a study into the ideal system NanoPT 2016
(Braga, Portugal)
2016/02 Ultrasmall Doped Iron Oxide Nanoparticles as Dual T1/T2 Contrast Agents for MRI NanoPT2016
(Braga, Portugal)
2015/12 Development and characterization of magnetic nanoparticles for theranostic applications. XXI Encontro Galego-Portugués de Química
(Pontevedra, Espanha)
2015/09 INL Therapeutics: innovative systems for the induction of immunotolerance and selective cell death 16th Trends in Nanotechnology International Conference (TNT
(Toulouse, França)
2015/07 Superparamagnetic Iron Oxide Nanoparticles for Biomedical Applications. 6th Iberian Meeting on Colloids and Interfaces
(Guimarães, Portugal)
2015/04 Nanoheaters for anti-cancer therapy applications
Instituto Português de Oncologia do Porto (Porto, Portugal)
2015/03 Magnetic nanoparticles as contrast agents in MRI and hyperthermia related applications. ImagineNano Conference
(Bilbao, Espanha)
2015/03 In vitro safety and efficiency of iron oxide nanoparticles to treat cancer with magnetic hyperthermia ImagineNano
(Bilbao, Espanha)
2015/02 Iron Oxide Nanoparticles as Contrast Agents for Magnetic Resonance Imaging Applications NanoPT 2015
(Porto, Portugal)
2014/10 Magnetic nanoparticles for enhanced MRI contrast. Workshop NANO2014
(Lisbon, Portugal)
2014/05 Hyperthermia induced in magnetic scaffolds for bone tissue engineering. IEEE International Magnetics Conference.
2014/05 Magnetic Hyperthermia and Biofilms Workshop INL-University of Aveiro
(Aveiro, Portugal)
2013/11 The Verwey transition in nanostructured magnetite produced by a combination of chimie douce and spark plasma sintering 58th Annual Conference on Magnetism and Magnetic Materials.
(Denver, Colorado, Estados Unidos)
2013/10 Effect of magnetic hyperthermia on P. fluorescens planktonic cells and biofilms BioMicroWorld 2013
(Madrid, Espanha)
2013/09 Effect of magnetic hyperthermia on P. fluorescence biofilm structure and cell viability. Eurobiofilms
(Ghent, Bélgica)
2013/09 Polymer composites with graphene nanoribbons formed by unzipping of carbon nanotubes 6th International Conference on Carbon Nanoparticle based composites.
(Dresden, Alemanha)
2013/08 Magnetocaloric Effects In High Density Nanostructured Ferrites XII International Materials Research Congress (IMRC).
(Cancún, México)
2013/04 Magnetic particles and clusters through a cross-disciplinary approach ImagineNano
(Bilbao, Espanha)
2013/01 Control of bacterial cells growths by magnetic hyperthermia 12th Joint MMM/Intermag Conference
(Chicago, Estados Unidos)
2012/05 Magnetization drop at High Temperature in oleic acid-coated magnetite nanoparticles Intermag
(Vancouver, Canadá)
2006/07 Relationship between chemical, magnetic and transport properties in MxCoO2 (M = Na, K, Li, Ca, Sr) 1st International Workshop on the physical properties of lamellar cobaltates.
(Orsay, França)
2005/11 NaxCoO2: Proximidad a una transición de fase magnética a cero kelvin XXX Reunión Bienal de la Real Sociedad Española de Química.
(Lugo, Espanha)

Orientação

Título / Tema
Papel desempenhado
Curso (Tipo)
Instituição / Organização
2021/01/01 - 2024/12/31 PLGA theranostic nanoparticles to address autoimmune diseases
Coorientador
Universidade de Santiago de Compostela, Espanha
2021/01/01 - 2024 Innovative peptide-based self-assembled theranostic hydrogel platform for combined MRI imaging and magnetic hyperthermia-activated cancer thermo-chemotherapy
Coorientador
Universidade do Minho, Portugal
2019/01/01 - 2023/03/31 Mesoporous silica nanostructures synthesis and characterization. In vitro and in vivo validation
Coorientador
Universidade do Minho, Portugal
2021/09/01 - 2022/09/30 Vasco Daniel Ferreira Peixoto
Orientador
Universidade do Minho, Portugal
2021/08/01 - 2022/09/30 In silico and in vitro assessment of novel purine derivatives as anticancer agents
Coorientador
Universidade do Minho, Portugal
2019/01/01 - 2022/06/30 MRI-Theranostic Probes
Coorientador
King's College London School of Biomedical Engineering and Imaging Sciences, Reino Unido
2021/03/01 - 2022/02/07 Tratamento do cancro da mama triplonegativo por meio de fármacos pouco específicos externamente ativados
Coorientador
Universidade do Minho, Portugal
2019 - 2022 Development of Responsive Theranostic Nanoparticles for Cancer.
Coorientador de Beatriz Brito
University of Hull, Reino Unido
2018 - 2022 Innovative approach for targeted cancer therapy based on dual-loaded silica nanostructures as new Drug Delivery Systems.
Coorientador de Ana Raquel Carvalho Bertão.
Universidade do Minho, Portugal
2019/02 - 2019/12 Optimization and Characterization of Graphene-based Magnetic Nanoparticles as Potential Theranostic Agents.
Coorientador de Teresa Lage
Micro and Nano Technologies (Mestrado)
Universidade do Minho, Portugal
2019 - 2019 Summer student
Orientador de Andrea García
International Iberian Nanotechnology Laboratory, Portugal
2019 - 2019 Specialization 3 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Orientador de Lourdes Valdivia
PhD (Curso de aperfeiçoamento / especialização)
Universidad de Cantabria, Espanha
2019 - 2019 Specialization 3 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Silvia Fuerte
PhD (Curso de aperfeiçoamento / especialização)
Universidad de Granada, Espanha
2019 - 2019 Specialization 1 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Kouther Ezzeroug
PhD (Curso de aperfeiçoamento / especialização)
Université Dr Yahia Fares de Médéa, Argélia
2018 - 2019 (Para)Magnetic Solid Lipid Nanoparticles for the early detection and treatment of solid tumours.
Coorientador de Cátia Andreia Vieira Rocha
Biophysics and Bionanosystems (Mestrado)
Universidade do Minho, Portugal
2018 - 2018 Summer student
Orientador de Baris Yildirim
International Iberian Nanotechnology Laboratory, Portugal
2018 - 2018 Summer student
Orientador de Chiyong Lee
International Iberian Nanotechnology Laboratory, Portugal
2018 - 2018 Summer student
Orientador de Marie-Charlotte Dragassi
International Iberian Nanotechnology Laboratory, Portugal
2018 - 2018 Specialization 3 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Esperanza Padín González
PhD (Curso de aperfeiçoamento / especialização)
Universidad de Cantabria, Espanha
2018 - 2018 Specialization 3 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Julia Jiménez López
PhD (Curso de aperfeiçoamento / especialização)
Universidad de Granada, Espanha
2017 - 2018 Preparation and Characterization of Dehydropeptide-Based Magnetic Hydrogels
Coorientador de André Carvalho
Chemistry (Mestrado)
Universidade do Minho, Portugal
2017 - 2018 Specialization 3 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Mériem Boudekani
PhD (Curso de aperfeiçoamento / especialização)
Université Dr Yahia Fares de Médéa, Argélia
2017 - 2018 Specialization 6 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Natália Vilaça
PhD (Curso de aperfeiçoamento / especialização)
Universidade do Minho, Portugal
2017 - 2017 Specialization 1 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Iméne Bulhaia
PhD (Curso de aperfeiçoamento / especialização)
Université Dr Yahia Fares de Médéa, Argélia
2017 - 2017 Specialization 1 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador
PhD (Curso de aperfeiçoamento / especialização)
Universidad de Cantabria, Espanha
2016 - 2017 Specialization 13 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Janaína Sobreira
PhD (Curso de aperfeiçoamento / especialização)
Universidade Estadual do Ceará, Brasil
2014 - 2017 Design and study of multifunctional systems based on magnetic nanoparticles for biomedical applications.
Coorientador de Noelia Guldris Pensado.
Universidade de Santiago de Compostela, Espanha
2016 - 2016 Magnetic Hyperhermia as an alternative method to control food spoilage microrganisms.
Coorientador de Marta Alexandra Lages Ferreira
Applied Biology (Licenciatura/Bacharelato)
Universidade do Minho, Portugal
2015 - 2016 Specialization 7 months course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador
PhD (Curso de aperfeiçoamento / especialização)
Universidade Estadual do Ceará, Brasil
2015 - 2015 Synthesis of Cu and Cu-Au nanoparticles by microemulsion method.
Coorientador de Tomás Salgado Rodríguez
Chemistry (Licenciatura/Bacharelato)
Universidade de Santiago de Compostela, Espanha
2015 - 2015 Summer student
Orientador de Mehrzad Zargarzadeh
International Iberian Nanotechnology Laboratory, Portugal
2015 - 2015 Summer student
Orientador de Lisa Kobayashi Frisk
International Iberian Nanotechnology Laboratory, Portugal
2014 - 2014 Specialization 1 week course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador
PhD (Curso de aperfeiçoamento / especialização)
Universidade de Santiago de Compostela, Espanha
2014 - 2014 Specialization 1 year course at INL, in the field of Advanced (magnetic) Theranostic Nanostructures
Coorientador de Rafael Almeida
PhD (Curso de aperfeiçoamento / especialização)
Universidade Estadual do Ceará, Brasil
2013 - 2013 Magnetic carbon nanostructures and study of their transport in microfluidic devices for hyperthermia
Orientador
PhD (Curso de aperfeiçoamento / especialização)
Universidade do Porto Faculdade de Engenharia, Portugal
2012 - 2012 Summer student
Orientador de Miguel Ángel Calvo
International Iberian Nanotechnology Laboratory, Portugal
2012 - 2012 Summer student
Orientador de Patricia Zoio
International Iberian Nanotechnology Laboratory, Portugal

Organização de evento

Nome do evento
Tipo de evento (Tipo de participação)
Instituição / Organização
2024/03/12 - 2024/03/15 Local organizing committee of the European Molecular Imaging Meeting (2023/03/15 - 2024/03/12)
Conferência (Membro da Comissão Organizadora)
International Iberian Nanotechnology Laboratory, Portugal
2019 - 2019 NanoMed Europe 2019 (2019/06/17 - 2019/06/19) International Iberian Nanotechnology Laboratory, Portugal
2018 - 2018 Nanomedicine Day (nanoGateway Summer School) (2018/07/27 - 2018/07/27) International Iberian Nanotechnology Laboratory, Portugal

Participação em evento

Descrição da atividade
Tipo de evento
Nome do evento
Instituição / Organização
2020/11/01 - Atual Dehydropeptide-based self-assembled hydrogels with incorporated Gd3+ chelates: potential Contrast Agents for MRI
Conferência
2nd international online Conference on Nanomaterials
2016/06/05 - 2016/06/12 Research day at Faculty of Natural Sciences, Imperial College London (UK), c/o Professor Nickolas Long. Activities: Relaxivity measurements in temperature responsive PNIPAM-coated magnetite nanoparticles as a function of the MR frequency.
Outro
Imperial College London, Reino Unido
2007 - 2007 SRS (Sinchrotron Radiation Source). Daresbury (England). Activities: Structural study of materials by means of high-energy X-ray diffraction as a function of the hydrostatic pressure
Sci-Tech Daresbury, Reino Unido
2006/07/24 - 2006/10/06 Texas Materials Institute c/o Professor John. B. Goodenough. Activities: Synthesis of materials with potential application as energetic materials and study of their chemical/physical properties
University of Texas at Austin, Estados Unidos

Júri de grau académico

Tema
Tipo de participação
Nome do candidato (Tipo de grau)
Instituição / Organização
2021/02/18 PhD defence of Maria Fernanda Navarro Poupard
Arguente
Maria Fernanda Navarro Poupard (Doutoramento)
Universidade de Santiago de Compostela - Campus Vida, Espanha
2020/09/08 PhD defence Raquel Martínez González
Arguente
Raquel Martínez González (Doutoramento)
Universidade de Santiago de Compostela - Campus Vida, Espanha

Arbitragem científica em conferência

Nome da conferência Local da conferência
2019/06/01 - Atual Nanomed Europe 2019

Comissão de avaliação

Descrição da atividade
Tipo de assessoria
Instituição / Organização Entidade financiadora
2021/11/01 - Atual Scientific proposals from Argentina
Avaliador
Asociacion Medica Argentina
2020/10 - Atual Project evaluator for National Polish Funding Agency
Avaliador
2020 - Atual Thesis jury
Membro
2015 - Atual Regular Reviewer of several journals from ACS (Applied Materials and Interfaces, Chemistry of Materials, Langmuir, The Journal of Physical Chemistry C)
2015 - Atual Regular Reviewer of Chemical Reviews
2015 - Atual Regular Reviewer of Nanoscale
2015 - Atual Regular Reviewer of Small
2015 - Atual Regular Reviewer of Advanced Drug Delivery Reviews
2015 - Atual Regular Reviewer of Journal of Colloid and Interface Science
2015 - Atual Regular Reviewer of Solid State Communication
2015 - Atual Regular Reviewer of Journal of Nanomaterials
2021/02 - 2021/03 Project evaluator for the Polish National Science Foundation
Avaliador
2020/09 - 2020/09 Project evaluator for the Swiss National Funding Agency

Curso / Disciplina lecionado

Disciplina Curso (Tipo) Instituição / Organização
2018 - 2018 “Nano-BioEngineering for Medicine” Advanced Course - Master class (Outros) Universidade do Minho, Portugal
2015 - 2015 Master class Galician Nanomedicine PhD Program.
2005 - 2006 Work techniques in the Laboratory Chemistry degree Universidade de Santiago de Compostela, Espanha
2004 - 2005 Physical Chemistry Laboratory Pharmacy degree Universidade de Santiago de Compostela, Espanha

Entrevista / Programa (rádio / tv)

Programa Tema
2021/10 - Atual SIC News Nanomedicine

Tutoria

Tópico Nome do aluno
2019/04 - Atual MSc fellow at INL Victor Gonçalves
2019/04 - Atual MSc fellow at INL Vera Faustino
2019/02 - Atual PhD fellow at INL Stefania Scialla.
2019/01 - Atual PhD fellow at INL Efres Belmonte
2019/01 - Atual PhD fellow at INL Milene Silva
2018/12 - Atual PhD fellow at INL Marta Ribeiro
2018/12 - Atual MSc fellow at INL Nuria Genicio
2017/01 - 2019/04 PhD fellow at INL Lorena García Hevia
2017 - 2017 PhD fellow CAPES (Brazil) Flavia Uchoa
2016 - 2016 PhD fellow TECNIOSPRING (CSIC-Barcelona) Sheila Contant.
2015 - 2016 PhD fellow CAPES (Brazil) Danilo Caldas de Queiroz
2014 - 2015 PhD fellow CAPES (Brazil) Renato Grillo
Distinções

Outra distinção

2016 Award for Best Oral Presentation at the 5th Portuguese Young Chemists Meeting
2015 Poster Prize at Nanotech France 2015
2006 Winner of the “VI Concurso de Proxectos Empresariais Innovadores da USC” with the project: “Nanogap”. (Prize shared with other proposal partners)