Vitor M Correlo
Vitor M Correlo
3B’s Research Group I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics of
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Cited by
Cited by
Cork: properties, capabilities and applications
SP Silva, MA Sabino, EM Fernandes, VM Correlo, LF Boesel, RL Reis
International materials reviews 50 (6), 345-365, 2005
Properties of melt processed chitosan and aliphatic polyester blends
VM Correlo, LF Boesel, M Bhattacharya, JF Mano, NM Neves, RL Reis
Materials Science and Engineering: A 403 (1-2), 57-68, 2005
Could 3D models of cancer enhance drug screening?
V Brancato, JM Oliveira, VM Correlo, RL Reis, SC Kundu
Biomaterials 232, 119744, 2020
Organ-on-chip models of cancer metastasis for future personalized medicine: From chip to the patient
D Caballero, S Kaushik, VM Correlo, JM Oliveira, RL Reis, SC Kundu
Biomaterials 149, 98-115, 2017
Emerging tumor spheroids technologies for 3D in vitro cancer modeling
T Rodrigues, B Kundu, J Silva-Correia, SC Kundu, JM Oliveira, RL Reis, ...
Pharmacology & therapeutics 184, 201-211, 2018
Osteogenic differentiation of human bone marrow mesenchymal stem cells seeded on melt based chitosan scaffolds for bone tissue engineering applications
AR Costa-Pinto, VM Correlo, PC Sol, M Bhattacharya, P Charbord, ...
Biomacromolecules 10 (8), 2067-2073, 2009
Nanoparticulate bioactive-glass-reinforced gellan-gum hydrogels for bone-tissue engineering
A Gantar, LP da Silva, JM Oliveira, AP Marques, VM Correlo, S Novak, ...
Materials Science and Engineering: C 43, 27-36, 2014
Chitosan/polyester-based scaffolds for cartilage tissue engineering: assessment of extracellular matrix formation
MLA da Silva, A Crawford, JM Mundy, VM Correlo, P Sol, M Bhattacharya, ...
Acta Biomaterialia 6 (3), 1149-1157, 2010
Hydrogel-based strategies to advance therapies for chronic skin wounds
LP da Silva, RL Reis, VM Correlo, AP Marques
Annual review of biomedical engineering 21, 145-169, 2019
Skin-integrated wearable systems and implantable biosensors: a comprehensive review
D Rodrigues, AI Barbosa, R Rebelo, IK Kwon, RL Reis, VM Correlo
Biosensors 10 (7), 79, 2020
Chondrogenic differentiation of human bone marrow mesenchymal stem cells in chitosan‐based scaffolds using a flow‐perfusion bioreactor
ML Alves da Silva, A Martins, AR Costa‐Pinto, VM Correlo, P Sol, ...
Journal of tissue engineering and regenerative medicine 5 (9), 722-732, 2011
Water absorption and degradation characteristics of chitosan‐based polyesters and hydroxyapatite composites
VM Correlo, ED Pinho, I Pashkuleva, M Bhattacharya, NM Neves, RL Reis
Macromolecular Bioscience 7 (3), 354-363, 2007
Evaluating biomaterial-and microfluidic-based 3D tumor models
MR Carvalho, D Lima, RL Reis, VM Correlo, JM Oliveira
Trends in biotechnology 33 (11), 667-678, 2015
Polyhydroxybutyrate-co-hydroxyvalerate structures loaded with adipose stem cells promote skin healing with reduced scarring
A Zonari, TMM Martins, ACC Paula, JN Boeloni, S Novikoff, AP Marques, ...
Acta biomaterialia 17, 170-181, 2015
Novel cork–polymer composites reinforced with short natural coconut fibres: Effect of fibre loading and coupling agent addition
EM Fernandes, VM Correlo, JF Mano, RL Reis
Composites science and technology 78, 56-62, 2013
Melanin nanoparticles as a promising tool for biomedical applications–a review
M Caldas, AC Santos, F Veiga, R Rebelo, RL Reis, VM Correlo
Acta biomaterialia 105, 26-43, 2020
Melt‐based compression‐molded scaffolds from chitosan–polyester blends and composites: Morphology and mechanical properties
VM Correlo, LF Boesel, E Pinho, AR Costa‐Pinto, ML Alves da Silva, ...
Journal of Biomedical Materials Research Part A: An Official Journal of The …, 2009
Properties of new cork–polymer composites: advantages and drawbacks as compared with commercially available fibreboard materials
EM Fernandes, VM Correlo, JAM Chagas, JF Mano, RL Reis
Composite structures 93 (12), 3120-3129, 2011
Electric phenomenon: A disregarded tool in tissue engineering and regenerative medicine
LP da Silva, SC Kundu, RL Reis, VM Correlo
Trends in biotechnology 38 (1), 24-49, 2020
Gellan gum-hyaluronic acid spongy-like hydrogels and cells from adipose tissue synergize promoting neoskin vascularization
MT Cerqueira, LP da Silva, TC Santos, RP Pirraco, VM Correlo, RL Reis, ...
ACS applied materials & interfaces 6 (22), 19668-19679, 2014
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