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Issue DateTitleAuthor(s)TypeAccess
20112D Bi-layer scaffolds of polycaprolactone and chitosan β-glycerol-based film for blood vessel constructsSzymczyk, Wojciech; Araújo, J. V.; Martins, Albino, et al.AbstractOpen access
2008Adhesion, proliferation, and osteogenic differentiation of a mouse mesenchymal stem cell line (BMC9) seeded on novel melt-based chitosan/polyester 3D porous scaffoldsPinto, A. R.; Salgado, A. J.; Correlo, V. M., et al.ArticleOpen access
16-Apr-2014Advanced antibacterial wound dressing produced with natural-origin materialsMonteiro, Nelson; Martins, Margarida Isabel Barros Coelho; Martins, Albino, et al.AbstractOpen access
Feb-2016Advanced polymer composites and structures for bone and cartilage tissue engineeringSol, Paula Cristina Coutinho; Martins, Albino; Reis, R. L., et al.Book partRestricted access (UMinho)
Jun-2017Advanced treatment for arthritic diseases based on the capture and inactivation of interleukin-6 by biofunctionalized polymeric nanoparticlesLima, Ana C.; Cunha, C.; Carvalho, A., et al.AbstractOpen access
2008All-trans retinoic acid release from biodegradable polyester microcapsulesBrunner, Cornelia Theresa; Baran, E. T.; Reis, R. L., et al.AbstractOpen access
2012An automated two-phase system for hydrogel microbead productionCoutinho, Daniela F.; Ahari, Amir F.; Kachouie, Nezamoddin N., et al.ArticleRestricted access (UMinho)
2015Antibacterial activity of chitosan nanofiber meshes with liposomes immobilized releasing gentamicinMonteiro, Nelson; Martins, Margarida; Martins, Albino, et al.ArticleRestricted access (UMinho)
Sep-2015Artificial thymus: a tissue engineering strategyCosta-Pinto, A. R.; Serre-Miranda, C.; Rodrigues, Bruno Cerqueira, et al.AbstractRestricted access (UMinho)
2008Assessment of the suitability of chitosan/polybutylene succinate scaffolds seeded with mouse mesenchymal progenitor cells for a cartilage tissue engineering approachOliveira, João T.; Correlo, V. M.; Sol, P. C., et al.ArticleOpen access
2014Automating the processing steps for obtaining bone tissue engineered substitutes : from imaging tools to bioreactors.Costa, P. F.; Martins, A.; Neves, N. M., et al.ArticleOpen access
Mar-2014Bio-inspired integration of natural materialsMartins, A.; Alves da Silva, Marta L.; Costa-Pinto, A. R., et al.Book partRestricted access (UMinho)
Sep-2010Biodegradable nanofibers-reinforced microfibrous composite scaffolds for bone tissue engineeringMartins, Albino; Pinho, Elisabete D.; Correlo, V. M., et al.ArticleOpen access
2007Biodegradable nanomats produced by electrospinning : expanding multifunctionality and potential for tissue engineeringAshammakhi, N.; Ndreu, A.; Piras, A. M., et al.ArticleOpen access
Jul-2019Biodegradable polymers: an update on drug delivery in bone and cartilage diseasesLima, Ana Cláudia Fernandes; Ferreira, Helena Susana Costa Machado; Reis, R. L., et al.ArticleOpen access
May-2014Biofunctional nanofibrous substrate comprising immobilized antibodies and selective binding of autologous growth factorsOliveira, C.; Costa-Pinto, A. R.; Reis, R. L., et al.ArticleRestricted access (UMinho)
8-Apr-2019Biofunctional nanofibrous substrate for local TNF-capturing as a strategy to control inflammation in arthritic jointsBacelo, Elisa; Alves da Silva, Marta; Cunha, Cristina, et al.ArticleOpen access
2004Bioinert, biodegradable and injectable polymeric matrix composites for hard tissue replacement: state of the art and recent developmentsMano, J. F.; Sousa, R. A.; Boesel, L. F., et al.ArticleOpen access
2008Biological performance of natural-based polymers for tissue engineering scaffoldingNeves, N. M.AbstractOpen access
Nov-2016Biomaterials from nature for advanced devices and therapiesNeves, N. M.; Reis, R. L.BookRestricted access (UMinho)