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DataTítuloAutor(es)TipoAcesso
2016Bacteria-responsive multilayer coatings comprising polycationic nanospheres for bacteria biofilm prevention on urinary cathetersFrancesko, Antonio; Fernandes, Margarida M.; Ivanova, Kristina, et al.ArtigoAcesso aberto
Jun-2020Bactericidal nanopatterns generated by block copolymer self-assemblyFontelo, R.; Soares da Costa, D.; Reis, R. L., et al.ArtigoAcesso restrito UMinho
2017Basics of the MeniscusCengiz, I. F.; Silva-Correia, Joana; Pereira, H., et al.Capítulo de livroAcesso restrito UMinho
2013Benefits of spine stabilization with biodegradable scaffolds in spinal cord injured ratsSilva, Nuno; Sousa, R. A.; Fraga, J. S., et al.ArtigoAcesso aberto
Mai-2003Bi-composite sandwich moldings: processing, mechanical performance and bioactive behaviourSousa, R. A.; Oliveira, A. L.; Reis, R. L., et al.ArtigoAcesso aberto
Ago-2018Bi-directional modulation of cellular interactions in an in vitro co-culture model of tendon-to-bone interfaceCalejo, I.; Costa-Almeida, R.; Gonçalves, A. I., et al.ArtigoAcesso restrito UMinho
2008Bi-layered constructs based on poly(L-lactic acid) and starch for tissue engineering of osteochondral defectsGhosh, Satyabrata; Viana, J. C.; Reis, R. L., et al.ArtigoAcesso restrito UMinho
2009Bilayered chitosan-based scaffolds for osteochondral tissue engineering : influence of hydroxyapatite on in vitro cytotoxicity and dynamic bioactivity studies in a specific double-chamber bioreactorMalafaya, P. B.; Reis, R. L.ArtigoAcesso aberto
2012Bilayered constructs aimed at osteochondral strategies : the influence of media supplements in the osteogenic and chondrogenic differentiation of amniotic fluid-derived stem cellsRodrigues, Márcia T.; Lee, Sang Jin; Gomes, Manuela E., et al.ArtigoAcesso aberto
2015Bilayered silk/silk-nanoCaP scaffolds for osteochondral tissue engineering: in vitro and In vivo assessment of biological performanceYan, Leping; Silva-Correia, Joana; Oliveira, Mariana B., et al.ArtigoAcesso aberto
Mai-2014Bio-inspired Aloe vera sponges for biomedical applicationsSilva, Simone Santos; Oliveira, Mariana B.; Mano, J. F., et al.ArtigoAcesso restrito UMinho
Mar-2014Bio-inspired integration of natural materialsMartins, A.; Alves da Silva, Marta L.; Costa-Pinto, A. R., et al.Capítulo de livroAcesso restrito UMinho
2008Bio-inspired mineral growth on porous spherulitic textured poly(L-lactic acid)/bioactive glass composite scaffoldsGhosh, Satyabrata; Reis, R. L.; Mano, J. F.ArtigoAcesso aberto
Set-2020Bioactive and adhesive properties of multilayered coatings based on catechol-functionalized chitosan/hyaluronic acid and bioactive glass nanoparticlesAlmeida, Ana Catarina; Vale, A. Catarina; Reis, R. L., et al.ArtigoAcesso aberto
Jun-2014Bioactive ceramics for tissue engineering and regenerative medicine derived from marine spongesBarros, Alexandre António Antunes; Aroso, Ivo Manuel Ascensão; Silva, Tiago H., et al.Resumo em ata de conferência Acesso aberto
Mai-2014Bioactive composites reinforced with inorganic glasses and ceramics for tissue engineering applicationsBarros, Alexandre A.; Leite, Álvaro J.; Pires, R. A., et al.Capítulo de livroAcesso aberto
21-Set-2012Bioactive glass/polymer composite scaffolds mimicking bone tissueGentile, Piergiorgio; Mattioli-Belmonte, Monica; Chiono, Valeria, et al.ArtigoAcesso aberto
2013Bioactive macro/micro porous silk fibroin/Nano-sized calcium phosphate scaffolds with potential for bone tissue engineering applicationsYan, Leping; Silva-Correia, Joana; Correia, C., et al.ArtigoAcesso aberto
Mai-2013Bioactive silicate nanoplatelets for osteogenic differentiation of human mesenchymal stem cellsGaharwar, Akhilesh K.; Mihaila, Silvia M.; Swami, A., et al.ArtigoAcesso restrito UMinho
2012Bioactive starch-based scaffolds and human adipose stem cells are a good combination for bone tissue engineeringRodrigues, A. I.; Gomes, Manuela E.; Leonor, I. B., et al.ArtigoAcesso aberto