Publicação
Designing biomaterials based on biomineralization for bone repair and regeneration
| Resumo: | The research work presented in this chapter highlights the importance of under- standing the surface chemistry of biomaterials, as well as the main mechanism for apatite formation, which provides the fundamental principles and tools for designing new bioactive materials. These fundamental mechanisms of bioactive ceramics are believed to open a new avenue for future breakthroughs for clinical biointeractive materials with novel physical, chemical, and biological functions. Here, it was demon- strated that any organic polymer can also exhibit bioactivity if its surface is modified with a functional group effective in apatite nucleation. These new types of bioactive materials are expected to play an important role in bone replacement and regeneration. Therefore, it can be concluded that the key point lies in designing an organized func- tionalized surface to control the mechanisms of apatite nucleation. Additionally, we highlight that controlling the material properties by functionalization can work as an approach to control cell proliferation and differentiation. |
|---|---|
| Autores principais: | Leonor, I. B. |
| Outros Autores: | Rodrigues, A. I.; Reis, R. L. |
| Assunto: | Bioactive Ceramics Biomaterials bone regeneration In vitro Bioactivity Self-mineralized polymers Biodegradable polymer Bone Ceramics Functional groups Simulated body fluid |
| Ano: | 2016 |
| País: | Portugal |
| Tipo de documento: | capítulo de livro |
| Tipo de acesso: | acesso restrito |
| Instituição associada: | Universidade do Minho |
| Idioma: | inglês |
| Origem: | RepositóriUM - Universidade do Minho |
Registos relacionados
article Multifunctional bioactive glass and glass-ceramic biomaterials with antibacterial properties for repair and regeneration of bone tissue
por: Fernandes, João S.
Publicado em: (2017)
por: Fernandes, João S.
Publicado em: (2017)
school Polymer-ceramic nancomposites for bone regeneration
por: Schickert, Sónia de Lacerda
Publicado em: (2014)
por: Schickert, Sónia de Lacerda
Publicado em: (2014)
article Alkaline treatments to render starch-based biodegradable polymers self-mineralizable
por: Leonor, I. B.
Publicado em: (2007)
por: Leonor, I. B.
Publicado em: (2007)
book Nanoparticles for bone tissue engineering
por: Gonçalves, C.
Publicado em: (2020)
por: Gonçalves, C.
Publicado em: (2020)
article Porous bioactive composites from marine origin based in chitosan and hydroxylapatite particles
por: Malafaya, P. B.
Publicado em: (2003)
por: Malafaya, P. B.
Publicado em: (2003)
book Injectable hydrogels as a delivery system for bone regeneration
por: Pereira, Isabel
Publicado em: (2017)
por: Pereira, Isabel
Publicado em: (2017)
book Ceramic biomaterials for tissue engineering
por: Pina, Sandra Cristina Almeida
Publicado em: (2018)
por: Pina, Sandra Cristina Almeida
Publicado em: (2018)
article Chitosan membranes containing micro or nano-size bioactive glass particles: evolution of biomineralization followed by in-situ dynamic mechanical analysis
por: Caridade, S. G.
Publicado em: (2013)
por: Caridade, S. G.
Publicado em: (2013)
book Cartilage and bone regeneration: how close are we to bedside?
por: Canadas, Raphael Faustino
Publicado em: (2016)
por: Canadas, Raphael Faustino
Publicado em: (2016)
article Subcritical carbon dioxide foaming of polycaprolactone for bone tissue regeneration
por: Duarte, Rui M.
Publicado em: (2018)
por: Duarte, Rui M.
Publicado em: (2018)
book Production of polymer-bioactive glass nanocomposites for bone repair and substitution
por: Felgueiras, Helena Prado
Publicado em: (2019)
por: Felgueiras, Helena Prado
Publicado em: (2019)
book Natural origin materials for bone tissue engineering – properties, processing and performance
por: Correlo, V. M.
Publicado em: (2019)
por: Correlo, V. M.
Publicado em: (2019)
science Histological and morphometrical evaluation of non-critical bone defects after treatment with biomaterial and bisphosphonates
por: Fernandes, Gustavo Vicentis Oliveira
Publicado em: (2025)
por: Fernandes, Gustavo Vicentis Oliveira
Publicado em: (2025)
article Regeneration of critical-sized defects, in a goat model, using a dextrin-based hydrogel associated with granular synthetic bone substitute
por: Pereira, Isabel Sofia Melo
Publicado em: (2021)
por: Pereira, Isabel Sofia Melo
Publicado em: (2021)
article Formation of bone-like apatite on polymeric surfaces modified with -SO3H groups
por: Leonor, I. B.
Publicado em: (2006)
por: Leonor, I. B.
Publicado em: (2006)
article Preparation and in vitro characterization of scaffolds of poly(L-lactic acid) containing bioactive glass ceramic nanoparticles
por: Hong, Z.
Publicado em: (2008)
por: Hong, Z.
Publicado em: (2008)
article New partially degradable and bioactive acrylic bone cements based on starch blends and ceramic fillers
por: Espigares, Ismael
Publicado em: (2002)
por: Espigares, Ismael
Publicado em: (2002)
article Casein and soybean protein-based thermoplastics and composites as alternative biodegradable polymers for biomedical applications
por: Vaz, C. M.
Publicado em: (2003)
por: Vaz, C. M.
Publicado em: (2003)
article Aluminum-free glass-ionomer bone cements with enhanced bioactivity and biodegradability
por: Gomes, Filipa Oliveira
Publicado em: (2013)
por: Gomes, Filipa Oliveira
Publicado em: (2013)
article Skeletal maturity in adolescence: evaluating bone development and age metrics
por: Pinheiro, João
Publicado em: (2025)
por: Pinheiro, João
Publicado em: (2025)
book Osteochondral tissue engineering and regenerative strategies
por: Canadas, Raphael Faustino
Publicado em: (2017)
por: Canadas, Raphael Faustino
Publicado em: (2017)
book Commercial products for osteochondral tissue repair and regeneration
por: Bicho, Diana Stefania Faria
Publicado em: (2018)
por: Bicho, Diana Stefania Faria
Publicado em: (2018)
school Advances using hydroxyapatite as a biomaterial in bone regeneration
por: Pereira, Margarida Fernandes Alves
Publicado em: (2014)
por: Pereira, Margarida Fernandes Alves
Publicado em: (2014)
article Self-mineralizing Ca-enriched Methacrylated Gellan Gum Beads for Bone Tissue Engineering
por: Vieira, S.
Publicado em: (2019)
por: Vieira, S.
Publicado em: (2019)
article Membranes of poly(D,L-lactic acid)/Bioglass® with asymmetric bioactivity for biomedical applications
por: Caridade, S. G.
Publicado em: (2012)
por: Caridade, S. G.
Publicado em: (2012)
book Silk Fibroin-Based Scaffold for Bone Tissue Engineering
por: Choi, J. H.
Publicado em: (2018)
por: Choi, J. H.
Publicado em: (2018)
article Use of local melatonin with xenogeneic bone graft to treat critical-size bone defects in rats with osteoporosis: a randomized study
por: Costa, Karen Laurene Dalla
Publicado em: (2024)
por: Costa, Karen Laurene Dalla
Publicado em: (2024)
article Evaluation of a starch-based double layer scaffold for bone regeneration in a rat model
por: Requicha, J. F.
Publicado em: (2014)
por: Requicha, J. F.
Publicado em: (2014)
article Insights into bioengineering approaches for aging bone regeneration: strategies to target osteoimmunosenescence
por: Xiao, Lan
Publicado em: (2025)
por: Xiao, Lan
Publicado em: (2025)
image Expression, purification and in vitro biological activity from human recombinant BMP-2 produced by a novel approach
por: Bessa, Paulo C.
Publicado em: (2006)
por: Bessa, Paulo C.
Publicado em: (2006)
article Incorporation of proteins and enzymes at different stages of the preparation of calcium phosphate coatings on a degradable substrate by a biomimetic methodology
por: Azevedo, Helena S.
Publicado em: (2005)
por: Azevedo, Helena S.
Publicado em: (2005)
article Osteochondral tissue engineering constructs with a cartilage part made of poiy(L-lactic acid) / starch blend and a bioactive poly(L-lactic acid) composite layer for subchondral bone
por: Ghosh, Satyabrata
Publicado em: (2006)
por: Ghosh, Satyabrata
Publicado em: (2006)
book Preparation of bioactive coatings on the surface of bioinert polymers through an innovative auto-catalytic electroless route
por: Oliveira, Joaquim M.
Publicado em: (2005)
por: Oliveira, Joaquim M.
Publicado em: (2005)
article Effect of flow perfusion on the osteogenic differentiation of bone marrow stromal cells cultured on starch-based three dimensional scaffolds
por: Gomes, Manuela E.
Publicado em: (2003)
por: Gomes, Manuela E.
Publicado em: (2003)
article Sodium silicate gel as a precursor for the in vitro nucleation and grow of a bone-like apatite coating in compact and porous polymeric structures
por: Oliveira, A. L.
Publicado em: (2003)
por: Oliveira, A. L.
Publicado em: (2003)
category Exploring the osteoconductive effect of silanol groups by using human adipose stem cells
por: Rodrigues, A. I.
Publicado em: (2012)
por: Rodrigues, A. I.
Publicado em: (2012)
article Engineering 3D printed bioactive composite scaffolds based on the combination of aliphatic polyester and calcium phosphates for bone tissue regeneration
por: Backes, Eduardo H.
Publicado em: (2021)
por: Backes, Eduardo H.
Publicado em: (2021)
book Advanced silk-based biotextiles for bone regeneration applications
por: Ribeiro, Viviana Pinto
Publicado em: (2020)
por: Ribeiro, Viviana Pinto
Publicado em: (2020)
article Biocomposite macrospheres based on strontium-bioactive glass for application as bone fillers
por: Oliveira, Ivone Regina de
Publicado em: (2023)
por: Oliveira, Ivone Regina de
Publicado em: (2023)
article The behavior of novel hydrophilic composite bone cements in simulated body fluids
por: Boesel, L. F.
Publicado em: (2004)
por: Boesel, L. F.
Publicado em: (2004)
Registos relacionados
-
article Multifunctional bioactive glass and glass-ceramic biomaterials with antibacterial properties for repair and regeneration of bone tissue
por: Fernandes, João S.
Publicado em: (2017) -
school Polymer-ceramic nancomposites for bone regeneration
por: Schickert, Sónia de Lacerda
Publicado em: (2014) -
article Alkaline treatments to render starch-based biodegradable polymers self-mineralizable
por: Leonor, I. B.
Publicado em: (2007) -
book Nanoparticles for bone tissue engineering
por: Gonçalves, C.
Publicado em: (2020) -
article Porous bioactive composites from marine origin based in chitosan and hydroxylapatite particles
por: Malafaya, P. B.
Publicado em: (2003)