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Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps

Osteoarthritis frequently requires arthroplasty. Cementless implants are widely used in clinics to replace damaged cartilage or missing bone tissue. In cementless arthroplasty, the risk of aseptic loosening strictly depends on implant stability and bone–implant interface, which are fundamental to gu...

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Autores principales: Lovati, Arianna B., Lopa, Silvia, Bottagisio, Marta, Talò, Giuseppe, Canciani, Elena, Dellavia, Claudia, Alessandrino, Antonio, Biagiotti, Marco, Freddi, Giuliano, Segatti, Francesco, Moretti, Matteo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604365/
https://www.ncbi.nlm.nih.gov/pubmed/33195126
http://dx.doi.org/10.3389/fbioe.2020.563203
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author Lovati, Arianna B.
Lopa, Silvia
Bottagisio, Marta
Talò, Giuseppe
Canciani, Elena
Dellavia, Claudia
Alessandrino, Antonio
Biagiotti, Marco
Freddi, Giuliano
Segatti, Francesco
Moretti, Matteo
author_facet Lovati, Arianna B.
Lopa, Silvia
Bottagisio, Marta
Talò, Giuseppe
Canciani, Elena
Dellavia, Claudia
Alessandrino, Antonio
Biagiotti, Marco
Freddi, Giuliano
Segatti, Francesco
Moretti, Matteo
author_sort Lovati, Arianna B.
collection PubMed
description Osteoarthritis frequently requires arthroplasty. Cementless implants are widely used in clinics to replace damaged cartilage or missing bone tissue. In cementless arthroplasty, the risk of aseptic loosening strictly depends on implant stability and bone–implant interface, which are fundamental to guarantee the long-term success of the implant. Ameliorating the features of prosthetic materials, including their porosity and/or geometry, and identifying osteoconductive and/or osteoinductive coatings of implant surfaces are the main strategies to enhance the bone-implant contact surface area. Herein, the development of a novel composite consisting in the association of macro-porous trabecular titanium with silk fibroin (SF) sponges enriched with anionic fibroin-derived polypeptides is described. This composite is applied to improve early bone ingrowth into the implant mesh in a sheep model of bone defects. The composite enables to nucleate carbonated hydroxyapatite and accelerates the osteoblastic differentiation of resident cells, inducing an outward bone growth, a feature that can be particularly relevant when applying these implants in the case of poor osseointegration. Moreover, the osteoconductive properties of peptide-enriched SF sponges support an inward bone deposition from the native bone towards the implants. This technology can be exploited to improve the biological functionality of various prosthetic materials in terms of early bone fixation and prevention of aseptic loosening in prosthetic surgery.
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spelling pubmed-76043652020-11-13 Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps Lovati, Arianna B. Lopa, Silvia Bottagisio, Marta Talò, Giuseppe Canciani, Elena Dellavia, Claudia Alessandrino, Antonio Biagiotti, Marco Freddi, Giuliano Segatti, Francesco Moretti, Matteo Front Bioeng Biotechnol Bioengineering and Biotechnology Osteoarthritis frequently requires arthroplasty. Cementless implants are widely used in clinics to replace damaged cartilage or missing bone tissue. In cementless arthroplasty, the risk of aseptic loosening strictly depends on implant stability and bone–implant interface, which are fundamental to guarantee the long-term success of the implant. Ameliorating the features of prosthetic materials, including their porosity and/or geometry, and identifying osteoconductive and/or osteoinductive coatings of implant surfaces are the main strategies to enhance the bone-implant contact surface area. Herein, the development of a novel composite consisting in the association of macro-porous trabecular titanium with silk fibroin (SF) sponges enriched with anionic fibroin-derived polypeptides is described. This composite is applied to improve early bone ingrowth into the implant mesh in a sheep model of bone defects. The composite enables to nucleate carbonated hydroxyapatite and accelerates the osteoblastic differentiation of resident cells, inducing an outward bone growth, a feature that can be particularly relevant when applying these implants in the case of poor osseointegration. Moreover, the osteoconductive properties of peptide-enriched SF sponges support an inward bone deposition from the native bone towards the implants. This technology can be exploited to improve the biological functionality of various prosthetic materials in terms of early bone fixation and prevention of aseptic loosening in prosthetic surgery. Frontiers Media S.A. 2020-10-19 /pmc/articles/PMC7604365/ /pubmed/33195126 http://dx.doi.org/10.3389/fbioe.2020.563203 Text en Copyright © 2020 Lovati, Lopa, Bottagisio, Talò, Canciani, Dellavia, Alessandrino, Biagiotti, Freddi, Segatti and Moretti. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Lovati, Arianna B.
Lopa, Silvia
Bottagisio, Marta
Talò, Giuseppe
Canciani, Elena
Dellavia, Claudia
Alessandrino, Antonio
Biagiotti, Marco
Freddi, Giuliano
Segatti, Francesco
Moretti, Matteo
Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title_full Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title_fullStr Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title_full_unstemmed Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title_short Peptide-Enriched Silk Fibroin Sponge and Trabecular Titanium Composites to Enhance Bone Ingrowth of Prosthetic Implants in an Ovine Model of Bone Gaps
title_sort peptide-enriched silk fibroin sponge and trabecular titanium composites to enhance bone ingrowth of prosthetic implants in an ovine model of bone gaps
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604365/
https://www.ncbi.nlm.nih.gov/pubmed/33195126
http://dx.doi.org/10.3389/fbioe.2020.563203
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