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Design of Boron Nitride/Gelatin Electrospun Nanofibers for Bone Tissue Engineering

Authors :
David Cornu
Sakthivel Nagarajan
Celine Pochat-Bohatier
Narayana Kalkura
Emerson Coy
Igor Iatsunskyi
Vincent Cavaillès
Habib Belaid
Mikhael Bechelany
Sebastien Balme
Catherine Teyssier
Philippe Miele
Institut Européen des membranes (IEM)
Université Montpellier 2 - Sciences et Techniques (UM2)-Ecole Nationale Supérieure de Chimie de Montpellier (ENSCM)-Institut de Chimie du CNRS (INC)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)
Anna University
Institut de Recherche en Cancérologie de Montpellier (IRCM - U1194 Inserm - UM)
CRLCC Val d'Aurelle - Paul Lamarque-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Montpellier (UM)
Adam Mickiewicz University in Poznań (UAM)
Centre National de la Recherche Scientifique (CNRS)-Ecole Nationale Supérieure de Chimie de Montpellier (ENSCM)-Université Montpellier 2 - Sciences et Techniques (UM2)-Institut de Chimie du CNRS (INC)-Université de Montpellier (UM)
FALQUE, Philippe
Ecole Nationale Supérieure de Chimie de Montpellier (ENSCM)-Institut de Chimie du CNRS (INC)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)
Source :
ACS Applied Materials & Interfaces, ACS Applied Materials & Interfaces, Washington, D.C. : American Chemical Society, 2017, 9 (39), pp.33695-33706. ⟨10.1021/acsami.7b13199⟩, ACS Applied Materials & Interfaces, 2017, 9 (39), pp.33695-33706. ⟨10.1021/acsami.7b13199⟩
Publication Year :
2017
Publisher :
American Chemical Society (ACS), 2017.

Abstract

International audience; Gelatin is a biodegradable biopolymer obtained by collagen denaturation, which shows poor mechanical properties. Hence, improving its mechanical properties is very essential towards the fabrication of efficient nontoxic material for biomedical applications. For this aim, various methods are employed using external fillers such as ceramics or bioglass. In this report, we introduce boron nitride (BN) reinforced gelatin as a new class of two dimensional biocompatible nanomaterials. The effect of the nanofiller on the mechanical behavior isanalyzed. BN is efficiently exfoliated using the biopolymer gelatin as shown through Fourier transform infrared (FTIR) spectroscopy and X-ray diffraction (XRD). The exfoliated BN reinforces gelatin electrospun fibers, which results in an increase in the Young’s modulus. The ESM are stable after the glutaraldehyde cross-linking and the fibrous morphology is preserved. The cross-linked gelatin/BN ESM is highly bioactive in forming bone like hydroxyapatite as shown by scanning electron microscopy. Due to their enhanced mineralization ability, the cross-linked ESM have been tested on human bone cells (HOS osteosarcoma cell line). The cell attachment, proliferation and biocompatibility results show that the ESM are nontoxic and biodegradable. The analysis of osteoblast gene expression and the measurement of alkaline phosphatase activity confirm that these materials are suitable for bone tissue engineering

Details

ISSN :
19448252 and 19448244
Volume :
9
Database :
OpenAIRE
Journal :
ACS Applied Materials & Interfaces
Accession number :
edsair.doi.dedup.....bf8bdeb5ac562c46a95f0e4980715c9e
Full Text :
https://doi.org/10.1021/acsami.7b13199