Literature DB >> 28392386

Phosphoprotein/chitosan electrospun nanofibrous scaffold for biomineralization.

Hongshan Liang1, Feng Sheng2, Bin Zhou3, Yaqiong Pei1, Bin Li1, Jing Li4.   

Abstract

In this study, negatively charged phosvitin (PV) and positively charged chitosan (CS) were alternately deposited on negatively charged cellulose mats via layer-by-layer (LBL) self-assembly technique. Morphologies of the LBL films coating mats were observed by scanning electron microscope (SEM). Afterwards, in vitro biomimetic mineralization was carried out through incubation of the fibrous mats in a simulated body fluid (SBF) solution for different time. Scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) were used to characterize the morphology and structure of the deposited mineral phase on the scaffolds. In addition, the cell culture experiment demonstrated that the scaffolds with the LBL structured films were of good cell compatibility for MC3T3-E1 cells. Moreover, the cell proliferation was affected by the number of deposition layers and the composition of outer-most layer. Confocal laser scanning microscopy (CLSM) and SEM imaging revealed a good performance of cell adhesion and spreading of MC3T3-E1 cells on the surface of biocomposite scaffold. So CS/PV nanofibrous mats were satisfactory for the composite to be used in bioapplications.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Biocompatibility; Biomineralization; Chitosan; Electrospun; Phosvitin

Mesh:

Substances:

Year:  2017        PMID: 28392386     DOI: 10.1016/j.ijbiomac.2017.04.022

Source DB:  PubMed          Journal:  Int J Biol Macromol        ISSN: 0141-8130            Impact factor:   6.953


  2 in total

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Journal:  Ind Eng Chem Res       Date:  2021-11-23       Impact factor: 3.720

2.  Anastomotic stoma coated with chitosan film as a betamethasone dipropionate carrier for peripheral nerve regeneration.

Authors:  Ping Yao; Peng Li; Jun-Jian Jiang; Hong-Ye Li
Journal:  Neural Regen Res       Date:  2018-02       Impact factor: 5.135

  2 in total

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