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Elastic biodegradable starch/ethylene-co-vinyl alcohol fibre-mesh scaffolds for tissue engineering applications

机译:可弹性降解的淀粉/乙烯-共-乙烯醇纤维网支架,用于组织工程应用

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摘要

The fabrication of a biomaterial scaffold, with adequate physical and structural properties for tissue engineering applications, is reported. A blend of starch with ethylene-vinyl alcohol (50/50 w/w, SEVA-C) is used to produce 3D fibre-mesh scaffolds by wet-spinning. The scaffolds are characterized in terms of morphology, porosity, interconnectivity, and pore size, using scanning electron microscopy (SEM) and microcomputed tomography (μCT). The degradation behavior, as well as the mechanical properties of the scaffolds, is investigated in presence of alpha-amylase enzyme at physiological concentration. Scaffolds with porosities ranging from 43 to 52%, interconnectivity of â\u88¼70.5% and pore size between 118 and 159 μm, can be fabricated using the proposed methodology. The scaffolds exhibit an elastic behavior in the wet state with a compressive modulus of 7.96±0.32 MPa. Degradation studies show that SEVA-C scaffolds are susceptible to enzymatic degradation by alpha-amylase, confirmed by the increase of weight loss (40% of weight loss after 12 weeks) and presence of degradation products (reducing sugars) in solution. The diameter of SEVA-C scaffolds decreases with degradation time, increasing the overall porosity, interconnectivity and pore size. In vitro cell studies with human osteosarcoma cell line (SaOs-2) showed a nontoxic and cytocompatible behavior of the developed fibre mesh scaffolds. The positive cellular response, together with structural and degradable properties, suggests that 3D SEVA-C fibre-meshes may be good candidates as tissue engineering scaffolds. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014, 131, 40504. Copyright © 2014 Wiley Periodicals, Inc.
机译:据报道制造具有足够的物理和结构特性以用于组织工程应用的生物材料支架。淀粉与乙烯-乙烯醇(50/50 w / w,SEVA-C)的混合物用于通过湿纺生产3D纤维网支架。支架的特征在于形态,孔隙率,互连性和孔径,使用扫描电子显微镜(SEM)和微型计算机断层扫描(µCT)。在生理浓度的α-淀粉酶的存在下研究了支架的降解行为以及机械性能。可以使用提出的方法来制造孔隙度为43%至52%,互连度为88.75.5%和孔径在118至159 µm之间的支架。脚手架在湿状态下具有7.96±0.32 MPa的压缩模量表现出的弹性行为。降解研究表明,SEVA-C支架易于受到α-淀粉酶的酶促降解,这可以通过体重减轻的增加(12周后体重减轻的40%)和溶液中存在降解产物(还原糖)来证实。 SEVA-C支架的直径随着降解时间的延长而减小,从而增加了整体孔隙率,互连性和孔径。用人骨肉瘤细胞系(SaOs-2)进行的体外细胞研究显示,已开发的纤维网状支架具有无毒且具有细胞相容性。积极的细胞反应,以及结构和可降解特性,表明3D SEVA-C纤维网可能是组织工程支架的良好候选者。 ©2014 Wiley Periodicals,Inc. J. Appl。 Polym。科学2014,131,40504。版权所有©2014 Wiley Periodicals,Inc.。

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