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通过掺入壳聚糖制备用于组织工程的具有细胞粘附性和固有抗菌性的聚乙烯醇/聚环氧乙烷纳米纤维支架

Development of cell adhesive and inherently antibacterial polyvinyl alcohol/polyethylene oxide nanofiber scaffolds via incorporating chitosan for tissue engineering.

作者信息

Yang Qiang, Guo Jing, Zhang Sen, Guan Fucheng, Yu Yue, Feng Shi, Song Xuecui, Bao Da, Zhang Xin

机构信息

School of Textile and Material Engineering, Dalian Polytechnic University, Liaoning 116034, PR China.

School of Textile and Material Engineering, Dalian Polytechnic University, Liaoning 116034, PR China.

出版信息

Int J Biol Macromol. 2023 May 1;236:124004. doi: 10.1016/j.ijbiomac.2023.124004. Epub 2023 Mar 11.

Abstract

Currently, polyvinyl alcohol (PVA) and polyethylene oxide (PEO), as tissue engineering scaffolds materials, had been widely studied, however the hard issues in cell adhesive and antimicrobial properties still seriously limited their application in biomedical respects. Herein, we solved both hard issues by incorporating chitosan (CHI) into the PVA/PEO system, and successfully prepared PVA/PEO/CHI nanofiber scaffolds via electrospinning technology. First, the hierarchical pore structure and elevated porosity stacked by nanofiber of the nanofiber scaffolds supplied suitable space for cell growth. Significantly, the PVA/PEO/CHI nanofiber scaffolds (the cytotoxicity of grade 0) effectively improved cell adhesion by regulating the CHI content, and presented positively correlated with the CHI content. Besides, the excellent surface wettability of PVA/PEO/CHI nanofiber scaffolds exhibited maximum absorbability at a CHI content of 15 wt%. Based on the FTIR, XRD, and mechanical test results, we studied the semi-quantitative effect of hydrogen content on the aggregated state structure and mechanical properties of the PVA/PEO/CHI nanofiber scaffolds. The breaking stress of the nanofiber scaffolds increased with increasing CHI content, and the maximum value reached 15.37 MPa, increased by 67.61 %. Therefore, such dual biofunctional nanofiber scaffolds with improved mechanical properties showed great potential application in tissue engineering scaffolds.

摘要

目前,聚乙烯醇(PVA)和聚环氧乙烷(PEO)作为组织工程支架材料已得到广泛研究,然而其在细胞黏附性和抗菌性能方面的难题仍严重限制了它们在生物医学领域的应用。在此,我们通过将壳聚糖(CHI)引入PVA/PEO体系解决了这两个难题,并通过静电纺丝技术成功制备了PVA/PEO/CHI纳米纤维支架。首先,纳米纤维支架由纳米纤维堆叠而成的分级孔结构和提高的孔隙率为细胞生长提供了合适的空间。值得注意的是,PVA/PEO/CHI纳米纤维支架(细胞毒性为0级)通过调节CHI含量有效改善了细胞黏附性,且与CHI含量呈正相关。此外,PVA/PEO/CHI纳米纤维支架优异的表面润湿性在CHI含量为15 wt%时表现出最大吸水性。基于傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和力学测试结果,我们研究了氢含量对PVA/PEO/CHI纳米纤维支架聚集态结构和力学性能的半定量影响。纳米纤维支架的断裂应力随CHI含量的增加而增加,最大值达到15.37 MPa,提高了67.61%。因此,这种具有改善力学性能的双功能纳米纤维支架在组织工程支架中显示出巨大的潜在应用价值。

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