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首页> 外文期刊>Polymer Degradation and Stability >In vitro degradation study of novel HEC/PVA/collagen nanofibrous scaffold for skin tissue engineering applications
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In vitro degradation study of novel HEC/PVA/collagen nanofibrous scaffold for skin tissue engineering applications

机译:新型HEC / PVA /胶原蛋白纳米纤维支架的体外降解研究,用于皮肤组织工程应用

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The aim of this study was focused on the degradation behavior of electrospun (hydroxyethyl cellulose/ poly(vinyl) alcohol) HEC/PVA and HEC/PVA/collagen nanofibrous scaffolds, as a potential substrates for skin tissue engineering in two biologically related media: phosphate buffered solution (PBS) and Dul-becco's modified Eagle's medium (DMEM) for 12 weeks incubation period. The scaffolds were characterized at different degradation times by a series of analysis including pH changes of solutions, weight loss, swelling ratio, SEM, ATR-FTIR, DSC, TGA and mechanical properties. The results indicated that HEC/ PVA/collagen scaffolds were exhibited slower degradation rate in both medium as compared to HEC/PVA blend nanofibers. All fibers displayed uneven and rough surfaces towards the final week of incubation in both PBS and DMEM solution. As degradation time increased, there were little changes in the chemical structure as determined by FTIR spectra while thermal studies revealed that the melting temperatures and crystallinity of scaffolds were slightly shifted to a lower value. Both HEC/PVA and HEC/PVA/collagen fibers showed significant decrease in Young's modulus and tensile stress over 12 weeks degradation. These results show that these nanofibrous scaffold demonstrate degradation behavior that meets the requirement as potential degradable biomaterials for dermal replacement.
机译:这项研究的目的集中在静电纺丝(羟乙基纤维素/聚乙烯醇)HEC / PVA和HEC / PVA /胶原纳米纤维支架的降解行为,作为皮肤组织工程在两种生物学相关介质中的潜在底物:磷酸盐缓冲液(PBS)和Dul-becco改良的Eagle培养基(DMEM)孵育12周。通过一系列分析,包括溶液的pH变化,重量损失,溶胀比,SEM,ATR-FTIR,DSC,TGA和机械性能,对支架在不同的降解时间进行了表征。结果表明,与HEC / PVA共混纳米纤维相比,HEC / PVA /胶原蛋白支架在两种培养基中均显示出较慢的降解速率。在PBS和DMEM溶液中孵育的最后一周,所有纤维均显示出凹凸不平的表面。随着降解时间的增加,由FTIR光谱确定的化学结构几乎没有变化,而热学研究表明,支架的熔融温度和结晶度略微移至较低值。在降解12周后,HEC / PVA和HEC / PVA /胶原纤维均显示出杨氏模量和拉伸应力显着降低。这些结果表明,这些纳米纤维支架表现出的降解行为满足了作为皮肤替代物的潜在可降解生物材料的要求。

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