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首页> 外文期刊>Acta biomaterialia >Electrospun fiber constructs for vocal fold tissue engineering: Effects of alignment and elastomeric polypeptide coating
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Electrospun fiber constructs for vocal fold tissue engineering: Effects of alignment and elastomeric polypeptide coating

机译:用于声带组织工程的电纺纤维构建体:对准和弹性体多肽涂层的影响

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摘要

Vocal fold lamina propria extracellular matrix (ECM) is highly aligned and when injured, becomes disorganized with loss of the tissue's critical biomechanical properties. This study examines the effects of electrospun fiber scaffold architecture and elastin-like polypeptide (ELP4) coating on human vocal fold fibroblast (HVFF) behavior for applications toward tissue engineering the vocal fold lamina propria. Electrospun Tecoflex (TM) scaffolds were made with aligned and unaligned fibers, and were characterized using scanning electron microscopy and uniaxial tensile testing. ELP4 was successfully adsorbed onto the scaffolds; HVFFs were seeded and their viability, proliferation, morphology and gene expression were characterized. Aligned and unaligned scaffolds had initial elastic moduli of similar to 14 MPa, similar to 5 MPa and similar to 0.3 MPa, similar to 0.6 MPa in the preferred and cross-preferred directions, respectively. Scaffold topography had an effect on the orientation of the cells, with HVFFs seeded on aligned scaffolds having a significantly different (p <0.001) angle of orientation than HVFFs cultured on unaligned scaffolds. This same effect and significant difference (p < 0.001) was seen on aligned and unaligned scaffolds coated with ELP4. Scaffold alignment and ELP4 coating impacted ECM gene expression. ELP4 coating, and aligned scaffolds upregulated elastin synthesis when tested on day 7 without a concomitant upregulation of collagen III synthesis. Collectively, results indicate that aligned electrospun scaffolds and ELP4 coating are promising candidates in the development of biodegradeable vocal fold lamina propria constructs. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:声带层Propria细胞外基质(ECM)高度对齐,当受伤时,随着组织的关键生物力学性质的丧失而变得混乱。本研究探讨了Electrom Oper纤维支架结构和Elastin样多肽(ELP4)涂层对人声折叠成纤维细胞(HVFF)行为的影响,以便在组织工程中的语气折叠层柱。用对齐和未对准的纤维制成Electrom ow Tecoflex(TM)支架,并使用扫描电子显微镜和单轴拉伸试验表征。 ELP4已成功吸附在支架上;特征在于种子HVFF,其可行性,增殖,形态和基因表达。对齐和未对准的支架具有类似于14MPa的初始弹性模型,类似于5MPa,类似于0.3MPa,分别在优选的和交叉优选方向上类似于0.6MPa。支架形貌对细胞的取向有影响,HVFF接种在对准的支架上,其具有显着不同的(P <0.001)取向角度的取向角度而不是在未对准的支架上培养的HVFF。在涂有ELP4的对齐和未对准的支架上观察到相同的效果和显着差异(P <0.001)。支架对齐和ELP4涂层受到ECM基因表达的影响。当第7天测试时,ELP4涂层和对齐的支架上调的弹性蛋白合成,而不伴随胶原III合成的升高。总的来说,结果表明,对齐的电纺支架和ELP4涂层是在可生物降解的声带层丙蛋白构建体的开发中承诺的候选者。 (c)2014 Acta Materialia Inc.出版的国家版权所有。保留所有权利。

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