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Improved human tenocyte proliferation and differentiation in vitro by optimized silk degumming

机译:优化的丝绸脱胶改善了体外人肌腱细胞的增殖和分化

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摘要

Tendon disorders are common clinical conditions. Tendon tissue engineering provides a new approach for tendon repair by integrating engineered substitutes with their native counterparts. Silk is considered to be a promising candidate for tendon engineering because of its biological and mechanical properties. However, a major concern with using silk for biomedical applications is the immune responses generated by sericin, a glue-like protein that coats the silk fibres. This study improves the existing protocols for silk 'degumming' which removes sericin and enables preparation of silk that is suitable for tendon regeneration. Bombyx mori silks were treated by sequential treatments with different proteases. The efficiency of degumming was determined by measuring weight loss, picric acid and carmine staining and scanning electron microscopy. To evaluate the cellular responses after degumming, the growth and differentiation of human tenocytes on silks were examined. The results showed that sequential protease treatment effectively degummed raw silks. The sequentially degummed silks showed enhanced tenocyte proliferation and upregulated mRNA levels of tendon markers. Thick cell multilayers formed on the treated silks, with cells and collagen fibres penetrating into the spaces in individual silk filaments, resulting in a structure resembling human tendon.
机译:肌腱疾病是常见的临床疾病。肌腱组织工程通过将工程替代物与天然替代物整合在一起,为肌腱修复提供了一种新方法。由于其生物学和机械特性,丝绸被认为是腱工程的有前途的候选者。但是,将丝用于生物医学应用的一个主要问题是丝胶蛋白(一种覆盖丝纤维的胶状蛋白)产生的免疫反应。这项研究改进了丝绸“脱胶”的现有方案,该方案去除了丝胶,并能够制备适合腱再生的丝绸。家蚕蚕丝用不同的蛋白酶依次处理。通过测量重量损失,苦味酸和胭脂红染色以及扫描电子显微镜来确定脱胶效率。为了评估脱胶后的细胞反应,研究了人腱细胞在丝上的生长和分化。结果表明,顺序的蛋白酶处理有效地使生丝脱胶。顺序脱胶的蚕丝显示增强的肌腱细胞增殖和肌腱标志物的mRNA水平上调。在处理过的蚕丝上形成厚厚的细胞多层,细胞和胶原纤维渗入单个蚕丝的空隙中,从而形成类似于人肌腱的结构。

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