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The Effect of Sericin from Various Extraction Methods on Cell Viability and Collagen Production

机译:各种提取方法中的丝胶对细胞活力和胶原蛋白产生的影响

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Silk sericin (SS) can accelerate cell proliferation and attachment; however, SS can be extracted by various methods, which result in SS exhibiting different physical and biological properties. We found that SS produced from various extraction methods has different molecular weights, zeta potential, particle size and amino acid content. The MTT assay indicated that SS from all extraction methods had no toxicity to mouse fibroblast cells at concentrations up to 40 μg/mL after 24 h incubation, but SS obtained from some extraction methods can be toxic at higher concentrations. Heat-degraded SS was the least toxic to cells and activated the highest collagen production, while urea-extracted SS showed the lowest cell viability and collagen production. SS from urea extraction was severely harmful to cells at concentrations higher than 100 μg/mL. SS from all extraction methods could still promote collagen production in a concentration-dependent manner, even at high concentrations that are toxic to cells.
机译:丝胶(SS)可以加速细胞增殖和附着。然而,可以通过各种方法提取SS,这导致SS表现出不同的物理和生物学特性。我们发现,用各种提取方法生产的SS具有不同的分子量,ζ电位,粒径和氨基酸含量。 MTT分析表明,在24 h孵育后,浓度高达40μg/ mL时,所有提取方法产生的SS对小鼠成纤维细胞均无毒性,但某些提取方法获得的SS在较高浓度下可能具有毒性。热降解的SS对细胞毒性最小,并激活最高的胶原蛋白生成,而尿素提取的SS显示最低的细胞活力和胶原蛋白生成。尿素提取物中的SS对浓度高于100μg/ mL的细胞具有严重危害。来自所有提取方法的SS仍可以以浓度依赖的方式促进胶原蛋白的产生,即使在对细胞有毒的高浓度下也是如此。

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