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首页> 外文期刊>International Journal of Molecular Sciences >Sericin Enhances the Bioperformance of Collagen-Based Matrices Preseeded with Human-Adipose Derived Stem Cells (hADSCs)
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Sericin Enhances the Bioperformance of Collagen-Based Matrices Preseeded with Human-Adipose Derived Stem Cells (hADSCs)

机译:丝胶增强了人类脂肪干细胞(hADSCs)预先植入的胶原基基质的生物性能。

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Current clinical strategies for adipose tissue engineering (ATE), including autologous fat implants or the use of synthetic surrogates, not only are failing in the long term, but also can’t face the latest requirements regarding the aesthetic restoration of the resulted imperfections. In this context, modern strategies in current ATE applications are based on the implantation of 3D cell-scaffold bioconstructs, designed for prospective achievement of in situ functional de novo tissue. Thus, in this paper, we reported for the first time the evaluation of a spongious 60% collagen and 40% sericin scaffold preseeded with human adipose-derived stem cells (hADSCs) in terms of biocompatibility and adipogenic potential in vitro. We showed that the addition of the sticky protein sericin in the composition of a classical collagen sponge enhanced the adhesion and also the proliferation rate of the seeded cells, thus improving the biocompatibility of the novel scaffold. In addition, sericin stimulated PPARγ2 overexpression, triggering a subsequent upregulated expression profile of FAS, aP2 and perilipin adipogenic markers. These features, together with the already known sericin stimulatory potential on cellular collagen production, promote collagen-sericin biomatrix as a good candidate for soft tissue reconstruction and wound healing applications.
机译:当前的脂肪组织工程(ATE)的临床策略,包括自体脂肪植入物或合成替代物的使用,不仅会长期失败,而且无法满足由此产生的缺陷的美学修复方面的最新要求。在这种情况下,当前ATE应用中的现代策略是基于3D细胞支架生物构建体的植入而设计的,该3D细胞支架生物构建体旨在实现原位功能性新生组织的设计。因此,在本文中,我们首次报道了在人体生物相容性和成脂潜能方面,对预先掺有人类脂肪干细胞(hADSCs)的海绵状60%胶原蛋白和40%丝胶蛋白支架的评估。我们表明,在经典胶原海绵的组成中添加粘性蛋白丝胶可增强粘附力,并增强种子细胞的增殖速率,从而提高新型支架的生物相容性。此外,丝胶刺激PPARγ2的过度表达,触发随后的FAS,aP2和脂蛋白成脂标记物的表达上调。这些特征,加上已知的丝胶蛋白对细胞胶原蛋白产生的刺激潜力,促进了胶原蛋白-丝胶蛋白生物基质成为软组织重建和伤口愈合应用的良好候选者。

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