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Fibrin, a Scaffold Material for Islet Transplantation and Pancreatic Endocrine Tissue Engineering

机译:纤维蛋白,一种用于胰岛移植和胰腺内分泌组织工程的支架材料

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摘要

Fibrin is derived from fibrinogen during injury to produce a blood clot and thus promote wound repair. Composed of different domains, including Arg-Gly-Asp amino acid motifs, fibrin is used extensively as a hydrogel and sealant in the clinic. By binding to cell surface receptors like integrins and acting as a supportive 3D scaffold, fibrin has been useful in promoting cell differentiation, proliferation, function, and survival. In particular, fibrin has been able to maintain islet cell architecture, promote beta cell insulin secretion, and islet angiogenesis, as well as inducing a protective effect against cell death. During islet transplantation, fibrin improved neovascularization and islet function. These improvements resulted in reduced number of transplanted islets necessary to reverse diabetes. Therefore, fibrin, as a biocompatible and biodegradable scaffold, should be considered during subcutaneous islet transplantation and beta cell expansion in vitro to ensure maintenance of islet cell function, proliferation, and survival to develop effective cell-based therapies for the treatment of diabetes.
机译:纤维蛋白在损伤过程中源自纤维蛋白原,产生血块,从而促进伤口修复。纤维蛋白由不同的区域组成,包括Arg-Gly-Asp氨基酸基序,在临床上被广泛用作水凝胶和密封剂。通过与细胞表面受体(如整合素)结合并充当3D支持支架,血纤蛋白已用于促进细胞分化,增殖,功能和存活。特别地,纤维蛋白已经能够维持胰岛细胞结构,促进β细胞胰岛素分泌和胰岛血管生成,以及诱导针对细胞死亡的保护作用。在胰岛移植期间,纤维蛋白改善了新血管形成和胰岛功能。这些改善导致逆转糖尿病所需的胰岛移植数量减少。因此,在进行皮下胰岛移植和体外β细胞扩增期间,应考虑纤维蛋白作为一种生物相容性和可生物降解的支架,以确保维持胰岛细胞的功能,增殖和存活,从而开发出有效的基于细胞的疗法来治疗糖尿病。

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