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首页> 外文期刊>Macromolecular materials and engineering >A Facile Strategy for Fabricating Tissue Engineering Scaffolds with Sophisticated Prevascularized Networks for Bulk Tissue Regeneration
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A Facile Strategy for Fabricating Tissue Engineering Scaffolds with Sophisticated Prevascularized Networks for Bulk Tissue Regeneration

机译:一个灵巧的制造组织的策略工程支架与复杂的Prevascularized网络组织再生

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摘要

Abstract Despite the fact that the field of tissue engineering has had considerable advances over the past two decades, a series of unsolved problems still remain. Vascularization is one of the most important factors that greatly influence the function and size of the engineered scaffolds, which limits the clinical applications. In this work, a facile extracted molding method is presented for fabricating bulk tissue scaffolds with spatial networks. Briefly, the branched templates are designed, coated with paraffin on the surface, immersed into the mixture of microbial transglutaminase and gelatin, and extracted from fully enzymatic cross‐linking gelatin. The perfusion test is done and the mechanical properties of the scaffolds are investigated. Furthermore, in vitro and in vivo experiments demonstrate the nontoxicity and biocompatibility of the materials and fabrication process. Thus, this approach has great potential to overcome the challenge of rapid oxygen and nutrient delivery to engineered vascularized tissues implanted in vivo, opening the way to clinical applications.
机译:<标题组织工程的领域相当大的进步在过去的二十年里,一系列尚未解决的问题仍然存在。血管化是最重要的之一因素大大影响函数和工程支架的大小,这限制了临床应用。提取的成型方法制造大量与空间组织支架网络。设计、表面涂上石蜡沉浸到微生物的混合转谷氨酰胺酶、明胶和提取完全酶交叉链接明胶。灌注试验和机械完成支架的属性。此外,在体外和体内实验演示无毒性和生物相容性的材料和制造工艺。这种方法克服了巨大的潜力快速的氧气和营养供应的挑战组织工程血管植入临床活体,打开方式应用程序。

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