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Tunable Hydrogels Derived from Genetically Engineered Extracellular Matrix Accelerate Diabetic Wound Healing

机译:可调谐水凝胶来自遗传工程化细胞外基质加速糖尿病伤口愈合

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Hydrogels composed of solubilized decellularized extracellular matrix (ECM) are attractive materials because they combine the complexity of native ECM with injectability and ease of use. Nevertheless, these materials are typically only tunable by altering the concentration, which alters the ligand landscape, or by incorporating synthetic components, which can result in an unfavorable host response. Herein, we demonstrate the fabrication of genetically tunable ECM-derived materials, by utilizing wild type (WT) and (thrombospondin-2 knockout) TSP-2 KO decellularized skins to prepare hydrogels. The resulting materials exhibited distinct mechanical properties characterized by rheology and different concentrations of collagens when characterized by quantitative proteomics. Mixtures of the gels achieved intermediate effects between the WT and the KO, permitting tunability of the gel properties. In vivo, the hydrogels exhibited tunable cell invasion with a correlation between the content of TSP-2 KO hydrogel and the extent of cell invasion. Additionally, TSP-2 KO hydrogels significantly improved diabetic wound healing at 10 and 21 days. Furthermore, hydrogels derived from genetically engineered in vitro cell-derived matrix mimicked the trends observed for tissue-derived matrix, providing a platform for faster screening of novel manipulations and easier clinical translation. Overall, we demonstrate that genetic engineering approaches impart tunability to ECM-based hydrogels and can result in materials capable of enhanced regeneration.
机译:由溶解的脱细胞外基质(ECM)组成的水凝胶是有吸引力的材料,因为它们将天然ECM的复杂性与可注射性和易用性结合起来。然而,这些材料通常仅通过改变改变配体景观的浓度或通过掺入合成组分来调谐,这可能导致不利的宿主响应。在此,我们通过利用野生型(WT)和(血小板素-2-2敲除)制备遗传可调谐的ECM衍生材料的制备,(血小板素-2-2敲除)制备水凝胶。当通过定量蛋白质组学表征时,所得材料表现出特征的机械性能,其特征在于,当以定量蛋白质组学为特征时,其特征在于流变学和不同浓度的胶粘剂。凝胶的混合物实现了WT和KO之间的中间效应,允许凝胶性能的可调性。在体内,水凝胶表现出可调细胞侵袭,具有TSP-2 KO水凝胶的含量与细胞侵袭程度之间的相关性。此外,TSP-2 KO水凝胶在10和21天内显着改善糖尿病伤口愈合。此外,来自遗传工程化的体外细胞衍生基质的水凝胶模拟了对组织衍生矩阵观察到的趋势,提供了一种更快地筛选新颖操纵和更简单的临床翻译的平台。总的来说,我们证明了基因工程方法赋予基于ECM的水凝胶的可调性,并且可以导致能够增强再生的材料。

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