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Extracellular matrix scaffold and hydrogel derived from decellularized and delipidized human pancreas

机译:脱细胞和脱脂人胰腺衍生的细胞外基质支架和水凝胶

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Extracellular matrix (ECM) plays an important developmental role by regulating cell behaviour through structural and biochemical stimulation. Tissue-specific ECM, attained through decellularization, has been proposed in several strategies for tissue and organ replacement. Decellularization of animal pancreata has been reported, but the same methods applied to human pancreas are less effective due to higher lipid content. Moreover, ECM-derived hydrogels can be obtained from many decellularized tissues, but methods have not been reported to obtain human pancreas-derived hydrogel. Using novel decellularization methods with human pancreas we produced an acellular, 3D biological scaffold (hP-ECM) and hydrogel (hP-HG) amenable to tissue culture, transplantation and proteomic applications. The inclusion of a homogenization step in the decellularization protocol significantly improved lipid removal and gelation capability of the resulting ECM, which was capable of gelation at 37?°C in vitro and in vivo, and is cytocompatible with a variety of cell types and islet-like tissues in vitro. Overall, this study demonstrates the characterisation of a novel protocol for the decellularization and delipidization of human pancreatic tissue for the production of acellular ECM and ECM hydrogel suitable for cell culture and transplantation applications. We also report a list of 120 proteins present within the human pancreatic matrisome.
机译:细胞外基质(ECM)通过结构和生化刺激调节细胞行为,起着重要的发展作用。通过脱细胞获得的组织特异性ECM已在组织和器官置换的几种策略中提出。已经报道了动物胰腺的脱细胞作用,但是由于较高的脂质含量,应用于人胰腺的相同方法效果较差。此外,ECM衍生的水凝胶可从许多脱细胞的组织中获得,但尚未报道获得人胰腺衍生的水凝胶的方法。使用人类胰腺的新型脱细胞方法,我们生产了适合组织培养,移植和蛋白质组学应用的无细胞3D生物支架(hP-ECM)和水凝胶(hP-HG)。脱细胞方案中包含均质化步骤可显​​着改善所得ECM的脂质去除和凝胶化能力,该ECM能够在37°C的温度下在体内和体外凝胶化,并且与多种细胞类型和胰岛细胞相容像体外组织。总的来说,该研究证明了用于人类胰腺组织脱细胞和脱脂的新方案的特征,该方案用于生产适合细胞培养和移植应用的脱细胞ECM和ECM水凝胶。我们还报告了人类胰腺基质中存在的120种蛋白质的列表。

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