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首页> 外文期刊>Acta biomaterialia >Mechanostructure and composition of highly reproducible decellularized liver matrices.
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Mechanostructure and composition of highly reproducible decellularized liver matrices.

机译:高度可复制的脱细胞肝基质的机械结构和组成。

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Despite the increasing number of papers on decellularized scaffolds, there is little consensus on the optimum method of decellularizing biological tissue such that the micro-architecture and protein content of the matrix are conserved as far as possible. Focusing on the liver, the aim of this study was therefore to develop a method for the production of well-characterized and reproducible matrices that best preserves the structure and composition of the native extra cellular matrix (ECM). Given the importance of matrix stiffness in regulating cell response, the mechanical properties of the decellularized tissue were also considered. The testing and analysis framework is based on the characterization of decellularized and untreated samples in the same reproducible initial state (i.e., the equilibrium swollen state). Decellularized ECM (dECM) were characterized using biochemical, histological, mechanical and structural analyses to identify the best procedure to ensure complete cell removal while preserving most of the native ECM structure and composition. Using this method, sterile decellularized porcine ECM with highly conserved intra-lobular micro-structure and protein content were obtained in a consistent and reproducible manner using the equilibrium swollen state of tissue or matrix as a reference. A significant reduction in the compressive elastic modulus was observed for liver dECM with respect to native tissue, suggesting a re-examination of design parameters for ECM-mimicking scaffolds for engineering tissues in vitro.
机译:尽管有关脱细胞支架的论文数量不断增加,但对于使生物组织脱细胞的最佳方法却几乎没有共识,因此最佳方法是尽可能保留基质的微结构和蛋白质含量。因此,着眼于肝脏,这项研究的目的是开发一种能够很好地保留天然细胞外基质(ECM)的结构和组成的,表征良好且可重复生产的基质的生产方法。考虑到基质刚度在调节细胞反应中的重要性,还考虑了脱细胞组织的机械性能。测试和分析框架基于在相同的可重现初始状态(即平衡溶胀状态)下脱细胞和未处理样品的特征。使用生化,组织学,机械和结构分析对脱细胞的ECM(dECM)进行表征,以鉴定出最佳方法,以确保完全去除细胞,同时保留大多数天然ECM结构和成分。使用这种方法,以组织或基质的平衡溶胀状态为参考,以一致且可重复的方式获得了高度保守的小叶内微结构和蛋白质含量的无菌去细胞猪ECM。相对于天然组织,观察到肝脏dECM的压缩弹性模量显着降低,这表明对体外工程组织的ECM模拟支架的设计参数进行了重新检查。

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