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Physical Properties of the Extracellular Matrix of Decellularized Porcine Liver

机译:去细胞猪肝细胞外基质的物理性质

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The decellularization of organs has attracted attention as a new functional methodology for regenerative medicine based on tissue engineering. In previous work we developed an L-ECM (Extracellular Matrix) as a substrate-solubilized decellularized liver and demonstrated its effectiveness as a substrate for culturing and transplantation. Importantly, the physical properties of the substrate constitute important factors that control cell behavior. In this study, we aimed to quantify the physical properties of L-ECM and L-ECM gels. L-ECM was prepared as a liver-specific matrix substrate from solubilized decellularized porcine liver. In comparison to type I collagen, L-ECM yielded a lower elasticity and exhibited an abrupt decrease in its elastic modulus at 37 °C. Its elastic modulus increased at increased temperatures, and the storage elastic modulus value never fell below the loss modulus value. An increase in the gel concentration of L-ECM resulted in a decrease in the biodegradation rate and in an increase in mechanical strength. The reported properties of L-ECM gel (10 mg/mL) were equivalent to those of collagen gel (3 mg/mL), which is commonly used in regenerative medicine and gel cultures. Based on reported findings, the physical properties of the novel functional substrate for culturing and regenerative medicine L-ECM were quantified.
机译:作为基于组织工程学的再生医学的一种新功能方法,器官的脱细胞作用引起了人们的注意。在以前的工作中,我们开发了L-ECM(细胞外基质)作为底物溶解的脱细胞肝,并证明了其作为培养和移植底物的有效性。重要的是,底物的物理性质是控制细胞行为的重要因素。在这项研究中,我们旨在量化L-ECM和L-ECM凝胶的物理性质。 L-ECM由溶解的脱细胞猪肝制备为肝特异性基质底物。与I型胶原相比,L-ECM在37°C时具有较低的弹性,并且弹性模量突然降低。在升高的温度下,其弹性模量增加,并且储能弹性模量值从未降到损耗模量值以下。 L-ECM的凝胶浓度的增加导致生物降解速率的降低和机械强度的提高。 L-ECM凝胶(10 mg / mL)的报道特性与胶原蛋白凝胶(3 mg / mL)相当,后者通常用于再生医学和凝胶培养。基于报道的发现,对用于培养和再生医学L-ECM的新型功能性基质的物理性质进行了定量。

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