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Intact extracellular matrix component promotes maintenance of liver-specific functions and larger aggregates formation of primary rat hepatocytes

机译:完整的细胞外基质成分可促进维持肝特异性功能并促进原代大鼠肝细胞更大的聚集体形成

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摘要

The extracellular matrix (ECM) in a liver-specific extracellular matrix (L-ECM) scaffold facilitates hepatocyte viability and maintains hepatocyte functions in vitro. However, whether an intact composition of ECM is required for an efficient ECM-based substrate design remains to be clarified. In this study, two L-ECM hydrogels, namely L-ECM I and L-ECM II, were prepared by pepsin solubilization at 4 °C and 25 °C, respectively. The solubility at 4 °C was 50% whereas that at 25 °C was 95%, thus indicating well-preserved L-ECM. Analysis confirmed higher ECM protein components (especially collagen) in L-ECM II, along with denser fiber network and larger fiber diameter. L-ECM II gel exhibited high compression strength and suitable viscoelastic properties. Furthermore, hepatocytes in L-ECM II showed higher expression of liver-specific functions in 3D culture and wider spread while maintaining the cell-cell contacts in 2D culture. Therefore, an intact L-ECM is important to realize effective substrates for liver tissue engineering.
机译:肝特异性细胞外基质(L-ECM)支架中的细胞外基质(ECM)促进肝细胞活力并在体外维持肝细胞功能。然而,有效的基于ECM的基板设计是否需要完整的ECM成分仍有待澄清。在这项研究中,分别通过在4°C和25°C的胃蛋白酶溶解制备了两种L-ECM水凝胶,即L-ECM I和L-ECM II。在4°C下的溶解度为50%,而在25°C下的溶解度为95%,因此表明L-ECM保存良好。分析证实,L-ECM II中的ECM蛋白成分(尤其是胶原蛋白)含量更高,纤维网络更致密,纤维直径更大。 L-ECM II凝胶显示出高抗压强度和合适的粘弹性。此外,L-ECM II中的肝细胞在3D培养中表现出更高的肝特异性功能,并且在维持2D培养中细胞与细胞接触的同时更广泛地传播。因此,完整的L-ECM对于实现有效的肝组织工程底物很重要。

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