首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >DegradedPorphyra yezoensispolysaccharide protects HK-2 cells and reduces nano-COM crystal toxicity, adhesion and endocytosis
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DegradedPorphyra yezoensispolysaccharide protects HK-2 cells and reduces nano-COM crystal toxicity, adhesion and endocytosis

机译:降解孢子蛋白酶分子糖尿病保护HK-2细胞并降低纳米晶体毒性,附着力和内吞作用

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摘要

We studied the protection of degradedPorphyra yezoensispolysaccharide (PYP) on human proximal tubular epithelial cells (HK-2) from cytotoxicity of nano-calcium oxalate monohydrate (COM) crystal, and the regulation of adhesion and endocytosis of the COM crystal. Four degraded fractions, namely, PYP1, PYP2, PYP3, and PYP4, were successfully obtained, with molecular weights (Mws) of 576.2, 49.5, 12.6, and 4.02 kDa, respectively. PYP protection reduced the crystal toxicity, prevented the destruction of cell morphology and cytoskeleton, inhibited the production of reactive oxygen species and the decline of lysosomal integrity, and reduced the expression of osteopontin and transmembrane protein (CD44). PYPi inhibited the adhesion and endocytosis of HK-2 cells by nano-COM. Endocytic COM crystals were accumulated in the lysosomes. With decreasing molecular weight, the ability of PYP to reduce cell damage and inhibit cell adhesion and endocytosis increased. PYP4, which has the smallest molecular weight, weaker intramolecular hydrogen bonds and more reducing groups, showed the best biological activity. PYPi can reduce the oxidative damage of the crystal to the cell, inhibit the adhesion and endocytosis of the crystal, and reduce the risk of kidney stone formation. Therefore, PYP, especially PYP4, has potential for use as a green drug to inhibit the formation and recurrence of calcium oxalate stones.
机译:我们研究了从草酸纳米铵(COM)晶体的细胞毒性的人近端管状上皮细胞(HK-2)上的降解孢子yezoensispolysachary(PYP)的保护,以及COM晶体的粘附和内吞作用的调节。成功地获得了四种降解的级分,即PYP1,PYP2,PYP3和PYP4,分子量(MWS)分别为576.2,49.5,12.6和4.02kDa。 PYP保护降低了晶体毒性,防止了细胞形态和细胞骨架的破坏,抑制了活性氧物种的产生和溶酶体完整性的下降,并降低了骨桥蛋白和跨膜蛋白的表达(CD44)。本调纳米COM抑制HK-2细胞的粘附性和内吞作用。内吞的COM晶体在溶酶体中积聚。随着分子量的降低,PYP降低细胞损伤的能力和抑制细胞粘附和内吞作用的增加。 PYP4具有最小的分子量,较弱的分子内氢键和更加还原基团,显示出最佳的生物活性。本调可以将晶体的氧化损伤降低到细胞,抑制晶体的粘附性和内吞作用,降低肾结石的风险。因此,PYP,尤其是PYP4,具有用作绿色药物,以抑制草酸钙结石的形成和复发。

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