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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Protective Effect of Degraded Porphyra yezoensis Polysaccharides on the Oxidative Damage of Renal Epithelial Cells and on the Adhesion and Endocytosis of Nanocalcium Oxalate Crystals
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Protective Effect of Degraded Porphyra yezoensis Polysaccharides on the Oxidative Damage of Renal Epithelial Cells and on the Adhesion and Endocytosis of Nanocalcium Oxalate Crystals

机译:降解卟啉叶氏蛋白质多糖对肾上皮细胞氧化损伤及纳米钙晶体粘附和内吞作用的保护作用

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The protective effects of Porphyra yezoensis polysaccharides (PYPs) with molecular weights of 576.2 (PYP1), 105.4 (PYP2), 22.47 (PYP3), and 3.89?kDa (PYP4) on the oxidative damage of human kidney proximal tubular epithelial (HK-2) cells and the differences in adherence and endocytosis of HK-2 cells to calcium oxalate monohydrate crystals before and after protection were investigated. Results showed that PYPs can effectively reduce the oxidative damage of oxalic acid to HK-2 cells. Under the preprotection of PYPs, cell viability increased, cell morphology improved, reactive oxygen species levels decreased, mitochondrial membrane potential increased, S phase cell arrest was inhibited, the cell apoptosis rate decreased, phosphatidylserine exposure reduced, the number of crystals adhered to the cell surface reduced, but the ability of cells to endocytose crystals enhanced. The lower the molecular weight, the better the protective effect of PYP. The results in this article indicated that PYPs can reduce the risk of kidney stone formation by protecting renal epithelial cells from oxidative damage and reducing calcium oxalate crystal adhesion, and PYP4 with the lowest molecular weight may be a potential drug for preventing kidney stone formation.
机译:Porphyra yezoensis多糖(PYPS)的分子量为576.2(PYP1),105.4(PYP2),22.47(PYP3)和3.89?KDA(PYP4)对人肾近端上皮的氧化损伤(HK-2 )研究了细胞和HK-2细胞的粘附和内吞作用的差异,在保护前后对草酸钙一元水合物晶体进行研究。结果表明,PYPS可以有效地降低草酸对HK-2细胞的氧化损伤。下PYPs的preprotection,细胞活力增加,细胞形态改善,活性氧水平降低,线粒体膜电位上升,S期细胞阻滞受到抑制,细胞凋亡率降低,磷脂酰丝氨酸暴露减少,晶体的数量附着在细胞表面降低,但细胞对内核细胞晶体的能力增强。分子量越低,PYP的保护作用越好。本文中的结果表明,通过保护来自氧化损伤的肾上皮细胞和还原草酸钙晶体粘合性,具有最低分子量的PYP4可以降低肾结石形成的风险,并且可以是预防肾结石的潜在药物。

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