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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Inhibition on calcium oxalate crystallization and repair on injured renal epithelial cells of degraded soybean polysaccharide
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Inhibition on calcium oxalate crystallization and repair on injured renal epithelial cells of degraded soybean polysaccharide

机译:草酸钙的结晶抑制作用及降解大豆多糖对受损肾上皮细胞的修复作用

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摘要

This paper investigated the inhibitory effect of degraded soybean polysaccharide (DPS) on the growth of calcium oxalate (CaOxa) crystals. The results were compared with that of soybean polysaccharide without degradation (SPS). The data showed that DPS exhibited a much higher efficiency to inhibit CaOxa growth and stabilize calcium oxalate dihydrate (COD) compared with SPS. As DPS concentration increased, the soluble Ca~(2+) ions significantly increased, the aggregation degree of calcium oxalate monohydrate (COM) crystals decreased, the shape of COD crystals became round and blunt, and the Zeta potential on CaOxa crystal surface reduced. The above results were all conducive for the inhibition of CaOxa crystallization. In addition, DPS displayed a distinct repairing effect on oxidative injured renal epithelial cells in African green monkey (Vero), with enhanced cell viability and extracellular superoxide dismutase activity after repair. The morphologies of the repaired cells and their regulatory capability on CaOxa growth were between the control and injured cells. The results indicated that the risk of stone formation can be reduced by DPS, and that DPS may be a potential green drug to prevent the formation of CaOxa stones.
机译:本文研究了降解大豆多糖(DPS)对草酸钙(CaOxa)晶体生长的抑制作用。将结果与未降解大豆多糖(SPS)进行了比较。数据显示,与SPS相比,DPS表现出更高的抑制CaOxa生长和稳定草酸二水合物(COD)的效率。随着DPS浓度的增加,可溶性Ca〜(2+)离子显着增加,草酸钙一水合物(COM)晶体的聚集度降低,COD晶体的形状变得圆而钝,CaOxa晶体表面的Zeta电位降低。以上结果均有利于抑制CaOxa的结晶。此外,DPS对非洲绿猴(Vero)的氧化损伤的肾上皮细胞具有明显的修复作用,修复后具有增强的细胞活力和细胞外超氧化物歧化酶活性。修复细胞的形态及其对CaOxa生长的调控能力介于对照细胞和受损细胞之间。结果表明,DPS可以降低结石的风险,并且DPS可能是防止CaOxa结石形成的潜在绿色药物。

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