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Partially Hydrolyzed Guar Gum Attenuates d-Galactose-Induced Oxidative Stress and Restores Gut Microbiota in Rats

机译:部分水解的瓜尔牙龈衰减D-半乳糖诱导的氧化应激并在大鼠中恢复肠道微生物

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摘要

Partially hydrolyzed guar gum (PHGG) has received considerable attention for its various bioactive functions. The injection of d-galactose can cause aging-related injury which is usually resulted from oxidative stress on tissues and cells. In this study, d-galactose (200 mg/kg/day) was injected into rats, and the protective effects of PHGG (500, 1000, and 1500 mg/kg/day) against oxidative damages, as well as its probiotic functions, were analyzed. The results showed that PHGG treatment at a concentration of 1500 mg/kg/day greatly reduced the levels of lactic acid, nitric oxide, inducible nitric oxide synthase, advanced glycation end products, and increased the telomerase activity, by 7.60%, 9.25%, 12.28%, 14.58%, and 9.01%, respectively. Moreover, PHGG significantly elevated the activities of antioxidant enzymes and decreased the content of malondialdehyde in rat serum and brain. The oxidative damage was also significantly alleviated in the liver and hippocampus and the expressions of brain-derived neurotrophic factor and choline acetyltransferase also increased. Furthermore, PHGG treatment could significantly regulated the expression of sirtuin 1, forkhead box O1, and tumor protein p53 in the hippocampus. It also increased the levels of organic acids and improved the composition of intestinal microbiota. These findings demonstrated that PHGG treatment could effectively alleviate the oxidative damage and dysbacteriosis.
机译:部分水解的瓜尔胶(PHGG)对其各种生物活性功能得到了相当大的关注。注射D-半乳糖可导致衰老相关的损伤,这通常是由组织和细胞上的氧化胁迫导致的。在本研究中,将D-半乳糖(200mg / kg /天)注入大鼠,以及PHGG(500,1000和1500mg /天/天)对氧化损伤以及其益生菌功能的保护作用,分析了。结果表明,浓度为1500mg / kg /天的PHGG处理大大降低了乳酸,一氧化氮,诱导型一氧化氮合酶,先进的糖糖末端产物,并增加了端粒酶活性,增加了7.60%,9.25%,分别为12.28%,14.58%和9.01%。此外,PHGG明显升高了抗氧化酶的活性,并降低了大鼠血清和脑中丙二醛的含量。肝脏和海马也显着缓解氧化损伤,并且脑衍生的神经营养因子和胆碱乙酰转移酶的表达也增加。此外,PHGG治疗可以显着调节海马中SIRTUIN 1,FORKHEAD盒O1和肿瘤蛋白P53的表达。它还增加了有机酸水平并改善了肠道微生物的组成。这些研究结果表明,PHGG治疗可以有效缓解氧化损伤和缺陷症。

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