米糠酚类物质对高脂诱导的小鼠糖代谢异常及氧化应激的改善作用
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(广东省农业科学院蚕业与农产品加工研究所 农业农村部功能食品重点实验室广东省农产品加工重点实验室 广州 510640)

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广东特支计划本土创新团队项目(2019BT02N 112);广东省农业科学院人才引进项目(R2019YJ-YB1003);广东省基础与应用基础研究基金项目(2019A1515110633)


Effect of Rice Bran Phenolic Extracts on Abnormal Glucose Metabolism and Oxidative Stress Induced by High-fat Diet in Mice
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(Sericultural & Agri-Food Research Institute Guangdong Academy of Agricultural Sciences, Key Laboratory Foods,Ministry of Agriculture and Rural Affairs, Guangdong Key Laboratory Processing, Guangzhou 510640)

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    摘要:

    目的:研究不同剂量的米糠酚类物质(RBPE)对高脂诱导的小鼠糖代谢及氧化应激水平的影响,为揭示米糠改善糖代谢作用提供理论依据。方法:选用6周龄的C57BL/6J小鼠适应性饲养1周后,随机分为4组,包括正常组、高脂组、RBPE低剂量组(200 mg/kg,HF+LP组)和高剂量组(400 mg/kg,HF+HP组),实验共16周,测定脏器指数、脂肪细胞形态、糖代谢指标和氧化应激相关指标。结果:RBPE可以剂量依赖地降低小鼠肝脏、附睾脂肪和肾周脂肪的脏体比,降低高脂小鼠空腹血糖水平,改善高脂引起的糖耐量受损(P<0.05):与高脂组相比,HF+LP、HF+HP组小鼠肝脏的脏体比分别降低15.75%和39.61%,附睾脂肪的脏体比分别降低23.03%和39.83%,肾周脂肪的脏体比分别降低43.68%和56.83%,空腹血糖水平分别降低14.06%和20.21%,糖耐量曲线下面积分别降低19.06%和23.81%。进一步研究显示,低、高剂量的RBPE可显著降低高脂小鼠血清和肝脏组织MDA的含量并提高SOD活力,与高脂组相比,HF+HP组小鼠血清和肝脏MDA含量分别降低了48.93%和38.68%,SOD活力分别提高了80.44%和67.05%;并提高了高脂诱导小鼠肝脏过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH-px)等抗氧化酶的活力及抗氧化物谷胱甘肽(GSH)的含量(P<0.05),与高脂组相比,HF+HP组小鼠肝脏CAT、GSH-px活力及GSH含量分别提高了48.49%,31.67%,123.90%。结论:米糠酚类物质可以改善高脂诱导的小鼠糖代谢紊乱,其机制可能与改善机体氧化应激反应有关。

    Abstract:

    Objective: This study was conducted to investigate the effects of rice bran phenolic extracts (RBPE) supplementation on glucose metabolism and oxidative stress in high-fat diet induced mice, which could provide theoretical basis for revealing the effect of rice bran on glucose metabolism. Methods: After 1 week of acclimatization, mice were randomly divided into 4 groups: normal control group, high-fat diet group, low-dose RBPE group (200 mg/kg, HF+LP group) and high-dose RBPE group (400 mg/kg, HF+HP group). The experiment lasted for 16 weeks. The organ-body ratio, epididymal fat morphology, fasting serum glucose level, oral glucose tolerance and the levels of oxidative stress were measured. Results: RBPE dose-dependently decreased the organ-body ratio, fasting blood glucose and ameliorated the impaired glucose tolerance induced by high-fat diet. Compared with the high-fat diet group, organ-body ratio of the liver of HF+LP and HF+HP groups were decreased by 15.75% and 39.61%, respectively, the organ-body ratio of epididymal adipose tissue decreased by 23.03% and 39.83%, respectively, the organ-body ratio of renal peritoneal adipose tissue decreased by 43.68% and 56.83%, respectively, fasting blood glucose levels decreased by 14.06% and 20.21%, and the area under the glucose tolerance curve decreased by 19.06% and 23.81%, respectively. Further studies showed that low and high doses of RBPE can significantly reduce serum and liver tissue MDA content and increase SOD activity in high-fat diet induced mice. Compared with the high-fat diet group mice, serum and liver MDA content in HF+HP group mice were decreased by 48.93% and 38.68%, respectively, SOD activity increased by 80.44% and 67.05%, respectively; RBPE treatment could also increase antioxidant enzyme activities such as catalase (CAT) and glutathione peroxidase (GSH-px) and the content of antioxidant glutathione (GSH) in liver tissue of high-fat diet induced mice (P<0.05). Compared with the high-fat diet group mice, CAT, GSH-px activity and GSH content in HF+HP group mice were increased by 48.49%, 31.67% and 123.90%, respectively. Conclusion: RBPE could alleviate the impaired glucose metabolism induced by high-fat diet, which might be related to its inhibition effect on oxidative stress.

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马勤,童鑫,张名位,董丽红,黄菲,赵东,池建伟,贾栩超,张瑞芬.米糠酚类物质对高脂诱导的小鼠糖代谢异常及氧化应激的改善作用[J].中国食品学报,2024,24(1):119-125

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  • 收稿日期:2023-01-02
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  • 在线发布日期: 2024-02-19
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