氧化应激
脂质代谢
碳水化合物代谢
化学
谷胱甘肽
新陈代谢
脂质过氧化
抗氧化剂
内分泌学
内科学
磷脂
糖尿病
生物化学
生物
医学
酶
膜
作者
Zeen Yang,Shengdong Chen,Wenxuan Sun,Yechen Yang,Yuxuan Xu,Yuxuan Tang,Wen Jiang,Jia Li,Yongjun Zhang
标识
DOI:10.1016/j.ijbiomac.2024.132249
摘要
Pumpkin polysaccharide (PPe-H) can perform physiological functions through its antioxidative and hypoglycemic effects; however, the mechanisms through which PPe-H regulates abnormal glucose and lipid metabolism caused by oxidative stress injury remain unclear. In the present study, streptozotocin was used to generate an acute diabetic mouse model, and the effects of PPe-H on glucose and lipid metabolism impaired by oxidative stress in diabetic mice were studied. PPe-H significantly reduced blood glucose levels and enhanced the oral glucose tolerance of diabetic mice under stress injury (p < 0.05). The analysis of liver antioxidant enzymes showed that PPe-H significantly enhanced the activities of SOD and CAT (p < 0.05), increased the GSH level, and decreased the level of MDA (p < 0.05). Transcriptomic and metabolomic analyses of the liver tissues of mice revealed characteristic differences in the genetic and metabolic levels of the samples, which showed that PPe-H treatment may play a positive role in regulating the metabolism of methionine, cysteine, glycerol phospholipid, and linoleic acid. These results indicated that PPe-H alleviated the symptoms of hyperglycemia by regulating metabolites related to oxidative stress and glycolipid metabolism in diabetic mice.
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