Ameliorative effects of gallic acid on GLUT-4 expression and insulin resistance in high fat diet-induced obesity animal model mice, Mus musculus

被引:6
|
作者
Baraskar, Kirti [1 ]
Thakur, Pratibha [2 ]
Shrivastava, Renu [3 ]
Shrivastava, Vinoy Kumar [1 ]
机构
[1] Barkatullah Univ, Biosci Dept, Endocrinol Unit, Bhopal 462026, Madhya Pradesh, India
[2] Indira Gandhi Med Coll, Dept Med, Shimla 171001, Himachal Prades, India
[3] Sri Sathya Sai Coll Women, Zool Dept, Bhopal 262024, Madhya Pradesh, India
关键词
GLUT-4; IRS-1; Insulin resistance; Obesity; High Fat Diet; Gallic acid; TYPE-2; DIABETES-MELLITUS; OXIDATIVE STRESS; ER STRESS; INFLAMMATION; RATS;
D O I
10.1007/s40200-023-01194-5
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Reduced activity of glucose transporter type 4 isoform (GLUT-4), an insulin-sensitive glucose transporter distributed on the adipocytes, is associated with impaired insulin signaling. Insulin resistance resulting from alteration in glucose transport is responsible for exacerbating the emergence of metabolic abnormalities. The present study aimed to investigate the effects of the antidote gallic acid (GA) on expression-related changes in GLUT-4 and insulin receptor substrate-1 (IRS-1) in the visceral adipose tissue and on the subsequent development of insulin resistance in a high-fat diet (HFD)-induced obesity animal model. Methods: Twenty-four female Swiss albino mice were used and separated into the following four groups (six animals in each group): control group (standard pellet diet), HFD group, (60% HFD), HFD + GA group (60% HFD and GA 50 mg/kg body weight for 60 days), and GA group (GA 50 mg/kg body weight for 60 days). The effect of HFD on serum glucose, total cholesterol, triglycerides, high-density lipoprotein cholesterol (HDL), low-density lipoprotein (LDL) cholesterol, and insulin was evaluated. Additionally, homeostasis model assessment for insulin resistance (HOMA-IR) and glucose tolerance test (GTT) was performed. The serum antioxidative profile, which comprises oxidative parameters (superoxide dismutase [SOD], catalase [CAT], and glutathione peroxidase [GPx]) was measured. The effectiveness of GA against HFD-induced alteration in GLUT-4 and IRS-1 expression was also evaluated. Results: The experimental group that fed on GA + HFD had improved levels of serum triglycerides (p<0.001), cholesterol (p<0.05), and LDL cholesterol. GA administration also significantly improved hyperinsulinemia and HOMA-IR index (p<0.001) in HFD mice. GA improved GTT results (p<0.05); activity of SOD, CAT, and GPx (p<0.05); and upregulated mRNA expression of GLUT-4 and IRS-1(p<0.05) in the visceral adipose tissue in the HFD + GA experimental group. Conclusion: A link exists between insulin resistance, GLUT-4, and IRS-1 expression in the adipose tissue, and the initiation of metabolic syndrome, a condition characterized by obesity. GA may promote insulin signaling, glucose uptake, and lipid metabolism in the adipose tissues by mitigating oxidative stress. GA can also be used to manage obesity-related comorbidities including type 2 diabetes and dyslipidemia.
引用
收藏
页码:721 / 733
页数:13
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