评价香豆素衍生物七叶草素对饮食性肥胖大鼠的抗糖尿病作用。

IF 2.5 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biotechnology and applied biochemistry Pub Date : 2025-08-11 Epub Date: 2025-02-03 DOI:10.1002/bab.2712
Bian Wu, Junyu Wang, Guishun Sun, Kunlin Li, Qiyun Chen, Yibo Wang, Xuan He, Shiwen Li, Wei Yang
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引用次数: 0

摘要

肥胖是一种可以改变和避免的疾病,由于快速的现代化和工业化,肥胖已成为全球性的威胁。现代化的快速发展不仅使日常生活变得轻松,而且还强制要求久坐不动的生活方式,从而导致各种非传染性疾病。目前,全球每8个人中就有1人肥胖,这些迅速增长的肥胖者容易患上其他各种微血管和大血管疾病,如高血糖症、心肌梗死、高血压、中风等。大量的研究揭示了肥胖和2型糖尿病发病机制之间错综复杂的联系。抗肥胖药物与降糖药同时服用,虽然能有效调节糖尿病患者的高血糖状况,但长期使用会产生各种副作用。香豆素是一种植物化学物质,具有抗炎、抗氧化、抗肿瘤等药理作用。在本分析中,我们评估了芫荽素衍生物的抗肥胖和抗糖尿病功效。采用高脂饮食诱导大鼠肥胖,并注射链脲佐菌素诱导高血糖。用七叶草素治疗肥胖型糖尿病大鼠,观察其抗糖尿病作用。测定大鼠体重指数,分析七叶草素的抗肥胖作用。采用糖尿病谱试验和脂质谱试验评价aesculetin的抗糖尿病作用。通过肾谱试验、肝功能生物标志物和心脏组织病理分析,评估七叶草素对肥胖大鼠高血糖状态的改善作用。并对其抗炎和抗氧化性能进行了评价,以确定其作用机制。为了证实aesculletin的抗肥胖效力,我们估计了脂肪因子的水平。Aesculetin显著降低肥胖糖尿病大鼠的BMI、HbA1c、胆固醇水平,并增强胰岛素分泌。调节肥胖糖尿病大鼠肾、肝功能指标,预防心脏组织损伤。调节脂肪因子,增加抗氧化剂,降低促炎细胞因子水平,从而防止肥胖引起的大鼠高血糖效应。综上所述,我们的研究结果证实,补充摄入七叶草素可以预防大鼠肥胖引起的高血糖症。
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Evaluating Anti-Diabetic Effect of Courmarin Derivative Aesculetin in Rats with Diet-Induced Obesity

Obesity, modifiable and an avertable medical condition, has become a global threat due to rapid modernization and industrialization. Swift growth in modernization not only eases the day-to-day life, it also mandates sedentary lifestyle, which leads to various noncommunicable diseases. At present one in eight people in global population are obese, and these booming obese individuals are prone to various other micro- and macrovascular diseases such hyperglycemia, myocardial infraction, hypertension, stroke, and so forth. Ample research had unveiled an intricate association perceived between obesity and Type 2 diabetes mellitus pathogenesis. Although the intake of anti-obesity drugs along with anti-diabetic drugs had effectively regulated the hyperglycemic conditions in diabetic patients, it causes various side effects on long-term usage. Coumarins are phytochemicals that have demonstrated pharmacological properties including anti-inflammatory, antioxidant, anti-tumor, and so forth. In this analysis, we assessed anti-obesity and anti-diabetic potency of aesculetin, a courmarin derivative. The rats were induced obesity with high-fat diet and subjected to streptozotocin infusion to induce hyperglycemia. Obese diabetic induced rats were treated with aesculetin and assessed for its anti-diabetic effect. BMI were assessed in the rats to analyze the anti-obesity effect of aesculetin. Diabetic profile test and lipid profile test were performed to evaluate the anti-diabetic effect of aesculetin. Ameliorative effect of aesculetin in obese rats during hyperglycemic conditions was assessed with renal profile test, hepatic function biomarkers, and by histopathological analysis of cardiac tissue. The anti-inflammatory and antioxidant property were also assessed to determine the mechanism of action of aesculetin. To confirm the anti-obesity potency of aesculetin, adipokines levels were estimated. Aesculetin eminently decreased the BMI, HbA1c, cholesterol levels, and intensified secretion of insulin in obese diabetic rats. It also regulated the renal, hepatic functional markers and prevented cardiac tissue injury in obese diabetic rats. It regulated the adipokines, increased antioxidants, and decreased level of proinflammatory cytokines, thereby prevented obesity-induced hyperglycemic effects in rats. To conclude, our findings had confirmed the supplementary intake of aesculetin prevents obesity-induced hyperglycemic disorder in rats.

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来源期刊
Biotechnology and applied biochemistry
Biotechnology and applied biochemistry 工程技术-生化与分子生物学
CiteScore
6.00
自引率
7.10%
发文量
117
审稿时长
3 months
期刊介绍: Published since 1979, Biotechnology and Applied Biochemistry is dedicated to the rapid publication of high quality, significant research at the interface between life sciences and their technological exploitation. The Editors will consider papers for publication based on their novelty and impact as well as their contribution to the advancement of medical biotechnology and industrial biotechnology, covering cutting-edge research in synthetic biology, systems biology, metabolic engineering, bioengineering, biomaterials, biosensing, and nano-biotechnology.
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