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黄连素对多囊卵巢综合征小鼠模型的作用及机制研究:基于肠道菌群分析

[Investigation of the effects and mechanisms of berberine on a mouse model of polycystic ovary syndrome: based on intestinal flora analysis].

作者信息

Xin G, Zhang L Y, Qiu H R, Wang Y C, Sui Y H, Xue B G, Wang H L

机构信息

Department of Food Science and Engineering, College of Chemistry and Life Sciences, Changchun University of Technology, Changchun 130012, China.

Department of Cell Biology and Medical Genetics, College of Basic Medicine, Jilin University, Changchun 130012, China.

出版信息

Zhonghua Fu Chan Ke Za Zhi. 2024 Mar 25;59(3):215-226. doi: 10.3760/cma.j.cn112141-20231222-00272.

Abstract

To examine the impact of berberine on polycystic ovary syndrome (PCOS) in mice, and to investigate the effects of berberine on the intestinal flora and the intestinal flora on PCOS. A mouse model of PCOS was established by administering dehydroepiandrosterone in combination with high fat diet, and the mouse model was given a berberine treatment. The study consisted of a blank control group (C group), a PCOS model group (M group) and a berberine treatment group (T group). During the experiment, the mice were closely monitored through timed body weight measurements and estrous cycle monitoring; intraperitoneal glucose tolerance test and insulin tolerance test were done. Upon completion of the pharmacological intervention, the wet weights of liver, ovary and fat deposits of mice were assessed and subjected to HE staining to confirm the success of PCOS modeling and the efficacy of berberine. Additionally, fecal samples were analyzed for intestinal flora through 16S rRNA analysis. The PCOS model was established successfully, berberine alleviated the disturbance of estrous cycle in mice, and significantly alleviated fat accumulation and metabolic abnormalities of glucose in mice. The cross-sectional area of fat pad cells in T group was (2 858±146) μm², which was significantly lower than that in M group [(9 518±347) μm²], and the difference was statistically significant (<0.001). The blood glucose levels in T group were significantly lower than those in M group (<0.05). The composition and structure of intestinal flora in mice of M group with PCOS (compared with C group) and in mice of T group after berberine intervention (compared with M group) were significantly altered. However, alpha diversity did not change significantly among three groups (>0.05). Berberine could alleviate PCOS by intervening in the alterations of gut microbiota.

摘要

为研究小檗碱对小鼠多囊卵巢综合征(PCOS)的影响,并探讨小檗碱对肠道菌群的作用以及肠道菌群对PCOS的影响。通过给予脱氢表雄酮联合高脂饮食建立PCOS小鼠模型,并对该小鼠模型进行小檗碱治疗。本研究包括空白对照组(C组)、PCOS模型组(M组)和小檗碱治疗组(T组)。实验期间,通过定时测量体重和监测发情周期对小鼠进行密切监测;进行腹腔葡萄糖耐量试验和胰岛素耐量试验。药理干预完成后,评估小鼠肝脏、卵巢和脂肪沉积的湿重,并进行苏木精-伊红(HE)染色以确认PCOS建模的成功以及小檗碱的疗效。此外,通过16S rRNA分析对粪便样本进行肠道菌群分析。成功建立了PCOS模型,小檗碱减轻了小鼠发情周期的紊乱,并显著减轻了小鼠的脂肪堆积和葡萄糖代谢异常。T组脂肪垫细胞的横截面积为(2 858±146)μm²,显著低于M组[(9 518±347)μm²],差异具有统计学意义(<0.001)。T组的血糖水平显著低于M组(<0.05)。PCOS的M组小鼠(与C组相比)以及小檗碱干预后的T组小鼠(与M组相比)肠道菌群的组成和结构发生了显著改变。然而,三组之间的α多样性没有显著变化(>0.05)。小檗碱可通过干预肠道微生物群的改变来减轻PCOS。

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