天然产物研究与开发 ›› 2026, Vol. 38 ›› Issue (7): 1468-1475.doi: 10.16333/j.1001-6880.2026.7.009 cstr: 32307.14.1001-6880.2026.7.009

• 研究简报 • 上一篇    下一篇

灯盏花乙素通过调节肠道微生物改善小鼠肥胖的研究

陈延绅,田冲冲*   

  1. 江苏医药职业学院药学院,盐城 224005
  • 出版日期:2026-07-24 发布日期:2026-07-23
  • 基金资助:
    江苏省盐城市卫生健康委员会2023年度医学科研项目(YK2023032,YK2023097);江苏高校哲学社会科学研究一般项目(2022SJYB2075);江苏医药职业学院自然科学基金(20214103)

Scutellarin alleviates obesity in mice through gut microbiota modulation

CHEN Yan-shen,TIAN Chong-chong*   

  1. Department of Pharmacy,Jiangsu Medical College,Yancheng 224005,China
  • Online:2026-07-24 Published:2026-07-23

摘要:

探讨灯盏花乙素(scutellarin,SCU)在肥胖小鼠中的减重作用,并从肠道微生态角度阐明其潜在机制。采用高脂饮食建立C57BL/6J小鼠肥胖模型,分为正常对照组、模型组和SCU干预组;SCU治疗组在高脂饲料喂养的基础上通过灌胃给予SCU,剂量为400 mg/(kg·d),连续给药10周;对照组与模型组以等体积PBS灌胃。监测各组小鼠体质量变化,测定脂肪系数和肝脏系数,ELISA检测血清中白介素-6(interleukin-6,IL-6)、IL-10及肿瘤坏死因子-α(tumor necrosis factor-α,TNF-α)含量,HE染色观察结肠组织病理结构变化,16S rDNA V4区测序分析肠道菌群组成与功能变化。结果提示与模型组相比,SCU组小鼠的体重、脂肪系数和肝脏系数均显著降低;血清中IL-6、IL-10及TNF-α含量显著减少;结肠绒毛结构紊乱有所缓解;肠道菌群的丰富度和多样性增加;在门分类水平上,厚壁菌门比例显著升高,拟杆菌门及变形菌门的比例显著下降;属水平分析显示,普雷沃氏菌属、Pseudoflavonifractor的相对丰度增加,而萨特氏菌属、布劳特氏菌属及真杆菌属相对丰度下降;肠道菌群在DNA损伤修复功能的表达增加,氨基酸代谢紊乱得到改善。SCU可能通过改善肠道菌群结构与功能、增强肠屏障完整性、抑制系统性炎症,进而发挥抗肥胖作用,为其在代谢性疾病防治中的应用提供实验依据。

关键词: 灯盏花乙素, 肥胖, 肠道菌群, 炎症水平, 16S rDNA V4区测序

Abstract:

This study aimed to investigate the weight-reducing effect of scutellarin (SCU) in obese mice and elucidate its potential mechanisms from the perspective of gut microecology. An obesity model was established in C57BL/6J mice using a high-fat diet. The mice were divided into normal control, model, and SCU intervention groups. The SCU-treated group received SCU by intragastric administration at 400 mg/(kg·d) for ten weeks alongside high-fat diet feeding, while control and model groups were given equal volumes of PBS. Body weight changes were monitored; adipose coefficient and liver coefficient were measured; serum levels of interleukin-6 (IL-6), IL-10, and tumor necrosis factor-α (TNF-α) were detected by ELISA; pathological changes in colon tissue were observed by HE staining; and composition/functional alterations of gut microbiota were analyzed via 16S rDNA V4 region sequencing. Results showed that compared with the model group, SCU-treated mice exhibited significant reductions in body weight, adipose coefficient, and liver coefficient. Serum levels of IL-6, IL-10, and TNF-α were significantly decreased. Structural disorder of colonic villi was alleviated, while richness and diversity of gut microbiota increased. At the phylum level, the proportion of Firmicutes significantly increased, whereas Bacteroidetes and Proteobacteria significantly decreased. Genus-level analysis revealed increased relative abundances of Prevotella and Pseudoflavonifractor but decreased abundances of Sutterella, Blautia, and Eubacterium. Gut microbiota showed enhanced functional expression in DNA damage repair pathways and improved amino acid metabolic disorders. SCU may exert anti-obesity effects by modulating gut microbiota structure/function, enhancing intestinal barrier integrity, and suppressing systemic inflammation, providing experimental evidence for its application in metabolic disease intervention.

Key words:

scutellarin; obesity, gut microbiota, inflammation levels, 16S rDNA V4 region sequencing

中图分类号:  R285