食品科学 ›› 2026, Vol. 47 ›› Issue (5): 115-128.doi: 10.7506/spkx1002-6630-20250826-181

• 生物工程 • 上一篇    

二甲双胍与嗜黏蛋白阿克曼菌体外协同作用机制

张晏维,徐远志,孙宏骁,解庆刚,许晓曦   

  1. (1.东北农业大学食品学院,乳品科学教育部重点实验室,黑龙江 哈尔滨 150030;2.内蒙古蒙牛乳业(集团)股份有限公司,内蒙古 呼和浩特 011500;3.黑龙江飞鹤乳业有限公司,北京 100015)
  • 发布日期:2026-04-13
  • 基金资助:
    2024年黑龙江省重点研发计划重点领域专项支持项目(2024ZX10B01-3)

Mechanism of in Vitro Synergistic Action between Metformin and Akkermansia muciniphila

ZHANG Yanwei, XU Yuanzhi, SUN Hongxiao, XIE Qinggang, XU Xiaoxi   

  1. (1. Key Laboratory of Dairy Science, Ministry of Education, College of Food Science, Northeast Agricultural University, Harbin 150030, China; 2. Inner Monggolia Mengniu Dairy (Group) Co. Ltd., Hohhot 011500, China; 3. Heilongjiang Feihe Dairy Co. Ltd., Beijing 100015, China)
  • Published:2026-04-13

摘要: 为探索二甲双胍与嗜黏蛋白阿克曼菌(Akkermansia muciniphila,Akk)的关联性,以阐明其协同作用的分子机制。将Akk JCM30893标准菌株添加到4 mmol/L二甲双胍的优化培养基中培养。实验条件下Akk显著增殖,表现为糖类与蛋白质消耗量增加及pH值变化。二甲双胍处理显著提升了Akk的精氨酸产量,同时提高了短链脂肪酸(丁酸、异戊酸、异丁酸及乙酸)的产量。非靶向代谢组学进一步证实了二甲双胍处理可上调治疗性代谢物(包括精氨酸、左旋肉碱和烟酰胺)的含量,这些物质具有抗糖尿病、抗炎、心血管保护和抗癌特性。此外,二甲双胍处理组中,与蛋白质消化、核苷酸代谢及精氨酸生物合成相关的代谢通路亦呈现增强趋势。这些发现为阐明二甲双胍与Akk在糖尿病及肥胖症治疗中的协同疗效提供了分子框架,为潜在的联合治疗方案开辟了新思路。

关键词: 二甲双胍;嗜黏蛋白阿克曼菌;非靶向代谢组学;精氨酸

Abstract: This study sought to explore the correlation between metformin and Akkermansia muciniphila (Akk), aiming to clarify the molecular mechanism of their synergistic effects. Akk standard strain JCM30893 was cultured in an optimized medium supplemented with 4 mmol/L metformin. Under this condition, we observed significant growth promotion of Akk, as evidenced by enhanced consumption of sugars and proteins and alterations in pH. Notably, metformin treatment significantly increased the production of arginine by Akk, along with an elevated production of short-chain fatty acids (butyrate, isovalerate, isobutyrate, and acetate). Untargeted metabolomics further confirmed that metformin up-regulated therapeutic metabolites, including arginine, L-carnitine, and nicotinamide, which are associated with antidiabetic, anti-inflammatory, cardiovascular protective, and anticancer properties. Additionally, metabolic pathways linked to protein digestion, nucleotide metabolism, and arginine biosynthesis were found to be enhanced in the metformin-treated group. These findings provide a molecular framework for elucidating the synergistic therapeutic effects of metformin and Akk in the treatment of diabetes and obesity, offering insights into potential combination therapies.

Key words: metformin; Akkermansia muciniphila; untargeted metabolomics; arginine

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