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Statins aggravate insulin resistance through reduced blood glucagon-like peptide-1 levels in a microbiota-dependent manner

  • Jianqing She
  • , Gulinigaer Tuerhongjiang
  • , Manyun Guo
  • , Junhui Liu
  • , Xiang Hao
  • , Liangan Guo
  • , Nairong Liu
  • , Wen Xi
  • , Tao Zheng
  • , Bin Du
  • , Bowen Lou
  • , Xiyu Gao
  • , Xiao Yuan
  • , Yue Yu
  • , Yi Zhang
  • , Fan Gao
  • , Xiaozhen Zhuo
  • , Ying Xiong
  • , Xiang Zhang
  • , Jun Yu
  • Zuyi Yuan, Yue Wu
  • The First Affiliated Hospital of Xi’an Jiaotong University
  • Key Lab of the Ministry of Education for Process Control and Efficiency Egineering
  • Chinese University of Hong Kong

科研成果: 期刊稿件文章同行评审

69 引用 (Scopus)

摘要

Statins are currently the most common cholesterol-lowering drug, but the underlying mechanism of statin-induced hyperglycemia is unclear. To investigate whether the gut microbiome and its metabolites contribute to statin-associated glucose intolerance, we recruited 30 patients with atorvastatin and 10 controls, followed up for 16 weeks, and found a decreased abundance of the genus Clostridium in feces and altered serum and fecal bile acid profiles among patients with atorvastatin therapy. Animal experiments validated that statin could induce glucose intolerance, and transplantation of Clostridium sp. and supplementation of ursodeoxycholic acid (UDCA) could ameliorate statin-induced glucose intolerance. Furthermore, oral UDCA administration in humans alleviated the glucose intolerance without impairing the lipid-lowering effect. Our study demonstrated that the statin-induced hyperglycemic effect was attributed to the Clostridium sp.-bile acids axis and provided important insights into adjuvant therapy of UDCA to lower the adverse risk of statin therapy.

源语言英语
页(从-至)408-421.e5
期刊Cell Metabolism
36
2
DOI
出版状态已出版 - 6 2月 2024
已对外发布

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