Trimethylamine-N-oxide (TMAO)-induced atherosclerosis is associated with bile acid metabolism

Dec 21, 2018Lipids in health and disease

Atherosclerosis linked to TMAO is connected to bile acid metabolism

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Abstract

Total plaque areas in the aortas increased 2-fold in mice administered .

  • TMAO administration resulted in significant increases in triglycerides, total cholesterol, and low-density lipoprotein cholesterol by 25.5%, 31.2%, and 28.3%, respectively.
  • Bile acid profiles were notably altered in the serum, with significant increases in tauromuricholic acid, deoxycholic acid, and cholic acid.
  • TMAO may inhibit the synthesis of in the liver by repressing a specific pathway involved in bile acid production.
  • This inhibition could be linked to the activation of nuclear receptors small heterodimer partner and farnesoid X receptor.

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Key numbers

Increase in Aortic Plaque Area
Total plaque areas in aortas increased in group vs. control group.
31.2%
Increase in Serum Total Cholesterol
Serum total cholesterol levels increased in group vs. control group.
25.5%
Increase in Serum Triglycerides
Serum triglyceride levels increased in group vs. control group.

Full Text

What this is

  • This research investigates the relationship between () and development.
  • It focuses on how affects bile acid metabolism and its implications for cholesterol regulation.
  • The study uses male apoEmice to assess the impact of on aortic lesions and lipid profiles.

Essence

  • administration in male apoEmice significantly increased aortic plaque areas and altered bile acid profiles, suggesting a connection between and through bile acid metabolism.

Key takeaways

  • administration doubled the total plaque areas in the aortas of apoEmice compared to controls, indicating accelerated .
  • Serum lipid levels, including triglycerides, total cholesterol, and low-density lipoprotein cholesterol, increased by 25.5%, 31.2%, and 28.3%, respectively, in -treated mice.
  • altered bile acid profiles, notably increasing tauromuricholic acid, deoxycholic acid, and cholic acid, while inhibiting bile acid synthesis through repression of the Cyp7a1 gene.

Caveats

  • The study is limited to male apoEmice, which may not fully represent human responses to and bile acid metabolism.
  • The exact mechanisms through which influences bile acid metabolism and require further investigation.

Definitions

  • Atherosclerosis: A disease characterized by the buildup of plaques in arterial walls, leading to reduced blood flow and increased risk of cardiovascular events.
  • Trimethylamine-N-oxide (TMAO): A compound produced from dietary nutrients that has been linked to cardiovascular diseases, including atherosclerosis.
  • Bile acids: Acids derived from cholesterol that aid in fat digestion and are involved in regulating cholesterol levels in the body.

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