4.6 Review

Dynamics of the enterohepatic circulation of bile acids in healthy humans

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AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpgi.00476.2020

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bile acid; synthesis; turnover; pool size; enterohepatic circulation

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Regulation of bile acid metabolism involves maintaining a constant pool size through synthesis to compensate for intestinal loss. Bile acids cycle through the enterohepatic circulation after meals, with processes involving feedback inhibition of synthesis. A biphasic diurnal expression pattern of bile acid synthesis has been observed in humans, but details of synthesis inhibition and activation mechanisms remain unknown.
Regulation of bile acid metabolism is normally discussed as the regulation of bile acid synthesis, which serves to compensate for intestinal loss in order to maintain a constant pool size. After a meal, bile acids start cycling in the enterohepatic circulation. Farnesoid x receptor-dependent ilea) and hepatic processes lead to negative feedback inhibition of bile acid synthesis. When the intestinal bile acid flux decreases, the inhibition of synthesis is released. The degree of inhibition of synthesis and the mechanism and degree of activation are still unknown. Moreover, in humans, a biphasic diurnal expression pattern of bile acid synthesis has been documented, indicating maximal synthesis around 3 PM and 9 PM. Quantitative data on the hourly synthesis schedule as compensation for intestinal loss are lacking. In this review, we describe the classical view on bile acid metabolism and present alternative concepts that are based on the overlooked feature that bile acids transit through the enterohepatic circulation very rapidly. A daily profile of the cycling and total bile acid pool sizes and potential controlled and uncontrolled mechanisms for synthesis are predicted. It remains to be elucidated by which mechanism clock genes interact with the Farnesoid X receptor-controlled regulation of bile acid synthesis. This mechanism could become an attractive target to enhance bile acid synthesis at night, when cholesterol synthesis is high, thus lowering serum LDL-cholesterol.

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