Key discoveries in bile acid chemistry and biology and their clinical applications: history of the last eight decades

Ключевые открытия в химии и биологии желчных кислот и их клиническое применение: история последних восьми десятилетий
Alan F. Hofmann, Lee R. Hagey
2014-05-17

bile acid biologybile acid chemistrybile acid transporterscholesterol gallstone dissolutionenterohepatic circulation
During the last 80 years there have been extraordinary advances in our knowledge of the chemistry and biology of bile acids. We present here a brief history of the major achievements as we perceive them. Bernal, a physicist, determined the X-ray structure of cholesterol crystals, and his data together with the vast chemical studies of Wieland and Windaus enabled the correct structure of the steroid nucleus to be deduced. Today, C24 and C27 bile acids together with C27 bile alcohols constitute most of the bile acid "family". Patterns of bile acid hydroxylation and conjugation are summarized. Bile acid measurement encompasses the techniques of GC, HPLC, and MS, as well as enzymatic, bioluminescent, and competitive binding methods. The enterohepatic circulation of bile acids results from vectorial transport of bile acids by the ileal enterocyte and hepatocyte; the key transporters have been cloned. Bile acids are amphipathic, self-associate in solution, and form mixed micelles with polar lipids, phosphatidylcholine in bile, and fatty acids in intestinal content during triglyceride digestion. The rise and decline of dissolution of cholesterol gallstones by the ingestion of 3,7-dihydroxy bile acids is chronicled. Scientists from throughout the world have contributed to these achievements.
1
Bile acid measurement has advanced through GC, HPLC, mass spectrometry, enzymatic, bioluminescent, and competitive-binding methods.
2
Bile acids self-associate and form mixed micelles with phosphatidylcholine in bile and fatty acids during intestinal triglyceride digestion; 3,7-dihydroxy bile acids were also evaluated for cholesterol gallstone dissolution.
3
Enterohepatic bile acid circulation depends on vectorial transport by ileal enterocytes and hepatocytes, with key transporters subsequently cloned.
4
Structural studies of cholesterol crystals and extensive steroid chemistry established the correct structure of the steroid nucleus.
5
The bile acid family comprises primarily C24 and C27 bile acids, together with C27 bile alcohols, characterized by diverse hydroxylation and conjugation patterns.

Bile acids (C24 and C27 bile acids and C27 bile alcohols) and their enterohepatic system interactions

The chemistry, biology, transport, physicochemical behavior, measurement, and clinical applications of bile acids over the last eight decades

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2014-05-17
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Alan F. Hofmann
Lee R. Hagey
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