4.3 Article

Bile Acids in Physiology, Pathology and Pharmacology

Journal

CURRENT DRUG METABOLISM
Volume 17, Issue 1, Pages 4-29

Publisher

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1389200216666151103115454

Keywords

Biliary tree; cholangiocyte; cholesterol; digestion; hepatocyte; intestine; lipid; liver; metabolism; secretion; steroid; transport

Funding

  1. Spanish Instituto de Salud Carlos III [FIS PI12/00380]
  2. Ministerio de Ciencia e Innovacion [SAF2010-15517, BFU2011-28467, SAF2013-40620-R]
  3. Junta de Castilla y Leon [SA015U13, BIO/SA65/13, BIO/SA23/14, BIO/SA52/15]
  4. Department of Industry of Basque Country [SAIO13/108]
  5. Fundacion Mutua Madrilena (Call)
  6. Fundacion Samuel Solorzano Barruso [FS/10-2014]
  7. Asociacion Espanola Contra el Cancer (AECC)
  8. Miguel Servet I program (ISCIII)

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Bile acids, synthesized by hepatocytes from cholesterol, are specific and quantitatively important organic components of bile, where they are the main driving force of the osmotic process that generates bile flow toward the canaliculus. The bile acid pool comprises a variety of species of amphipathic acidic steroids. They are not mere detergent molecules that play a key role in fat digestion and the intestinal absorption of hydrophobic compounds present in the intestinal lumen after meals, including liposoluble vitamins. They are now known to be involved in the regulation of multiple functions in liver cells, mainly hepatocytes and cholangiocytes, and also in extrahepatic tissues. The identification of nuclear receptors, such as farnesoid X receptor (FXR or NR1H4), and plasma membrane receptors, such as the G protein-coupled bile acid receptor (TGR5, GPBAR1 or MBAR), which are able to trigger specific and complex responses upon activation (with dissimilar sensitivities) by different bile acid molecular species and synthetic agonists, has opened a new and promising field of research whose implications extend to physiology, pathology and pharmacology. In addition, pharmacological development has taken advantage of advances in the understanding of the chemistry and biology of bile acids and the biological systems that interact with them, which in addition to the receptors include several families of transporters and export pumps, to generate novel bile acid derivatives aimed at treating different liver diseases, such as cholestasis, biliary diseases, metabolic disorders and cancer. This review is an update of the role of bile acids in health and disease.

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