AI Article Synopsis

  • Human OATP1B1 is a protein highly present in liver cells that helps transport bile acids and drugs into the bloodstream.
  • In a study, various bile acids and salts were examined for their ability to be transported by OATP1B1, revealing that most were efficiently taken up except for chenodeoxycholate (CDC).
  • The research highlighted that sulfate esters of bile acids are transported more effectively by OATP1B1 compared to monovalent bile salts, with specific compounds showing varying degrees of transport efficiency.

Article Abstract

Human OATP1B1 is highly expressed at the basolateral membrane of the hepatocyte. It plays an important role in the sodium-independent transport of bile acids and bile salts and contributes to the systemic clearance of many drugs. In this study, the interaction of at least one representative of all major chemical classes of bile acids and bile salts, which include the bile acid chenodeoxycholate (CDC), monovalent (amidated) bile salts glycochenodeoxycholate (GCDC), taurochenodeoxycholate (TCDC) and taurocholate (TC), a sulfated bile acid 3-sulfo-chenodeoxycholate (3S-CDC) and a divalent (amidated and sulfated) bile salt 3-sulfo-glycolithocholate (3S-GLC) were tested with OATP1B1 overexpressed in HEK293 cells. All bile acid derivatives except for CDC showed an efficient transport by OATP1B1. 3S-GLC gave the lowest K (0.708 ± 0.125 μM) and 3S-CDC showed the highest V value (158 ± 87.3 pmol/mg protein/min). The ranking of Cl values (3S-GLC > 3S-CDC > TCDC > GCDC > TC) also showed a preference for sulfated derivatives. In summary, human OATP1B1 transports sulfate esters of bile acids and bile salts more efficiently than monovalent bile salts.

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Source
http://dx.doi.org/10.1016/j.tiv.2018.06.018DOI Listing

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