Interaction of native bile acids with human apical sodium-dependent bile acid transporter (hASBT): Influence of steroidal hydroxylation pattern and C-24 conjugation

被引:48
作者
Balakrishnan, Anand
Wring, Stephen A.
Polli, James E.
机构
[1] Univ Maryland, Sch Pharm, Dept Pharmaceut Sci, Baltimore, MD 21201 USA
[2] Trimeris Inc, Morrisville, NC 27560 USA
关键词
ASBT; bile acid; prodrug; QSAR; SLC10A2; transporter;
D O I
10.1007/s11095-006-0219-4
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose. The human apical sodium-dependent bile acid transporter (hASBT) is a potential target for drug delivery, but an understanding of hASBT substrate requirements is lacking. The objective of this study was to characterize hASBT interaction with its native substrates, bile acids, and to evaluate C-24 conjugation and steroidal hydroxylation on transport affinity and inhibition potency. Methods. Transport and inhibition kinetics of 15 bile acids were evaluated (cholate, chenodeoxycholate, deoxycholate, ursodeoxycholate, and lithocholate, including their glycine and taurine conjugates) with an hASBT-Madin-Darby canine kidney (MDCK) monolayer assay. Samples were analyzed via liquid chromatography-mass spectrometry (LC-MS) or chromatography-mass spectrometry-mass spectrometry (LC-MS-MS). Results. C-24 conjugation improved the inhibitory potency of all native bile acids. There was an inverse association between number of steroidal hydroxyl groups and inhibitory potency. Glycolithocholate and taurolithocholate were the most potent inhibitors. Results from transport studies followed trends from inhibition studies. Conjugated dihydroxy and monohydroxy bile acids exhibited the highest hASBT-mediated transport (i.e., lower K-t and higher J(max)). Across the 15 bile acids, K-t generally followed K-i. Additionally, J(max) correlated with K-i, where greater inhibition potency was associated with higher transport capacity. Conclusion. C-24 conjugation and steroidal hydroxylation pattern modulated native bile acid interaction with hASBT, with C-24 effect dominating steroidal hydroxylation effect. Results indicate that bile acid binding to hASBT may be the rate-limiting step in the apical transport of bile acids.
引用
收藏
页码:1451 / 1459
页数:9
相关论文
共 19 条
[1]   Relationship between structure and intestinal absorption of bile acids with a steroid or side-chain modification [J].
Aldini, R ;
Roda, A ;
Montagnani, M ;
Cerre, C ;
Pellicciari, R ;
Roda, E .
STEROIDS, 1996, 61 (10) :590-597
[2]   Development of stably transfected monolayer overexpressing the human apical sodium-dependent bile acid transporter (hASBT) [J].
Balakrishnan, A ;
Sussman, DJ ;
Polli, JE .
PHARMACEUTICAL RESEARCH, 2005, 22 (08) :1269-U13
[3]  
Balakrishnan A, 2005, AAPS J, V7, pR6224
[4]  
Baringhaus KH, 1999, J LIPID RES, V40, P2158
[5]   TRANSEPITHELIAL TRANSPORT OF CHOLYLTAURINE BY CACO-2 CELL MONOLAYERS IS SODIUM-DEPENDENT [J].
CHANDLER, CE ;
ZACCARO, LM ;
MOBERLY, JB .
AMERICAN JOURNAL OF PHYSIOLOGY, 1993, 264 (06) :G1118-G1125
[6]   Expression and transport properties of the human ileal and renal sodium-dependent bile acid transporter [J].
Craddock, AL ;
Love, MW ;
Daniel, RW ;
Kirby, LC ;
Walters, HC ;
Wong, MH ;
Dawson, PA .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 1998, 274 (01) :G157-G169
[7]   The sodium bile salt cotransport family SLC10 [J].
Hagenbuch, B ;
Dawson, P .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2004, 447 (05) :566-570
[8]   Use of the intestinal bile acid transporter for the uptake of cholic acid conjugates with HIV-1 protease inhibitory activity [J].
Kagedahl, M ;
Swaan, PW ;
Redemann, CT ;
Tang, M ;
Craik, CS ;
Szoka, FC ;
Oie, S .
PHARMACEUTICAL RESEARCH, 1997, 14 (02) :176-180
[9]  
Kramer W, 1999, J LIPID RES, V40, P1604
[10]   Enterohepatic bile salt transporters in normal physiology and liver disease [J].
Kullak-Ublick, GA ;
Stieger, B ;
Meier, PJ .
GASTROENTEROLOGY, 2004, 126 (01) :322-342