Bile acids affect liver mitochondrial bioenergetics: Possible relevance for cholestasis therapy

被引:129
作者
Rolo, AP [1 ]
Oliveira, PJ [1 ]
Moreno, AJM [1 ]
Palmeira, CM [1 ]
机构
[1] Univ Coimbra, Dept Zool, Ctr Neurosci & Cell Biol Coimbra, P-3004517 Coimbra, Portugal
关键词
mitochondria; bile acids; permeability transition pore; membrane potential; respiration;
D O I
10.1093/toxsci/57.1.177
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
It has been pointed out that intracellular accumulation of bile acids cause hepatocyte injury in cholestatic disease process. This study was aimed to test if cytotoxicity of these compounds is mediated through mitochondria dysfunction. Bile acids effects on isolated rat liver mitochondrial were analyzed by monitoring changes in membrane potential and mitochondrial respiration, as well as alterations in H+ membrane permeability and mitochondrial permeability transition pore induction. Increasing concentrations of the bile acids litocholic (LCA), deoxycholic (DCA), ursodeoxycholic (UDCA), chenodeoxycholic (CDCA), glycochenodeoxycholic (GCDC), or taurochenodeoxycholic (TCDC) decrease transmembrane potential (Delta Psi) developed upon succinate energization. These compounds also decreased state 3 respiration and enhanced state 4. We have also demonstrated that the observed concentration-dependent stimulation of state 4 by LCA, DCA, CDCA, TCDC, and GCDC, is associated with an enhanced permeability of mitochondria to H+. Addition of LCA, DCA, CDCA, TCDC, GCDC, and UDCA to mitochondria energized with succinate resulted in a dose-dependent membrane depolarization and stimulation of mitochondrial permeability transition. Tauroursodeoxycholate (TUDC) elicited no significant effect on succinate-supported mitochondrial bioenergetics. In contrast, in the presence of glycoursodeoxycholic (GUDC), Delta Psi increases as a function of bile salt concentration. The results of this investigation demonstrate that at toxicologically relevant concentrations, most but not all bile acids alter mitochondrial bioenergetics, so impairment of mitochondrial function can be clinically relevant for patients with cholestasis.
引用
收藏
页码:177 / 185
页数:9
相关论文
共 32 条
[1]  
ARMSTRONG MJ, 1982, J LIPID RES, V23, P70
[2]   BILE ACID-INDUCED LIVER TOXICITY - RELATION TO THE HYDROPHOBICHYDROPHILIC BALANCE OF BILE-ACIDS [J].
ATTILI, AF ;
ANGELICO, M ;
CANTAFORA, A ;
ALVARO, D ;
CAPOCACCIA, L .
MEDICAL HYPOTHESES, 1986, 19 (01) :57-69
[3]   RECENT PROGRESS ON REGULATION OF THE MITOCHONDRIAL PERMEABILITY TRANSITION PORE - A CYCLOSPORINE-SENSITIVE PORE IN THE INNER MITOCHONDRIAL-MEMBRANE [J].
BERNARDI, P ;
BROEKEMEIER, KM ;
PFEIFFER, DR .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1994, 26 (05) :509-517
[4]  
BERNARDI P, 1992, J BIOL CHEM, V267, P8834
[5]   Ursodeoxycholic acid in cholestasis: Potential mechanisms of action and therapeutic applications [J].
Beuers, U ;
Boyer, JL ;
Paumgartner, G .
HEPATOLOGY, 1998, 28 (06) :1449-1453
[6]  
BOTLA R, 1995, J PHARMACOL EXP THER, V272, P930
[7]  
BRAND MD, 1988, BIOCHEM J, V255, P535
[8]  
BROEKEMEIER KM, 1989, J BIOL CHEM, V264, P7826
[9]  
Estabrook R.W., 1967, METHODS ENZYMOL, V10, P41, DOI DOI 10.1016/0076-6879(67)10010-4
[10]  
Gazotti P., 1979, MEMBRANE BIOCH LAB M, P62