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Bile acids initiate cholestatic liver injury by triggering a hepatocyte-specific inflammatory response
Shi-Ying Cai, Xinshou Ouyang, Yonglin Chen, Carol J. Soroka, Juxian Wang, Albert Mennone, Yucheng Wang, Wajahat Z. Mehal, Dhanpat Jain, James L. Boyer
Shi-Ying Cai, Xinshou Ouyang, Yonglin Chen, Carol J. Soroka, Juxian Wang, Albert Mennone, Yucheng Wang, Wajahat Z. Mehal, Dhanpat Jain, James L. Boyer
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Research Article Hepatology Inflammation

Bile acids initiate cholestatic liver injury by triggering a hepatocyte-specific inflammatory response

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Abstract

Mechanisms of bile acid–induced (BA-induced) liver injury in cholestasis are controversial, limiting development of new therapies. We examined how BAs initiate liver injury using isolated liver cells from humans and mice and in-vivo mouse models. At pathophysiologic concentrations, BAs induced proinflammatory cytokine expression in mouse and human hepatocytes, but not in nonparenchymal cells or cholangiocytes. These hepatocyte-specific cytokines stimulated neutrophil chemotaxis. Inflammatory injury was mitigated in Ccl2–/– mice treated with BA or after bile duct ligation, where less hepatic infiltration of neutrophils was detected. Neutrophils in periportal areas of livers from cholestatic patients also correlated with elevations in their serum aminotransferases. This liver-specific inflammatory response required BA entry into hepatocytes via basolateral transporter Ntcp. Pathophysiologic levels of BAs induced markers of ER stress and mitochondrial damage in mouse hepatocytes. Chemokine induction by BAs was reduced in hepatocytes from Tlr9–/– mice, while liver injury was diminished both in conventional and hepatocyte-specific Tlr9–/– mice, confirming a role for Tlr9 in BA-induced liver injury. These findings reveal potentially novel mechanisms whereby BAs elicit a hepatocyte-specific cytokine-induced inflammatory liver injury that involves innate immunity and point to likely novel pathways for treating cholestatic liver disease.

Authors

Shi-Ying Cai, Xinshou Ouyang, Yonglin Chen, Carol J. Soroka, Juxian Wang, Albert Mennone, Yucheng Wang, Wajahat Z. Mehal, Dhanpat Jain, James L. Boyer

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Figure 6

Tlr9 is involved in bile acid induction of Cxcl2 in vitro in mouse hepatocytes and in vivo in BDL mouse liver.

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Tlr9 is involved in bile acid induction of Cxcl2 in vitro in mouse hepat...
(A) Taurocholic acid (TCA, 100 μM) stimulation of Cxcl2 mRNA expression was significantly decreased in hepatocytes from Tlr9 knockout (KO) and MyD88/Trif double-knockout (DKO) mice when compared with hepatocytes from WT mice. Cells were treated for 24 hours, and results are the mean ± SD, *P < 0.05 vs. WT TCA treatment, n ≥ 4. (B) Transfected (Tftd) Tlr9 agonists (ODN-A and ODN-B, 1 μg/ml) showed synergistic effects with TCA (100 μM) in stimulation of Cxcl2 mRNA expression in mouse hepatocytes. Sixteen hours after transfection, cells were treated with TCA for 6 hours (mean ± SD, n ≥ 3). The control cells were treated with transfection medium, and their Cxcl2 expression was set to 1. (C) Ccl2 and Cxcl2 liver mRNA expression was significantly lower in Tlr9 whole-body KO mice than in WT mice after 7 days of bile duct ligation (BDL). Results are the mean ± SD, *P < 0.05, n = 6–7. (D) Alanine aminotransferase (ALT) serum levels were significantly reduced in hepatocyte-specific Tlr9 KO (Tlr9fl/fl-Alb-Cre+) mice 24 hours, but not 6 hours, after BDL. P values determined by 2-tailed Student’s t test.

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