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Updated: Oct 16, 2025

Bile Duct Ligation in Mice: Induction of Inflammatory Liver Injury and Fibrosis by Obstructive Cholestasis
Published on: February 10, 2015
Interrupting tumor necrosis factor-alpha signaling prevents parenteral nutrition-associated cholestasis in mice
Karim C El Kasmi1,2, Aimee L Anderson1,2, Michael W Devereaux1,2
1Digestive Health Institute, Children's Hospital Colorado, Aurora, Colorado, USA.
Background:
We have recently reported a mouse model of PN-associated cholestasis (PNAC) in which combining intestinal inflammation and PN infusion results in cholestasis, hepatic macrophage activation, and transcriptional suppression of canalicular bile acid, bilirubin and sterol transporters Abcb11, Abcc2 and Abcg5/8. The aim of this study was to examine the role of TNFα in promoting PNAC in mice.
Methods:
First, recombinant TNFα was administered to mice as well as in hepatocyte cell culture. Second, Tnfr1/2KO or wild-type (WT) mice were exposed to dextran sulfate sodium (DSS) for 4 days followed by soy-oil lipid emulsion-based PN infusion through a central venous catheter for 14 days (DSS-PN). Finally, WT/DSS-PN mice were also infused with infliximab at 10 mg/kg on days 3 and 10 of PN. PNAC was defined by increased serum aspartate aminotransferase, alanine aminotransferase, total bile acids, and bilirubin.
Results:
Intraperitoneal injection of TNFα into WT mice or TNFα treatment of Huh7 hepatocarcinoma cells and primary mouse hepatocytes suppressed messenger RNA (mRNA) transcription of bile (Abcb11, Abcc2]) and sterol transporters (Abcg5/8) and their regulators Nr1h3 and Nr1h4. DSS-PN mice with PNAC had increased hepatic TNFα mRNA expression and significant reduction of mRNA expression of Abcb11, Abcc2, Abcg5/8, Nr1h3, and Nr1h4. In contrast, PNAC development was prevented and mRNA expression normalized in both Tnfr1/2KO /DSS-PN mice and DSS-PN mice treated with infliximab.
Conclusions:
TNFα is a key mediator in the pathogenesis of PNAC through suppression of hepatocyte Abcb11, Abcc2, and Abcg5/8. Pharmacologic targeting of TNFα as a therapeutic strategy for PNAC thus deserves further investigation.
Insights
Tumor necrosis factor-alpha (TNFα) drives parenteral nutrition-associated cholestasis (PNAC) by suppressing bile and sterol transporters. Targeting TNFα may offer a therapeutic strategy for PNAC.
Area of Science:
- Hepatology
- Gastroenterology
- Immunology
Background:
- Parenteral nutrition-associated cholestasis (PNAC) involves intestinal inflammation and PN infusion, leading to cholestasis and suppressed transporter expression.
- Key transporters affected include those for bile acids (Abcb11) and bilirubin (Abcc2).
Purpose of the Study:
- To investigate the role of tumor necrosis factor-alpha (TNFα) in the development of PNAC in a mouse model.
- To explore TNFα as a potential therapeutic target for PNAC.
Main Methods:
- Administered recombinant TNFα to wild-type (WT) mice and hepatocytes.
- Utilized TNF receptor knockout (Tnfr1/2KO) mice and WT mice exposed to dextran sulfate sodium (DSS) followed by PN.
- Administered infliximab, a TNFα inhibitor, to DSS-PN mice.
Main Results:
- TNFα suppressed the mRNA transcription of bile and sterol transporters (Abcb11, Abcc2, Abcg5/8) and their regulators.
- PNAC mice exhibited increased hepatic TNFα mRNA and reduced transporter mRNA expression.
- Inhibition of TNFα signaling (using Tnfr1/2KO mice or infliximab) prevented PNAC development and normalized transporter expression.
Conclusions:
- TNFα is a critical mediator in PNAC pathogenesis by suppressing essential hepatocyte transporters.
- Targeting TNFα pharmacologically presents a promising therapeutic avenue for PNAC.

