BACKGROUND: Chronic ethanol overconsumption promotes alcohol-associated liver disease (ALD), characterized by hepatocyte injury, inflammation, hepatic stellate cell (HSC) activation, and fibrosis. Hyaluronan (HA) concentration is greater in livers and blood from advanced ALD patients than patients with advanced non-ALD. In the liver, HSCs are the major HA producers. The relationship between ethanol, HA, and HSC activation is incompletely understood. Thus, here, we tested the hypothesis that ethanol enhances HSC activation in a HA-dependent manner. METHODS: Liver tissue microarrays (TMAs) containing steatotic livers from donors with or without a history of alcohol consumption were used to measure HA and collagen content. Mice were fed a moderate (2%, v/v) ethanol-containing diet or pair-fed control diet for 2âdays, after which they were given a single carbon tetrachloride (CCl(4) ) injection. To inhibit HA synthesis, we provided 4-methylumbelliferone (4MU) daily. We used LX2 cells, a human HSC cell line, to determine the impact ethanol had on LPS responses, with or without concurrent 4MU exposure. RESULTS: CCl(4) induced liver injury, but it did not differ between ethanol or control diet fed mice with or without 4MU treatment. Ethanol feeding enhanced CCl(4) -induced hepatic HA content, which was paralleled by HA synthase (Has)2 transcript abundance; 4MU treatment normalized both. Consistently, HSC activation, assessed by measuring αSMA mRNA and protein, was induced by CCl(4) exposure, enhanced by ethanol feeding, and normalized by 4MU. Hepatic transcripts, but not protein, for Ccl2 were enhanced by ethanol feeding and normalized by 4MU exposure. Finally, ethanol-exposed LX2 cells made more LPS-stimulated CCL2 mRNA and protein than cells not exposed to ethanol; 4MU prevented this. CONCLUSION: These data show that ethanol augments HSC activation through HA synthesis and enhances hepatic profibrogenic features. Therefore, targeting HSC HA production could potentially attenuate liver disease in ALD patients.
Hyaluronan synthesis inhibition normalizes ethanol-enhanced hepatic stellate cell activation.
抑制透明质酸合成可使乙醇增强的肝星状细胞活化恢复正常
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作者:Kotulkar Manasi, Robarts Dakota R, Lin-Rahardja Kristi, McQuillan Tara, Surgnier Jordan, Tague Sarah E, Czerwinski Maciej, Dennis Katie L, Pritchard Michele T
| 期刊: | ALCOHOL-CLINICAL AND EXPERIMENTAL RESEARCH | 影响因子: | 3.000 |
| 时间: | 2023 | 起止号: | 2023 Aug;47(8):1544-1559 |
| doi: | 10.1111/acer.15127 | 研究方向: | 细胞生物学 |
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