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Updated: Jun 2, 2025

Long Term Intravital Multiphoton Microscopy Imaging of Immune Cells in Healthy and Diseased Liver Using CXCR6.Gfp Reporter Mice
Published on: March 24, 2015
Bacterial components-driven intrahepatic CXCR5hi B cells are important population for MASH progression through
Nam-Hee Kim1, Mi-Yeon Kim1, Yoon Mee Yang1,2
1Department of Pharmacy, College of Pharmacy, Kangwon National University, Chuncheon, South Korea.
Abstract:
Metabolic dysfunction-associated steatohepatitis (MASH) is characterized by severe liver inflammation and fibrosis due to an imbalanced immune response caused by enhanced bacterial components. The progression of MASH is closely linked to increased permeability of intestinal mucosal barrier facilitating enter of bacterial components into hepatic portal venous system. B cells are important immune cells for adaptive responses and enhance hepatic inflammation through cytokine production and T cell activation. B cells are influenced by gut microbiota, but the specific B cell populations in MASH and their pathologic mechanism remain obscure. Here, we found that the numbers of B cells highly expressing CXCR5, the receptor of CXCL13 chemokine, were increased in the livers of MASH. CXCR5 high B cells are non-proliferating naive B cells with inflammatory features mainly residing in hepatic parenchyma to affect liver pathology. Importantly, we revealed that CXCR5 high B cells were induced by bacterial components stimulating TLRs. These bacterial stimulator-induced CXCR5hi B cells highly express TNFα, CD80, and MHC class II, leading to T cell activation. Consistently, we confirmed that intravenous injection of CXCR5 high B cells enhanced hepatic inflammation in MASH model. Ultimately, this study elucidates the role and mechanisms of CXCR5 high B cells in advancing MASH progression.
Insights
Bacterial components drive metabolic dysfunction-associated steatohepatitis (MASH) by activating specific B cells. These CXCR5 high B cells promote liver inflammation and fibrosis, revealing a novel therapeutic target for MASH progression.
Area of Science:
- Hepatology
- Immunology
- Microbiology
Background:
- Metabolic dysfunction-associated steatohepatitis (MASH) involves liver inflammation and fibrosis.
- Increased intestinal permeability allows bacterial components to enter the liver, exacerbating MASH.
- The precise role of B cells in MASH pathogenesis is not fully understood.
Purpose of the Study:
- To investigate the specific B cell populations involved in MASH.
- To elucidate the mechanisms by which B cells contribute to MASH progression.
- To identify potential therapeutic targets for MASH.
Main Methods:
- Analysis of B cell populations in MASH liver tissues.
- Investigation of B cell activation by bacterial components via TLRs.
- Functional assessment of CXCR5 high B cells in MASH models.
Main Results:
- Increased numbers of CXCR5 high B cells were observed in MASH livers.
- These B cells are non-proliferating, express inflammatory markers (TNFα, CD80, MHC class II), and are induced by bacterial TLR stimulation.
- Intravenous transfer of CXCR5 high B cells exacerbated hepatic inflammation in a MASH model.
Conclusions:
- CXCR5 high B cells play a significant role in advancing MASH.
- Bacterial components induce these pro-inflammatory B cells via TLRs.
- Targeting CXCR5 high B cells may offer a novel therapeutic strategy for MASH.
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