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Publication : Kupffer cell-like syncytia replenish resident macrophage function in the fibrotic liver.

First Author  Peiseler M Year  2023
Journal  Science Volume  381
Issue  6662 Pages  eabq5202
PubMed ID  37676943 Mgi Jnum  J:358242
Mgi Id  MGI:7779703 Doi  10.1126/science.abq5202
Citation  Peiseler M, et al. (2023) Kupffer cell-like syncytia replenish resident macrophage function in the fibrotic liver. Science 381(6662):eabq5202
abstractText  Kupffer cells (KCs) are localized in liver sinusoids but extend pseudopods to parenchymal cells to maintain their identity and serve as the body's central bacterial filter. Liver cirrhosis drastically alters vascular architecture, but how KCs adapt is unclear. We used a mouse model of liver fibrosis and human tissue to examine immune adaptation. Fibrosis forced KCs to lose contact with parenchymal cells, down-regulating "KC identity," which rendered them incapable of clearing bacteria. Commensals stimulated the recruitment of monocytes through CD44 to a spatially distinct vascular compartment. There, recruited monocytes formed large aggregates of multinucleated cells (syncytia) that expressed phenotypical KC markers and displayed enhanced bacterial capture ability. Syncytia formed via CD36 and were observed in human cirrhosis as a possible antimicrobial defense that evolved with fibrosis.
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