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- W4289109250 abstract "Abstract Mast cells (MCs), central players in allergy and parasitic infections, play key roles in inflammation and fibrosis. Here, the impact of MCs on the progression of Coxsackievirus B3 (CVB3)‐induced viral myocarditis (VMC) and fibrosis was investigated using MC‐deficient Kit W‐sh mice. Viral titres, cellular infiltrates and heart pathologies were evaluated and compared with wild‐type (WT) mice during acute CVB3 infection of C57BL/6 mice. CVB3 infection induced an increased accumulation and degranulation of MCs in the hearts of mice during acute infection. MC‐deficient Kit W‐sh mice had slightly higher viral titres, decreased VMC and cardiac fibrosis and improved cardiac dysfunction compared to WT mice via decreasing cardiac influx of Ly6C high monocytes/macrophages (Mo/M φ ). While bone marrow‐derived MC reconstitution decreased viral titre and worsened improved survival and VMC severity in Wsh mice. MC‐fibroblasts co‐culture revealed a cardiac MC‐fibroblasts crosstalk during early infection: fibroblasts trigger MC degranulation and secretion of CCL2 and tumour necrosis factor alpha (TNF‐α) via producing early stem cell factor (SCF); while MCs‐fibrogenic mediators (TNF‐α) stimulate fibroblasts to increase CCL2, α‐smooth muscle actin (SMA), collagen and transforming growth factor beta(TGFβ) expression, thus aggravating cardiac fibrosis. MCs and fibroblast‐derived CCL2s are both essential for cardiac Ly6C high Mo/M φ influx. Administration of recombinant mouse SCF to CVB3‐infected mice aggravates VMC via accelerating MCs accumulation and cardiac influx of Ly6C hi Mo/M φ . Collectively, our data highlight an early MC‐fibroblast crosstalk and SCF/MC/CCL2/Mo/M φ axis as important mechanisms required for triggering VMC and myocardial fibrosis. This finding indicates critical roles of MCs in initiating and modulating cardiac innate response to CVB3 and has an implication in developing new and more effective treatments for VMC." @default.
- W4289109250 created "2022-08-01" @default.
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- W4289109250 date "2022-08-23" @default.
- W4289109250 modified "2023-10-16" @default.
- W4289109250 title "Stem cell factor/mast cell/<scp>CCL2</scp>/monocyte/macrophage axis promotes Coxsackievirus B3 myocarditis and cardiac fibrosis by increasing <scp>Ly6C<sup>high</sup></scp> monocyte influx and fibrogenic mediators production" @default.
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- W4289109250 doi "https://doi.org/10.1111/imm.13556" @default.
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