肉芽肿
生物
内脏利什曼病
巨噬细胞
单核细胞
免疫学
四氯化碳
趋化因子
CCR2型
免疫
单核吞噬细胞系统
病理
利什曼病
利什曼原虫
炎症
寄生虫寄主
免疫系统
医学
趋化因子受体
体外
万维网
生物化学
计算机科学
作者
Gabriela Pessenda,Tiago Rodrigues Ferreira,Andrea Paun,Juraj Kabát,Eduardo P. Amaral,Olena Kamenyeva,Pedro Henrique Gazzinelli-Guimarães,Shehan Perera,Sundar Ganesan,Sang Hun Lee,David L. Sacks
标识
DOI:10.1038/s41467-025-58360-x
摘要
Abstract In murine models of visceral leishmaniasis (VL), the parasitization of resident Kupffer cells (resKCs) drives early Leishmania infantum growth in the liver, leading to granuloma formation and subsequent parasite control. Using the chronic VL model, we demonstrate that polyclonal resKCs redistributed to form granulomas outside the sinusoids, creating an open sinusoidal niche that was gradually repopulated by monocyte-derived KCs (moKCs) acquiring a tissue specific, homeostatic profile. Early-stage granulomas predominantly consisted of CLEC4F + KCs. In contrast, late-stage granulomas led to remodeling of the sinusoidal network and contained monocyte-derived macrophages (momacs) along with KCs that downregulated CLEC4F, with both populations expressing iNOS and pro-inflammatory chemokines. During late-stage infection, parasites were largely confined to CLEC4F - KCs. Reduced monocyte recruitment and increased resKCs proliferation in infected Ccr2 −/− mice impaired parasite control. These findings show that the ontogenic heterogeneity of granuloma macrophages is closely linked to granuloma maturation and the development of hepatic immunity in VL.
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