CX3CR1型
免疫学
生物
单核细胞
人口
巨噬细胞
细胞生物学
骨髓
炎症
败血症
医学
趋化因子
趋化因子受体
遗传学
环境卫生
体外
作者
Sherine Ensan,Angela Li,Rickvinder Besla,Norbert Degousée,Jake Cosme,Mark Roufaiel,Eric A. Shikatani,Mahmoud El-Maklizi,Jesse W. Williams,Lauren Robins,Cedric C Li,Bonnie J.B. Lewis,Tae Jin Yun,Jun Seong Lee,Peter Wieghofer,Ramzi Khattar,Kaveh Farrokhi,John Byrne,Maral Ouzounian,Caleb C. J. Zavitz
摘要
Resident macrophages densely populate the normal arterial wall, yet their origins and the mechanisms that sustain them are poorly understood. Here we use gene-expression profiling to show that arterial macrophages constitute a distinct population among macrophages. Using multiple fate-mapping approaches, we show that arterial macrophages arise embryonically from CX3CR1(+) precursors and postnatally from bone marrow-derived monocytes that colonize the tissue immediately after birth. In adulthood, proliferation (rather than monocyte recruitment) sustains arterial macrophages in the steady state and after severe depletion following sepsis. After infection, arterial macrophages return rapidly to functional homeostasis. Finally, survival of resident arterial macrophages depends on a CX3CR1-CX3CL1 axis within the vascular niche.
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