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首页> 外文期刊>Brain pathology >Maturation and localization of macrophages and microglia during infection with a neurotropic murine coronavirus.
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Maturation and localization of macrophages and microglia during infection with a neurotropic murine coronavirus.

机译:嗜神经性鼠冠状病毒感染过程中巨噬细胞和小胶质细胞的成熟和定位。

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摘要

Macrophages and microglia are critical in the acute inflammatory response and act as final effector cells of demyelination during chronic infection with the neutrotropic MHV-JHM strain of mouse hepatitis virus (MHV-JHM). Herein, we show that "immature" F4/80(+)Ly-6C(hi) monocytes are the first cells, along with neutrophils, to enter the MHV-JHM-infected central nervous system (CNS). As the infection progresses, macrophages in the CNS down-regulate expression of Ly-6C and CD62L, consistent with maturation, and a higher frequency express CD11c, a marker for dendritic cells (DCs). Microglia also express CD11c during this phase of the infection. CD11c(+) macrophages in the infected CNS exhibit variable properties of immature antigen-presenting cells (APCs), with modestly increased CD40 and MHC expression, and equivalent potent antigen uptake when compared with CD11c(-) macrophages. Furthermore, CDllc(+) and F4/80(+) macrophages and microglia are localized to areas of demyelination, in some instances directly associated with damaged axons. These results suggest that chronic CNS infection results in the appearance of CD11c-expressing macrophages from the blood that exhibit properties of immature APCs, are closely associated with areas of demyelination, and may act as final effectors of myelin destruction.
机译:巨噬细胞和小胶质细胞在急性炎症反应中至关重要,并在小鼠肝炎病毒的嗜中性MHV-JHM株(MHV-JHM)慢性感染期间充当脱髓鞘的最终效应细胞。本文中,我们显示“未成熟”的F4 / 80(+)Ly-6C(hi)单核细胞是第一个与嗜中性粒细胞一起进入MHV-JHM感染的中枢神经系统(CNS)的细胞。随着感染的进展,中枢神经系统中的巨噬细胞会下调Ly-6C和CD62L的表达(与成熟一致),并以较高的频率表达CD11c(树突状细胞(DCs)的标志物)。小胶质细胞在感染的这一阶段也表达CD11c。与CD11c(-)巨噬细胞相比,受感染的CNS中的CD11c(+)巨噬细胞表现出不成熟的抗原呈递细胞(APC)的可变特性,其CD40和MHC表达适度增加,并且抗原吸收等效。此外,CDllc(+)和F4 / 80(+)巨噬细胞和小胶质细胞位于脱髓鞘区域,在某些情况下与受损的轴突直接相关。这些结果表明,慢性中枢神经系统感染会导致血液中表达CD11c的巨噬细胞出现,这些巨噬细胞显示出未成熟APC的特性,与脱髓鞘区域密切相关,并且可能充当髓磷脂破坏的最终效应器。

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