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两种在生理、功能和发育上明显不同的腹腔巨噬细胞亚群。

Two physically, functionally, and developmentally distinct peritoneal macrophage subsets.

机构信息

Department of Genetics, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 9;107(6):2568-73. doi: 10.1073/pnas.0915000107. Epub 2010 Jan 25.

Abstract

The peritoneal cavity (PerC) is a unique compartment within which a variety of immune cells reside, and from which macrophages (MØ) are commonly drawn for functional studies. Here we define two MØ subsets that coexist in PerC in adult mice. One, provisionally called the large peritoneal MØ (LPM), contains approximately 90% of the PerC MØ in unstimulated animals but disappears rapidly from PerC following lipopolysaccharide (LPS) or thioglycolate stimulation. These cells express high levels of the canonical MØ surface markers, CD11b and F4/80. The second subset, referred to as small peritoneal MØ (SPM), expresses substantially lower levels of CD11b and F4/80 but expresses high levels of MHC-II, which is not expressed on LPM. SPM, which predominates in PerC after LPS or thioglycolate stimulation, does not derive from LPM. Instead, it derives from blood monocytes that rapidly enter the PerC after stimulation and differentiate to mature SPM within 2 to 4 d. Both subsets show clear phagocytic activity and both produce nitric oxide (NO) in response to LPS stimulation in vivo. However, their responses to LPS show key differences: in vitro, LPS stimulates LPM, but not SPM, to produce NO; in vivo, LPS stimulates both subsets to produce NO, albeit with different response patterns. These findings extend current models of MØ heterogeneity and shed new light on PerC MØ diversity, development, and function. Thus, they introduce a new context for interpreting (and reinterpreting) data from ex vivo studies with PerC MØ.

摘要

腹腔(PerC)是一个独特的隔室,其中存在各种免疫细胞,通常从巨噬细胞(MØ)中提取用于功能研究。在这里,我们定义了两种在成年小鼠 PerC 中共存的 MØ 亚群。一种,暂时称为大腹腔巨噬细胞(LPM),在未刺激的动物中约占 PerC MØ 的 90%,但在 LPS 或硫代乙醇酸盐刺激后迅速从 PerC 中消失。这些细胞表达高水平的经典 MØ 表面标志物,CD11b 和 F4/80。第二个亚群,称为小腹腔巨噬细胞(SPM),表达的 CD11b 和 F4/80 水平要低得多,但表达高水平的 MHC-II,而 LPM 不表达。SPM 在 LPS 或硫代乙醇酸盐刺激后在 PerC 中占主导地位,它不是来自 LPM。相反,它来自刺激后迅速进入 PerC 的血液单核细胞,并在 2 至 4 天内分化为成熟的 SPM。这两个亚群都显示出明显的吞噬活性,并且在体内对 LPS 刺激都产生一氧化氮(NO)。然而,它们对 LPS 的反应存在关键差异:在体外,LPS 刺激 LPM,但不刺激 SPM 产生 NO;在体内,LPS 刺激这两个亚群产生 NO,尽管反应模式不同。这些发现扩展了 MØ 异质性的现有模型,并为 PerC MØ 的多样性、发育和功能提供了新的认识。因此,它们为解释(和重新解释)来自 PerC MØ 的离体研究数据提供了一个新的背景。

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