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通过 Sema3A/Nrp1 信号阻断来阻碍巨噬细胞进入低氧肿瘤区域可抑制血管生成并恢复抗肿瘤免疫。

Impeding macrophage entry into hypoxic tumor areas by Sema3A/Nrp1 signaling blockade inhibits angiogenesis and restores antitumor immunity.

机构信息

Laboratory of Molecular Oncology and Angiogenesis, Vesalius Research Center, VIB, 3000 Leuven, Belgium; Laboratory of Molecular Oncology and Angiogenesis, Department of Oncology, Vesalius Research Center, KU Leuven, 3000 Leuven, Belgium.

Laboratory of Myeloid Cell Immunology, VIB, 1050 Brussels, Belgium; Laboratory of Cellular and Molecular Immunology, Department of Molecular and Cellular Interactions, Vrije Universiteit Brussel, 1050 Brussels, Belgium.

出版信息

Cancer Cell. 2013 Dec 9;24(6):695-709. doi: 10.1016/j.ccr.2013.11.007.

Abstract

Recruitment of tumor-associated macrophages (TAMs) into avascular areas sustains tumor progression; however, the underlying guidance mechanisms are unknown. Here, we report that hypoxia-induced Semaphorin 3A (Sema3A) acts as an attractant for TAMs by triggering vascular endothelial growth factor receptor 1 phosphorylation through the associated holoreceptor, composed of Neuropilin-1 (Nrp1) and PlexinA1/PlexinA4. Importantly, whereas Nrp1 levels are downregulated in the hypoxic environment, Sema3A continues to regulate TAMs in an Nrp1-independent manner by eliciting PlexinA1/PlexinA4-mediated stop signals, which retain them inside the hypoxic niche. Consistently, gene deletion of Nrp1 in macrophages favors TAMs' entrapment in normoxic tumor regions, which abates their pro-angiogenic and immunosuppressive functions, hence inhibiting tumor growth and metastasis. This study shows that TAMs' heterogeneity depends on their localization, which is tightly controlled by Sema3A/Nrp1 signaling.

摘要

招募肿瘤相关巨噬细胞(TAMs)进入无血管区域可维持肿瘤的进展;然而,其潜在的指导机制尚不清楚。在这里,我们报告缺氧诱导的 Sema3A(Semaphorin 3A)通过触发血管内皮生长因子受体 1(VEGFR1)磷酸化,作为 TAMs 的趋化因子,其相关的全受体由 Neuropilin-1(Nrp1)和 PlexinA1/PlexinA4 组成。重要的是,虽然 Nrp1 水平在缺氧环境中下调,但 Sema3A 继续以 Nrp1 非依赖性方式通过引发 PlexinA1/PlexinA4 介导的停止信号来调节 TAMs,从而将它们保留在缺氧生态位内。一致地,巨噬细胞中 Nrp1 的基因缺失有利于 TAMs 被困在正常氧肿瘤区域,从而减弱它们的促血管生成和免疫抑制功能,从而抑制肿瘤生长和转移。这项研究表明,TAMs 的异质性取决于它们的定位,这是由 Sema3A/Nrp1 信号严格控制的。

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