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CECR1-mediated cross talk between macrophages and vascular mural cells promotes neovascularization in malignant glioma

机译:CECR1介导的巨噬细胞和血管壁细胞之间的串扰促进恶性神经胶质瘤的新血管形成

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摘要

Glioblastomas (glioblastoma multiforme, GBM) are most malignant brain tumors characterized by profound vascularization. The activation of macrophages strongly contributes to tumor angiogenesis during GBM development. Previously, we showed that extracellular adenosine deaminase protein Cat Eye Syndrome Critical Region Protein 1 (CECR1) is highly expressed by M2-like macrophages in GBM where it defines macrophage M2 polarization and contributes to tumor expansion. In this study, the effect of CECR1 in macrophages on tumor angiogenesis was investigated. Immunohistochemical evaluation of GBM tissue samples showed that the expression of CECR1 correlates with microvascular density in the tumors, confirming data from the TCGA set. In a three-dimensional co-culture system consisting of human pericytes, human umbilical vein endothelial cells and THP1-derived macrophages, CECR1 knockdown by siRNA and CECR1 stimulation of macrophages inhibited and promoted new vessel formation, respectively. Loss and gain of function studies demonstrated that PDGFB mRNA and protein levels in macrophages are modulated by CECR1. The proangiogenic properties of CECR1 in macrophages were partially mediated via paracrine activation of pericytes by PDGFB–PDGFRβ signaling. CECR1–PDGFB–PDGFRβ cross-activation between macrophages and pericytes promoted pericyte migration, shown by transwell migration assay, and enhanced expression and deposition of periostin, a matrix component with proangiogenic properties. CECR1 function in (M2-like) macrophages mediates cross talk between macrophages and pericytes in GBM via paracrine PDGFB–PDGFRβ signaling, promoting pericyte recruitment and migration, and tumor angiogenesis. Therefore, CECR1 offers a new portent target for anti-angiogenic therapy in GBM via immune modulation.
机译:胶质母细胞瘤(多形性胶质母细胞瘤,GBM)是大多数恶性脑肿瘤,其特征是深层的血管形成。巨噬细胞的活化在GBM发展过程中强烈促进肿瘤血管生成。以前,我们表明细胞外腺苷脱氨酶蛋白猫眼综合征关键区域蛋白1(CECR1)在GBM中由M2样巨噬细胞高度表达,在那里它定义了巨噬细胞M2极化并有助于肿瘤扩大。在这项研究中,研究了巨噬细胞中CECR1对肿瘤血管生成的影响。 GBM组织样品的免疫组织化学评估显示,CECR1的表达与肿瘤中的微血管密度相关,从而证实了来自TCGA的数据。在由人周细胞,人脐静脉内皮细胞和THP1衍生的巨噬细胞组成的三维共培养系统中,siRNA对CECR1的抑制和对巨噬细胞的CECR1刺激分别抑制和促进了新血管的形成。功能丧失和获得的研究表明巨噬细胞中PDGFB mRNA和蛋白水平受CECR1调节。 CECR1在巨噬细胞中的促血管生成特性部分通过PDGFB–PDGFRβ信号传导的周细胞旁分泌激活而介导。跨孔迁移分析表明,CECR1-PDGFB-PDGFRβ在巨噬细胞和周细胞之间的交叉激活促进了周细胞迁移,并增强了骨膜素(具有促血管生成特性的基质成分)的表达和沉积。 CECR1在(M2类)巨噬细胞中的功能通过旁分泌PDGFB–PDGFRβ信号介导GBM中巨噬细胞与周细胞之间的串扰,促进周细胞募集和迁移以及肿瘤血管生成。因此,CECR1通过免疫调节为GBM中的抗血管生成治疗提供了新的重要靶标。

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