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首页> 外文期刊>Brain pathology >Distribution and prognostic impact of microglia/macrophage subpopulations in gliomas
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Distribution and prognostic impact of microglia/macrophage subpopulations in gliomas

机译:微胶质细胞/巨噬细胞群在胶质瘤中的分布和预后影响

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摘要

Abstract While the central nervous system is considered an immunoprivileged site and brain tumors display immunosuppressive features, both innate and adaptive immune responses affect glioblastoma (GBM) growth and treatment resistance. However, the impact of the major immune cell population in gliomas, represented by glioma‐associated microglia/macrophages (GAMs), on patients’ clinical course is still unclear. Thus, we aimed at assessing the immunohistochemical expression of selected microglia and macrophage markers in 344 gliomas (including gliomas from WHO grade I–IV). Furthermore, we analyzed a cohort of 241 IDH1R132H‐non‐mutant GBM patients for association of GAM subtypes and patient overall survival. Phenotypical properties of GAMs, isolated from high‐grade astrocytomas by CD11b‐based magnetic cell sorting, were analyzed by immunocytochemistry, mRNA microarray, qRT‐PCR and bioinformatic analyses. A higher amount of CD68‐, CD163‐ and CD206‐positive GAMs in the vital tumor core was associated with beneficial patient survival. The mRNA expression profile of GAMs displayed an upregulation of factors that are considered as pro‐inflammatory M1 (eg, CCL2, CCL3L3, CCL4, PTGS2 ) and anti‐inflammatory M2 polarization markers (eg, MRC1, LGMN, CD163, IL10, MSR1 ), the latter rather being associated with phagocytic functions in the GBM microenvironment. In summary, we present evidence that human GBMs contain mixed M1/M2‐like polarized GAMs and that the levels of different GAM subpopulations in the tumor core are positively associated with overall survival of patients with IDH1R132H‐non‐mutant GBMs.
机译:摘要虽然中枢神经系统被认为是免疫促射位点和脑肿瘤显示免疫抑制特征,但先天和适应性免疫应答均影响胶质母细胞瘤(GBM)生长和治疗抗性。然而,在患者的临床过程中,由胶质瘤相关的小胶质细胞/巨噬细胞(Gams)表示的胶质瘤中主要免疫细胞群的影响仍然不清楚。因此,我们旨在评估所选小胶质细胞和巨噬细胞标志物在344个胶质瘤中的免疫组织化学表达(包括来自世卫组级IV等级IV的胶质瘤)。此外,我们分析了241个IDH1R132H-非突变体GBM患者的群组,用于患有GAM亚型和患者的整体存活。通过CD11B基磁性电池分选,通过免疫细胞化学,MRNA微阵列,QRT-PCR和生物信息分析分析了来自高级星形织物分离的Gam的表型特性。在重要的肿瘤核心中的较高量的CD68-,CD163和CD206阳性Gam与有益患者存活有关。 Gam的mRNA表达分布显示了被认为是促炎M1(例如,CCL2,CCL3L3,CCL4,PTGS2)和抗炎M2偏振标记物(例如,MRC1,LGMN,CD163,IL10,MSR1)的因素的上调,后者尚不与GBM MicroEn环境中的吞噬功能相关。总之,我们提出了人们GBMS含有混合的M1 / M2样极化Gams的证据,并且肿瘤核心中的不同GAM亚群的水平与IDH1R132H-非突变GBMS的总体存活率正相关。

著录项

  • 来源
    《Brain pathology》 |2019年第4期|共17页
  • 作者单位

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Department of NeuropathologyCharité BerlinBerlin Germany;

    NORLUX Neuro‐Oncology Laboratory Department of OncologyLuxembourg Institute of Health (LIH;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Department of OncologyLuxembourg Institute of Health (LIH)Luxembourg;

    Department of OncologyLuxembourg Institute of Health (LIH)Luxembourg;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Institute of NeuroradiologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Institute of Pathology and NeuropathologyMedical University HannoverHannover Germany;

    Senckenberg Institute of PathologyGoethe University FrankfurtFrankfurt am Main Germany;

    Institute of Legal MedicineGoethe University FrankfurtFrankfurt am Main Germany;

    Dr. Senckenberg Institute of NeurooncologyGoethe University FrankfurtFrankfurt am Main Germany;

    Institute of Pathology and NeuropathologyMedical University HannoverHannover Germany;

    Dr. Senckenberg Institute of NeurooncologyGoethe University FrankfurtFrankfurt am Main Germany;

    Department of GynecologyUniversity of WuerzburgWuerzburg Germany;

    Department of NeuropathologyCharité BerlinBerlin Germany;

    NORLUX Neuro‐Oncology Laboratory Department of OncologyLuxembourg Institute of Health (LIH;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

    Edinger Institute Institute of NeurologyGoethe University FrankfurtFrankfurt am Main Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 病理学;
  • 关键词

    glioma; glioma‐associated microglia and macrophages; immune polarization; tumor microenvironment;

    机译:胶质瘤;相关的微胶质细胞和巨噬细胞;免疫极化;肿瘤微环境;

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