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M2 巨噬细胞与神经胶质瘤干细胞的串扰。

Crosstalk between M2 macrophages and glioma stem cells.

机构信息

Department of Biomedical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ, 08854, USA.

Department of Biomedical Engineering, University of Wisconsin, Madison, WI, 53706, USA.

出版信息

Cell Oncol (Dordr). 2017 Oct;40(5):471-482. doi: 10.1007/s13402-017-0337-5. Epub 2017 Jun 22.

Abstract

PURPOSE

Given its extremely poor prognosis, there is a pressing need for an improved understanding of the biology of glioblastoma multiforme (GBM), including the roles of tumor subpopulations that may contribute to their growth rate and therapy resistance. The most malignant phenotypes of GBM have been ascribed to the presence of subpopulations of cancer stem cells (CSCs), which are resistant to chemotherapeutic drugs and ionizing radiation and which promote invasiveness and metastasis. The mechanisms by which the CSC state is obtained and by which it promotes tumor maintenance are only beginning to emerge. We hypothesize that M2 polarized macrophages may affect CSC phenotypes via cell-cell communication.

METHODS

We investigated the interplay between glioma CSCs and macrophages via co-culture. The invasiveness of CSCs in the absence and presence of macrophages was assessed using collagen degradation and Transwell migration assays. The role of STAT3 as a CSC phenotypic mediator was assessed using siRNA-mediated gene silencing.

RESULTS

We found that the levels of a M2 macrophage-specific secreted cytokine, TGF-β1, were elevated in the presence of CSCs, regardless of whether the cells were plated as contacting or non-contacting co-cultures. In addition, we found that the co-culture resulted in enhanced expression of M2 markers in macrophages that were previously polarized to the M1 phenotype. siRNA-mediated STAT3 silencing was found to reduce the chemo-responsiveness and migratory abilities of the CSCs. Combination treatment of STAT3 siRNA and DNA alkylating agents was found to further abrogate CSC functions.

CONCLUSIONS

Our data indicate that the co-culture of CSCs and macrophages results in bi-directional signaling that alters the phenotypes of both cell types. These results provide an explanation for recently observed effects of macrophages on GBM tumor cell growth, motility and therapeutic resistance, and suggest potential therapeutic strategies to disrupt the CSC phenotype by impairing its communication with macrophages.

摘要

目的

由于胶质母细胞瘤(GBM)的预后极差,因此迫切需要深入了解其生物学特性,包括可能影响其生长速度和耐药性的肿瘤亚群的作用。GBM 中最恶性的表型归因于癌症干细胞(CSC)亚群的存在,这些亚群对化疗药物和电离辐射具有抗性,并且促进了侵袭和转移。获得 CSC 状态及其促进肿瘤维持的机制才刚刚开始显现。我们假设 M2 极化的巨噬细胞可能通过细胞间通讯影响 CSC 表型。

方法

我们通过共培养研究了神经胶质瘤 CSCs 和巨噬细胞之间的相互作用。使用胶原降解和 Transwell 迁移实验评估 CSCs 在无巨噬细胞和有巨噬细胞存在的情况下的侵袭性。使用 siRNA 介导的基因沉默评估 STAT3 作为 CSC 表型介导因子的作用。

结果

我们发现,无论细胞是否作为接触或非接触共培养物培养,CSCs 存在时,M2 巨噬细胞特异性分泌的细胞因子 TGF-β1 的水平都会升高。此外,我们发现共培养导致先前极化到 M1 表型的巨噬细胞中 M2 标志物的表达增强。发现 siRNA 介导的 STAT3 沉默可降低 CSCs 的化学敏感性和迁移能力。发现 STAT3 siRNA 与 DNA 烷化剂联合治疗可进一步消除 CSC 功能。

结论

我们的数据表明,CSCs 和巨噬细胞的共培养导致双向信号转导,改变了两种细胞类型的表型。这些结果解释了最近观察到的巨噬细胞对 GBM 肿瘤细胞生长、迁移和耐药性的影响,并提出了通过破坏其与巨噬细胞的通讯来破坏 CSC 表型的潜在治疗策略。

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