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Glioblastoma cells induce differential glutamatergic gene expressions in human tumor-associated microglia/macrophages and monocyte-derived macrophages

机译:胶质母细胞瘤细胞在人肿瘤相关的小胶质细胞/巨噬细胞和单核细胞衍生的巨噬细胞中诱导差异的谷氨酸能基因表达

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摘要

Glioblastoma cells produce and release high amounts of glutamate into the extracellular milieu and subsequently can trigger seizure in patients. Tumor-associated microglia/macrophages (TAMs), consisting of both parenchymal microglia and monocytes-derived macrophages (MDMs) recruited from the blood, are known to populate up to 1/3 of the glioblastoma tumor environment and exhibit an alternative, tumor-promoting and supporting phenotype. However, it is unknown how TAMs respond to the excess extracellular glutamate in the glioblastoma microenvironment. We investigated the expressions of genes related to glutamate transport and metabolism in human TAMs freshly isolated from glioblastoma resections. Quantitative real-time PCR analysis showed (i) significant increases in the expressions of GRIA2 (GluA2 or AMPA receptor 2), SLC1A2 (EAAT2), SLC1A3 (EAAT1), (ii) a near-significant decrease in the expression of SLC7A11 (cystine-glutamate antiporter xCT) and (iii) a remarkable increase in GLUL expression (glutamine synthetase) in these cells compared to adult primary human microglia. TAMs co-cultured with glioblastoma cells also exhibited a similar glutamatergic profile as freshly isolated TAMs except for a slight increase in SLC7A11 expression. We next analyzed these genes expressions in cultured human MDMs derived from peripheral blood monocytes for comparison. In contrast, MDMs co-cultured with glioblastoma cells compared to MDMs co-cultured with normal astrocytes exhibited decreased expressions in the tested genes except for GLUL. This is the first study to demonstrate transcriptional changes in glutamatergic signaling of TAMs in a glioblastoma microenvironment, and the findings here suggest that TAMs and MDMs might potentially elicit different cellular responses in the presence of excess extracellular glutamate.
机译:胶质母细胞瘤细胞产生大量谷氨酸盐并将其释放到细胞外环境中,随后可引发患者癫痫发作。从血液中募集的由肿瘤实质小胶质细胞和单核细胞衍生的巨噬细胞(MDM)组成的肿瘤相关小胶质细胞/巨噬细胞(TAM)最多可占胶质母细胞瘤肿瘤环境的1/3,并具有替代性,促进肿瘤的能力和支持的表型。然而,未知的是TAM对胶质母细胞瘤微环境中过量的细胞外谷氨酸有反应。我们调查了从胶质母细胞瘤切除物中新鲜分离出的人TAM中谷氨酸转运和代谢相关基因的表达。实时定量PCR分析显示(i)GRIA2(GluA2或AMPA受体2),SLC1A2(EAAT2),SLC1A3(EAAT1)的表达显着增加,(ii)SLC7A11(胱氨酸)的表达近乎显着下降-谷氨酸逆转运蛋白xCT)和(iii)与成年原代人小胶质细胞相比,这些细胞中GLUL表达(谷氨酰胺合成酶)显着增加。与胶质母细胞瘤细胞共培养的TAM也显示出与新鲜分离的TAM类似的谷氨酸能谱,只是SLC7A11表达略有增加。接下来,我们分析了源自外周血单核细胞的培养的人MDM中的这些基因表达,以进行比较。相反,与与正常星形胶质细胞共培养的MDM相比,与胶质母细胞瘤细胞共培养的MDM在测试的基因中表现出降低的表达,除了GLUL。这是第一个证明胶质母细胞瘤微环境中TAM的谷氨酸能信号传导转录变化的研究,此处的发现表明TAM和MDM可能在存在过量细胞外谷氨酸的情况下引起不同的细胞反应。

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