Microglia in close vicinity of glioma cells: correlation between phenotype and metabolic alterations.

Frontiers in neuroenergetics Pub Date : 2010-10-12 eCollection Date: 2010-01-01 DOI:10.3389/fnene.2010.00131
Pierre Voisin, Véronique Bouchaud, Michel Merle, Philippe Diolez, Laura Duffy, Kristian Flint, Jean-Michel Franconi, Anne-Karine Bouzier-Sore
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引用次数: 44

Abstract

Microglia are immune cells within the central nervous system. In brain-developing tumors, gliomas are able to silence the defense and immune functions of microglia, a phenomenon which strongly contributes to tumor progression and treatment resistance. Being activated and highly motile, microglia infiltrate tumors and secrete macrophagic chemoattractant factors. Thereafter, the tumor cells shut down their immune properties and stimulate the microglia to release tumor growth-promoting factors. The result of such modulation is that a kind of symbiosis occurs between microglia and tumor cells, in favor of tumor growth. However, little is known about microglial phenotype and metabolic modifications in a tumoral environment. Co-cultures were performed using CHME5 microglia cells grown on collagen beads or on coverslips and placed on monolayer of C6 cells, limiting cell/cell contacts. Phagocytic behavior and expression of macrophagic and cytoskeleton markers were monitored. Respiratory properties and energetic metabolism were also studied with regard to the activated phenotype of microglia. In co-cultures, transitory modifications of microglial morphology and metabolism were observed linked to a concomitant transitory increase of phagocytic properties. Therefore, after 1 h of co-culture, microglia were activated but when longer in contact with tumor cells, phagocytic properties appear silenced. Like the behavior of the phenotype, microglial respiration showed a transitory readjustment although the mitochondria maintained their perinuclear relocation. Nevertheless, the energetic metabolism of the microglia was altered, suggesting a new energetic steady state. The results clearly indicate that like the depressed immune properties, the macrophagic and metabolic status of the microglia is quickly driven by the glioma environment, despite short initial phagocytic activation. Such findings question the possible contribution of diffusible tumor factors to the microglial metabolism.

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胶质瘤细胞附近的小胶质细胞:表型和代谢改变之间的相关性。
小胶质细胞是中枢神经系统中的免疫细胞。在脑发育性肿瘤中,胶质瘤能够抑制小胶质细胞的防御和免疫功能,这一现象在很大程度上促进了肿瘤的进展和治疗耐药性。小胶质细胞被激活并具有高度运动性,可浸润肿瘤并分泌巨噬细胞化学引诱因子。此后,肿瘤细胞关闭其免疫特性,刺激小胶质细胞释放肿瘤生长促进因子。这种调节的结果是在小胶质细胞和肿瘤细胞之间发生一种有利于肿瘤生长的共生关系。然而,对肿瘤环境中的小胶质细胞表型和代谢改变知之甚少。使用生长在胶原珠或盖层上的CHME5小胶质细胞进行共培养,并将其置于单层C6细胞上,限制细胞/细胞接触。监测巨噬细胞和细胞骨架标志物的吞噬行为和表达。我们还研究了小胶质细胞活化表型的呼吸特性和能量代谢。在共培养中,观察到小胶质细胞形态和代谢的短暂改变与吞噬特性的短暂增加有关。因此,共培养1小时后,小胶质细胞被激活,但当与肿瘤细胞接触较长时间时,吞噬特性表现出沉默。就像表型的行为一样,尽管线粒体保持其核周重新定位,但小胶质细胞呼吸表现出短暂的重新调整。然而,小胶质细胞的能量代谢发生了改变,表明一种新的能量稳定状态。结果清楚地表明,尽管初始吞噬激活时间很短,但与免疫特性下降一样,小胶质细胞的巨噬和代谢状态也会迅速受到胶质瘤环境的驱动。这些发现质疑扩散肿瘤因子对小胶质细胞代谢的可能贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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