大鼠小胶质细胞中磷脂酰丝氨酸受体的表达及其天然配体对促炎分子产生的下调

R. De Simone, M. A. Ajmone-Cat, A. Nicolini, L. Minghetti
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引用次数: 68

摘要

磷脂酰丝氨酸(PS)的暴露是巨噬细胞识别和摄取凋亡细胞的关键步骤之一。磷脂酰丝氨酸是一种通常隔离在质膜内小叶的氨基磷脂。外周巨噬细胞对凋亡细胞的PS识别是由磷脂酰丝氨酸特异性受体(PtdSerR)介导的,该受体最近被克隆。尽管凋亡在中枢神经系统中发挥着重要作用,但小胶质细胞对凋亡神经元的识别过程却知之甚少。由于最近的研究表明,PS与尚未表征的小胶质受体的结合对于凋亡神经元的摄取是必要的,我们研究了PtdSer-R的表达及其在新生大鼠脑小胶质培养中的功能作用。半定量RT-PCR分析显示,PtdSerR mRNA在未刺激的培养物中检测到,在LPS激活的小胶质细胞中增强。ps脂质体的存在强烈地减少了lps激活的小胶质细胞释放的促炎分子,如一氧化氮、白细胞介素-1β和肿瘤坏死因子-α。不同的是,免疫调节细胞因子白介素-10和转化生长因子-β1中度降低或不受影响。PS-脂质体的活性可由PS头组磷酸-l -丝氨酸模拟,而不受含磷脂酰胆碱脂质体的影响。我们的数据表明,对于外周巨噬细胞,PS通过其受体可以调节小胶质细胞的激活,从而达到抗炎表型。
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Expression of Phosphatidylserine Receptor and Down‐Regulation of Pro‐Inflammatory Molecule Production by its Natural Ligand in Rat Microglial Cultures
Exposure of phosphatidylserine (PS), an aminophospholipid normally sequestered in the inner leaflet of plasma membrane, is one of the crucial steps in the recognition and ingestion of apoptotic cells by macrophages. The recognition of PS on apoptotic cells by peripheral macrophages is mediated by a phosphatidylserine-specific receptor (PtdSerR), which has recently been cloned. In spite of the important role of apoptosis in the CNS, the process of apoptotic neuron recognition by microglia is poorly understood. Because recent studies suggest that engagement of PS with a not yet characterized microglial receptor is necessary for apoptotic neuron uptake, we investigated the expression of PtdSer-R and its functional role in neonatal rat brain microglial cultures. Semi-quantitative RT-PCR analysis revealed that PtdSerR mRNA was detectable in unstimulated cultures and enhanced in LPS activated microglia. The presence of PS-liposomes strongly reduced the release of pro-inflammatory molecules such as nitric oxide, interleukin-1β, and tumor necrosis factor-α by LPS-activated microglia. At variance, the immunoregulatory cytokines interleukin-10 and transforming growth factor-β1 were moderately decreased or unaffected. The activity of PS-liposomes was mimicked by the PS head group phospho-L-serine, but not by phosphatidylcholine-containing liposomes. Our data suggest that, as for peripheral macrophages, PS through its receptor can modulate microglial activation toward an anti-inflammatory phenotype.
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