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Luteolin triggers global changes in the microglial transcriptome leading to a unique anti-inflammatory and neuroprotective phenotype

机译:木犀草素触发小胶质细胞转录组的整体变化,从而导致独特的抗炎和神经保护表型

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Background Luteolin, a plant derived flavonoid, exerts a variety of pharmacological activities and anti-oxidant properties associated with its capacity to scavenge oxygen and nitrogen species. Luteolin also shows potent anti-inflammatory activities by inhibiting nuclear factor kappa B (NFkB) signaling in immune cells. To better understand the immuno-modulatory effects of this important flavonoid, we performed a genome-wide expression analysis in pro-inflammatory challenged microglia treated with luteolin and conducted a phenotypic and functional characterization. Methods Resting and LPS-activated BV-2 microglia were treated with luteolin in various concentrations and mRNA levels of pro-inflammatory markers were determined. DNA microarray experiments and bioinformatic data mining were performed to capture global transcriptomic changes following luteolin stimulation of microglia. Extensive qRT-PCR analyses were carried out for an independent confirmation of newly identified luteolin-regulated transcripts. The activation state of luteolin-treated microglia was assessed by morphological characterization. Microglia-mediated neurotoxicity was assessed by quantifying secreted nitric oxide levels and apoptosis of 661W photoreceptors cultured in microglia-conditioned medium. Results Luteolin dose-dependently suppressed pro-inflammatory marker expression in LPS-activated microglia and triggered global changes in the microglial transcriptome with more than 50 differentially expressed transcripts. Pro-inflammatory and pro-apoptotic gene expression was effectively blocked by luteolin. In contrast, mRNA levels of genes related to anti-oxidant metabolism, phagocytic uptake, ramification, and chemotaxis were significantly induced. Luteolin treatment had a major effect on microglial morphology leading to ramification of formerly amoeboid cells associated with the formation of long filopodia. When co-incubated with luteolin, LPS-activated microglia showed strongly reduced NO secretion and significantly decreased neurotoxicity on 661W photoreceptor cultures. Conclusions Our findings confirm the inhibitory effects of luteolin on pro-inflammatory cytokine expression in microglia. Moreover, our transcriptomic data suggest that this flavonoid is a potent modulator of microglial activation and affects several signaling pathways leading to a unique phenotype with anti-inflammatory, anti-oxidative, and neuroprotective characteristics. With the identification of several novel luteolin-regulated genes, our findings provide a molecular basis to understand the versatile effects of luteolin on microglial homeostasis. The data also suggest that luteolin could be a promising candidate to develop immuno-modulatory and neuroprotective therapies for the treatment of neurodegenerative disorders.
机译:背景木犀草素是植物来源的类黄酮,具有清除氧和氮物种的能力,具有多种药理活性和抗氧化特性。木犀草素还通过抑制免疫细胞中的核因子κB(NFkB)信号传导而显示出有效的抗炎活性。为了更好地了解这种重要类黄酮的免疫调节作用,我们在用木犀草素处理的促炎性小胶质细胞中进行了全基因组表达分析,并进行了表型和功能表征。方法以不同浓度的木犀草素处理静息和LPS活化的BV-2小胶质细胞,并测定促炎标记物的mRNA水平。进行DNA微阵列实验和生物信息学数据挖掘以捕获木犀草素刺激小胶质细胞后的总体转录组变化。进行了广泛的qRT-PCR分析,以独立确认新鉴定的木犀草素调节的转录本。通过形态表征评估木犀草素处理的小胶质细胞的活化状态。小胶质细胞介导的神经毒性通过定量在小胶质细胞条件培养基中培养的661W感光细胞分泌的一氧化氮水平和细胞凋亡进行评估。结果木犀草素剂量依赖性地抑制了LPS激活的小胶质细胞中促炎性标志物的表达,并触发了小胶质细胞转录组的整体变化,其中有50多个差异表达的转录物。木犀草素有效地阻断了促炎和促凋亡基因的表达。相反,与抗氧化代谢,吞噬摄取,分枝和趋化性有关的基因的mRNA水平被明显诱导。木犀草素处理对小胶质细胞形态有重大影响,导致以前的变形虫细胞分枝,与长丝状伪足的形成有关。当与木犀草素共同孵育时,LPS激活的小胶质细胞对661W光感受器培养物的NO分泌显着降低,并且神经毒性显着降低。结论我们的发现证实了木犀草素对小胶质细胞促炎细胞因子表达的抑制作用。此外,我们的转录组数据表明,该类黄酮是小胶质细胞激活的有效调节剂,并影响多种信号通路,导致具有抗炎,抗氧化和神经保护特性的独特表型。通过鉴定几个新的木犀草素调节基因,我们的发现为理解木犀草素对小胶质细胞稳态的多种作用提供了分子基础。数据还表明,木犀草素可能是开发用于治疗神经退行性疾病的免疫调节和神经保护疗法的有前途的候选者。

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