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Impact of Anti-Inflammatory Agents on the Gene Expression Profile of Stimulated Human Neutrophils: Unraveling Endogenous Resolution Pathways

机译:抗炎药对人类嗜中性粒细胞基因表达谱的影响:阐明内源性解决途径。

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摘要

Adenosine, prostaglandin E2, or increased intracellular cyclic AMP concentration each elicit potent anti-inflammatory events in human neutrophils by inhibiting functions such as phagocytosis, superoxide production, adhesion and cytokine release. However, the endogenous molecular pathways mediating these actions are poorly understood. In the present study, we examined their impact on the gene expression profile of stimulated neutrophils. Purified blood neutrophils from healthy donors were stimulated with a cocktail of inflammatory agonists in the presence of at least one of the following anti-inflammatory agents: adenosine A2A receptor agonist CGS 21680, prostaglandin E2, cyclic-AMP-elevating compounds forskolin and RO 20-1724. Total RNA was analyzed using gene chips and real-time PCR. Genes encoding transcription factors, enzymes and regulatory proteins, as well as secreted cytokines/chemokines showed differential expression. We identified 15 genes for which the anti-inflammatory agents altered mRNA levels. The agents affected the expression profile in remarkably similar fashion, suggesting a central mechanism limiting cell activation. We have identified a set of genes that may be part of important resolution pathways that interfere with cell activation. Identification of these pathways will improve understanding of the capacity of tissues to terminate inflammatory responses and contribute to the development of therapeutic strategies based on endogenous resolution.
机译:腺苷,前列腺素E2或增加的细胞内环状AMP浓度均通过抑制吞噬作用,超氧化物生成,粘附和细胞因子释放等功能,在人中性粒细胞中引发有效的抗炎作用。但是,对这些作用的内源性分子途径知之甚少。在本研究中,我们检查了它们对受刺激的中性粒细胞基因表达谱的影响。在以下至少一种抗炎剂的存在下,用炎性激动剂混合物刺激来自健康供体的纯化的血液中性粒细胞:腺苷A2A受体激动剂CGS 21680,前列腺素E2,环AMP升高化合物福司可林和RO 20- 1724。使用基因芯片和实时PCR分析总RNA。编码转录因子,酶和调节蛋白的基因以及分泌的细胞因子/趋化因子显示差异表达。我们确定了15种抗炎剂改变了mRNA水平的基因。这些药剂以非常相似的方式影响表达谱,提示限制细胞活化的中心机制。我们已经鉴定出一组基因,这些基因可能是干扰细胞活化的重要拆分途径的一部分。这些途径的鉴定将增进对组织终止炎症反应能力的理解,并有助于基于内源性分辨率的治疗策略的发展。

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