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Classification Mechanisms of Action and Therapeutic Applications of Inhibitory Oligonucleotides for Toll-Like Receptors (TLR) 7 and 9

机译:抑制性寡核苷酸的收费类受体(TLR)7和9的分类作用机理和治疗应用

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摘要

Our immune defense depends on two specialized armed forces. The innate force acts as an alarm mechanism that senses changes in the microenvironment through the recognition of common microbial patterns by Toll-like receptors (TLR) and NOD proteins. It rapidly generates an inflammatory response aimed at neutralizing the intruder at the mucosal checkpoint. The innate arm also communicates this message with more specialized adaptive forces represented by pathogen-specific B cells and T cells. Interestingly, B cells also express some innate sensors, like TLR7 and TLR9, and may respond to bacterial hypomethylated CpG motifs and single-stranded RNA viruses. Intracellular nucleic acid sensing TLRs play an important role in the pathogenesis of Systemic Lupus Erythematosus (SLE). In this review, we describe recent achievements in the development of oligonucleotide—(ODN)-based inhibitors of TLR9 and/or TLR7 signaling. We categorize these novel therapeutics into Classes G, R, and B based on their cellular and molecular targets. Several short ODNs have already shown promise as pathway-specific therapeutics for animal lupus. We envision their future use in human SLE, microbial DNA-dependent sepsis, and in other autoinflammatory diseases.
机译:我们的免疫防御有赖于两支特种部队。先天力是一种警报机制,通过Toll样受体(TLR)和NOD蛋白质识别常见的微生物模式,从而感测微环境的变化。它迅速产生旨在中和入侵者在粘膜检查点的炎症反应。先天性臂还通过病原体特异性B细胞和T细胞代表的更专业的适应力传达此信息。有趣的是,B细胞还表达一些先天的传感器,例如TLR7和TLR9,并且可能会对细菌的低甲基化CpG基序和单链RNA病毒作出反应。细胞内核酸传感TLR在系统性红斑狼疮(SLE)的发病机理中起重要作用。在这篇综述中,我们描述了基于寡核苷酸-(ODN)的TLR9和/或TLR7信号传导抑制剂的最新进展。基于它们的细胞和分子靶点,我们将这些新颖的疗法归类为G,R和B类。几种短的ODN已经显示出有望作为动物狼疮的途径特异性治疗剂。我们设想它们在人类SLE,依赖微生物DNA的脓毒症以及其他自身炎症性疾病中的未来用途。

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