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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Non-CpG-Containing Antisense 2'-Methoxyethyl Oligonucleotides Activate a Proinflammatory Response Independent of Toll-Like Receptor 9 or Myeloid Differentiation Factor 88
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Non-CpG-Containing Antisense 2'-Methoxyethyl Oligonucleotides Activate a Proinflammatory Response Independent of Toll-Like Receptor 9 or Myeloid Differentiation Factor 88

机译:不包含CpG的反义2'-甲氧基乙基寡核苷酸激活促炎反应,独立于Toll样受体9或髓样分化因子88。

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摘要

Oligonucleotides with a"CpG"motif trigger a proinflammatory response through activation of Toll-like receptor 9(TLR9)and are being studied to exploit these properties for use as adjuvants and cancer therapies.However,Oligonucleotides intended for antisense applications(ASOs)are designed to minimize proinflammatory responses by avoiding CpG motifs and by using chemical modifications [i.e.,2'-methoxyethyl(MOE)sugars and 5-methyl cytosine residues].Nonetheless,modified ASOs are capable of eliciting a proinflammatory response at high doses,albeit mild compared with CpG oligos.To determine whether this phenomena is TLR-mediated,wild-type,TLR9 knockout,and myeloid differentiation factor 88(MyD88)knockout mice were treated with a phosphorothioate-modified oligodeoxyribonucleotide CpG optimal oligo(ISIS 12449),and a representative non-CpG 2'-MOE oligonucleotide(ISIS 116847).The non-CpG oligonucleotide had a lower proinflammatory potency relative to ISIS 12449,requiring a >10-fold higher dose in wild-type animals to trigger a proinflammatory response.Furthermore,the inflammatory response to ISIS 12449 at low doses was TLR9 and MyD88-dependent,whereas non-CpG Oligonucleotides retained the ability to activate a proinflammatory response in the knockout animals.Animals treated with the non-CpG oligonucleotide exhibited an increased spleen weight,elevated cytokine levels,increased immune cell infiltrates in liver,and an increased level of mRNA for cell surface markers typical of monocyte/macrophage type cells.Bone marrow-derived cells from wild-type and knockout animals treated with non-CpG oligonucleotide responded similarly with the production of MIP-2 and the activation of extracellular signal-regulated kianse1/2.These data implicate a TLR-independent mechanism of activation for non-CpG 2'-MOE Oligonucleotides.
机译:具有“ CpG”基序的寡核苷酸通过激活Toll样受体9(TLR9)触发促炎反应,目前正在研究这些寡核苷酸以用作佐剂和癌症疗法。但是,设计了用于反义应用的寡核苷酸通过避免CpG基序和使用化学修饰(例如2'-甲氧基乙基(MOE)糖和5-甲基胞嘧啶残基)来最大程度地减少促炎反应。尽管如此,经修饰的ASO能够在高剂量下引起促炎反应,尽管相比而言温和为了确定这种现象是否是TLR介导的,野生型,TLR9敲除和髓样分化因子88(MyD88)敲除小鼠,用硫代磷酸酯修饰的寡脱氧核糖核苷酸CpG最佳寡聚核苷酸(ISIS 12449)处理。非CpG 2'-MOE寡核苷酸(ISIS 116847)。相对于ISIS 12449,非CpG寡核苷酸具有较低的促炎潜能,需要大于10倍的剂量此外,低剂量对ISIS 12449的炎症反应是TLR9和MyD88依赖性的,而非CpG寡核苷酸保留了在敲除动物中激活促炎反应的能力。非CpG寡核苷酸显示出脾脏重量增加,细胞因子水平升高,肝中免疫细胞浸润增加以及单核细胞/巨噬细胞型细胞典型的细胞表面标志物的mRNA水平升高。用非CpG寡核苷酸处理的基因敲除动物对MIP-2的产生和细胞外信号调节的kianse1 / 2的激活反应相似。这些数据暗示了非CpG 2'-MOE寡核苷酸的TLR独立激活机制。

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