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首页> 外文期刊>International immunopharmacology >Bruton's tyrosine kinase inhibitor suppresses imiquimod-induced psoriasis-like inflammation in mice through regulation of IL-23/IL-17A in innate immune cells
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Bruton's tyrosine kinase inhibitor suppresses imiquimod-induced psoriasis-like inflammation in mice through regulation of IL-23/IL-17A in innate immune cells

机译:通过在先天免疫细胞中调节IL-23 / IL-17A,Bruton的酪氨酸激酶抑制剂抑制小鼠中的氨基铵诱导的牛皮癣样炎症

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Psoriasis is an unchecked chronic inflammation characterized by thick, erythematous, and scaly plaques on the skin. The role of innate immune cells in the pathogenesis of psoriasis is well documented. Bruton's tyrosine kinase (BTK) has been reported to execute important signaling functions in innate immune cells such as dendritic cells (DCs) and gamma delta T cells. However, whether inhibition of BTK would lead to modulation of innate immune function in the context of psoriatic inflammation remains largely unexplored. In the present study, we investigated the effect of selective BTK inhibitor, PCI-32765 on inflammatory signaling in CD11c + DCs and gamma delta T cells in imiquimod (IMQ)-induced mouse model of psoriasis-like inflammation. Our results show that IMQ treatment led to induction of p-BTK expression along with concomitant increase in inflammatory cytokines (IL-23, TNF-alpha) in CD11c + DCs in the skin. Preventive treatment with BTK inhibitor led to significant reversal in IMQ-induced inflammatory changes in CD11c + DCs of skin. Further, there was a significant decrease in dermal IL-17A levels and IL-17A + gamma delta + T cells after treatment with BTK inhibitor. Furthermore, short treatment of back skin with IMQ led to upregulated expression of p-BTK along with inflammatory cytokines in CD11c + DCs (IL-23, TNF-alpha) and IL-17A in gamma delta + T cells which were reversed by BTK inhibitor. Overall, our study proposes that BTK signaling serves a crucial signaling function in innate immune cells in the context of psoriatic inflammation in mice. Therefore, BTK might be a promising therapeutic target to treat psoriatic inflammation.
机译:牛皮癣是一种未经检查的慢性炎症,其特征在于皮肤上的厚,红斑和鳞状斑块。先天免疫细胞在牛皮癣发病机制中的作用得到了很好的记录。据报道,Bruton的酪氨酸激酶(BTK)在先天免疫细胞如树突细胞(DCS)和γδTT细胞中执行重要的信号传导功能。然而,在银屑病的背景下,BTK的抑制是否会导致先天免疫功能的调节仍然很大程度上是未开发的。在本研究中,我们研究了选择性BTK抑制剂,PCI-32765对CD11C + DCS和γδTT细胞中的炎症信号传导的影响(IMQ),诱导的牛皮癣样炎症的小鼠模型。我们的研究结果表明,IMQ处理导致P-BTK表达以及皮肤中CD11C + DCS中的炎性细胞因子(IL-23,TNF-α)的伴随增加。用BTK抑制剂预防性治疗导致IMQ诱导的CD11C + DC的炎症变化中的显着逆转。此外,在用BTK抑制剂处理后,皮肤IL-17A水平和IL-17A +γδ+ T细胞存在显着降低。此外,用IMQ的后皮肤的短处理导致通过BTK抑制剂反转的γΔ+ T细胞中的CD11C + DC(IL-23,TNF-α)和IL-17A中的P-BTK的炎性细胞因子上调。 。总体而言,我们的研究提出了BTK信号传导在小鼠银屑病炎症的背景下的先天免疫细胞中的重要信号传导功能。因此,BTK可能是治疗银屑病炎症的有希望的治疗靶标。

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