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The Effective Regulation of Pro- and Anti-inflammatory Cytokines Induced by Combination of PA-MSHA and BPIFB1 in Initiation of Innate Immune Responses

机译:PA-MSHA和BPIFB1联合引发先天免疫反应诱导的促炎和抗炎细胞因子的有效调节

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摘要

PA-MSHA and BPIFB1 play especially important roles in triggering innate immune responses by inducing production of pro- or anti-inflammatory cytokines in the oral cavity and upper airway. We found that PA-MSHA had a strong ability to activate pro-inflammatory cytokines such as IL-1β, IL-6 and TNF-α. However, BPIFB1 alone did not express a directly inductive effect. With incubation of PA-MSHA and BPIFB1, the combination can activate the CD14/TLR4/MyD88 complex and induce secretion of subsequent downstream cytokines. We used a proteome profiler antibody array to evaluate the phosphokinases status with PA-MSHA and BPIFB1 treatment. The results showed that the activation of MAPK, STAT, and PI-3K pathways is involved in PA-MSHA-BPIFB1 treatment, and that the related pathways control the secretion of targeting cytokines in the downstream. When we assessed the content changes of cytokines, we found that PA-MSHA-BPIFB1 treatment increased the production of pro-inflammatory cytokines in the early phase of treatment and induced the increase of IL-4 in the late phase. Our observations suggest that PA-MSHA-BPIFB1 stimulates the release of pro-inflammatory cytokines, and thereby initiates the innate immune system against inflammation. Meanwhile, the gradual release of anti-inflammatory cytokine IL-4 by PA-MSHA-BPIFB1 can also regulate the degree of inflammatory response; thus the host can effectively resist the environmental risks, but also manipulate inflammatory response in an appropriate and adjustable manner.
机译:PA-MSHA和BPIFB1通过诱导口腔和上呼吸道中促炎性或抗炎性细胞因子的产生,在触发先天免疫应答中起着特别重要的作用。我们发现PA-MSHA具有很强的激活促炎细胞因子(如IL-1β,IL-6和TNF-α)的能力。但是,仅BPIFB1不能表达直接的诱导作用。通过孵育PA-MSHA和BPIFB1,该组合可以激活CD14 / TLR4 / MyD88复合物并诱导后续下游细胞因子的分泌。我们使用蛋白质组分析仪抗体阵列来评估PA-MSHA和BPIFB1处理的磷酸激酶状态。结果表明,MAPK,STAT和PI-3K途径的激活与PA-MSHA-BPIFB1的治疗有关,并且相关途径控制着下游靶细胞因子的分泌。当我们评估细胞因子的含量变化时,我们发现PA-MSHA-BPIFB1治疗在治疗的早期增加了促炎性细胞因子的产生,并在后期诱导了IL-4的增加。我们的观察结果表明,PA-MSHA-BPIFB1刺激促炎细胞因子的释放,从而启动了抵抗炎症的先天免疫系统。同时,PA-MSHA-BPIFB1逐渐释放抗炎细胞因子IL-4,也可以调节炎症反应的程度。因此,宿主可以有效抵抗环境风险,而且可以适当且可调节的方式控制炎症反应。

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