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首页> 外文期刊>Laboratory investigation >Inactivation of Notch signaling reverses the Th17/Treg imbalance in cells from patients with immune thrombocytopenia
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Inactivation of Notch signaling reverses the Th17/Treg imbalance in cells from patients with immune thrombocytopenia

机译:Notch信号的失活可逆转免疫性血小板减少症患者细胞中Th17 / Treg失衡

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T helper 17 (Th17) cells and regulatory T (Treg) cells, along with Th1 and Th2 cells, may contribute to the development of immune thrombocytopenia (ITP). The imbalance of Th17/Treg toward Th17 cells has been shown to play a pivotal role in the peripheral immune response. Notch signaling has been implicated in peripheral T-cell activation and effector cell differentiation. However, the role of Th17/Treg in the pathogenesis of ITP and the effect of Notch signaling on Th17/Treg imbalances remain largely elusive in ITP. In vitro, we treated peripheral blood mononuclear cells (PBMCs) from ITP and healthy controls with γ-secretase inhibitor (DAPT). Th17 cells and Treg cells were measured by flow cytometry and IL-17, IL-21, and IL-10 secretion by enzyme immunoassay technique. The mRNA expression of Ntoch1, Hes1, Hey1, RORγt, and Foxp3 was investigated by RT-PCR. Cell proliferation and apoptosis were determined by the Cell Counting Kit-8 and apoptosis detection kit. We demonstrated that DAPT was effective in inhibiting mRNA expression of Notch signaling molecules. In untreated cultured PBMCs from ITP patients, we observed elevated Th17 cell and IL-21 levels and RORγt mRNA expression, decreased Treg cells and Foxp3 mRNA expression, and an increased ratio of Th17/Treg and RORγt/Foxp3. After inactivating Notch signal by DAPT, Th17 cells and Th17/Treg ratio were dose dependently decreased and accompanied by the reduction of IL-17 in culture supernatants and RORγt mRNA expression in ITP patients. However, no significant difference was found for Treg cells and Foxp3 mRNA expression, RORγt/Foxp3 ratio, and IL-21 and IL-10 levels after DAPT treatment in ITP patients. We also present evidence that the effect of DAPT inhibition on the Th17 cell response was associated with downregulation of RORγt and IL-17 transcription using human in vitro polarization. In conclusion, our findings highlight the importance of Notch signaling in Th17/Treg imbalances in ITP. Inactivation of Notch signaling might be a potential immunoregulatory strategy in ITP patients.
机译:T辅助17(Th17)细胞和调节性T(Treg)细胞,以及Th1和Th2细胞,可能有助于免疫性血小板减少症(ITP)的发展。 Th17 / Treg对Th17细胞的失衡已显示在外周免疫反应中起关键作用。 Notch信号传导已牵涉到外周T细胞活化和效应细胞分化。但是,在ITP中,Th17 / Treg在ITP发病机理中的作用以及Notch信号对Th17 / Treg不平衡的影响仍然遥遥无期。在体外,我们用γ-分泌酶抑制剂(DAPT)处理了ITP和健康对照组的外周血单核细胞(PBMC)。通过流式细胞术测量Th17细胞和Treg细胞,并通过酶免疫测定技术测量IL-17,IL-21和IL-10的分泌。 RT-PCR检测Ntoch1,Hes1,Hey1,RORγt和Foxp3的mRNA表达。细胞增殖和凋亡通过Cell Counting Kit-8和凋亡检测试剂盒确定。我们证明DAPT可以有效抑制Notch信号分子的mRNA表达。在ITP患者未经治疗的培养PBMC中,我们观察到Th17细胞和IL-21水平和RORγtmRNA表达升高,Treg细胞和Foxp3 mRNA表达降低,并且Th17 / Treg和RORγt/ Foxp3比例增加。 DAPT使Notch信号失活后,ITP患者的Th17细胞和Th17 / Treg比值呈剂量依赖性降低,并伴随培养上清液中IL-17的降低和RORγtmRNA表达的降低。然而,在ITP患者中,DAPT治疗后,Treg细胞和Foxp3 mRNA表达,RORγt/ Foxp3比以及IL-21和IL-10水平没有显着差异。我们还提供了证据,证明使用DAPT抑制作用对Th17细胞应答与人体外极化对RORγt和IL-17转录的下调有关。总之,我们的发现强调了Notch信号在ITP中Th17 / Treg不平衡中的重要性。 Notch信号的失活可能是ITP患者潜在的免疫调节策略。

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