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Methamphetamine alters T cell cycle entry and progression: role in immune dysfunction

机译:甲基苯丙胺改变T细胞周期的进入和发展:在免疫功能障碍中的作用

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We and others have demonstrated that stimulants such as methamphetamine (METH) exerts immunosuppressive effects on the host’s innate and adaptive immune systems and has profound immunological implications. Evaluation of the mechanisms responsible for T-cell immune dysregulation may lead to ways of regulating immune homeostasis during stimulant use. Here we evaluated the effects of METH on T cell cycle entry and progression following activation. Kinetic analyses of cell cycle progression of T-cell subsets exposed to METH demonstrated protracted G1/S phase transition and differentially regulated genes responsible for cell cycle regulation. This result was supported by in vivo studies where mice exposed to METH had altered G1 cell cycle phase and impaired T-cell proliferation. In addition, T cells subsets exposed to METH had significant decreased expression of cyclin E, CDK2 and transcription factor E2F1 expression. Overall, our results indicate that METH exposure results in altered T cell cycle entry and progression. Our findings suggest that disruption of cell cycle machinery due to METH may limit T-cell proliferation essential for mounting an effective adaptive immune response and thus may strongly contribute to deleterious effect on immune system.
机译:我们和其他人已证明,甲基苯丙胺(METH)等兴奋剂会对宿主的先天和适应性免疫系统产生免疫抑制作用,并具有深远的免疫学意义。对负责T细胞免疫失调的机制的评估可能会导致在使用兴奋剂过程中调节免疫稳态的方法。在这里,我们评估了甲基苯丙氨酸对激活后T细胞周期进入和进展的影响。暴露于METH的T细胞亚群的细胞周期进程的动力学分析表明,延长的G1 / S相变和负责细胞周期调控的差异调节基因。这一结果得到了体内研究的支持,在体内研究中,暴露于METH的小鼠改变了G1细胞周期阶段并损害了T细胞增殖。此外,暴露于METH的T细胞亚群的细胞周期蛋白E,CDK2和转录因子E2F1的表达明显降低。总的来说,我们的研究结果表明,甲基ETH暴露会改变T细胞周期的进入和发展。我们的发现表明,由于METH而引起的细胞周期机制破坏可能会限制T细胞增殖,这对于启动有效的适应性免疫应答至关重要,因此可能对免疫系统产生有害影响。

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