Lymphocyte Apoptosis during Hemorragic Fever with Renal Syndrome.

Nelly K Akhmatova, Rina S Yusupova, Svetlana F Khaiboullina, Sergei V Sibiryak
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Abstract

Programmed cell death (PCD) is a fundamental process regulating immune homeostasis. During acute viral infections PCD of lymphocytes by apoptosis is necessary for removing the excess of activated antigen-reactive T cells and down-regulation of the immune response. On the other hand, apoptosis is the key mechanism of elimination of viral-infected cells. At the present time there is virtually no data on mechanisms of immune regulation during human hantavirus infections. In this study we examined the dynamic of PBL Fas and FasL expression, the first-step dead caspase-8, -2, -9 and effector caspase-3, -7 and -10 activity in freshly isolated PBL lysates, and anti-CD3-induced PBL mitogenic response and apoptosis in patients with Puumala virus (PUUV) associated hemorrhagic fever with the renal syndrome (HFRS). Data reported summarize the initial demonstration of increased Fas/FasL and activation of the initializing (caspase-2, -8 and -9) and the effector caspase-3, -7 and -10 in PBML during acute and convalescent phases of the hantavirus infection. The suppressed anti-CD3 mitogenic response and increased anti-CD3-induced apoptosis were also observed. Although more study needs to be done to determine the role of hantavirus and hantavirus induced pathways in PBML apoptosis, our data suggests that the immune system reacts to hantavirus infection, as to many other virus infections, by activation of apoptosis. These reactions of the immune system could be directed to preserve immune homeostasis, developing the most effective immune protection, and to eliminate cells infected with virus.

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肾综合征出血热期间淋巴细胞凋亡的研究。
程序性细胞死亡(PCD)是调节免疫稳态的一个基本过程。在急性病毒感染期间,淋巴细胞通过凋亡的PCD是清除过量活化的抗原反应性T细胞和下调免疫反应所必需的。另一方面,细胞凋亡是病毒感染细胞消除的关键机制。目前,几乎没有关于人类汉坦病毒感染期间免疫调节机制的数据。在这项研究中,我们检测了新鲜分离的PBL裂解物中PBL Fas和FasL表达的动态,第一步死亡caspase-8, -2, -9和效应caspase-3, -7和-10的活性,以及抗cd3诱导的Puumala病毒(PUUV)相关的肾综合征出血热(HFRS)患者PBL有丝分裂反应和凋亡。报告的数据总结了在汉坦病毒感染的急性和恢复期,PBML中Fas/FasL的增加和初始化(caspase-2, -8和-9)和效应caspase-3, -7和-10的激活。抗cd3诱导的细胞凋亡增加,抗cd3诱导的细胞分裂反应被抑制。虽然需要做更多的研究来确定汉坦病毒和汉坦病毒诱导的途径在PBML凋亡中的作用,但我们的数据表明,免疫系统对汉坦病毒感染和许多其他病毒感染的反应是通过激活细胞凋亡来实现的。免疫系统的这些反应可用于维持免疫稳态,形成最有效的免疫保护,并消除被病毒感染的细胞。
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