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HIV-Nef protein and endothelial dysfunction

HIV-Nef protein and endothelial dysfunction
HIV-Nef 蛋白与内皮功能障碍
批准号:
8984518
负责人:
Matthias Clauss
金额:
$45.61万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-07-06 至 2019-04-30

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中文摘要
翻译
 描述(由申请人提供):抗病毒治疗可有效预防HIV感染者的艾滋病。然而,越来越多的HIV感染者患有或甚至死于AIDS以外的疾病,包括心血管疾病。这些临床观察结果背后的生物学尚不清楚,尽管抗逆转录病毒疗法(ART)依赖性和独立性机制似乎都参与其中。在这里,我们计划研究一个关键的机制,艾滋病毒可以引起内皮细胞活化和功能障碍,这被认为是动脉粥样硬化过程之前。已知Nef在HIV发病机制中起关键作用,并介导其自身从T细胞向旁观者细胞的转移。因此,我们假设HIV-Nef可以有效地从T细胞转移到其他血细胞,包括血管内皮细胞, 细胞,它们与流动的血液和淋巴液稳定接触。事实上,我们可以证明Nef的转移导致内皮细胞活化和细胞死亡,这可以通过NADPH氧化酶抑制剂和抗氧化剂有效地消除。基于我们发表的数据,HIV依赖的内皮激活可以解释为Nef从血细胞转移到冠状动脉内皮细胞,我们进一步假设Nef转移到血管细胞可能导致心血管功能障碍和心血管系统的病理。我们计划在临床前的体外和体内模型中研究Nef转移到 内皮细胞我们希望,确定这些目标将使临床干预研究与适当的抑制剂。因此,确定Nef诱导的血管内皮细胞中的血管病理的细胞机制可以帮助鉴定HIV-Nef作为预防和治疗HIV相关疾病的新靶标。
英文摘要
 DESCRIPTION (provided by applicant): Antiviral therapy is effective in preventing AIDS in HIV-infected people. However, an increasing number of HIV infected individuals suffer or even die of diseases other than AIDS including cardiovascular diseases. The biology behind these clinical observations is not well understood, although both anti-retroviral therapy (ART) dependent and independent mechanisms appear to be involved. Here we plan to study a key mechanism by which HIV can cause endothelial activation and dysfunction, which are believed to precede atherosclerotic processes. Nef is known to play a pivotal role in HIV pathogenesis and to mediate its own transfer from T cells to bystander cells. Therefore, we postulate that HIV-Nef can efficiently be transferred from T cells to other blood cells including vascular endothelial cells, which are in steady contact with flowing blood and lymph fluid. Indeed, we can show that transfer of Nef leads to endothelial cell activation and cell death, which can be effectively abrogated by NADPH oxidase inhibitors and antioxidants. Based on our published data that HIV dependent endothelial activation can be explained by transfer of Nef from blood cells to coronary arterial endothelial cells, we further hypothesize that transfer of Nef to vascular cells may lead to cardiovascular dysfunction and pathology of the cardiovascular system. We plan to address in preclinical in vitro and in vivo models the mechanism of Nef transfer to and activity in endothelial cells. We expect that identifying such targets will enable clinical interventions studis with appropriate inhibitors. Thus, determining the cellular mechanism of Nef-induced vascular pathology in vascular endothelial cells can help to identify HIV-Nef as a novel target for preventing and treating HIV- associated diseases.
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