课题基金 / 基金详情

Conditional live HIV-1 variant to study immune activation and pathogenesis.

Conditional live HIV-1 variant to study immune activation and pathogenesis.
用于研究免疫激活和发病机制的条件性活 HIV-1 变异体。
批准号:
7230733
负责人:
Christel H. Uittenbogaart
金额:
$22.86万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-08-01 至 2009-07-31

项目摘要

项目成果

Christel H. Uittenbogaart的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):有充分的证据表明,持续和广泛的免疫激活,比HIV-1复制的直接影响,可能在艾滋病发病机制和外周CD 4 + T细胞耗竭中发挥重要作用。这个问题需要进一步探讨,并具有重要的临床意义,因为免疫激活治疗需要添加到高效抗逆转录病毒治疗(HAART)。尽管HAART在许多HIV感染者的血浆中将病毒载量降低到无法检测的水平,但最近的研究表明,病毒复制可能继续在低水平。这种低水平的病毒复制可能导致低持续免疫激活和可能的进展为艾滋病。因此,为了回答急性和高或延长的病毒复制是否在建立持续免疫激活中起作用的问题,需要在可以控制病毒复制的模型中进行研究。我们实验室最近的两项发现,一种条件性活HIV-1变异体(一种dox依赖性HIV-rtTA,其中复制可以通过给予强力霉素(dox)打开和关闭)2的开发,以及一种具有人类免疫系统3的新型动物模型,将使我们能够研究不同病毒复制方案对免疫激活和HIV-1发病机制的影响。本提案代表了一种独特的合作方法来检验我们的假设,即持续的免疫激活,而不是HIV-1复制,是导致HIV-1发病的主要因素。由于Treg在控制免疫应答中起重要作用,我们还将研究Treg对HIV-1诱导的免疫激活的影响。目前尚不清楚Treg在HIV-1感染期间对免疫系统是否有不利或有利的影响。我们假设Treg在HIV-1感染中失调,导致胸腺中产生的功能性Treg耗竭。Treg的减少可能导致免疫激活和免疫病理学。具体来说,我们将研究:1。评价诱导型HIV-1对人免疫系统(HIS)-RAG 2-/-yc-/-小鼠胸腺和外周免疫激活和发病机制的影响。2.目的探讨调节性T细胞(Treg)在HIV-1诱导的免疫激活中的作用。从拟议的实验中获得的信息将提高我们对持续免疫激活在HIV-1发病机制中的作用的理解,并对HIV-1感染者的新治疗具有潜在的意义。
英文摘要
DESCRIPTION (provided by applicant): There is ample evidence that a persistent and generalized immune activation, more than the direct effect of HIV-1 replication, may play a major role in AIDS pathogenesis and peripheral CD4+ T cell depletion. This question needs to be further explored and has important clinical implications, because treatment of immune activation would need to be added to highly active antiretroviral therapy (HAART). Although HAART decreases viral loads to undetectable levels in plasma in many HIV-infected individuals, recent studies indicate that that viral replication likely continues at low levels. This low level viral replication could lead to low persistent immune activation and the possible progression to AIDS. Therefore, to answer the question whether an acute and high or a prolonged viral replication plays a role in the establishment of persistent immune activation, studies need to be done in models where viral replication can be controlled. Two recent findings in our laboratories, the development of a conditional live HIV-1 variant (a dox-dependent HIV-rtTA, in which the replication can be switched on and off by the administration of doxycyline (dox))2, and a novel animal model with a human immune system 3, will allow us to examine the impact of different schemes of viral replication on immune activation and HIV-1 pathogenesis. The present proposal represents a unique collaborative approach to test our hypothesis that persistent immune activation, rather than HIV-1 replication, is a major factor leading to HIV-1 pathogenesis. As Treg play an important role in controlling immune responses, we will also examine the impact of Treg on HIV-1 induced immune activation. It is still unclear whether Treg have detrimental or favorable effects on the immune system during HIV-1 infection. We hypothesize that Treg are dysregulated in HIV-1 infection, resulting in depletion of functional Treg generated in the thymus. A decrease in Treg may lead to immune activation and immunopathology. Specifically we will examine: 1. To evaluate the impact of an inducible HIV-1 on immune activation and pathogenesis in the thymus and periphery of Human Immune System (HIS)-RAG2-/-yc-/- mice. 2. To investigate the role of regulatory T cells (Treg) in controlling HIV-1 induced immune activation. Information gained from the proposed experiments will improve our understanding of the role of persistent immune activation in HIV-1 pathogenesis and has potential implications for novel treatments of HIV-1 infected individuals.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
55th Midwinter Conference of Immunologists
T follicular regulatory cells, a potential HIV reservoir.
T follicular regulatory cells, a potential HIV reservoir.
2014 Midwinter Conference of Immunologists at Asilomar
海外基金