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Intestinal cytokine&T cell homeostasis in SIV infection

Intestinal cytokine&T cell homeostasis in SIV infection
肠细胞因子
批准号:
6769993
负责人:
Satya Dandekar
金额:
$44.19万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-03-01 至 2007-12-31

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中文摘要
翻译
描述(由申请人提供):抗逆转录病毒治疗(ARV)对HIV-1感染者的疗效取决于病毒抑制和外周血中CD4 +T细胞数量的恢复,CD4 +T细胞仅占体内淋巴细胞总数的2%;而肠道相关淋巴组织(GALT)容纳了约90%的淋巴细胞。抗逆转录病毒治疗后GALT患者CD4 +T细胞恢复和功能的动力学尚未完全确定。我们的初步结果显示siv感染动物的肠道CD4+T细胞在治疗期间有适度但不完全的恢复和功能。我们提出,在原发性SIV感染中,CD4+ T细胞耗损后,肠道T淋巴细胞亚群组成的改变(CD8+ T细胞和炎性细胞因子如TNFalpha的患病率增加)可能对ARV期间肠道CD4+ T细胞的恢复产生负面影响。免疫激活和炎性细胞因子如TNFalpha可能有助于延迟CD4 + T细胞的恢复。本应用的总体目标是制定策略来改善或加速HIV感染期间GALT中CD4 +T细胞的恢复,并通过siv感染的恒河猴模型确定CD4 +T细胞再生的潜在机制。有三个具体目标。(1)研究TNFalpha抑制剂RDP58对siv感染恒河猴PMPA抗病毒治疗期间肠道CD4+ T细胞恢复和功能、T细胞稳态、细胞周期阶段及病毒抑制的影响。治疗将在病毒感染的原发性或慢性阶段开始,纵向空肠活检和外周血样本分析CD4+ T细胞增殖和功能,细胞周期和凋亡水平的变化,病毒抑制和基因组多样性的进化。(2)研究CD8 vT细胞耗竭对siv感染恒河猴接受治疗后GALT中CD4 + T细胞亚群的再生和功能、肠道T细胞稳态、病毒抑制和衰变动力学以及基因组多样性的影响。本研究将检测CD8+ T细胞在强效抗逆转录病毒治疗期间杀死SIV感染猕猴的生产性感染细胞中的作用。(3)通过基因表达分析检测siv诱导的肠道CD4+T细胞耗竭和CD4+T细胞修复在治疗过程中的进展。检查siv感染动物的GALT基因表达谱,无论是否接受治疗,将发现参与感染相关病理生理过程的细胞和分子机制。拟议的研究可能会深入了解SIV感染期间CD4+T细胞耗竭的机制,以及ARV联合免疫调节剂或CD8+ T细胞耗竭后GALT患者CD4+T细胞恢复的机制。
英文摘要
DESCRIPTION (provided by applicant): Efficacy of antiretroviral therapy (ARV) in HIV-1 infected individuals is determined by viral suppression and restoration of CD4 +T cell numbers in the peripheral blood, which represents only 2% of the total lymphocytes in the body; whereas, the gut associated lymphoid tissue (GALT) harbors >90% of the lymphocytes. The kinetics of CD4 +T cell restoration and function in GALT following ARV has not been fully determined. Our preliminary results showed a modest but incomplete restoration and function of intestinal CD4+T cells in SIV-infected animals during therapy. We propose that the alterations in composition of intestinal T lymphocyte subsets (increased prevalence of CD8+ T cells and inflammatory cytokines such as TNFalpha subsequent to CD4+ T cell depletion in primary SIV infection may have a negative impact on the restoration of intestinal CD4 +T cells during ARV. Immune activation and inflammatory cytokines such as TNFalpha may contribute to the delay in the CD4 + T cell restoration. The overall objective of this application is to develop strategies to improve or accelerate CD4 +T cell restoration in GALT during HIV infection and to identify potential mechanisms of CD4 + T cell repopulation by using the SIV-infected rhesus macaque model. There are three specific aims. (1) To determine the effects of TNFalpha inhibitor, RDP58, on intestinal CD4+ T cell restoration and function, T cell homeostasis, cell cycle stage and viral suppression in SIV-infected rhesus macaques during PMPA antiviral therapy. Therapy will be initiated in the primary or chronic stage of viral infection and longitudinal jejunal biopsy and peripheral blood samples analyzed for CD4+ T cell repopulation and function, changes in cell cycle and levels of apoptosis, viral suppression and evolution of genomic diversity. (2) To determine the effect of CD8 vT cell depletion on repopulation and function of CD4 + T cell subsets and intestinal T cell homeostasis and viral suppression and decay kinetics and genomic diversity in GALT of SIV-infected rhesus macaques receiving therapy. This study will examine the contribution of CD8+ T cells in killing of productively infected cells in SIV infected macaques during potent antiretroviral therapy. (3) To examine the progression of SIV-induced intestinal CD4+T cell depletion and CD4+ T cell restoration during therapy by gene expression analysis. Examination of gene expression profiles in GALT of SIV-infected animals with and without therapy will detect cellular and molecular mechanisms involved in the infection associated pathophysiologic process. The proposed studies may provide insights into mechanisms of CD4+T cell depletion during SIV infection and subsequent CD4+ T cell restoration in GALT following ARV in combination with an immunomodulator or CD8+ T cell depletion.
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