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用编码膜表达的gp41衍生融合抑制剂的自失活慢病毒载体转导的原代CD4 T细胞中HIV-1感染的抑制作用

Suppression of HIV-1 infection in primary CD4 T cells transduced with a self-inactivating lentiviral vector encoding a membrane expressed gp41-derived fusion inhibitor.

作者信息

Perez E E, Riley J L, Carroll R G, von Laer D, June C H

机构信息

Children's Hospital of Philadelphia, Division of Allergy and Immunology, Research Institute, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Clin Immunol. 2005 Apr;115(1):26-32. doi: 10.1016/j.clim.2005.02.019.

Abstract

Peptidomimetics of HIV-1 gp41 sequences required for membrane fusion are potent inhibitors of HIV-1 entry. We hypothesize that expression of a membrane-bound gp41-derived fusion inhibitor will confer HIV-1 resistance to primary CD4 T cells. Efficient gene delivery and stable expression of a membrane-bound gp41-derived fusion inhibitor to primary CD4 T cells was accomplished using a self-inactivating lentiviral vector. A potent antiviral effect was observed when transduced CD4 T cells were challenged with a highly virulent CXCR4-tropic strain of HIV-1. Production of soluble p24 in the supernatant was inhibited 100-fold, and cytopathic effects were evident early in non-transduced cells and absent in transduced cells. Expression of the gp41 sequences was not detrimental to CD4 cells as transduced CD4 T cells exhibited a population doubling time that was equivalent to T cells transduced with a control vector. Results from this study support the rationale to use this lentiviral vector targeted at HIV entry as a potential gene therapy for HIV infection.

摘要

膜融合所需的HIV-1 gp41序列的拟肽是HIV-1进入的有效抑制剂。我们假设膜结合的gp41衍生融合抑制剂的表达将使原代CD4 T细胞对HIV-1产生抗性。使用自失活慢病毒载体实现了膜结合的gp41衍生融合抑制剂向原代CD4 T细胞的高效基因递送和稳定表达。当用高毒力的CXCR4嗜性HIV-1毒株攻击转导的CD4 T细胞时,观察到了强大的抗病毒效果。上清液中可溶性p24的产生被抑制了100倍,在未转导的细胞中早期出现细胞病变效应,而在转导的细胞中则没有。gp41序列的表达对CD4细胞无害,因为转导的CD4 T细胞的群体倍增时间与用对照载体转导的T细胞相当。这项研究的结果支持了使用这种针对HIV进入的慢病毒载体作为HIV感染潜在基因治疗方法的基本原理。

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