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The CXCR4 Antagonist AMD3100 Efficiently Inhibits Cell-Surface-Expressed Human Immunodeficiency Virus Type 1 Envelope-Induced Apoptosis

机译:CXCR4拮抗剂AMD3100有效抑制细胞表面表达的人类免疫缺陷病毒1型信封诱导的细胞凋亡。

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摘要

Infection by human immunodeficiency virus type 1 (HIV-1) has been associated with increased cell death by apoptosis in infected and uninfected cells. The envelope glycoprotein complex ([gp120/gp41]n) of X4 HIV-1 isolates is involved in both infected and uninfected cell death via its interaction with cellular receptors CD4 and CXCR4. We studied the effect of the blockade of CXCR4 receptors by the agonist stromal derived factor (SDF-1α) and the antagonist bicyclam AMD3100 on apoptotic cell death of CD4+ cells in different models of HIV infection. In HIV-infected CEM or SUP-T1 cultures, AMD3100 showed antiapoptotic activity even when added 24 h after infection. In contrast, other antiviral agents, such as zidovudine, failed to block apoptosis under these conditions. The antiapoptotic activity of AMD3100 was also studied in coculture of peripheral blood mononuclear cells or CD4+ cell lines with chronically infected H9/IIIB cells. AMD3100 was found to inhibit both syncytium formation and apoptosis induction with 50% inhibitory concentrations ranging from 0.009 to 0.24 μg/ml, depending on the cell type. When compared to SDF-1α, AMD3100 showed higher inhibitory potency in all cell lines tested. Our data indicate that the bicyclam AMD3100 not only inhibits HIV replication but also efficiently blocks cell-surface-expressed HIV-1 envelope-induced apoptosis in uninfected cells.
机译:1型人类免疫缺陷病毒(HIV-1)的感染与感染和未感染细胞的凋亡引起的细胞死亡增加有关。 X4 HIV-1分离物的包膜糖蛋白复合物([gp120 / gp41] n)通过与细胞受体CD4和CXCR4的相互作用而参与感染和未感染的细胞死亡。我们研究了激动剂基质衍生因子(SDF-1α)和拮抗剂双环素AMD3100对CXCR4受体的阻断在不同HIV感染模型中对CD4 +细胞凋亡的影响。在感染了HIV的CEM或SUP-T1培养物中,AMD3100甚至在感染后24小时添加也显示出抗凋亡活性。相反,其他抗病毒剂,例如齐多夫定,在这些条件下不能阻断细胞凋亡。在外周血单核细胞或CD4 +细胞系与慢性感染的H9 / IIIB细胞的共培养中,还研究了AMD3100的抗凋亡活性。发现AMD3100可以抑制合胞体形成和凋亡诱导,其抑制浓度的50%范围从0.009至0.24μg/ ml,具体取决于细胞类型。与SDF-1α相比,AMD3100在所有测试的细胞系中均显示出更高的抑制效力。我们的数据表明,bicyclam AMD3100不仅抑制了HIV复制,而且还有效地阻断了未感染细胞中细胞表面表达的HIV-1包膜诱导的细胞凋亡。

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