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阴道上皮细胞短暂携带 HIV-1 促进传播。

Vaginal Epithelium Transiently Harbours HIV-1 Facilitating Transmission.

机构信息

Department of Biochemistry and Virology, National Institute for Research in Reproductive Health, Indian Council of Medical Research, Mumbai, India.

Department of Medicine, The Grant Medical College & Sir J. J. Group of Hospitals, Mumbai, India.

出版信息

Front Cell Infect Microbiol. 2021 Mar 17;11:634647. doi: 10.3389/fcimb.2021.634647. eCollection 2021.

Abstract

Vaginal transmission accounts for majority of newly acquired HIV infections worldwide. Initial events that transpire post-viral binding to vaginal epithelium leading to productive infection in the female reproductive tract are not well elucidated. Here, we examined the interaction of HIV-1 with vaginal epithelial cells (VEC) using Vk2/E6E7, an established cell line exhibiting an HIV-binding receptor phenotype (CD4-CCR5-CD206+) similar to primary cells. We observed rapid viral sequestration, as a metabolically active process that was dose-dependent. Sequestered virus demonstrated monophasic decay after 6 hours with a half-life of 22.435 hours, though residual virus was detectable 48 hours' post-exposure. Viral uptake was not followed by successful reverse transcription and thus productive infection in VEC unlike activated PBMCs. Intraepithelial virus was infectious as evidenced by infection of PHA-p stimulated PBMCs on co-culture. Trans-infection efficiency, however, deteriorated with time, concordant with viral retention kinetics, as peak levels of sequestered virus coincided with maximum viral output of co-cultivated PBMCs. Further, blocking lymphocyte receptor function-associated antigen 1 (LFA-1) expressed on PBMCs significantly inhibited trans-infection suggesting that cell-to-cell spread of HIV from epithelium to target cells was LFA-1 mediated. In addition to stimulated PBMCs, we also demonstrated infection of FACS sorted CD4+ T lymphocyte subsets expressing co-receptors CCR5 and CXCR4. These included, for the first time, potentially gut homing CD4+ T cell subsets co-expressing integrin α4β7 and CCR5. Our study thus delineates a hitherto unexplored role for the vaginal epithelium as a transient viral reservoir enabling infection of susceptible cell types.

摘要

阴道传播占全球新获得的 HIV 感染的大多数。病毒与阴道上皮结合后导致女性生殖道内产生性感染的初始事件尚未得到很好的阐明。在这里,我们使用 Vk2/E6E7 检查了 HIV-1 与阴道上皮细胞 (VEC) 的相互作用,Vk2/E6E7 是一种已建立的细胞系,表现出类似于原代细胞的 HIV 结合受体表型 (CD4-CCR5-CD206+)。我们观察到病毒的快速隔离,这是一种代谢活跃的过程,且具有剂量依赖性。隔离的病毒在 6 小时后表现出单相衰减,半衰期为 22.435 小时,但在暴露后 48 小时仍可检测到残留病毒。与激活的 PBMC 不同,病毒摄取后并没有成功进行逆转录,因此在 VEC 中没有发生有性感染。上皮内病毒具有感染性,这可通过 PHA-p 刺激的 PBMC 在共培养物中的感染来证明。然而,转染效率随着时间的推移而恶化,与病毒保留动力学一致,因为隔离病毒的峰值水平与共培养 PBMC 的最大病毒产量一致。此外,阻断 PBMC 上表达的淋巴细胞受体功能相关抗原 1 (LFA-1) 显著抑制了转染,这表明 HIV 从上皮细胞到靶细胞的细胞间传播是由 LFA-1 介导的。除了刺激的 PBMC 外,我们还证明了 FACS 分选的表达共受体 CCR5 和 CXCR4 的 CD4+T 淋巴细胞亚群的感染。其中,首次包括共表达整合素 α4β7 和 CCR5 的潜在肠道归巢 CD4+T 细胞亚群。因此,我们的研究描绘了阴道上皮作为暂时病毒储存库的以前未知的作用,使易感细胞类型能够感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61c7/8011497/daa4e753d204/fcimb-11-634647-g001.jpg

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