细胞培养和储存条件对HIV-1感染和融合活性的影响。

Acta microbiologica Hungarica Pub Date : 1992-01-01
J Ongrádi, L Ceccherini-Nelli, J F Szilágyi, S Specter, M Pistello, H M Laird, M Bendinelli
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引用次数: 0

摘要

我们之前已经证明酸性培养基抑制HIV-1的复制。本研究旨在通过与HIV感染的淋巴样细胞共培养来检测其他生长条件和成纤维细胞感染的影响。正常在RPMI-1640中生长的几种淋巴母细胞样细胞系在Eagle的MEM中生长。这些细胞比RPMI-1640支持更高滴度的病毒复制。新感染或慢性感染细胞置于新鲜培养基后24-48小时内病毒滴度达到峰值。当病毒在液体培养基中冷冻或在较高温度下储存时,病毒滴度在冷冻时可保留数月,但在4℃或更高温度下储存时病毒滴度下降。如果细胞在缺乏Ca(++)的培养基中经过胰蛋白酶化后传代,则在感染后24小时观察到细胞对HIV-1的敏感性降低了2 log10。利用合胞体形成、逆转录酶活性和p24抗原检测游离细胞和细胞相关HIV-1的感染性。未观察到HIV-1感染的CD4+淋巴细胞和CD4-成纤维细胞之间的融合,但HIV-1感染的淋巴样细胞,即使没有合胞体形成,也会对成纤维细胞产生强烈的毒性作用。该研究扩展了先前的研究结果,即培养基酸度对病毒的复制和存活有抑制作用。因此,研究HIV的条件必须在缓冲介质中得到很好的控制,这样就不会得到关于病毒增殖和可能在CD4细胞中传播和发病的误导性结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of cell culture and storage conditions on HIV-1 infectivity and fusogenic activity.

We have previously demonstrated that acidic medium inhibits the replication of HIV-1. The present study was designed to examine the effects of other growth conditions and infection of fibroblasts by coculture with HIV infected lymphoid cells. Several lymphoblastoid cell lines normally grown in RPMI-1640 were grown in Eagle's MEM. These cells supported virus replication to higher titres than did RPMI-1640. Peak viral titres were achieved within 24-48 h after newly infected or chronically infected cells were placed in fresh medium. When virus was stored in liquid medium either frozen or at higher temperatures, virus titres were retained for several months while frozen but decreased upon storage at 4 degrees C or higher. If cells were passaged after trypsinization in Ca(++)-depleted medium, then a decreased susceptibility of cells for HIV-1 by 2 log10 at 24 h post infection was observed. Infectivity of cell-free and cell-associated HIV-1 was measured using syncytium formation, reverse transcriptase activity and p24 antigen. No fusion between HIV-1 infected CD4+ lymphoblasts and CD4- fibroblasts was observed but HIV-1 infected lymphoid cells, even in the absence of syncytium formation, exerted a strong toxic effect on fibroblasts. This study extends previous findings that medium acidity was inhibitory to virus replication and survival. Thus, conditions for study of HIV must be well controlled in buffered medium so that misleading results are not obtained regarding virus multiplication and possibly regarding transmission to and pathogenesis in CD4- cells.

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