Institute of Cell Culture Technology, University of Bielefeld, P.O. Box 100131, 33501, Bielefeld, Germany.,
Cytotechnology. 1998 Nov;28(1-3):19-29. doi: 10.1023/A:1008000924426.
This article describes the retrovirus expression with optimal nutrient supply and its potential growth inhibition effects in continuous hybridoma cell cultivation. A special reactor setup with total cell retention was developed to examine growth inhibition effects. Using this fermentation strategy we observed a decrease of viability cell rate which occurred at a defined state of the process despite sufficient nutrient supply. Therefore we assume that inhibitory substances are responsible for these effects. The molecular weight range of the inhibitory substances and the possible retrovirus cooperation of these growth inhibition effects were examined. To determine the molecular weight range we used the following methods: ultrafiltration, gelfiltration, ultracentrifugation and gel electrophoresis. Furthermore, RT-PCR and western-/immunoblot are used to detect retrovirus particles in the supernatant and to show a retrovirus participation on growth inhibition effects. The possible growth modulation was tested in a biological assay (MTT-assay).
本文描述了在最优营养供应下逆转录病毒的表达及其在连续杂交瘤细胞培养中的潜在生长抑制作用。开发了一种具有总细胞保留的特殊反应器装置来检查生长抑制作用。使用这种发酵策略,我们观察到尽管有足够的营养供应,但在过程的确定状态下,细胞活力会下降。因此,我们假设抑制物质是这些效应的原因。我们检查了抑制物质的分子量范围和这些生长抑制效应可能的逆转录病毒合作。为了确定分子量范围,我们使用了以下方法:超滤、凝胶过滤、超速离心和凝胶电泳。此外,RT-PCR 和 Western/免疫印迹用于检测上清液中的逆转录病毒颗粒,并显示逆转录病毒参与生长抑制作用。在生物测定(MTT 测定)中测试了可能的生长调节作用。