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杂交瘤细胞培养物持续经历凋亡,并显示出一种新的100碱基对DNA片段。

Hybridoma cell cultures continuously undergo apoptosis and reveal a novel 100 bp DNA fragment.

作者信息

Solis-Recendez M G, Perani A, D'Habit B, Stacey G N, Maugras M

机构信息

Groupe de Recherche en Génie Cellulaire, Bâtiment INSERM, Plateau de Brabois, Vandoeuvre-lès-Nancy, France.

出版信息

J Biotechnol. 1995 Jan 15;38(2):117-27. doi: 10.1016/0168-1656(94)00120-2.

Abstract

This report represents an investigation into the nature of apoptosis in hybridoma cultures and its significance to their utilization in biotechnology. To this end DNA fragmentation and capillary electrophoresis of genomic DNA was studied during the culture of two hybridoma cell lines. This indicated that the phenomenon of apoptosis was always present even under normal culture conditions. Two DNA fragments not associated with the typical DNA fragmentation ladder were identified in the two hybridoma cultures: a previously unreported DNA fragment of about 100 bp and a large fragment which may correspond to one reported in the literature (Walker et al., 1993). The small fragment was identified as soon as the early exponential growth phase of culture, while the large fragment appeared only in the latter part of the growth curve when there was marked DNA fragmentation. In addition we present evidence that aurintricarboxylic acid, which inhibits apoptosis in neural cells, permits this process in hybridoma cells at levels below 100 microM. This unusual predisposition of hybridoma cultures to undergo apoptosis and their response to inhibitor of apoptosis may have important implications for approaches to the culture of hybridomas and their utilization for monoclonal production.

摘要

本报告是对杂交瘤细胞培养中细胞凋亡的本质及其在生物技术应用中的意义的一项调查。为此,在两种杂交瘤细胞系的培养过程中研究了DNA片段化和基因组DNA的毛细管电泳。这表明即使在正常培养条件下,细胞凋亡现象也始终存在。在两种杂交瘤培养物中鉴定出两个与典型DNA片段化梯状条带无关的DNA片段:一个约100bp的先前未报道的DNA片段和一个可能与文献中报道的片段相对应的大片段(Walker等人,1993年)。小片段在培养的早期指数生长期就被鉴定出来,而大片段仅在生长曲线的后期出现,此时存在明显的DNA片段化。此外,我们提供的证据表明,抑制神经细胞凋亡的金精三羧酸在低于100微摩尔的水平下可使杂交瘤细胞发生凋亡。杂交瘤培养物发生凋亡的这种不寻常倾向及其对凋亡抑制剂的反应可能对杂交瘤培养方法及其用于单克隆生产具有重要意义。

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