首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Double staining of Plasmodium falciparum nucleic acids with hydroethidine and thiazole orange for cell cycle stage analysis by flow cytometry
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Double staining of Plasmodium falciparum nucleic acids with hydroethidine and thiazole orange for cell cycle stage analysis by flow cytometry

机译:用氢乙啶和噻唑橙对恶性疟原虫核酸进行双染色,以便通过流式细胞术进行细胞周期阶段分析

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Background: Microarray analyses of stage-specific gene expression of Plasmodium falciparum require purification of RNAs from highly synchronized cultures. To date, no reliable method to control the quality of synchronization of P. falciparum cultures is available. Methods: A double-staining method using hydroethidine and thiazole orange for nucleic acid staining was carried out to compare by flow cytometric analysis the nucleic acid labeling of synchronized P. falciparum in cultures at different time points of the 48-h intraerythrocytic cycle. Results: With this method, we determined the quality of culture synchronization in schizont and ring stages. Nucleic acid analysis, based on thiazole orange fluorescence, clearly showed that low levels of schizonts in ring cultures results in a high contamination of ring nucleic acids by schizonts. Conversely, nucleic acids from trophozoite or schizont cultures containing ring stages did not present a significant contamination by ring nucleic acids. Conclusion: The results demonstrated a very low nucleic acid content in the ring stage when compared with the high nucleic acid content of schizont-stage parasites. The rapid and reliable flow cytometric strategy using hydroethidine- and thiazole orange-stained parasite nucleic acids allows monitoring of the purity of the preparation, thus greatly improving the quality assessment of parasite cultures, a critical step to study gene expression patterns. (C) 2003 Wiley-Liss, Inc. [References: 25]
机译:背景:恶性疟原虫的阶段特异性基因表达的微阵列分析需要从高度同步的培养物中纯化RNA。迄今为止,尚无控制恶性疟原虫培养物同步质量的可靠方法。方法:采用氢乙啶和噻唑橙双染色法进行核酸染色,通过流式细胞术比较在48小时红细胞周期内不同时间点培养物中同步化恶性疟原虫的核酸标记。结果:使用这种方法,我们确定了裂殖体和环阶段的培养同步质量。基于噻唑橙荧光的核酸分析清楚地表明,环培养物中低含量的裂殖体会导致裂殖体对环形核酸的高度污染。相反,来自滋养体或裂殖体培养物的含有环阶段的核酸没有受到环核酸的明显污染。结论:结果表明,与裂殖体阶段寄生虫的高核酸含量相比,环阶段的核酸含量非常低。使用氢乙啶和噻唑橙染色的寄生虫核酸的快速,可靠的流式细胞术策略可以监控制剂的纯度,从而大大改善了寄生虫培养物的质量评估,这是研究基因表达模式的关键步骤。 (C)2003 Wiley-Liss,Inc. [参考:25]

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