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Cell-cycle synchronisation of bloodstream forms of Trypanosoma brucei using Vybrant DyeCycle Violet-based sorting

机译:使用Vybrant DyeCycle Violet分选的布氏锥虫血流形式的细胞周期同步

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摘要

Studies on the cell-cycle of Trypanosoma brucei have revealed several unusual characteristics that differ from the model eukaryotic organisms. However, the inability to isolate homogenous populations of parasites in distinct cell-cycle stages has limited the analysis of trypanosome cell division and complicated the understanding of mutant phenotypes with possible impact on cell-cycle related events. Although hydroxyurea-induced cell-cycle arrest in procyclic and bloodstream forms has been applied recently with success, such block-release protocols can complicate the analysis of cell-cycle regulated events and have the potential to disrupt important cell-cycle checkpoints. An alternative approach based on flow cytometry of parasites stained with Vybrant DyeCycle Orange circumvents this problem, but is restricted to procyclic form parasites. Here, we apply Vybrant Dyecycle Violet staining coupled with flow cytometry to effectively select different cell-cycle stages of bloodstream form trypanosomes. Moreover, the sorted parasites remain viable, although synchrony is rapidly lost. This method enables cell-cycle enrichment of populations of trypanosomes in their mammal infective stage, particularly at the G1 phase.
机译:对布鲁氏锥虫的细胞周期的研究揭示了几种不同于模型真核生物的异常特征。但是,无法在不同的细胞周期阶段中分离出同质的寄生虫种群,限制了锥虫细胞分裂的分析,并使对突变表型的理解变得复杂,可能会对细胞周期相关事件产生影响。尽管最近已成功应用了以前列腺素和血流形式引起的羟基脲诱导的细胞周期停滞,但这种阻滞释放方案可使细胞周期调节事件的分析复杂化,并可能破坏重要的细胞周期检查点。一种基于流式细胞术的用Vybrant DyeCycle Orange染色的寄生虫染色的替代方法可解决此问题,但仅限于前环形式的寄生虫。在这里,我们将Vybrant Dyecycle Violet染色与流式细胞仪相结合,以有效地选择锥虫体血流的不同细胞周期阶段。此外,尽管同步性迅速丧失,但分类的寄生虫仍然可以存活。该方法使得在哺乳动物感染阶段,特别是在G1期的锥虫群体的细胞周期富集。

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