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Kinetics of the invasion and egress processes of Babesia divergens observed by time-lapse video microscopy

机译:缩时视频显微镜观察到的巴贝斯多巴根菌侵袭和流出过程的动力学

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摘要

Based on confocal fluorescence and bright field video microscopy, we present detailed observations on the processes of invasion and egress of erythrocytes by the apicomplexan parasite Babesia divergens. Time-lapse images reveal numerous unexpected findings associated with the dynamics of B. divergens and its ability to manipulate the erythrocyte during both processes in its asexual cycle under in vitro conditions. Despite the speed at which these processes occur and the small size of the parasite, we capture infective merozoites moving vigorously and causing striking deformations in the erythrocyte’s plasma membrane during an active invasion. We also observed intraerythrocytic dynamic stages as paired pyriforms, double paired pyriforms, tetrads, unattached pyriform sister cells and multiple parasite stages resulting in the release of large numbers of merozoites over a short period. Of considerable interest is that time-lapse images reveal a novel mechanism of egress used by B. divergens to exit the human erythrocyte. The release occurs when B. divergens parasites establish contacts with the plasma membrane of the erythrocyte from within, before exiting the cell. Visualization and analysis of the images enabled us to obtain useful information and broaden our knowledge of complex and crucial events involved with parasitisation of human erythrocytes by B. divergens.
机译:基于共聚焦荧光和明场视频显微镜,我们提出了详细的观察到的apicomplexan寄生虫巴贝斯分支杆菌侵袭和流出红细胞的过程。延时图像揭示了许多与B. divergens的动力学及其在体外无性循环的两个过程中操纵红细胞的能力有关的意外发现。尽管这些过程发生的速度快且寄生虫的大小很小,但我们捕获了感染性裂殖子,这些裂殖子在活跃的入侵过程中剧烈运动,并引起红细胞质膜的明显变形。我们还观察到红细胞内动态阶段,如成对的梨形,双成对的梨形,四分体,未附着的梨形姊妹细胞和多个寄生虫阶段,导致短时间内释放大量裂殖子。令人关注的是,延时图像揭示了一种新的逃避机制,由分枝杆菌利用这种机制退出人的红细胞。当B. divergens寄生虫在离开细胞之前从内部与红细胞的质膜建立接触时,就会发生释放。图像的可视化和分析使我们能够获得有用的信息,并拓宽了我们对与憩室芽孢杆菌寄生红细胞所涉及的复杂和关键事件的认识。

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