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[Formula: see text] 在薄层流体集体中的单细胞运动行为。

Single-cell motile behaviour of [Formula: see text] in thin-layered fluid collectives.

机构信息

Lehrstuhl für Zell- und Entwicklungsbiologie, Biozentrum, Julius-Maximilians-Universität, Am Hubland, 97074, Würzburg, Germany.

出版信息

Eur Phys J E Soft Matter. 2021 Mar 23;44(3):37. doi: 10.1140/epje/s10189-021-00052-7.

Abstract

We describe a system for the analysis of an important unicellular eukaryotic flagellate in a confining and crowded environment. The parasite Trypanosoma brucei is arguably one of the most versatile microswimmers known. It has unique properties as a single microswimmer and shows remarkable adaptations (not only in motility, but prominently so), to its environment during a complex developmental cycle involving two different hosts. Specific life cycle stages show fascinating collective behaviour, as millions of cells can be forced to move together in extreme confinement. Our goal is to examine such motile behaviour directly in the context of the relevant environments. Therefore, for the first time, we analyse the motility behaviour of trypanosomes directly in a widely used assay, which aims to evaluate the parasites behaviour in collectives, in response to as yet unknown parameters. In a step towards understanding whether, or what type of, swarming behaviour of trypanosomes exists, we customised the assay for quantitative tracking analysis of motile behaviour on the single-cell level. We show that the migration speed of cell groups does not directly depend on single-cell velocity and that the system remains to be simplified further, before hypotheses about collective motility can be advanced.

摘要

我们描述了一个用于分析在受限和拥挤环境中的重要单细胞真核鞭毛虫的系统。寄生虫布氏锥虫可以说是已知最通用的微游泳者之一。它具有作为单个微游泳者的独特特性,并在涉及两个不同宿主的复杂发育周期中表现出显著的适应性(不仅在运动方面,而且非常明显)。特定的生命周期阶段表现出引人入胜的集体行为,因为数以百万计的细胞可以在极端受限的情况下被迫一起移动。我们的目标是直接在相关环境中检查这种运动行为。因此,我们首次直接在广泛使用的测定中分析了锥虫的运动行为,该测定旨在评估寄生虫在集体中的行为,以响应目前未知的参数。为了了解锥虫是否存在群集行为,或者是什么类型的群集行为,我们针对单细胞水平上的运动行为进行了定量跟踪分析,对该测定进行了定制。我们表明,细胞群的迁移速度并不直接取决于单个细胞的速度,并且在可以提出关于集体运动的假设之前,该系统仍然需要进一步简化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9201/7987620/696f52d3a034/10189_2021_52_Fig1_HTML.jpg

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