Sosa-Hernández Eduardo, Ballesteros-Rodea Gilberto, Arias-Del-Angel Jorge A, Dévora-Canales Diego, Manning-Cela Rebeca G, Santana-Solano Jesús, Santillán Moisés
Unidad Monterrey, Centro de Investigación y de Estudios Avanzados del IPN, Apodaca NL, México.
Facultad de Agronomía y Veterinaria, Universidad Autónoma de San Luis Potosí, SLP, México.
PLoS One. 2015 Nov 6;10(11):e0142478. doi: 10.1371/journal.pone.0142478. eCollection 2015.
The present work is aimed at characterizing the motility of parasite T. cruzi in its epimastigote form. To that end, we recorded the trajectories of two strains of this parasite (a wild-type strain and a stable transfected strain, which contains an ectopic copy of LYT1 gene and whose motility is known to be affected). We further extracted parasite trajectories from the recorded videos, and statistically analysed the following trajectory-step features: step length, angular change of direction, longitudinal and transverse displacements with respect to the previous step, and mean square displacement. Based on the resulting observations, we developed a mathematical model to simulate parasite trajectories. The fact that the model predictions closely match most of the experimentally observed parasite-trajectory characteristics, allows us to conclude that the model is an accurate description of T. cruzi motility.
本研究旨在表征克氏锥虫寄生虫在其前鞭毛体形式下的运动性。为此,我们记录了该寄生虫的两个菌株(一个野生型菌株和一个稳定转染菌株,后者含有LYT1基因的异位拷贝且其运动性已知受到影响)的轨迹。我们进一步从记录的视频中提取寄生虫轨迹,并对以下轨迹步长特征进行统计分析:步长、方向角变化、相对于前一步的纵向和横向位移以及均方位移。基于所得观察结果,我们开发了一个数学模型来模拟寄生虫轨迹。该模型预测与大多数实验观察到的寄生虫轨迹特征紧密匹配,这使我们能够得出结论,该模型是对克氏锥虫运动性的准确描述。