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Real-time analysis of quantum dot labeled single porcine epidemic diarrhea virus moving along the microtubules using single particle tracking

机译:使用单颗粒跟踪实时分析量子点标记的单猪流行性腹泻病毒在微管中移动

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In order to study the infection mechanism of porcine epidemic diarrhea virus (PEDV), which causes porcine epidemic diarrhea, a highly contagious enteric disease, we combined quantum dot labeled method, which could hold intact infectivity of the labeled viruses to the largest extent, with the single particle tracking technique to dynamically and globally visualize the transport behaviors of PEDVs in live Vero cells. Our results were the first time to uncover the dynamic characteristics of PEDVs moving along the microtubules in the host cells. It is found that PEDVs kept restricted motion mode with a relatively stable speed in the cell membrane region; while performed a slow-fast-slow velocity pattern with different motion modes in the cell cytoplasm region and near the microtubule organizing center region. In addition, the return movements of small amount of PEDVs were also observed in the live cells. Collectively, our work is crucial for understanding the movement mechanisms of PEDV in the live cells, and the proposed work also provided important references for further analysis and study on the infection mechanism of PEDVs.
机译:为了研究引起猪流行性腹泻的猪流行性腹泻病毒(PEDV)的感染机理,这种传染性高的肠道疾病,我们结合了量子点标记法,该方法可以最大程度地保留被标记的病毒的完整感染力,单粒子跟踪技术可动态地全局可视化PEDV在活Vero细胞中的运输行为。我们的结果是首次揭示PEDV沿着宿主细胞中微管移动的动态特征。发现PEDV在细胞膜区域内以相对稳定的速度保持受限的运动模式。而在细胞质区域和微管组织中心区域附近以不同的运动模式进行了慢-快-慢的速度模式。此外,在活细胞中也观察到少量PEDV的返回运动。总体而言,我们的工作对于了解PEDV在活细胞中的运动机制至关重要,并且为进一步分析和研究PEDV的感染机理提供了重要的参考。

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