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A Rapid and Convenient Method for in Vivo Fluorescent Imaging of Protoscolices of Echinococcus multilocularis

机译:一种快速便捷的荧光多球棘球Pro原球体内荧光成像方法

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摘要

Human and animal alveolar echinococcosis (AE) are important helminth infections endemic in wide areas of the Northern hemisphere. Monitoring Echinococcus multilocularis viability and spread using real-time fluorescent imaging in vivo provides a fast method to evaluate the load of parasite. Here, we generated a kind of fluorescent protoscolices in vivo imaging model and utilized this model to assess the activity against E. multilocularis protoscolices of metformin (Met). Results indicated that JC-1 tagged E. multilocularis can be reliably and confidently used to monitor protoscolices in vitro and in vivo. The availability of this transient in vivo fluorescent imaging of E. multilocularis protoscolices constitutes an important step toward the long term bio-imaging research of the AE-infected mouse models. In addition, this will be of great interest for further research on infection strategies and development of drugs and vaccines against E. multilocularis and other cestodes.
机译:人和动物的肺泡棘球co病(AE)是北半球大面积地方流行的重要蠕虫感染。使用体内实时荧光成像监测多叶棘球E虫的生存能力和扩散提供了一种评估寄生虫负荷的快速方法。在这里,我们生成了一种体内的荧光原镜成像模型,并利用该模型评估了对二甲双胍(Met)的E. multilocularis原镜的活性。结果表明,JC-1标记的多叶大肠杆菌可以可靠,可靠地用于体外和体内监测原黏膜。这种多形性大肠杆菌的瞬时体内荧光成像的可用性构成了向AE感染小鼠模型进行长期生物成像研究的重要一步。此外,这将对进一步研究感染策略以及开发抗多叶大肠杆菌和其他虫的药物和疫苗产生极大的兴趣。

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