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原生动物顶复门寄生虫小泰勒虫的活蜱源子孢子的转染。

Transfection of live, tick derived sporozoites of the protozoan Apicomplexan parasite Theileria parva.

作者信息

De Goeyse Ine, Jansen Famke, Madder Maxime, Hayashida Kyoko, Berkvens Dirk, Dobbelaere Dirk, Geysen Dirk

机构信息

Institute of Tropical Medicine, Department of Biomedical Sciences, Nationalestraat 155, 2000 Antwerp, Belgium.

Institute of Tropical Medicine, Department of Biomedical Sciences, Nationalestraat 155, 2000 Antwerp, Belgium.

出版信息

Vet Parasitol. 2015 Mar 15;208(3-4):238-41. doi: 10.1016/j.vetpar.2015.01.013. Epub 2015 Jan 25.

Abstract

Theileria parva is an important veterinary protozoan causing the tick-borne disease East Coast fever. Transfection of Theileria parasites will facilitate the investigation of many aspects of this apicomplexan infection and its unique host-parasite interaction. The pathogen has the extraordinary capacity of transforming B and T cells into clonally dividing cancerous cell lines in a reversible way. Sequence data of the entire T. parva genome are available and in vitro infected cell lines can easily be generated, thereby eliminating the use of animals in the evaluation of the evolution of the transfected sporozoites. Here we report, for the first time, on experiments towards successful transient transfection of T. parva sporozoites, making use of a new generation transfection device. Plasmid DNA containing the strong EF-1α promoter and an Azami Green reporter gene were integrated by nucleofection into freshly purified T. parva sporozoites. Expression of Azami Green was detected with a fluorescence microscope and confirmed by counter staining with a monoclonal directed against a sporozoite protein. Despite the fact that transfection efficiencies are still low, this is the first step towards a stable infection method of T. parva parasites. In the long run, transfected parasites might become an alternative way to induce immunity without clinical signs.

摘要

小泰勒虫是一种重要的兽医原生动物,可引发蜱传播疾病——东海岸热。对泰勒虫进行转染将有助于对这种顶复门寄生虫感染的诸多方面及其独特的宿主 - 寄生虫相互作用展开研究。该病原体具有非凡的能力,能够以可逆的方式将B细胞和T细胞转化为克隆性增殖的癌细胞系。小泰勒虫的全基因组序列数据已可获取,并且能够轻松生成体外感染细胞系,从而在评估转染子孢子的进化过程中无需使用动物。在此,我们首次报告利用新一代转染装置成功对小泰勒虫的子孢子进行瞬时转染的实验。通过核转染将含有强EF - 1α启动子和阿萨米绿报告基因的质粒DNA整合到新鲜纯化的小泰勒虫子孢子中。用荧光显微镜检测阿萨米绿的表达,并通过用针对子孢子蛋白的单克隆抗体进行复染加以确认。尽管转染效率仍然较低,但这是迈向小泰勒虫寄生虫稳定感染方法的第一步。从长远来看,转染的寄生虫可能成为一种无需临床症状即可诱导免疫的替代方法。

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