Development of Toxoplasma gondii Chinese I genotype Wh6 Strain in Cat Intestinal Epithelial Cells.

IF 1.4 4区 医学 Q3 PARASITOLOGY Korean Journal of Parasitology Pub Date : 2022-08-01 Epub Date: 2022-08-24 DOI:10.3347/kjp.2022.60.4.241
Guihua Zhao, Lixin Zhang, Lisha Dai, Haozhi Xu, Chao Xu, Ting Xiao, Jun Li, Hui Sun, Beibei Zhou, Kun Yin
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引用次数: 1

Abstract

Felids are the unique definitive host of Toxoplasma gondii. The intestine of felid is the only site for initiating Toxoplasma gondii sexual reproduction. T. gondii excretes millions of infectious oocysts from the intestine, which are the primary source of infection. There are many difficulties in developing vaccines and drugs to control oocyst excretion due to the lack of an appropriate experimental model. Here, we established an in vitro feline intestinal epithelial cell (IEC) infection system and an efficient animal model of T. gondii Chinese 1 genotype, Wh6 strain (TgCtwh6). The Kunming mice brain tissues containing TgCtwh6 cysts were harvested 42-day post-infection. The bradyzoites were co-cultured with cat IECs in vitro at a ratio of 1:10. Five 3-month-old domestic cats were orally inoculated with 600 cysts each. The oocysts were detected by daily observation of cat feces by microscopy and polymerase chain reaction. We found that the parasite adhered and invaded cat IECs in vitro, transformed into tachyzoites, and then divided to form rose-like structures. These parasites eventually destroyed host cells, escaped, and finished the asexual reproduction process. Schizonts associated with sexual reproduction have not been observed during development in vitro cultured cells. However, schizonts were detected in all infected cat intestinal epithelial cells, and oocysts were presented in all cat feces. Our study provides a feasible cell model and an efficient infection system for the following studies of T. gondii sexual reproduction, and also lays a foundation to develop drugs and vaccines for blocking excretion and transmission of oocysts.

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刚地弓形虫中国ⅰ基因型Wh6株在猫肠上皮细胞中的培养
猫科动物是弓形虫唯一的最终宿主。猫的肠道是刚地弓形虫有性繁殖的唯一起始部位。弓形虫从肠道排出数百万个感染性卵囊,这是感染的主要来源。由于缺乏适当的实验模型,在开发控制卵囊排泄的疫苗和药物方面存在许多困难。本研究建立了猫肠上皮细胞(IEC)体外感染系统和弓形虫中国1基因型Wh6株(TgCtwh6)高效动物模型。感染42天后,昆明小鼠脑组织中含有TgCtwh6囊肿。将慢殖子与体外培养的cat IECs按1:10的比例共培养。5只3个月大的家猫口服接种,每只接种600个囊肿。卵囊的检测方法为每日观察猫粪,镜检及聚合酶链反应。我们发现,在离体条件下,寄生虫粘附并侵入猫IECs,转化为速殖子,然后分裂形成玫瑰状结构。这些寄生虫最终破坏宿主细胞,逃脱,完成无性繁殖过程。在体外培养的细胞发育过程中未观察到与有性生殖有关的分裂体。在所有感染的猫肠上皮细胞中均检测到分裂细胞,所有猫粪便中均出现卵囊。本研究为后续刚地弓形虫有性生殖的研究提供了可行的细胞模型和高效的感染系统,也为开发阻断卵囊排泄和传播的药物和疫苗奠定了基础。
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来源期刊
CiteScore
2.80
自引率
0.00%
发文量
48
审稿时长
1 months
期刊介绍: The Korean Journal of Parasitology is the official journal paperless, on-line publication after Vol. 53, 2015 of The Korean Society for Parasitology and Tropical Medicine. Abbreviated title is ‘Korean J Parasitol’. It was launched in 1963. It contains original articles, case reports, brief communications, reviews or mini-reviews, book reviews, and letters to the editor on parasites of humans and animals, vectors, host-parasite relationships, zoonoses, and tropical medicine. It is published bimonthly in February, April, June, August, October, and December each year. Supplement numbers are at times published. All of the manuscripts are peer-reviewed.
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