Shi T Y, Liu X Y, Hao L L, Li J D, Gh Abdel Nabi, Abdille M H, Suo X
Parasitology Laboratory, College of Veterinary Medicine, China Agricultural University, Beijing, China.
J Parasitol. 2008 Aug;94(4):978-80. doi: 10.1645/GE-1412.1.
Live attenuated coccidiosis vaccines could be used as powerful carriers, expressing exogenous viral and bacterial antigens, to induce protective immunity against pathogenic organisms. We investigated the ability of Eimeria tenella to express an exogenous gene in vitro. Eimeria tenella sporozoites were transfected with the plasmid pH4-2EYFP-Actin3 containing the yellow fluorescent protein gene (yfp) and inoculated into primary chicken kidney cells (PCKCs), followed by incubation at 41 C in a 5% CO2 chamber. Fluorescent sporozoites were observed as early as 15-20 hr post-inoculation (PI). Fluorescence displayed by the expressed YFP protein was visible throughout the schizogony and gametogony stages of the tranfected E. tenella. Fluorescent oocysts were found between 200-327 hr PI. Higher fluorescence intensity was observed in the nucleus than in other compartments of the transfectants, while little or no fluorescence was seen in the refractile globule. The diversity of schizonts, particularly of the first generation, was presented by fluorescent nuclei arranged in different patterns. Our results demonstrated the ability of E. tenella to express an exogenous gene throughout the endogenous development in vitro. Completion of the endogenous development of transfected E. tenella in cell cultures will facilitate the study of foreign antigen expression in Eimeria spp., paving the way for the development of an Eimeria spp. vector vaccine that also carries and delivers other vaccines by oral administration.
减毒活球虫病疫苗可作为强大的载体,表达外源性病毒和细菌抗原,以诱导针对致病生物的保护性免疫。我们研究了柔嫩艾美耳球虫在体外表达外源性基因的能力。用含有黄色荧光蛋白基因(yfp)的质粒pH4-2EYFP-Actin3转染柔嫩艾美耳球虫子孢子,并接种到原代鸡肾细胞(PCKCs)中,然后在41℃、5%二氧化碳培养箱中孵育。接种后15 - 20小时(PI)就观察到了荧光子孢子。在转染的柔嫩艾美耳球虫的裂殖生殖和配子生殖阶段,均可看到所表达的YFP蛋白发出的荧光。在接种后200 - 327小时之间发现了荧光卵囊。在转染子的细胞核中观察到的荧光强度高于其他区室,而在折光小体中几乎没有或没有荧光。裂殖体的多样性,尤其是第一代裂殖体的多样性,表现为荧光细胞核呈不同的排列模式。我们的结果证明了柔嫩艾美耳球虫在体外整个内生发育过程中表达外源性基因的能力。转染的柔嫩艾美耳球虫在细胞培养物中的内生发育的完成将有助于研究艾美耳属物种中外源抗原的表达,为开发一种也能通过口服携带和递送其他疫苗的艾美耳属载体疫苗铺平道路。