Huang Y, Cao W, Shi K, Mi R, Lu K, Han X, Chen Z
Key Laboratory of Animal Parasitology of Ministry of Agriculture, Laboratory of Quality and Safety Risk Assessment for Animal Products on Biohazards (Shanghai) of Ministry of Agriculture, Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai, China.
Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou, China.
Parasite Immunol. 2017 Sep;39(9). doi: 10.1111/pim.12449. Epub 2017 Jul 5.
Until now, there are no completely effective parasite-specific pharmaceuticals or immunotherapies for treatment against the zoonotic cryptosporidiosis. Sushi domain (CpSushi) is an important functional domain in Cryptosporidium parvum putative rhoptry protein-1 (CpPRP1), which is the only reported C. parvum rhoptry protein and may play key role in the course of invasion. Here, a 708-bp fragment encoding the CpSushi domain was amplified and expressed in E. coli. Immunofluorescence detection showed that CpSushi was located on the surface of C. parvum oocysts and the apical pole to the sporozoites that belonged to the position of rhoptry. Three-week-old female ICR mice were used for detecting the immunoreactions and immunoprotection of recombinant CpSushi (rCpSushi) to artificial C. tyzzeri infection. The results indicated that a significant increase of anti-CpSushi antibody response was induced by the recombinant protein. Compared to blank, Tris-EDTA (TE) buffer and adjuvant controls mice, rCpSushi-immunized mice produced specific spleen cell proliferation as well as enhanced IL4, IL5, IL12p70 and TNF-α production in vitro. The reduction rate of parasites shedding in stool in mice immunized with rCpSushi was 68.91% after challenging with C. tyzzeri. These results suggest that CpSushi could be a new promising cryptosporidiosis vaccine candidate antigen composition.
到目前为止,还没有完全有效的针对人畜共患隐孢子虫病的寄生虫特异性药物或免疫疗法。寿司结构域(CpSushi)是微小隐孢子虫假定的棒状体蛋白-1(CpPRP1)中的一个重要功能结构域,CpPRP1是唯一报道的微小隐孢子虫棒状体蛋白,可能在入侵过程中起关键作用。在此,扩增了编码CpSushi结构域的708 bp片段并在大肠杆菌中表达。免疫荧光检测显示,CpSushi位于微小隐孢子虫卵囊表面以及属于棒状体位置的子孢子的顶端。使用3周龄雌性ICR小鼠检测重组CpSushi(rCpSushi)对人工泰勒氏隐孢子虫感染的免疫反应和免疫保护作用。结果表明,重组蛋白诱导了抗CpSushi抗体反应的显著增加。与空白、Tris-EDTA(TE)缓冲液和佐剂对照小鼠相比,rCpSushi免疫的小鼠产生了特异性脾细胞增殖,并在体外增强了IL4、IL5、IL12p70和TNF-α的产生。用rCpSushi免疫的小鼠在用泰勒氏隐孢子虫攻击后,粪便中寄生虫排出的减少率为68.91%。这些结果表明,CpSushi可能是一种有前景的新型隐孢子虫病疫苗候选抗原成分。