Zhao Wenrui, Niu Zhibin, Liu Kuihao, Zhang Xueqi, Kang Shuning, Dou Kewei, Zhao Jiaqi, Bai Rui, Zheng Mingxue, Lv Xiaoling
College of Veterinary Medicine, Shanxi Agricultural University, Taigu, Jinzhong, 030801, China.
College of Veterinary Medicine, Shanxi Agricultural University, Taigu, Jinzhong, 030801, China.
Poult Sci. 2025 Apr;104(4):104955. doi: 10.1016/j.psj.2025.104955. Epub 2025 Mar 2.
This study aimed to develop and evaluate the protective immunity of a ROP27 DNA vaccine against Eimeria tenella (E. tenella) in chickens. E. tenella is a parasitic protozoan that poses a significant threat to the poultry industry. The rhoptry protein 27 (ROP27) of E. tenella has been shown to have immunoprotective properties. However, traditional protein expression methods are time-consuming and labor-intensive, limiting large-scale production. In this study, we developed a pVAX-ROP27 DNA vaccine and confirmed its expression in chickens using RT-PCR and Western blot analysis. The protective immunity of the DNA vaccine was evaluated through an animal experiment with different immunization doses. The results confirmed the successful construction of the pVAX-ROP27 DNA vaccine and its in vivo expression. Chickens immunized with the vaccine at different doses showed significant improvements in average weight gain, relative weight gain rate (RWG), cecal lesion score reduction (RLS), and oocyst reduction rate, as well as a decrease in oocysts per gram (OPG). The group immunized with 100 μg/feather of pVAX-ROP27 exhibited the most significant effect, achieving an anticoccidial index (ACI) of 179.80. Additionally, levels of IL-2, IFN-γ, IL-6, IgG, and IgY significantly increased with the number of immunizations, whereas IL-4 and IL-10 showed no significant differences. Histopathological analysis of the ceca revealed that lesions were least severe in the 100 μg/feather pVAX-ROP27 immunized group. These findings suggest that the pVAX-ROP27 DNA vaccine offers immune protection against E. tenella infection and could serve as a promising candidate for preventing and controlling chicken coccidiosis.
本研究旨在研发并评估ROP27 DNA疫苗对鸡柔嫩艾美耳球虫(E. tenella)的保护性免疫。柔嫩艾美耳球虫是一种对家禽业构成重大威胁的寄生原生动物。已证明柔嫩艾美耳球虫的棒状体蛋白27(ROP27)具有免疫保护特性。然而,传统的蛋白质表达方法耗时且费力,限制了大规模生产。在本研究中,我们研发了pVAX - ROP27 DNA疫苗,并通过RT - PCR和蛋白质免疫印迹分析证实了其在鸡体内的表达。通过不同免疫剂量的动物实验评估了DNA疫苗的保护性免疫。结果证实了pVAX - ROP27 DNA疫苗的成功构建及其在体内的表达。用不同剂量疫苗免疫的鸡在平均体重增加、相对增重率(RWG)、盲肠病变评分降低(RLS)和卵囊减少率方面均有显著改善,同时每克粪便中的卵囊数(OPG)也有所减少。用100μg/羽pVAX - ROP27免疫的组效果最为显著,抗球虫指数(ACI)达到179.80。此外,随着免疫次数的增加,IL - 2、IFN - γ、IL - 6、IgG和IgY水平显著升高,而IL - 4和IL - 10无显著差异。盲肠的组织病理学分析表明,100μg/羽pVAX - ROP27免疫组的病变最轻微。这些发现表明,pVAX - ROP27 DNA疫苗对柔嫩艾美耳球虫感染具有免疫保护作用,有望成为预防和控制鸡球虫病的候选疫苗。