College of Animal Science and Technology, Jilin Provincial Engineering Research Center of Animal Probiotics, Key Laboratory of Animal Production and Product Quality Safety of Ministry of Education, Jilin Agricultural University, 2888 Xincheng Street, Changchun, 130118, China.
Parasitol Res. 2020 Sep;119(9):2885-2895. doi: 10.1007/s00436-020-06745-w. Epub 2020 Jul 27.
Chicken coccidiosis is a protozoan parasitic disease that leads to considerable economic losses in the poultry industry. In this study, we used invasive Lactobacillus plantarum (L.P) expressing the FnBPA protein as a novel bacterial carrier for DNA delivery into epithelial cells to develop a live oral DNA vaccine. A fusion DNA vaccine co-expressing EtMIC2 and chicken IL-18 (chIL-18) was constructed and then delivered to the host by invasive L.P. Its efficacy against Eimeria tenella challenge was evaluated in chickens by examining the relative weight gain rate; caecal lesion score; OPG; anti-coccidial index (ACI); levels of EtMIC2 antibody, FnBPA, IL-4, IL-18, IFN-γ and SIgA; and proliferation ability and percentages of CD4 and CD8 splenocytes. The experimental results showed that chickens immunized with invasive L.P carrying the eukaryotic expression vector pValac-EtMIC2 (pValac-EtMIC2/pSIP409-FnBPA) had markedly improved immune protection against challenge compared with that of chickens immunized with non-invasive L.P (pValac-EtMIC2/pSIP409). However, invasive L.P co-expressing EtMIC2 with the chIL-18 vector exhibited the highest protection efficiency against E. tenella. These results indicate that invasive Lactobacillus-expressing FnBPA improved humoural and cellular immunity and enhanced resistance to E. tenella. The DNA vaccine delivered by invasive Lactobacillus provides a new concept and method for the prevention of E. tenella.
鸡球虫病是一种原生动物寄生虫病,给家禽养殖业造成了巨大的经济损失。本研究利用侵袭性植物乳杆菌(L.P)表达 FnBPA 蛋白作为新型细菌载体,将 DNA 递送至上皮细胞,研制了一种活的口服 DNA 疫苗。构建了共表达 EtMIC2 和鸡白细胞介素-18(chIL-18)的融合 DNA 疫苗,然后通过侵袭性 L.P 递送至宿主。通过检测相对体重增长率、盲肠病变评分、OPG、抗球虫指数(ACI)、EtMIC2 抗体、FNBPA、IL-4、IL-18、IFN-γ和 SIgA 水平以及 CD4 和 CD8 脾细胞的增殖能力和百分比,评估了其对柔嫩艾美耳球虫攻毒的疗效。实验结果表明,与免疫非侵袭性 L.P(pValac-EtMIC2/pSIP409)的鸡相比,免疫携带真核表达载体 pValac-EtMIC2 的侵袭性 L.P(pValac-EtMIC2/pSIP409-FnBPA)的鸡的免疫保护明显提高。然而,共表达 EtMIC2 和 chIL-18 载体的侵袭性 L.P 对柔嫩艾美耳球虫的保护效率最高。这些结果表明,表达 FnBPA 的侵袭性乳杆菌增强了体液和细胞免疫,提高了对柔嫩艾美耳球虫的抵抗力。侵袭性乳杆菌递送的 DNA 疫苗为预防柔嫩艾美耳球虫提供了新的概念和方法。