Yang Guilian, Yao Jiayun, Yang Wentao, Jiang Yanlong, Du Jinfen, Huang Haibin, Gu Wei, Hu Jingtao, Ye Liping, Shi Chunwei, Shan Baolong, Wang Chunfeng
College of Animal Science and Technology, Jilin Provincial Engineering Research Center of Animal Probiotics, Jilin Agricultural University, Changchun, 130118, China.
College of Animal Science and Technology, Jilin Provincial Engineering Research Center of Animal Probiotics, Jilin Agricultural University, Changchun, 130118, China; Agriculture Ministry Key Laboratory of Healthy Freshwater Aquaculture, Key Laboratory of Fish Health and Nutrition of Zhejiang Province Zhejiang Institute of Freshwater Fisheries, Huzhou, 313001, China.
Vet Parasitol. 2017 Mar 15;236:7-13. doi: 10.1016/j.vetpar.2017.01.023. Epub 2017 Jan 27.
The coccidiosis caused by Eimeria tenella (coccidian) and other species is a serious parasitic disease that affects the global poultry breeding industry. Lactobacillus strains exhibit a number of properties that make them attractive candidates as delivery vehicles for presentation to the mucosa of compounds with pharmaceutical interest, particularly vaccines. Here, the recombinant Lactobacillus plantarum (co-expressing SO7 and DCpep gene) was constructed, and its efficacy against E. tenella challenge was evaluated in this study. Broiler chickens were orally immunized with live recombinant L. plantarum NC8-pSIP409-SO7-DCpep for two weeks and were then challenged with 5×10E.tenella sporulated oocysts per chicken. During the experiment, body weight gains, cecum lesion scores, fecal oocyst shedding and antibody responses in serum and intestinal washes were assessed as measures of protective immunity. The results indicated that chickens immunized with live recombinant L. plantarum can increase body weight gains and serum antibody responses compared to the control groups. Meanwhile, fecal oocyst shedding in the immunized group was significantly reduced (p<0.01). Moreover, recombinant L. plantarum can significantly relieve pathological damage in cecum, according to lesion scores and histopathologic cecum sections (p<0.01). Therefore, these results indicate that recombinant L. plantarum NC8-pSIP409-SO7-DCpep could become a promising oral vaccine candidate against E. tenella infection.
由柔嫩艾美耳球虫(球虫)和其他种类引起的球虫病是一种严重的寄生虫病,影响着全球家禽养殖业。乳酸菌菌株具有许多特性,使其成为将具有药学意义的化合物(特别是疫苗)递送至黏膜的有吸引力的候选载体。在此,构建了重组植物乳杆菌(共表达SO7和DCpep基因),并在本研究中评估了其对柔嫩艾美耳球虫攻击的效果。将肉鸡用活的重组植物乳杆菌NC8-pSIP409-SO7-DCpep口服免疫两周,然后每只鸡用5×10个柔嫩艾美耳球虫孢子化卵囊进行攻击。在实验过程中,评估体重增加、盲肠病变评分、粪便卵囊排出以及血清和肠道冲洗液中的抗体反应,作为保护性免疫的指标。结果表明,与对照组相比,用活的重组植物乳杆菌免疫的鸡可增加体重增加和血清抗体反应。同时,免疫组的粪便卵囊排出显著减少(p<0.01)。此外,根据病变评分和盲肠组织病理学切片,重组植物乳杆菌可显著减轻盲肠的病理损伤(p<0.01)。因此,这些结果表明重组植物乳杆菌NC8-pSIP409-SO7-DCpep可能成为一种有前景的抗柔嫩艾美耳球虫感染的口服疫苗候选物。