Anhui Province Key Laboratory of Embryo Development and Reproductive Regulation, Anhui Province Key Laboratory of Environmental Hormone and Reproduction, School of Biological and Food Engineering, Fuyang Normal University, Fuyang, 236041, China.
Chinese-German Joint Institute for Natural Product Research, College of Biological Science and Engineering, Shaanxi University of Technology, Hanzhong, 723000, China.
Fish Shellfish Immunol. 2022 Sep;128:101-112. doi: 10.1016/j.fsi.2022.07.057. Epub 2022 Aug 1.
Among aquaculture vaccines, polyvalent vaccines (for immunoprotection against multiple bacterial species) are more efficient and can better avoid bacterial resistance and antibiotic residues in fish. Here, 15 outer membrane proteins (OMPs) of Aeromonas hydrophila were cloned and purified, and mouse antisera were prepared. Passive immunization to Carassius auratus showed that four OMPs sera (OmpW, OmpAII, P5, and AHA2685) and the entire OMPs serum held effective immunoprotection against A. hydrophila infection. Furthermore, the active immunization of four OMPs to C. auratus showed that OmpW, OmpAII, P5, and AHA2685 held effective immunoprotection against A. hydrophila, and OmpW held active cross-protection against Vibrio alginolyticus. The mechanisms of these four candidate vaccines in triggering immune responses were subsequently explored. They all could activate innate immune responses in active immunization, down-regulate (p < 0.05) the inflammation-related genes expression to reduce the inflammatory reaction induced by A. hydrophila, and down-regulate (p < 0.05) antioxidant-related factors to reduce the antioxidant reaction for bacterial infection. Noteablely, the four OMPs had protective abilities on kidney and spleen tissues of C. auratus after challenged with A. hydrophila and V. alginolyticus by histopathological observation. Collectively, our results identify OmpW as a polyvalent vaccine candidate, and OmpAII, P5, and AHA2685 as vaccine candidates against A. hydrophila infection in fish.
在水产养殖疫苗中,多价疫苗(用于针对多种细菌的免疫保护)更为有效,并且可以更好地避免鱼类中的细菌耐药性和抗生素残留。在这里,我们克隆和纯化了 15 种嗜水气单胞菌的外膜蛋白(OMPs),并制备了小鼠抗血清。对鲤鱼的被动免疫显示,四种 OMP 血清(OmpW、OmpAII、P5 和 AHA2685)和整个 OMP 血清对嗜水气单胞菌感染具有有效的免疫保护作用。此外,对鲤鱼的四种 OMP 的主动免疫显示,OmpW、OmpAII、P5 和 AHA2685 对嗜水气单胞菌具有有效的免疫保护作用,而 OmpW 对溶藻弧菌具有主动交叉保护作用。随后,我们探究了这四种候选疫苗引发免疫反应的机制。它们都可以在主动免疫中激活先天免疫反应,下调(p<0.05)与炎症相关的基因表达以减少由嗜水气单胞菌引起的炎症反应,并下调(p<0.05)与抗氧化相关的因素以减少细菌感染的抗氧化反应。值得注意的是,通过组织病理学观察,四种 OMPs 在受到嗜水气单胞菌和溶藻弧菌的挑战后,对鲤鱼的肾脏和脾脏组织具有保护能力。总的来说,我们的结果鉴定了 OmpW 为一种多价疫苗候选物,以及 OmpAII、P5 和 AHA2685 为鱼类中针对嗜水气单胞菌感染的疫苗候选物。