Ying-Fen Li, Chun Song, Jun Yue, Shuai-Bo Han, Yu-Jie Chen, Gui-Lan Wen, Kai-Gong Wang, Chun-Lan Shan, Er-Peng Zhu, Zhen-Tao Cheng
Department of Veterinary Medicine, College of Animal Science, Guizhou University, Guiyang 550025, PR China.
Guizhou Animal Disease Prevention and Control Center, Guiyang 550000, Guizhou, PR China.
Poult Sci. 2025 May 1;104(7):105185. doi: 10.1016/j.psj.2025.105185.
Mycoplasma synoviae (MS) stands as a pivotal pathogen, responsible for triggering arthritis and airsacculitis in both chickens and turkeys. Given the pressing need for safe and efficacious vaccine candidates, we engineered recombinant adenoviruses expressing a fusion antigen. This antigen consisted of the pyruvate dehydrogenase E1 subunit beta (pdhβ) and dihydrolipoyl dehydrogenase (pdhD) of MS. We then systematically evaluated the immune effect and protective efficacy of these recombinant adenoviruses against MS challenge in a chicken model. Our results demonstrated the successful construction of recombinant adenoviruses rAd-pdhβ, rAd-pdhD, and rAd-pdhβ-pdhD. The pdhβ, pdhD, and pdhβ-pdhD proteins were efficiently expressed in cells infected with the respective recombinant adenoviruses. Animal experiments further revealed that vaccination with recombinant adenoviruses rAd-pdhβ, rAd-pdhD, and rAd-pdhβ-pdhD elicited significant specific humoral and cellular immune responses (P < 0.05). Notably, rAd-pdhβ-pdhD exhibited superior immunogenicity compared to rAd-pdhβ and rAd-pdhD. Moreover, all three recombinant adenovirus vaccine candidates conferred partial protection to chickens against MS challenge. They effectively alleviated MS-induced footpad and joint swelling, as well as inflammation. Among them, rAd-pdhβ-pdhD demonstrated a better protective effect. In conclusion, vaccination with recombinant adenoviruses rAd-pdhβ, rAd-pdhD, and rAd-pdhβ-pdhD can evoke immune responses and provide partial protection against MS in chickens. In particular, rAd-pdhβ-pdhD holds greater potential as a vaccine candidate against MS.
滑膜支原体(MS)是一种关键病原体,可引发鸡和火鸡的关节炎及气囊炎。鉴于对安全有效的候选疫苗的迫切需求,我们构建了表达融合抗原的重组腺病毒。该抗原由MS的丙酮酸脱氢酶E1亚基β(pdhβ)和二氢硫辛酰胺脱氢酶(pdhD)组成。然后,我们在鸡模型中系统评估了这些重组腺病毒针对MS攻击的免疫效果和保护效力。我们的结果表明成功构建了重组腺病毒rAd-pdhβ、rAd-pdhD和rAd-pdhβ-pdhD。pdhβ、pdhD和pdhβ-pdhD蛋白在感染相应重组腺病毒的细胞中高效表达。动物实验进一步显示,用重组腺病毒rAd-pdhβ、rAd-pdhD和rAd-pdhβ-pdhD进行疫苗接种可引发显著的特异性体液免疫和细胞免疫反应(P < 0.05)。值得注意的是,与rAd-pdhβ和rAd-pdhD相比,rAd-pdhβ-pdhD表现出更强的免疫原性。此外,所有三种重组腺病毒候选疫苗均能为鸡提供针对MS攻击的部分保护。它们有效减轻了MS诱导的脚垫和关节肿胀以及炎症。其中,rAd-pdhβ-pdhD表现出更好的保护效果。总之,用重组腺病毒rAd-pdhβ、rAd-pdhD和rAd-pdhβ-pdhD进行疫苗接种可引发免疫反应,并为鸡提供针对MS的部分保护。特别是,rAd-pdhβ-pdhD作为抗MS的候选疫苗具有更大的潜力。