Kim Jae Young, Park Sun Young, Jin Jong Sook, Kim Dohyun, Park Jong-Hyeon, Park Sang Hyun, Ko Young-Joon
Center for FMD Vaccine Research, Animal and Plant Quarantine Agency, 177 Hyeoksin-8-ro, Gimcheon-si 39660, Republic of Korea.
Pathogens. 2023 May 25;12(6):760. doi: 10.3390/pathogens12060760.
Foot-and-mouth disease (FMD) vaccines must be produced in a biosafety level 3 facility, so the FMD virus (FMDV) must be completely inactivated after amplification. The inactivation kinetics of FMDV during vaccine antigen production were assessed by evaluating whether the viral titer dropped below 10 TCID/mL within 24 h of binary ethyleneimine (BEI) treatment. This study dealt with four FMD vaccine candidate strains for the efficacy of BEI treatment at different concentrations and temperatures to determine the optimal inactivation condition of each virus. Two domestic isolates, O/SKR/Boeun/2017 (O BE) and A/SKR/Yeoncheon/2017 (A YC), and two recombinant viruses, PAK/44/2008 (O PA-2) and A22/Iraq/24/64 (A22 IRQ), were investigated. The O BE and A22 IRQ required 2 mM BEI at 26 °C and 0.5 mM BEI at 37 °C for complete inactivation. The O PA-2 and A YC required 2 mM BEI at 26 °C and 1 mM BEI at 37 °C. Crucially, the yield of FMD virus particles (146S) in the viral infection supernatant was higher (>4.0 µg/mL) than those previously reported; additionally, there was little antigen loss, even after 24 h of treatment with 3 mM BEI. Overall, it is considered economical to produce FMD vaccines using these four kinds of viruses; therefore, these candidate strains will be prioritized for the manufacture of FMD vaccines in South Korea.
口蹄疫(FMD)疫苗必须在生物安全3级设施中生产,因此口蹄疫病毒(FMDV)在扩增后必须完全灭活。通过评估在双乙烯亚胺(BEI)处理24小时内病毒滴度是否降至10 TCID/mL以下,对口蹄疫病毒在疫苗抗原生产过程中的灭活动力学进行了评估。本研究针对四种口蹄疫疫苗候选毒株,研究了不同浓度和温度下BEI处理的效果,以确定每种病毒的最佳灭活条件。研究了两种国内分离株,O/SKR/宝城/2017(O BE)和A/SKR/涟川/2017(A YC),以及两种重组病毒,PAK/44/2008(O PA-2)和A22/伊拉克/24/64(A22 IRQ)。O BE和A22 IRQ在26℃下需要2 mM BEI,在37℃下需要0.5 mM BEI才能完全灭活。O PA-2和A YC在26℃下需要2 mM BEI,在37℃下需要1 mM BEI。至关重要的是,病毒感染上清液中口蹄疫病毒颗粒(146S)的产量高于先前报道(>4.0μg/mL);此外,即使在用3 mM BEI处理24小时后,抗原损失也很小。总体而言,使用这四种病毒生产口蹄疫疫苗被认为是经济的;因此,这些候选毒株将被优先用于韩国口蹄疫疫苗的生产。