Liu Wenqiang, Li Xiangmin, Zhang Huawei, Hao Genxi, Shang Xianfei, Wang Huilan, Chen Huanchun, Qian Ping
State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.
College of Veterinary Medicine, Huazhong Agricultural University, Wuhan 430070, China.
Vaccines (Basel). 2022 Apr 18;10(4):631. doi: 10.3390/vaccines10040631.
Seneca Valley virus (SVV), also known as Senecavirus A (SVA), is a non-enveloped and single-strand positive-sense RNA virus, which belongs to the genus of within the family . Porcine idiopathic vesicular disease (PIVD) caused by SVV has frequently been prevalent in America and Southeast Asia (especially in China) since the end of 2014, and has caused continuing issues. In this study, an SVV strain isolated in China, named SVV LNSY01-2017 (MH064435), was used as the stock virus for the preparation of an SVV-inactivated vaccine. The SVV culture was directly inactivated using binary ethyleneimine (BEI) and β-propiolactone (BPL). BPL showed a better effect as an SVV inactivator, according to the results of pH variation, inactivation kinetics, and the detection of VP1 content during inactivation. Then, SVV inactivated by BPL was subsequently emulsified using different adjuvants, including MONTANIDE ISA 201 VG (ISA 201) and MONTANIDE IMG 1313 VG N (IMS 1313). The immunoreactivity and protection efficacy of the inactivated vaccines were then evaluated in finishing pigs. SVV-BPL-1313 showed a better humoral response post-immunization and further challenge tests post-immunization showed that both the SVV-BPL-201 and SVV-BPL-1313 combinations could resist challenge from a virulent SVV strain. The SVV LNSY01-2017-inactivated vaccine candidate developed here represents a promising alternative to prevent and control SVV infection in swine.
塞内卡山谷病毒(SVV),也称为A组塞内卡病毒(SVA),是一种无包膜的单链正链RNA病毒,属于 科 属。自2014年底以来,由SVV引起的猪特发性水疱病(PIVD)在美国和东南亚(尤其是中国)频繁流行,并引发了持续的问题。在本研究中,一株在中国分离的SVV毒株,命名为SVV LNSY01 - 2017(MH064435),被用作制备SVV灭活疫苗的种毒。使用双(2-羟乙基)亚胺(BEI)和β-丙内酯(BPL)直接灭活SVV培养物。根据pH值变化、灭活动力学以及灭活过程中VP1含量的检测结果,BPL作为SVV灭活剂显示出更好的效果。然后,用BPL灭活的SVV随后使用不同的佐剂进行乳化,包括MONTANIDE ISA 201 VG(ISA 201)和MONTANIDE IMG 1313 VG N(IMS 1313)。然后在育肥猪中评估灭活疫苗的免疫反应性和保护效力。SVV - BPL - 1313在免疫后显示出更好的体液反应,免疫后的进一步攻毒试验表明,SVV - BPL - 201和SVV - BPL - 1313组合都能抵抗强毒SVV毒株的攻击。这里开发的SVV LNSY01 - 2017灭活候选疫苗是预防和控制猪SVV感染的一种有前景的替代方法。