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Pathogenicity and Pathological Characteristics of African Swine Fever Virus Strains from Pig Farms in South Korea from 2022 to January 2023

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Journal Pathogens
Date 2023 Sep 28
PMID 37764966
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Abstract

Since the first African swine fever (ASF) outbreak occurred at a pig farm in South Korea in September 2019, as of 31 January 2023, 31 ASF cases have occurred at pig farms, while 2799 ASF virus (ASFV)-infected wild boars have been identified. The circulation of ASFV in wild boar populations poses a high risk of spillover to pig farms in the country. However, information on the changes in the pathogenicity of Korean ASFV strains from wild boars is not available. Investigating the pathogenicity of ASFV strains from pig farms is the only way to predict their alterations. In a previous study, no changes in the pathogenicity of ASFV strains circulating during 2019-2021 were identified through animal experiments. In this study, we chose two ASFV strains with potentially reduced pathogenicity among ten viruses obtained from pig premises from 2022 to January 2023 and estimated their pathogenicities and pathological characteristics. All the inoculated pigs died 8-10 days post-inoculation after showing pyrexia, depression, anorexia, and recumbency together with the common pathological lesions of enlarged hemorrhagic lymph nodes and splenomegaly with infarction. These results support that the pathogenicity among ASFV isolates in South Korea still remained unchanged during the study period.

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References
1.
King D, Reid S, Hutchings G, Grierson S, Wilkinson P, Dixon L . Development of a TaqMan PCR assay with internal amplification control for the detection of African swine fever virus. J Virol Methods. 2002; 107(1):53-61. DOI: 10.1016/s0166-0934(02)00189-1. View

2.
Yamada M, Masujin K, Kameyama K, Yamazoe R, Kubo T, Iwata K . Experimental infection of pigs with different doses of the African swine fever virus Armenia 07 strain by intramuscular injection and direct contact. J Vet Med Sci. 2020; 82(12):1835-1845. PMC: 7804033. DOI: 10.1292/jvms.20-0378. View

3.
Zhao D, Sun E, Huang L, Ding L, Zhu Y, Zhang J . Highly lethal genotype I and II recombinant African swine fever viruses detected in pigs. Nat Commun. 2023; 14(1):3096. PMC: 10226439. DOI: 10.1038/s41467-023-38868-w. View

4.
Cho K, Yoo D, Hong S, Kim D, Jang M, Kang H . Genetic Profile of African Swine Fever Viruses Circulating at Pig Farms in South Korea during the Outbreaks between 2022 and April 2023. Viruses. 2023; 15(7). PMC: 10383346. DOI: 10.3390/v15071552. View

5.
Kim H, Cho K, Lee S, Kim D, Nah J, Kim H . Outbreak of African swine fever in South Korea, 2019. Transbound Emerg Dis. 2020; 67(2):473-475. DOI: 10.1111/tbed.13483. View