DOI QR코드

DOI QR Code

삼종염(Potassium monopersulfate)을 주성분으로 하는 소독제의 주요 수산 병원체에 대한 살균소독 효과

Effect of disinfectant consisting of triple salt (Potassium monopersulfate) to major aqua pathogens

  • 최다연 (선문대학교 수산생명의학과) ;
  • 최희재 (선문대학교 수산생명의학과) ;
  • 조아현 (선문대학교 수산생명의학과) ;
  • 서정우 (선문대학교 수산생명의학과) ;
  • 박지원 (선문대학교 수산생명의학과) ;
  • 나정현 (선문대학교 수산생명의학과) ;
  • 이병윤 (선문대학교 수산생명의학과) ;
  • 김준환 (선문대학교 수산생명의학과) ;
  • 강예재 (군산대학교 수산생명의학과)
  • Da Yeon Choi (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Hee Jae Choi (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • A Hyun Jo (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Jung Woo Seo (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Ji Won Park (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Jeong Hyun Na (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Byoung Yoon Lee (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Jun Hwan Kim (Department of Aquatic Life Medical Sciences, Sunmoon University) ;
  • Yue Jai Kang (Department of Aquatic Life Medicine, Kunsan National University)
  • 투고 : 2023.05.23
  • 심사 : 2023.06.07
  • 발행 : 2023.06.30

초록

Infectious diseases are a major cause of death at the fish farm. Therefore, various disinfectants are used in aquaculture to sterilize pathogens. In this study, the disinfectant efficacy of triple salt was evaluated against Salmonella typhimurium and important aqua pathogens. In the case of bacteria under the conditions of distilled water (DW), hard water (HW), and organic matter (OM), S. typhimurium was inactivated with 0.56, 0.5 and 100 parts per thousands (ppt), V. parahaemolyticus (AHPND) was inactivated with 0.17, 0.13 and 20 ppt and V. anguillarum was inactivated with 0.25, 0.17 and 33.3 ppt. Also, in the case of the virus under the conditions DW, HW and OM, VHSV was inactivated with 0.1, 0.1 and 0.5 ppt and SVCV was inactivated with 0.5, 0.5 and 1 ppt. In addition, this study investigated the disinfection effect of triple salt against WSSV by bioassay using Litopenaeus vannamei. Investigating the antiviral effect of disinfectants under DW, HW, and OM conditions, WSSV was inactivated with 0.05, 0.05, 0.8 ppt. The results from this study showed that the triple salt was a highly effective disinfectant against aqua pathogens. Therefore, we can provide basic data for establishing the standards for use of triple salt in aquaculture.

키워드

과제정보

이 논문은 2023년 군산대학교 수산과학연구소 학술연구비 지원에 의하여 연구되었음.

참고문헌

  1. Crandall, J. K., Shi, Y., & Burke, C. P. (2001). Potassium monoperoxysulfate. Encyclopedia of Reagents for Organic Synthesis.
  2. De Orte, M. R., Carballeira, C., Viana, I. G., & Carballeira, A. (2013). Assessing the toxicity of chemical compounds associated with marine land-based fish farms: The use of mini-scale microalgal toxicity tests. Chemistry and Ecology 29, 554-563. https://doi.org/10.1080/02757540.2013.790381
  3. De Marini, D. M. (2019). Genotoxicity of disinfection by-products: comparison to carcinogenicity. Encyclopedia of Environmental Health (Second Edition), 245-251.
  4. Dey, S. R., Kabiraj, M., Hossain, S. S., Banu, G. R., & Sultana, S. (2022). Current scenario of application of aqua drugs and chemicals in fish and shell fish health management of Khulna district in Bangladesh. Khulna University Studies, 9-18.
  5. Ghanbari, F., & Moradi, M. (2017). Application of peroxymonosulfate and its activation methods for degradation of environmental organic pollutants. Chemical Engineering Journal, 310, 41-62. https://doi.org/10.1016/j.cej.2016.10.064
  6. Gunasekara, C. W. R., Kim, S. R., Rajapaksha, L. G. T. G., Wimalasena, S. H. M. P., Pathirana, H. N. K. S., & Shin, G. W. (2020). Disinfectant effect of monopersulfate (MPS) compound to white spot syndrome virus (WSSV) of shrimp. Journal of fish pathology, 33(2), 139-143. https://doi.org/10.7847/JFP.2020.33.2.139
  7. Han, H. J., Kim, S. J., Kim, T. H., Kim, M. S., Cho, M. Y., & Choi, H. S. (2021). Current status and future directions of fish vaccines in Korea. Korean Journal of Fisheries and Aquatic Sciences, 54(4), 369-376.
  8. Hushangi, R., & Hosseini Shekarabi, S. P. (2018). Effect of a peracetic acid-based disinfectant on growth, hematology and histology of juvenile rainbow trout (Oncorhynchus mykiss). Fishes, 3(1), 10.
  9. Jaemwimol, P., & Surachetpong, W. (2019). Inactivation of Tilapia Lake Virus by Common Aquaculture Disinfectants (Doctoral dissertation, Kasetsart University).
  10. Jiang, C. G., Ying, S. U. N., ZHANG, F., Xin, A. I., Feng, X. N., Wei, H. U., ... & He, X. J. (2021). Viricidal activity of several disinfectants against African swine fever virus. Journal of Integrative Agriculture, 20(11), 3084-3088.
  11. Juszkiewicz, M., Walczak, M., Mazur-Panasiuk, N., & Wozniakowski, G. (2020). Effectiveness of chemical compounds used against African swine fever virus in commercial available disinfectants. Pathogens, 9(11), 878.
  12. Kim, S. Y., Kwak, J. S., Jung, W., Kim, M. S., & Kim, K. H. (2023). Compensatory mutations in the matrix protein of viral hemorrhagic septicemia virus (VHSV) genotype IVa in response to artificial mutation of two amino acids (D62A E181A). Virus Research, 326, 199067.
  13. Kim, S. R., Park, K. H., Kim, D. W., Jung, S. J., Kang, S. Y., & Oh, M. J. (2008). Antimicrobial effects of chemical disinfectants on fish pathogenic bacteria. Food science and biotechnology, 17(5), 971-975.
  14. Kim, W. S., & Kim, J. O. (2015). Prevention strategies for viral nervous necrosis (VNN) in sevenband grouper Epinephelus septemfasciatus aquaculture farms. Korean Journal of Fisheries and Aquatic Sciences, 48(4), 403-410. https://doi.org/10.5657/KFAS.2015.0403
  15. Lee, A. R., Kong, K. H., Kim, H. J., Oh, M. J., Kim, D. H., Kim, J. O., & Kim, W. S. (2022). The complete genome sequence of a white spot syndrome virus isolated from Litopenaeus vannamei. Journal of fish pathology, 35(1), 129-133.
  16. Lee, J. S. (1972). Inactivation of Vibrio parahaemolyticus in distilled water. Applied microbiology, 23(1), 166-167. https://doi.org/10.1128/am.23.1.166-167.1972
  17. Lo, C. F., Leu, J. H., Ho, C. H., Chen, C. H., Peng, S. E., Chen, Y. T., ... & Kou, G. H. (1996). Detection of baculovirus associated with white spot syndrome (WSBV) in penaeid shrimps using polymerase chain reaction. Diseases of aquatic organisms, 25(1-2), 133-141. https://doi.org/10.3354/dao025133
  18. Mainous, M. E., Smith, S. A., & Kuhn, D. D. (2010). Effect of common aquaculture chemicals against Edwardsiella ictaluri and E. tarda. Journal of aquatic animal health, 22(4), 224-228.
  19. Martins, S. E., & Martins, C. D. M. G. (2021). Antifoulants and disinfectants. In Aquaculture Toxicology (pp. 25-58). Academic Press.
  20. Meinelt, T., Phan, T. M., Behrens, S., Wienke, A., Pedersen, L. F., Liu, D., & Straus, D. L. (2015). Growth inhibition of Aeromonas salmonicida and Yersinia ruckeri by disinfectants containing peracetic acid. Diseases of aquatic organisms, 113(3), 207-213. https://doi.org/10.3354/dao02847
  21. Min, J. R., Na, K., Chong, H., & Jeong, S. H. (2015). Bactericidal efficacy of a monopersulfate compound against Vibrio harveyi and toxicity to Litopenaeus vannamei. Korean Journal of Fisheries and Aquatic Sciences, 48(5), 661-667. https://doi.org/10.5657/KFAS.2015.0661
  22. Mishra, S. S., Das, R., Choudhary, P., Debbarma, J., & Sahoo, S. N. (2017). Prevalence of Fish and Shrimp Diseases and Use of Various Drugs and Chemicals in Indian Aquaculture for Disease Management. J Fish Aqua Dev: JFAD-129. DOI: 10. 29011. https://doi.org/10.29011
  23. Noh, J. Y. (2020). Characteristics of Viruses and the Infection Control.
  24. Park, E. K., Yu, E. A., Cha, C. N., Yoo, C. Y., Choi, H., Kim, S., & Lee, H. J. (2013). Antiviral Efficacy of an Aquatic Disinfectant Tablet Composed of Calcium Hypochlorite Against Viral Hemorrhagic Septicemia Virus. Journal of Environmental Health Sciences, 39(4), 376-382.
  25. Park, K. H., Kim, S. R., Kang, S. Y., Jung, S. J., & Oh, M. J. (2008). Toxicity of Disinfectants in Flounder Paralichthys olivaceus, Black Rockfish Sebastes pachycephalus and Black Sea Bream Acanthopagrus schlegelii. Journal of Aquaculture, 21(1), 7-12.
  26. Powell, M. D., & Clark, G. A. (2004). Efficacy and toxicity of oxidative disinfectants for the removal of gill amoebae from the gills of amoebic gill disease affected Atlantic salmon (Salmo salar L.) in freshwater. Aquaculture Research, 35(2), 112-123. https://doi.org/10.1111/j.1365-2109.2004.00989.x
  27. QIAO, L. P., HUANG, Y. J., XUE, F. Q., ZHANG, Q., ZHOU, W., MA, Q. H., ... & LIU, X. R. (2013). Efficacy of Potassium Monopersulfate Compound Powder on Inactivation of FMDV. Hubei Agricultural Sciences, 08.
  28. Seo, J. S., Jeon, E. J., Hwang, J. Y., Jung, S. H., Park, M., Lee, S. M., & Lee, E. H. (2013). Biocidal effect to fish pathogens of Aqua farmsafe® composed of yucca extract and didecyldimethylammonium chloride. Journal of fish pathology, 26(2), 111-116. https://doi.org/10.7847/JFP.2013.26.2.111
  29. Shim, J. D., Hwang, S. D., Jang, S. Y., Kim, T. W., & Jeong, J. M. (2019). Monitoring of the mortalities in oliver flounder (Paralichthys olivaceus) farms of Korea. Journal of fish pathology, 32(1), 29-35. https://doi.org/10.7847/JFP.2019.32.1.029
  30. Sonthipet, S., Ruenphet, S., & Takehara, K. (2018). Bactericidal and virucidal efficacies of potassium monopersulfate and its application for inactivating avian influenza virus on virus-spiked clothes. Journal of Veterinary Medical Science, 17-0599.
  31. Sovijit, W., Taesuji, M., Rattanamas, K., Punyadarsaniya, D., Mamom, T., Nguyen, H. T., & Ruenphet, S. (2021). In vitro cytotoxicity and virucidal efficacy of potassium hydrogen peroxymonosulfate compared to quaternary ammonium compound under various concentrations, exposure times and temperatures against African swine fever virus. Veterinary World, 14(11), 2936.
  32. Su, X., & D'Souza, D. H. (2012). Inactivation of human norovirus surrogates by benzalkonium chloride, potassium peroxymonosulfate, tannic acid, and gallic acid. Foodborne Pathogens and Disease, 9(9), 829-834. https://doi.org/10.1089/fpd.2012.1155
  33. Tantakit, P., Limsuwan, C., & Chuchird, N. (2013). Efficacy of potassium peroxymonosulfate for controlling Vibrio spp. in farm-raised Pacific white shrimp (Litopenaeus vannamei). In Proceedings of the 51st Kasetsart University Annual Conference, Bangkok, Thailand, 5-7 February 2013. Kasetsart University.
  34. Tulalamba, W., Assawamakin, A., Thayananuphat, A., & Viprakasit, V. (2021). Evaluation of potassium peroxymonosulfate (MPS) efficacy against SARS-CoV-2 virus using RT-qPCR-based method. International Journal of Infectious Diseases, 110, 162-164. https://doi.org/10.1016/j.ijid.2021.06.057
  35. Wang, B., AIHong, X., Li, B., Wang, J., & Zhang, Z. H. (2008). Efficacy of potassium monopersulfate compound in inhibiting and killing common pathogenic bacteria in the aquaculture industry. Chinese J Disinfection, 25, 501-502.
  36. YAN, X. M., ZHANG, Q., ZHU, H. X., LI, J., & WU, G. H. (2008). EXPERIMENTAL STUDY ON EFFICACY OF SEVERAL DISINFECTANTS IN INACTIVATION OF FOOT-AND-MOUTH DISEASE VIRUS [J]. Chinese Journal of Disinfection, 2.
  37. YANG, N., LAI, F. W., LIU, K. L., QIN, M. H., & LIANG, S. (2007). STUDY ON GERMICIDAL EFFICACY AND TOXICOLOGY OF POTASSIUM MONOPERSULFATE COMPOUND [J]. Chinese Journal of Disinfection, 3.
  38. Yi, S. W., Lee, S. H., Lee, S. J., Kim, M. H., Lee, H. H., Chu, S. B., ... & Lee, H. J. (2017). Fish Safety and Antimicrobial Activity of Natural Sulfur Solution on Aquatic Microorganisms (Saprolegnia parasitica) Isolated from Misgurnus mizolepis. Korean Journal of Environmental Biology, 35(2), 116-122. https://doi.org/10.11626/KJEB.2017.35.2.116
  39. Zhao, Z., Wang, B., Liu, M., Jiang, K., & Wang, L. (2022). Effects of the non-chlorine oxidizer potassium monopersulfate on the water quality, growth performance and microbial community of Pacific white shrimp (Penaeus vannamei) culture systems with limited water exchange. Aquaculture Research.