Bactericidal efficacy of non-thermal plasma activation against Aeromonas hydrophila and immunological responses of koi (Cyprinus carpio haematopterus)

灭菌(经济) 鲤鱼 嗜水气单胞菌 生物 水产养殖 不利影响 微生物学 渔业 药理学 经济 外汇市场 货币经济学 外汇
作者
Sang Wha Kim,Hyoun Joong Kim,Sang Guen Kim,Jun Kwon,Sung Bin Lee,Won Jung,Young Min Lee,Su Jin Jo,Sib Sankar Giri,Seok Hyun Yoon,Seon‐Ho Kim,Chan Mo Kim,Cheng Chi,Se Chang Park
出处
期刊:Fish & Shellfish Immunology [Elsevier BV]
卷期号:121: 197-204 被引量:8
标识
DOI:10.1016/j.fsi.2022.01.007
摘要

In the aquaculture industry, an efficient and safe water purification system is important to prevent mass mortality by virulent pathogens. As extensive use of traditional methods (e.g.: povidone-iodine, ozone, ultraviolet irradiation, formalin, and chlorine dioxide) have adverse effects on cultured fish, an appropriate and alternative water purification method is vital for the sustainability of the industry. Non-thermal plasma technology has been successfully used for various biomedical purposes (e.g: food sterilization, medical device disinfection, wound healing, cancer therapy, etc.) and has great potential to be used as a sterilizing system. However, few studies have been conducted on its usefulness in the aquaculture industry. In this study, we investigated the bactericidal efficacy of plasma-activated water induced by non-thermal plasma and its histopathological as well as immunological adverse effects on koi. A highly virulent Aeromonas hydrophila SNU HS7, which caused massive mortality of koi, was used for this study. Non-thermal plasma was applied for 10 min to the fish tanks with 1.2 × 109 CFU/mL SNU HS7 using PLMB-20 system to confirm the sterilization efficacy and to observe the survival and immunological reaction of koi for 14 days. As a result, gross pathological, histopathological, and immunological investigations did not reveal any significant adverse effects in fish as compared to the control groups. To the best of our knowledge, this is the first study showing that non-thermal plasma can be used for sterilization of rearing water without giving significant physiological damage to the fish, even under the assumption of extreme situations. As plasma can effectively sterilize not only bacteria but also other unknown pathogens, the results of this study are showing a promising future in purifying water in aquaculture practice.
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