Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine

Mucosal vaccination, which has the potential to induce both mucosal and systemic immune responses, is considered the most suitable method of preventing infectious diseases in farmed fish. Aeromonas veronii and Edwardsiella ictaluri are two pathogenic bacteria found in yellow catfish and often infect...

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Main Authors: Wei Guang Kong, Da Cheng Qin, Qing Jiang Mu, Zhao Ran Dong, Yang Zhi Luo, Tao Shan Ai, Zhen Xu
Format: Article
Language:English
Published: KeAi Communications Co. Ltd. 2022-05-01
Series:Water Biology and Security
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2772735122000464
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author Wei Guang Kong
Da Cheng Qin
Qing Jiang Mu
Zhao Ran Dong
Yang Zhi Luo
Tao Shan Ai
Zhen Xu
author_facet Wei Guang Kong
Da Cheng Qin
Qing Jiang Mu
Zhao Ran Dong
Yang Zhi Luo
Tao Shan Ai
Zhen Xu
author_sort Wei Guang Kong
collection DOAJ
description Mucosal vaccination, which has the potential to induce both mucosal and systemic immune responses, is considered the most suitable method of preventing infectious diseases in farmed fish. Aeromonas veronii and Edwardsiella ictaluri are two pathogenic bacteria found in yellow catfish and often infect the fish through mucosal surfaces. Delivery of a bivalent inactivated vaccine by injection has been shown to induce a strong systemic immune response against both bacterial infections. However, mucosal immune responses and protective efficiency induced by this inactivated vaccine administrated via immersion are yet to be investigated. We developed a bivalent vaccine containing formalin-inactivated A. veronii and E. ictaluri and evaluated the immune response in yellow catfish after immersion vaccination using body fluids biochemistry indices, agglutinating antibody titers, and the expression level of immune-related genes in the skin, gills, spleen, and head kidney. The activities of innate immune-related enzymes and specific agglutination antibody titers in body fluids, as well as the expression of innate and adaptive immune-related genes in both the mucosal and systemic tissues of vaccinated fish, were significantly higher than that in control fish. Next, we assessed the protective efficacy by a challenge model of virulent strains of E. ictaluri and A. veronii. The relative survival percent of vaccinated fish was 80% and 87% after challenging fish with E. ictaluri and A. veronii, respectively, which was higher than unvaccinated control fish (43% and 57%). These results confirm that the bivalent inactivated vaccine administered via immersion induces a strong mucosal immune response and confers good protection against both E. ictaluri and A. veronii. Our results also reinforce the notion that immersion vaccination could stimulate both mucosal and systemic immunity contributing to protection against pathogens.
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spelling doaj.art-064031d4f5f5492196176306ab33431a2023-04-28T08:57:19ZengKeAi Communications Co. Ltd.Water Biology and Security2772-73512022-05-0112100032Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccineWei Guang Kong0Da Cheng Qin1Qing Jiang Mu2Zhao Ran Dong3Yang Zhi Luo4Tao Shan Ai5Zhen Xu6State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei, 430072, ChinaDepartment of Aquatic Animal Medicine, College of Fisheries, Huazhong Agricultural University, Wuhan, Hubei, 430070, ChinaDepartment of Aquatic Animal Medicine, College of Fisheries, Huazhong Agricultural University, Wuhan, Hubei, 430070, ChinaDepartment of Aquatic Animal Medicine, College of Fisheries, Huazhong Agricultural University, Wuhan, Hubei, 430070, ChinaWuhan Chopper Fishery Bio-Tech Co., Ltd, Wuhan Academy of Agricultural Science, Wuhan, 430207, ChinaWuhan Chopper Fishery Bio-Tech Co., Ltd, Wuhan Academy of Agricultural Science, Wuhan, 430207, ChinaState Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei, 430072, China; Corresponding author.Mucosal vaccination, which has the potential to induce both mucosal and systemic immune responses, is considered the most suitable method of preventing infectious diseases in farmed fish. Aeromonas veronii and Edwardsiella ictaluri are two pathogenic bacteria found in yellow catfish and often infect the fish through mucosal surfaces. Delivery of a bivalent inactivated vaccine by injection has been shown to induce a strong systemic immune response against both bacterial infections. However, mucosal immune responses and protective efficiency induced by this inactivated vaccine administrated via immersion are yet to be investigated. We developed a bivalent vaccine containing formalin-inactivated A. veronii and E. ictaluri and evaluated the immune response in yellow catfish after immersion vaccination using body fluids biochemistry indices, agglutinating antibody titers, and the expression level of immune-related genes in the skin, gills, spleen, and head kidney. The activities of innate immune-related enzymes and specific agglutination antibody titers in body fluids, as well as the expression of innate and adaptive immune-related genes in both the mucosal and systemic tissues of vaccinated fish, were significantly higher than that in control fish. Next, we assessed the protective efficacy by a challenge model of virulent strains of E. ictaluri and A. veronii. The relative survival percent of vaccinated fish was 80% and 87% after challenging fish with E. ictaluri and A. veronii, respectively, which was higher than unvaccinated control fish (43% and 57%). These results confirm that the bivalent inactivated vaccine administered via immersion induces a strong mucosal immune response and confers good protection against both E. ictaluri and A. veronii. Our results also reinforce the notion that immersion vaccination could stimulate both mucosal and systemic immunity contributing to protection against pathogens.http://www.sciencedirect.com/science/article/pii/S2772735122000464Mucosal immune responseBivalent inactivated vaccineImmersion vaccinationAeromonas veroniiEdwardsiella ictaluriYellow catfish
spellingShingle Wei Guang Kong
Da Cheng Qin
Qing Jiang Mu
Zhao Ran Dong
Yang Zhi Luo
Tao Shan Ai
Zhen Xu
Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
Water Biology and Security
Mucosal immune response
Bivalent inactivated vaccine
Immersion vaccination
Aeromonas veronii
Edwardsiella ictaluri
Yellow catfish
title Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
title_full Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
title_fullStr Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
title_full_unstemmed Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
title_short Mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated Aeromonas veronii and Edwardsiella ictaluri vaccine
title_sort mucosal immune responses and protective efficacy in yellow catfish after immersion vaccination with bivalent inactivated aeromonas veronii and edwardsiella ictaluri vaccine
topic Mucosal immune response
Bivalent inactivated vaccine
Immersion vaccination
Aeromonas veronii
Edwardsiella ictaluri
Yellow catfish
url http://www.sciencedirect.com/science/article/pii/S2772735122000464
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