4.7 Article

Search for effective oral adjuvants for rainbow trout (Oncorhynchus mykiss)

期刊

FISH & SHELLFISH IMMUNOLOGY
卷 128, 期 -, 页码 419-424

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fsi.2022.07.039

关键词

Adjuvants; Glucans; Flagellin; CpGs; LPS; Rainbow trout

资金

  1. Spanish Ministry of Science, Innovation and Universities [AGL2017-85494-C2-1-R, PID2020-113268RB-I00]
  2. Comunidad de Madrid [2016-T1/BIO-1672]
  3. European Research Council [2016 725061]

向作者/读者索取更多资源

Disease prevention through vaccination is the most appropriate method for pathogen control in aquaculture, but oral vaccines face technical problems in aquatic animals. This study explores different molecules as oral adjuvants and finds that LPS shows strong immunostimulatory potential and could be safely used as a mucosal adjuvant in rainbow trout.
Disease prevention by vaccination is, on economic, environmental and ethical grounds the most appropriate method for pathogen control currently available to the aquaculture sector. However, vaccine administration in aquatic animals faces obvious technical problems not encountered in other land animals. Thus, oral vaccines are highly demanded by the aquaculture sector that requests alternatives to the labor-intensive injectable vaccines that require individual handling of fish, provoking stress-related immunosuppression and handling mortalities. Despite this, most previous attempts to obtain effective oral vaccines have failed both in fish and mammals. This could be a consequence of very restricted tolerance mechanisms in the intestine given the fact that this mucosa is at the frontline upon antigen encounter and has to balance the delicate equilibrium between tolerance and immunity in a microbe rich aquatic environment. In this context, the search for an optimal combination of antigen and adjuvant that can trigger an adequate immune response able to circumvent intestinal tolerance is needed for each pathogen. To this aim, we have explored potential of molecules such as beta-glucans, flagellin, CpG and bacterial lipopolysacharide (LPS) as oral adjuvants. For this, we have determined the effects of these adjuvants ex vivo in rainbow trout intestine tissue sections, and in vitro in leucocytes isolated from rainbow trout spleen and intestine. The effects were evaluated by analyzing the levels of transcription of different genes related to the innate and adaptive immune response, as well as evaluating the number of IgM-secreting cells. LPS seems to be the molecule with stronger immunostimulatory potential, and could safely be used as a mucosal adjuvant in rainbow trout. Moreover, the designed strategy provides a fast methodology to screen adjuvants that are suitable for oral vaccination, providing us with valuable information about how the intestinal mucosa is regulated in fish.

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