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Vaccines not protecting farmed fish from disease

Date:
January 22, 2018
Source:
University of Waterloo
Summary:
The vaccines used by commercial fish farmers are not protecting fish from disease, according to a new study.
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The vaccines used by commercial fish farmers are not protecting fish from disease, according to a new study.

The study was compiled by researchers at the University of Waterloo, the Pontifical Catholic University of Valparaiso and Chile's University of Valparaiso. It showed vaccinated fish tend to show more symptoms when contracting diseases, with the health impacts and ultimately deaths occurring as if they'd never received a vaccine.

"Today's vaccines are marketed to fish farms as necessary disease prevention and are even required by some insurance companies, but they are not nearly as effective as needed under real world conditions." said Brian Dixon, a professor in biology at Waterloo. "Some operators are giving five vaccinations per fish and then there are fish losses from the stress of receiving multiple handlings and injections."

In the study, the researchers tested the efficacy of the vaccine for the bacterial pathogen Piscirickettsia salmonis by comparing the reaction of vaccinated and non-vaccinated Atlantic salmon when exposed to the sea louse Caligus rogercresseyi in the lab.

They found that although the number of bacteria living inside the fish was much lower in vaccinated fish, they showed many more signs of infection and a higher death rate compared with the unvaccinated group upon exposure to the sea lice.

The study concluded that once vaccinated, the salmon was unable to fight off multiple diseases at once. It's first study showing how a parasite in fish can override the protective effects of a vaccine for another disease.

The experience of salmon farmers in Chile supports this finding, where salmon are raised largely in open cages off the coast, exposing them to variety of pathogens, the most common of which is sea lice.

The researchers say this highlights the need for veterinary pharmaceutical companies to change how they design and test vaccines in the first place, recognizing how different fish immune systems are from the current human model.

"Fish have a limited number of resources to respond to an illness so their immune system makes choices -- when they're infected by sea lice, for example, the fish's immune system is suddenly geared to respond to that specific threat, leaving them totally exposed to other threats like P. salmonis," said Dixon, a Canada Research Chair in Fish and Environmental Immunology. "It's like sending ambulances out to all emergencies when in fact some of those emergencies need firefighters."

In the 2008 Chile's farmed salmon industry was nearly wiped out by Infectious Salmon Anaemia Virus (ISVA). Since then salmon farmers have been turning to vaccines to lower their use of antibiotics while prevent devastating losses from reoccurring disease. But vaccinations are expensive and can cost Chilean operators as much as 30 per cent of cost of raising each fish.

The findings appeared last month in Scientific Reports, a Nature journal publication.


Story Source:

Materials provided by University of Waterloo. Note: Content may be edited for style and length.


Journal Reference:

  1. Carolina Figueroa, Paulina Bustos, Débora Torrealba, Brian Dixon, Carlos Soto, Pablo Conejeros, José A. Gallardo. Coinfection takes its toll: Sea lice override the protective effects of vaccination against a bacterial pathogen in Atlantic salmon. Scientific Reports, 2017; 7 (1) DOI: 10.1038/s41598-017-18180-6

Cite This Page:

University of Waterloo. "Vaccines not protecting farmed fish from disease." ScienceDaily. ScienceDaily, 22 January 2018. <www.sciencedaily.com/releases/2018/01/180122091252.htm>.
University of Waterloo. (2018, January 22). Vaccines not protecting farmed fish from disease. ScienceDaily. Retrieved December 3, 2024 from www.sciencedaily.com/releases/2018/01/180122091252.htm
University of Waterloo. "Vaccines not protecting farmed fish from disease." ScienceDaily. www.sciencedaily.com/releases/2018/01/180122091252.htm (accessed December 3, 2024).

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