Key result
Functional feeds with reduced lipid content and increased eicosapentaenoic acid levels significantly reduced hepatic steatosis and resulted in less severe heart lesions in Atlantic salmon infected with PMCV.
Why the study?
Do functional feeds with reduced lipid content and increased EPA reduce heart lesions and inflammatory responses in Atlantic salmon infected with PMCV?
Do functional feeds with reduced lipid content and increased EPA reduce heart lesions and inflammatory responses in Atlantic salmon infected with PMCV?
p-value: p=<0.05
Dietary lipid content and fatty acid composition can modulate immune responses and reduce the severity of viral-induced heart lesions in Atlantic salmon.
May guide functional feed optimization in aquaculture; leaves open translation to mammalian steatosis or myocarditis models.
BACKGROUND: Cardiomyopathy syndrome (CMS) is a severe cardiac disease of Atlantic salmon (Salmo salar) recently associated with a double-stranded RNA virus, Piscine Myocarditis Virus (PMCV). The disease has been diagnosed in 75-85 farms in Norway each year over the last decade resulting in annual economic losses estimated at up to €9 million. Recently, we demonstrated that functional feeds led to a milder inflammatory response and reduced severity of heart lesions in salmon experimentally infected with Atlantic salmon reovirus, the causal agent of heart and skeletal muscle inflammation (HSMI). In the present study we employed a similar strategy to investigate the effects of functional feeds, with reduced lipid content and increased eicosapentaenoic acid levels, in controlling CMS in salmon after experimental infection with PMCV. RESULTS: Hepatic steatosis associated with CMS was significantly reduced over the time course of the infection in fish fed the functional feeds. Significant differences in immune and inflammatory responses and pathology in heart tissue were found in fish fed the different dietary treatments over the course of the infection. Specifically, fish fed the functional feeds showed a milder and delayed inflammatory response and, consequently, less severity of heart lesions at earlier and later stages after infection with PMCV. Decreasing levels of phosphatidylinositol in cell membranes combined with the increased expression of genes related with T-cell signalling pathways revealed new interactions between dietary lipid composition and the immune response in fish during viral infection. Dietary histidine supplementation did not significantly affect immune responses or levels of heart lesions. CONCLUSIONS: Combined with the previous findings on HSMI, the results of the present study highlight the potential role of clinical nutrition in controlling inflammatory diseases in Atlantic salmon. In particular, dietary lipid content and fatty acid composition may have important immune-modulatory effects in Atlantic salmon that could be potentially beneficial in fish balancing the immune and tissue responses to viral infections.
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Martínez-Rubio et al. (2014) studied Cardiomyopathy syndrome (CMS). Functional feeds (reduced lipid, increased EPA) vs. Reference feed (31% lipid, 3.6% EPA) was evaluated on Severity of heart lesions and hepatic steatosis (histoscores) (p=<0.05). Functional feeds with reduced lipid content and increased eicosapentaenoic acid levels significantly reduced hepatic steatosis and resulted in less severe heart lesions in Atlantic salmon infected with PMCV.
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