Spring viremia of carp virus (SVCV) poses a major threat to carp aquaculture due to the lack of effective antiviral strategies. This study investigates the antiviral potential of baicalin in epithelioma papulosum cyprini (EPC) cells and zebrafish. Baicalin exhibits antiviral activity during both pretreatment and post-infection treatment and shows direct virucidal activity during virus–compound co-incubation. Moreover, baicalin alleviated oxidative stress, preserved mitochondrial function, and reduced apoptosis in infected cells. Proteomic analyses revealed that baicalin suppressed SVCV replication by modulating the AMPK/mTOR signaling pathway, as evidenced by decreased AMPK phosphorylation, increased mTOR phosphorylation, and subsequent inhibition of autophagy. These findings demonstrate that baicalin significantly suppresses SVCV replication and is associated with modulation of the AMPK/mTOR-mediated autophagy pathway. These findings identify baicalin as a promising antiviral candidate against SVCV and provide a foundation for further evaluation in economically important aquaculture species.
Mingyang Xue, Mengwei Zhang, Yang Hu et al.· Frontiers in Immunology· 0 citations
Simple Summary Bacterial diseases are a major challenge in aquaculture, creating an urgent need for new disease-control strategies. In this study, we investigated the role of a natural immune protein, CXCL14, from grass carp in protecting fish against bacterial infections. We found that this protein was highly expressed in immune-related tissues and was upregulated after bacterial challenge. Recombinant CXCL14 showed broad-spectrum antibacterial activity against several important fish pathogens and protected grass carp by reducing bacterial burdens and improving survival after infection. Laboratory experiments also showed that the protein disrupted bacterial membranes and interacted with purified bacterial DNA in vitro. These findings improve our understanding of the antibacterial function of fish CXCL14 and provide a basis for future studies on its potential application in aquaculture.
Yang Hu, Yu Chen, Weicheng Wang et al.· Animals· 0 citations