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Egan, F.

Publications and source records attributed to Egan, F..

2 recordsLinked to original sources

Repurposing drugs to treat Amoebic Gill Disease in Atlantic Salmon

Neoparameoba perurans causes Amoebic Gill Disease (AGD), a major parasitic disease of marine-phase Atlantic salmon and rainbow trout worldwide. Treatment options are limited to freshwater baths, which are costly at scale and exhibit only limited long-term efficacy. N. perurans contains an obligate eukaryotic symbiont, Perkinsela-like organism (PLO). PLO belongs to the class Kinetoplastida, which includes medically and veterinary important parasites such as Trypanosoma and Leishmania. As such, we hypothesised that trypanocidal drugs developed against other kinetoplastids might also affect N. perurans, potentially through disruption of its PLO symbiont, and used this hypothesis as a rationale for prioritising a focused panel of candidate compounds for screening. A holographic motility-based cytotoxicity assay was established to identify promising candidates in vitro, followed by controlled host tolerance testing and finally a field efficacy sea trial using naturally AGD-exposed site in the west of Ireland. Several compounds showed activity in vitro, especially miltefosine (EC50 1.84 uM, amoebicidal) and isometamidum (EC50 4.63 uM, amoebostatic). In vivo (two intramuscular injections, two weeks apart), miltefosine (Odds Ratio (OR) 0.62), isometamidum (OR 0.61) and benznidazole (OR 0.64) significantly improved gill score over four weeks, with miltefosine showing the largest effect size. Gill parasitaemia, measured via qPCR, was not reduced. Instead, two compounds increased apparent amoeba loads. This work support trypanocidal as potential AGD treatments in the field, although optimisation of dosing, delivery and mode of action requires further study.

microbiology↗

Impact of Vitamin D on Gene Expression in Atlantic Salmon Skin and Potential Immunomodulation Against Salmon Louse Infection

Vitamin D is a key micronutrient in vertebrate health that influences musculoskeletal function and likely modulates immune responses in tissues such as the skin. In aquaculture, Atlantic salmon (Salmo salar) are particularly vulnerable to skin pathogens, notably the ectoparasitic salmon louse (Lepeophtheirus salmonis). As the skin represents the first line of immunological defence, its capacity to mediate host-pathogen interactions may be influenced by dietary vitamin D. This study investigated the transcriptomic response of salmon skin following six months of dietary vitamin D supplementation, with a focus on immune-related gene expression. A total of 113 differentially expressed genes (DEGs) were identified, 46 of which are implicated in inflammation, immune signalling, and both innate and adaptive immunity. These DEGs were further compared to published RNA-seq data of salmon skin challenged with L. salmonis. Notably, while pro-inflammatory genes were regulated in opposing directions, heat shock proteins, lysozyme and antimicrobial peptides were consistently upregulated under both conditions. These findings suggest that vitamin D may modulate cutaneous immune responses by dampening inflammation and enhancing innate defences, potentially improving resistance to skin-associated pathogens such as salmon lice.

genomics↗