Non-tuberculous mycobacteria are recognized as pathogens affecting aquatic animals and humans. Although Mycobacterium marinum is traditionally considered the principal etiolog￾ical agent of fish mycobacteriosis and fish-tank granuloma in humans, the contribution of Mycobacterium chelonae in fish as well as in humans remains underestimated, particularly in Ziehl–Neelsen (ZN)-negative lesions. In this study, granulomatous lesions of marine fish species and human skin biopsies were investigated using histopathology and molecular diagnostics. Following histological evaluation, all samples were analysed by PCR amplifi￾cation and sequencing of the hsp65 gene to identify the causative agent. Fish and human tissues showed similar chronic granulomatous lesions, with all cases negative for acid-fast bacilli by ZN staining. Molecular analysis consistently identified M. chelonae in both marine fish organs and human skin lesions exhibiting clinicopathological features traditionally attributed to M. marinum. Phylogenetic analysis revealed high genetic similarity between fish- and human-derived sequences, suggesting shared environmental reservoirs rather than host-specific lineages. These findings identify M. chelonae as an underrecognized cause of granulomatous disease in fish and humans and demonstrate the limitations of histochemical methods in these infections. Incorporating molecular diagnostics into routine investigations of granulomatous disease supports more accurate diagnosis across veterinary and human medicine and strengthens One Health surveillance of aquatic non-tuberculous mycobacterial infections.

Mycobacterium chelonae as an Underrecognized Cause of Granulomatous Disease in Fish and Humans: A Molecular One Health Study / Cubeddu, T., Pilloni, L., Burrai, G.P., Sanna, M.A., Polinas, M., Murgia, C., Gerosa, C., Ambu, R., Fanni, D., Antuofermo, E.. - In: PATHOGENS. - ISSN 2076-0817. - 15:8(2026). [10.3390/pathogens15080856]

Mycobacterium chelonae as an Underrecognized Cause of Granulomatous Disease in Fish and Humans: A Molecular One Health Study

Cubeddu, Tiziana;Burrai, Giovanni Pietro
;
Sanna, Marina Antonella;Polinas, Marta;Murgia, Claudio;Antuofermo, Elisabetta
2026-01-01

Abstract

Non-tuberculous mycobacteria are recognized as pathogens affecting aquatic animals and humans. Although Mycobacterium marinum is traditionally considered the principal etiolog￾ical agent of fish mycobacteriosis and fish-tank granuloma in humans, the contribution of Mycobacterium chelonae in fish as well as in humans remains underestimated, particularly in Ziehl–Neelsen (ZN)-negative lesions. In this study, granulomatous lesions of marine fish species and human skin biopsies were investigated using histopathology and molecular diagnostics. Following histological evaluation, all samples were analysed by PCR amplifi￾cation and sequencing of the hsp65 gene to identify the causative agent. Fish and human tissues showed similar chronic granulomatous lesions, with all cases negative for acid-fast bacilli by ZN staining. Molecular analysis consistently identified M. chelonae in both marine fish organs and human skin lesions exhibiting clinicopathological features traditionally attributed to M. marinum. Phylogenetic analysis revealed high genetic similarity between fish- and human-derived sequences, suggesting shared environmental reservoirs rather than host-specific lineages. These findings identify M. chelonae as an underrecognized cause of granulomatous disease in fish and humans and demonstrate the limitations of histochemical methods in these infections. Incorporating molecular diagnostics into routine investigations of granulomatous disease supports more accurate diagnosis across veterinary and human medicine and strengthens One Health surveillance of aquatic non-tuberculous mycobacterial infections.
2026
Inglese
15
8
non-tuberculous mycobacteria; M. chelonae; granulomatous dermatitis; fish mycobacteriosis; Ziehl–Neelsen staining; molecular diagnostics; One Health
Internazionale
Cubeddu, Tiziana; Pilloni, Luca; Burrai, Giovanni Pietro; Sanna, Marina Antonella; Polinas, Marta; Murgia, Claudio; Gerosa, Clara; Ambu, Rossano; Fann...espandi
Mycobacterium chelonae as an Underrecognized Cause of Granulomatous Disease in Fish and Humans: A Molecular One Health Study / Cubeddu, T., Pilloni, L., Burrai, G.P., Sanna, M.A., Polinas, M., Murgia, C., Gerosa, C., Ambu, R., Fanni, D., Antuofermo, E.. - In: PATHOGENS. - ISSN 2076-0817. - 15:8(2026). [10.3390/pathogens15080856]
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
10
none
   SARDIAS—Sistemi Avanzati per la Diagnos￾tica, la Ricerca e l’Innovazione nell’Acquacoltura Sostenibile in Sardegna” Codice progetto 24/BEN/5; CUP J43C25001160002, funded under the PN FEAMPA Italia 2021/2027, Priorità 2, Obiettivo Specifico 2.1, Azione 6 BEN “Salute e compatibilità ambientale dei prodotti dell’acquacoltura

   DM 737/2021 risorse 2022–2023: Bando interno per la ricerca collaborativa tra Ate￾neo di Sassari e Ateneo di Cagliari–DM 737/2021 risorse 2022–2023
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/390929
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