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February 22, 2026Transboundary and Emerging Diseases0 citationsOpen Access

Determinants of Ascaridoid Nematode Infection and Anisakis‐Related Zoonotic Exposure Risk in Eastern Mediterranean Gadiformes Fishes

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FOFlavia OcchiboveALAlejandro López-VerdejoVMValerio Mazzella

Key Points

  • The aim is to understand the factors influencing ascaridoid nematode infection, particularly Anisakis spp., in marine fishes from the Eastern Mediterranean.
  • Investigated ascaridoid fauna of European hake and greater forkbeard from the Ionian Sea.
  • Integrated host biometric and seasonal data with molecular identification.
  • Performed quantitative risk assessment for Anisakis pegreffii.
  • Anisakis pegreffii was the dominant species found in both fish hosts.
  • Larval abundance showed seasonal peaks in summer and correlated with host physiological conditions.
  • Only a small percentage of larvae were detected in muscle tissue (2.6% in hake, 0.6% in forkbeard).
  • Quantitative risk assessment revealed a low probability of anisakiasis from untreated hake (approximately 1 per 52,609 meals).

Abstract

Larvae of ascaridoid nematodes, particularly Anisakis spp., are common parasites of commercially important marine fishes and may represent a zoonotic hazard following ingestion of raw or undercooked seafood. We investigated the ascaridoid fauna of the sympatric European hake ( Merluccius merluccius ) and greater forkbeard ( Phycis blennoides ) from the Ionian Sea (Eastern Mediterranean), integrating host biometric and seasonal drivers with molecular identification and quantitative risk assessment (QRA) for the zoonotic Anisakis pegreffii . Anisakis pegreffii was the dominant species in both hosts, followed by Hysterothylacium aduncum ; other detected taxa included A. typica , A. ziphidarum , Skrjabinisakis physeteris , and H. fabri . In both hosts, the larval abundance exhibited marked seasonal peaks in summer and correlated more strongly with host liver and gonad condition indices, suggesting that seasonality, togheter with host physiological state, rather than size alone, modulates infection levels. Most larvae were found in the visceral non edible parts of the fish, while only a small proportion of these were detected in skeletal muscles (2.6% in hake and 0.6% in forkbeard), primarily in the anterior ventral fillet portion. QRA indicated a low per‐meal probability of anisakiasis from untreated hake (~1 case per 52,609 meals). These findings highlight species‐specific, trophically mediated infection patterns and reinforce that European hake and greater forkbeard represent minor but nonnegligible sources of zoonotic risk. Preventive measures, including immediate evisceration, proper freezing or cooking, and selective fillet trimming, are recommended to minimize human exposure.

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Cite This Study

Occhibove et al. (2026) studied this question.

synapsesocial.com/papers/699a9d8e482488d673cd3732https://doi.org/10.1155/tbed/5392704
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