Determination of the Risky Microorganisms in Frozen Ready-to-EatSeafood Sold in Istanbul Market

Since frozen ready-to-eat seafood has the potential to cause food poisoning, this study focuses on microorganisms that have the potential to be a health hazard found in frozen ready-to-eat seafood, whichissoldtohighlypopulouscommunities.Therefore,themostpopularfrozenready-to-eat seafood, fish balls...

Full description

Bibliographic Details
Main Authors: Didem Üçok Alakavuk, Sühendan Mol
Format: Article
Language:English
Published: Istanbul University Press 2021-10-01
Series:Aquatic Sciences and Engineering
Subjects:
Online Access:https://dergipark.org.tr/tr/download/article-file/1734516
Description
Summary:Since frozen ready-to-eat seafood has the potential to cause food poisoning, this study focuses on microorganisms that have the potential to be a health hazard found in frozen ready-to-eat seafood, whichissoldtohighlypopulouscommunities.Therefore,themostpopularfrozenready-to-eat seafood, fish balls and surimi crab legs, from Istanbul market were studied. Samples were gathered from seven different branches of four major chain market brands, twice in winter (October-March) and twice in summer (April-September). As a result of seasonal conditions summer samples had highermicrobialloadscomparedtowintersamples.Theaveragemesophilicandpsychrophilic aerobic bacteria counts of fish balls and surimi crab legs were below ≤4 log cfu/g. All samples were safe in terms of Salmonella, Vibrio parahaemolyticus and Vibrio cholerae; and acceptable in terms of Staphylococcus aureus Clostridium perfringens, and Bacillus cereus. The microbiological load of fish balls was higher (p lt;0.05) than the other samples. It was observed that more than 80% of them are risky in terms of coliform bacteria. It is concluded that attention should be paid especially to minced and spice added products. It is essential to pay more attention to the marketing of ready-to-eat seafood during the summer seasons for the prevention of public health.
ISSN:2602-473X