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Efficacy of Organic Acids to Control Listeria monocytogenes on Hard-Cooked Eggs during Refrigerated Storage
Bashayer A Khouja1, Hui Zeng2, Megan L Fay1
1Division of Food Processing Science and Technology, U. S. Food and Drug Administration, Bedford Park, Illinois, USA.
Abstract:
Peeled hard-cooked eggs (HCEs) are ready-to-eat foods susceptible to Listeria monocytogenes contamination during postprocessing. A 2019 multistate listeriosis outbreak linked to HCEs treated with 0.3% citric acid highlighted the need for effective antimicrobial treatment. This study evaluated the efficacy of organic acid treatments (0.3% and 2% citric, and 2% acetic, lactic, and malic acids) at 5 °C and 25 °C against low-level contamination (1 log CFU/HCE) on HCEs during 28-day refrigerated storage (5 °C). Two contamination scenarios were assessed: inoculation prior to acid treatment (simulating processing contamination) and inoculation after acid treatment (simulating posttreatment cross-contamination). For pretreatment contamination, 2% acetic acid at 5 °C achieved complete elimination of detectable L. monocytogenes by 3 d, while 2% malic acid demonstrated 0-1/9 positive samples from 7 to 28 days. In contrast, 0.3% citric acid and 2% lactic acid were the least effective, maintaining ≥3/9 positive samples throughout storage. For posttreatment contamination, only 2% citric acid achieved elimination of detectable L. monocytogenes (by 14 days at 5 °C and 7 days at 25 °C). The pH of HCE components decreased significantly during treatment with the 2% organic acids, with 2% citric acid achieving the lowest albumen pH (3.13-3.69). These results demonstrate that organic acid effectiveness against L. monocytogenes on HCEs is dependent on acid type, concentration, and whether the contamination occurs pre- or postprocessing. Data from this study can be used to better understand the survival of L. monocytogenes on HCEs treated with organic acids to ensure the safety of this food product.
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