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赭曲霉毒素A生物降解的分子见解。

Molecular insights into ochratoxin A biodegradation.

作者信息

Ábrahám Renáta, Baka Erzsébet, Al-Nussairawi Mohammed, Táncsics András, Farkas Milán, Nagy István, Kriszt Balázs, Cserháti Mátyás

机构信息

Department of Molecular Ecology, Institute of Aquaculture and Environmental Safety, University of Agriculture and Life Sciences, Gödöllő, Hungary.

Department of Clinical and Laboratory Sciences, College of Pharmacy, University of Misan, Amarah, Iraq.

出版信息

Biol Futur. 2025 May 15. doi: 10.1007/s42977-025-00258-2.

Abstract

Most of the agricultural products can potentially be exposed to mycotoxins-especially to ochratoxin A (OTA)-, which may cause foodborne diseases such as renal toxicity and notable economic losses worldwide. Biological detoxification is the most promising method to control OTA contamination. To provide a comprehensive understanding, this review summarizes the biodegradation pathways of OTA and discusses microbes capable of degrading OTA and their detoxification strategies. A detailed analysis of potentially useful enzymes for food and feed detoxification will be reported, highlighting specific enzymatic strategies identified in scientific literature. A comparative analysis of the functional capabilities of different OTA hydrolases demonstrates significant variation in degradation efficiency, thus the optimization of these enzymes is essential for the development of effective detoxification strategies. This review underscores the potential of harnessing these microorganisms and their enzymes for mitigating the toxic effects of OTA in contaminated environment and examining the essential requirements that must be met for the successful application of OTA degrading enzyme technology for promoting public health and food safety.

摘要

大多数农产品都有可能受到霉菌毒素的污染,尤其是赭曲霉毒素A(OTA),这可能会导致食源性疾病,如肾毒性,并在全球范围内造成显著的经济损失。生物解毒是控制OTA污染最具前景的方法。为了提供全面的理解,本综述总结了OTA的生物降解途径,并讨论了能够降解OTA的微生物及其解毒策略。将报告对食品和饲料解毒潜在有用酶的详细分析,突出科学文献中确定的特定酶策略。对不同OTA水解酶功能能力的比较分析表明,降解效率存在显著差异,因此优化这些酶对于开发有效的解毒策略至关重要。本综述强调了利用这些微生物及其酶减轻受污染环境中OTA毒性影响的潜力,并探讨了成功应用OTA降解酶技术促进公众健康和食品安全必须满足的基本要求。

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