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赭曲霉毒素A生物解毒的进展——过去五十年综述

Advances in Biodetoxification of Ochratoxin A-A Review of the Past Five Decades.

作者信息

Chen Wenying, Li Chen, Zhang Boyang, Zhou Zheng, Shen Yingbin, Liao Xin, Yang Jieyeqi, Wang Yan, Li Xiaohong, Li Yuzhe, Shen Xiao L

机构信息

School of Public Health, Zunyi Medical University, Zunyi, China.

Experimental Teaching Demonstration Center for Preventive Medicine of Guizhou Province, Zunyi Medical University, Zunyi, China.

出版信息

Front Microbiol. 2018 Jun 26;9:1386. doi: 10.3389/fmicb.2018.01386. eCollection 2018.

Abstract

Ochratoxin A (OTA) is a toxic secondary fungal metabolite that widely takes place in various kinds of foodstuffs and feeds. Human beings and animals are inevitably threatened by OTA as a result. Therefore, it is necessary to adopt various measures to detoxify OTA-contaminated foods and feeds. Biological detoxification methods, with better safety, flavor, nutritional quality, organoleptic properties, availability, and cost-effectiveness, are more promising than physical and chemical detoxification methods. The state-of-the-art research advances of OTA biodetoxification by degradation, adsorption, or enzymes are reviewed in the present paper. Researchers have discovered a good deal of microorganisms that could degrade and/or adsorb OTA, including actinobacteria, bacteria, filamentous fungi, and yeast. The degradation of OTA to non-toxic or less toxic OTα via the hydrolysis of the amide bond is the most important OTA biodegradation mechanism. The most important influence factor of OTA adsorption capacity of microorganisms is cell wall components. A large number of microorganisms with good OTA degradation and/or adsorption ability, as well as some OTA degradation enzymes isolated or cloned from microorganisms and animal pancreas, have great application prospects in food and feed industries.

摘要

赭曲霉毒素A(OTA)是一种有毒的真菌次生代谢产物,广泛存在于各类食品和饲料中。因此,人类和动物不可避免地受到OTA的威胁。所以,有必要采取各种措施对受OTA污染的食品和饲料进行解毒。生物解毒方法具有更好的安全性、风味、营养品质、感官特性、可用性和成本效益,比物理和化学解毒方法更具前景。本文综述了通过降解、吸附或酶对OTA进行生物解毒的最新研究进展。研究人员已经发现了大量能够降解和/或吸附OTA的微生物,包括放线菌、细菌、丝状真菌和酵母。通过酰胺键水解将OTA降解为无毒或低毒的OTα是最重要的OTA生物降解机制。微生物对OTA吸附能力的最重要影响因素是细胞壁成分。大量具有良好OTA降解和/或吸附能力的微生物,以及从微生物和动物胰腺中分离或克隆的一些OTA降解酶,在食品和饲料工业中具有广阔的应用前景。

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