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光动力灭活作为一种新兴策略,用于对抗浮游和附着状态下的食源性致病菌。

Photodynamic inactivation as an emergent strategy against foodborne pathogenic bacteria in planktonic and sessile states.

机构信息

a Postgraduate Program of Health Sciences , State University of Maringá , Maringá , Paraná , Brazil.

b LEPABE, Department of Chemical Engineering, Faculty of Engineering , University of Porto , Porto , Portugal.

出版信息

Crit Rev Microbiol. 2018 Nov;44(6):667-684. doi: 10.1080/1040841X.2018.1491528. Epub 2018 Oct 14.

Abstract

Foodborne microbial diseases are still considered a growing public health problem worldwide despite the global continuous efforts to ensure food safety. The traditional chemical and thermal-based procedures applied for microbial growth control in the food industry can change the food matrix and lead to antimicrobial resistance. Moreover, currently applied disinfectants have limited efficiency against biofilms. Therefore, antimicrobial photodynamic therapy (aPDT) has become a novel alternative for controlling foodborne pathogenic bacteria in both planktonic and sessile states. The use of aPDT in the food sector is attractive as it is less likely to cause antimicrobial resistance and it does not promote undesirable nutritional and sensory changes in the food matrix. In this review, aspects on the antimicrobial photodynamic technology applied against foodborne pathogenic bacteria and studied in recent years are presented. The application of photodynamic inactivation as an antibiofilm strategy is also reviewed.

摘要

尽管全球持续努力确保食品安全,但食源性微生物疾病仍然被认为是一个日益严重的全球公共卫生问题。食品工业中用于控制微生物生长的传统化学和热基方法会改变食品基质并导致抗微生物耐药性。此外,目前应用的消毒剂对生物膜的效率有限。因此,抗菌光动力疗法 (aPDT) 已成为控制浮游和固着状态食源性病原体的一种新方法。由于光动力疗法不太可能导致抗微生物耐药性,并且不会促进食品基质中不良的营养和感官变化,因此它在食品领域的应用具有吸引力。在本文综述中,介绍了近年来针对食源性病原体细菌并在食品领域中进行了研究的抗菌光动力技术的应用。还综述了光动力失活作为抗生物膜策略的应用。

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