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噬菌体疗法作为一种控制与贝类消费相关的致病菌的生物防治方法的潜力。

Phage therapy as a potential approach in the biocontrol of pathogenic bacteria associated with shellfish consumption.

机构信息

Department of Biology & CESAM, Campus Universitário de Santiago, Universidade de Aveiro, 3810-193 Aveiro, Portugal.

Department of Biology & CESAM, Campus Universitário de Santiago, Universidade de Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Int J Food Microbiol. 2021 Jan 2;338:108995. doi: 10.1016/j.ijfoodmicro.2020.108995. Epub 2020 Nov 27.

Abstract

Infectious human diseases acquired from bivalve shellfish consumption constitute a public health threat. These health threats are largely related to the filter-feeding phenomenon, by which bivalve organisms retain and concentrate pathogenic bacteria from their surrounding waters. Even after depuration, bivalve shellfish are still involved in outbreaks caused by pathogenic bacteria, which increases the demand for new and efficient strategies to control transmission of shellfish infection. Bacteriophage (or phage) therapy represents a promising, tailor-made approach to control human pathogens in bivalves, but its success depends on a deep understanding of several factors that include the bacterial communities present in the harvesting waters, the appropriate selection of phage particles, the multiplicity of infection that produces the best bacterial inactivation, chemical and physical factors, the emergence of phage-resistant bacterial mutants and the life cycle of bivalves. This review discusses the need to advance phage therapy research for bivalve decontamination, highlighting their efficiency as an antimicrobial strategy and identifying critical aspects to successfully apply this therapy to control human pathogens associated with bivalve consumption.

摘要

因食用双壳贝类而感染的人类传染病构成了公共卫生威胁。这些健康威胁主要与滤食现象有关,双壳类生物通过这种现象从周围水域中保留和浓缩致病菌。即使经过净化处理,贝类仍然会引发由致病菌引起的疫情爆发,这增加了对新的和有效的策略的需求,以控制贝类感染的传播。噬菌体(或噬菌体)治疗代表了一种有前途的、定制的方法,可以控制双壳类动物中的人类病原体,但它的成功取决于对几个因素的深入了解,包括收获水域中存在的细菌群落、适当选择噬菌体颗粒、产生最佳细菌灭活效果的感染复数、化学和物理因素、噬菌体抗性细菌突变体的出现以及双壳类动物的生命周期。本文综述了推进噬菌体治疗双壳贝类净化研究的必要性,强调了它们作为一种抗菌策略的效率,并确定了成功将这种疗法应用于控制与贝类消费相关的人类病原体的关键方面。

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