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Use of Genetically Engineered Phage To Deliver Antimicrobial Agents to Bacteria: an Alternative Therapy for Treatment of Bacterial Infections

机译:基因工程噬菌体向细菌输送抗菌剂的使用:细菌感染治疗的替代疗法。

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摘要

The emergence and increasing prevalence of multidrug-resistant bacterial pathogens emphasizes the need for new and innovative antimicrobial strategies. Lytic phages, which kill their host following amplification and release of progeny phage into the environment, may offer an alternative strategy for combating bacterial infections. In this study, however, we describe the use of a nonlytic phage to specifically target and deliver DNA encoding bactericidal proteins to bacteria. To test the concept of using phage as a lethal-agent delivery vehicle, we used the M13 phagemid system and the addiction toxins Gef and ChpBK. Phage delivery of lethal-agent phagemids reduced target bacterial numbers by several orders of magnitude in vitro and in a bacteremic mouse model of infection. Given the powerful genetic engineering tools available and the present knowledge in phage biology, this technology may have potential use in antimicrobial therapies and DNA vaccine development.
机译:多药耐药性细菌病原体的出现和日益流行强调了对新的和创新的抗菌策略的需求。裂解噬菌体在后代噬菌体扩增并释放到环境中后会杀死其宿主,这可能为抵抗细菌感染提供了另一种策略。但是,在这项研究中,我们描述了使用非溶解性噬菌体来特异性靶向并向细菌传递编码杀菌蛋白的DNA。为了测试使用噬菌体作为致死剂递送工具的概念,我们使用了M13噬菌粒系统以及成瘾毒素Gef和ChpBK。在体外和在感染的细菌小鼠模型中,致死剂噬菌粒的噬菌体递送将靶细菌数量减少了几个数量级。鉴于可用的强大基因工程工具和噬菌体生物学的最新知识,该技术可能在抗微生物治疗和DNA疫苗开发中具有潜在用途。

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