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多功能纳米平台用于靶向多药耐药菌的诊断与治疗应用。

Multifunctional nanoplatforms for targeted multidrug-resistant-bacteria theranostic applications.

机构信息

Department of Chemistry, Jackson State University , Jackson, Mississippi 39217, United States.

出版信息

ACS Appl Mater Interfaces. 2013 Nov 13;5(21):11348-54. doi: 10.1021/am403567k. Epub 2013 Oct 31.

Abstract

The emergence of multidrug-resistant-bacteria (MDRB) infection poses a major burden to modern healthcare. Early detection in the bloodstream and a new strategy development for MDRB infection treatment without antibiotics are clinically significant to save millions of lives every year. To tackle the MDRB challenge, the current manuscript reports the design of "multifunctional nanoplatforms" consisting of a magnetic core-plasmonic shell nanoparticle, a methylene blue-bound aptamer, and an MDRB Salmonella DT104 specific antibody. The reported "multifunctional nanoplatform" is capable of targeted separation from a blood sample and sensing and multimodal therapeutic killing of MDRB. Experimental data using an MDRB-infected whole-blood sample show that nanoplatforms can be used for selective magnetic separation and fluorescence imaging. In vitro light-triggered photodestruction of MDRB, using combined photodynamic and photothermal treatment, shows that the multimodal treatment regime can enhance MDRB killing significantly. We discussed the possible mechanisms on combined synergistic therapy for killing MDRB. The "multifunctional nanoplatform" reported in this manuscript has great potential for the imaging and combined therapy of MDRB in clinical settings.

摘要

多药耐药菌(MDRB)感染的出现给现代医疗保健带来了重大负担。早期在血液中检测到并开发新的策略来治疗 MDRB 感染而不使用抗生素,这对每年挽救数百万人的生命具有重要的临床意义。为了解决 MDRB 带来的挑战,本手稿报告了“多功能纳米平台”的设计,该平台由磁核-等离子壳纳米粒子、与亚甲蓝结合的适体和 MDRB 沙门氏菌 DT104 特异性抗体组成。所报道的“多功能纳米平台”能够从血液样本中进行靶向分离,并对 MDRB 进行感应和多模式治疗杀伤。使用 MDRB 感染的全血样本进行的实验数据表明,纳米平台可用于选择性磁分离和荧光成像。体外光触发的 MDRB 光破坏,结合光动力和光热治疗,表明多模式治疗方案可以显著增强 MDRB 杀伤作用。我们讨论了联合协同治疗杀死 MDRB 的可能机制。本手稿中报道的“多功能纳米平台”在临床环境中对 MDRB 的成像和联合治疗具有巨大潜力。

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