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靶向递送光敏剂至伴放线放线杆菌生物膜。

Targeted delivery of a photosensitizer to Aggregatibacter actinomycetemcomitans biofilm.

机构信息

Department of Plant Sciences, Montana State University, Bozeman, MT 59717, USA.

出版信息

Antimicrob Agents Chemother. 2010 Jun;54(6):2489-96. doi: 10.1128/AAC.00059-10. Epub 2010 Apr 12.

Abstract

The ability to selectively target specific biofilm species with antimicrobials would enable control over biofilm consortium composition, with medical applications in treatment of infections on mucosal surfaces that are colonized by a mixture of beneficial and pathogenic microorganisms. We functionalized a genetically engineered multimeric protein with both a targeting moiety (biotin) and either a fluorophore or a photosensitizer (SnCe6). Biofilm microcolonies of Aggregatibacter actinomycetemcomitans, a periodontal pathogen, were targeted with the multifunctional dodecamer. Streptavidin was used to couple biotinylated dodecamer to a biotinylated anti-A. actinomycetemcomitans antibody. This modular targeting approach enabled us to increase the loading of photosensitizer onto the cells by a cycle of amplification. Scanning laser confocal microscopy was used to characterize transport of fluorescently tagged dodecamer into the microcolonies and targeting of the cells with biotin-labeled, fluorescently tagged dodecamer. Light-induced activity of the targeted photosensitizer reduced the viability of A. actinomycetemcomitans biofilm, as indicated by membrane permeability to propidium iodide. The functionalized multimeric protein promises to be a useful tool for controlling periodontal biofilm consortia and offers a modular design whereby moieties that target different species can be readily combined with the functionalized protein construct.

摘要

具有选择性地针对特定生物膜物种的抗菌药物的能力将能够控制生物膜联合体的组成,在治疗由有益和病原微生物混合定植的粘膜表面感染方面具有医学应用。我们用具有靶向部分(生物素)和荧光团或光敏剂(SnCe6)的基因工程多聚体蛋白对生物膜微菌落进行功能化。用多功能十二聚体靶向牙周病原体伴放线放线杆菌的生物膜微菌落。链霉亲和素用于将生物素化的十二聚体与生物素化的抗 A. actinomycetemcomitans 抗体偶联。这种模块化的靶向方法使我们能够通过循环放大来增加光敏剂在细胞上的负载。使用扫描激光共聚焦显微镜来表征荧光标记的十二聚体进入微菌落的转运以及生物素标记的荧光标记的十二聚体对细胞的靶向。用光诱导的靶向光敏剂的活性降低了 A. actinomycetemcomitans 生物膜的活力,这表明细胞膜对碘化丙啶的通透性增加。功能化的多聚体蛋白有望成为控制牙周生物膜联合体的有用工具,并提供了一种模块化设计,其中可以轻松地将靶向不同物种的部分与功能化的蛋白质构建体结合。

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