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From Bits and Pieces to Whole Phage to Nanomachines: Pathogen Detection Using Bacteriophages
Annual Review of Food Science and Technology ( IF 12.4 ) Pub Date : 2017-02-28 00:00:00 , DOI: 10.1146/annurev-food-041715-033235
H. Anany 1, 2 , Y. Chou 3 , S. Cucic 1 , R. Derda 3 , S. Evoy 4 , M.W. Griffiths 1
Affiliation  

The innate specificity of bacteriophages toward their hosts makes them excellent candidates for the development of detection assays. They can be used in many ways to detect pathogens, and each has its own advantages and disadvantages. Whole bacteriophages can carry reporter genes to alter the phenotype of the target. Bacteriophages can act as staining agents or the progeny of the infection process can be detected, which further increases the sensitivity of the detection assay. Compared with whole-phage particles, use of phage components as probes offers other advantages: for example, smaller probe size to enhance binding activity, phage structures that can be engineered for better affinity, as well as specificity, binding properties, and robustness. When no natural binding with the target exists, phages can be used as vehicles to identify new protein-ligand interactions necessary for diagnostics. This review comprehensively summarizes many uses of phages as detection tools and points the way toward how phage-based technologies may be improved.

中文翻译:


从零碎到整个噬菌体再到纳米机器:使用噬菌体进行病原体检测

噬菌体对宿主的天生特异性使它们成为开发检测方法的极佳候选者。它们可以以多种方式用于检测病原体,并且每种都有其自身的优缺点。整个噬菌体可以携带报告基因来改变靶标的表型。噬菌体可以充当染色剂,或者可以检测出感染过程的后代,这进一步提高了检测分析的灵敏度。与全噬菌体颗粒相比,使用噬菌体成分作为探针还具有其他优势:例如,较小的探针尺寸可增强结合活性,可以对噬菌体结构进行改造,使其具有更好的亲和力以及特异性,结合特性和耐用性。当不存在与目标的自然结合时,噬菌体可以用作鉴定诊断所需的新的蛋白质-配体相互作用的媒介。这篇综述全面总结了噬菌体作为检测工具的许多用途,并指出了如何改进基于噬菌体的技术的道路。

更新日期:2017-02-28
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