首页> 美国卫生研究院文献>Frontiers in Microbiology >Beyond phage display: non-traditional applications of the filamentous bacteriophage as a vaccine carrier, therapeutic biologic, and bioconjugation scaffold
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Beyond phage display: non-traditional applications of the filamentous bacteriophage as a vaccine carrier, therapeutic biologic, and bioconjugation scaffold

机译:噬菌体展示之外:丝状噬菌体作为疫苗载体,治疗性生物制剂和生物结合支架的非传统应用

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摘要

For the past 25 years, phage display technology has been an invaluable tool for studies of protein–protein interactions. However, the inherent biological, biochemical, and biophysical properties of filamentous bacteriophage, as well as the ease of its genetic manipulation, also make it an attractive platform outside the traditional phage display canon. This review will focus on the unique properties of the filamentous bacteriophage and highlight its diverse applications in current research. Particular emphases are placed on: (i) the advantages of the phage as a vaccine carrier, including its high immunogenicity, relative antigenic simplicity and ability to activate a range of immune responses, (ii) the phage’s potential as a prophylactic and therapeutic agent for infectious and chronic diseases, (iii) the regularity of the virion major coat protein lattice, which enables a variety of bioconjugation and surface chemistry applications, particularly in nanomaterials, and (iv) the phage’s large population sizes and fast generation times, which make it an excellent model system for directed protein evolution. Despite their ubiquity in the biosphere, metagenomics work is just beginning to explore the ecology of filamentous and non-filamentous phage, and their role in the evolution of bacterial populations. Thus, the filamentous phage represents a robust, inexpensive, and versatile microorganism whose bioengineering applications continue to expand in new directions, although its limitations in some spheres impose obstacles to its widespread adoption and use.
机译:在过去的25年中,噬菌体展示技术一直是研究蛋白质间相互作用的宝贵工具。但是,丝状噬菌体固有的生物学,生化和生物物理特性,以及其遗传操作的简便性,也使其成为传统噬菌体展示标准之外的一个有吸引力的平台。这篇综述将集中于丝状噬菌体的独特性质,并强调其在当前研究中的多种应用。重点放在以下方面:(i)噬菌体作为疫苗载体的优势,包括其高免疫原性,相对抗原的简单性和激活一系列免疫应答的能力,(ii)噬菌体作为预防和治疗试剂的潜力传染性疾病和慢性疾病,(iii)病毒体主要外壳蛋白晶格的规则性,可实现多种生物共轭和表面化学应用,尤其是在纳米材料中;(iv)噬菌体的大种群规模和快速的生成时间,使其成为可能指导蛋白质进化的优秀模型系统。尽管它们在生物圈中无处不在,但宏基因组学的工作才刚刚开始探索丝状和非丝状噬菌体的生态学及其在细菌种群进化中的作用。因此,丝状噬菌体代表了一种健壮,廉价且用途广泛的微生物,尽管其在某些领域的局限性阻碍了其广泛采用和使用,但其生物工程应用仍继续朝着新的方向扩展。

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