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Ff-纳米颗粒,即源自Ff(f1、fd或M13)丝状噬菌体的短功能化纳米棒。

Ff-nano, short functionalized nanorods derived from Ff (f1, fd, or M13) filamentous bacteriophage.

作者信息

Sattar Sadia, Bennett Nicholas J, Wen Wesley X, Guthrie Jenness M, Blackwell Len F, Conway James F, Rakonjac Jasna

机构信息

Institute of Fundamental Sciences, Massey University Palmerston North, New Zealand.

Institute of Fundamental Sciences, Massey University Palmerston North, New Zealand ; Science Haven Limited, Palmerston North New Zealand.

出版信息

Front Microbiol. 2015 Apr 20;6:316. doi: 10.3389/fmicb.2015.00316. eCollection 2015.

Abstract

F-specific filamentous phage of Escherichia coli (Ff: f1, M13, or fd) are long thin filaments (860 nm × 6 nm). They have been a major workhorse in display technologies and bionanotechnology; however, some applications are limited by the high length-to-diameter ratio of Ff. Furthermore, use of functionalized Ff outside of laboratory containment is in part hampered by the fact that they are genetically modified viruses. We have now developed a system for production and purification of very short functionalized Ff-phage-derived nanorods, named Ff-nano, that are only 50 nm in length. In contrast to standard Ff-derived vectors that replicate in E. coli and contain antibiotic-resistance genes, Ff-nano are protein-DNA complexes that cannot replicate on their own and do not contain any coding sequences. These nanorods show an increased resistance to heating at 70(∘)C in 1% SDS in comparison to the full-length Ff phage of the same coat composition. We demonstrate that functionalized Ff-nano particles are suitable for application as detection particles in sensitive and quantitative "dipstick" lateral flow diagnostic assay for human plasma fibronectin.

摘要

大肠杆菌的F特异性丝状噬菌体(Ff:f1、M13或fd)是长而细的丝状结构(860纳米×6纳米)。它们一直是展示技术和生物纳米技术中的主要工具;然而,一些应用受到Ff高长径比的限制。此外,在实验室防护设施之外使用功能化的Ff在一定程度上受到它们是基因改造病毒这一事实的阻碍。我们现在开发了一种用于生产和纯化非常短的功能化Ff噬菌体衍生纳米棒的系统,名为Ff-纳米,其长度仅为50纳米。与在大肠杆菌中复制并含有抗生素抗性基因的标准Ff衍生载体不同,Ff-纳米是蛋白质-DNA复合物,不能自行复制且不包含任何编码序列。与相同外壳组成的全长Ff噬菌体相比,这些纳米棒在1%十二烷基硫酸钠中70℃加热时显示出更高的抗性。我们证明功能化的Ff-纳米颗粒适用于作为检测颗粒,用于人血浆纤连蛋白的灵敏和定量“试纸条”侧向流动诊断检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2980/4403547/cb70cbb32a4f/fmicb-06-00316-g001.jpg

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