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丝状噬菌体作为生物活性水凝胶的构建模块。

Filamentous Phages as Building Blocks for Bioactive Hydrogels.

机构信息

Department of Chemical Engineering, McMaster University, Hamilton, Ontario L8S 4L7, Canada.

School of Biomedical Engineering, McMaster University, Hamilton, Ontario L8S 4L7, Canada.

出版信息

ACS Appl Bio Mater. 2021 Mar 15;4(3):2262-2273. doi: 10.1021/acsabm.0c01557. Epub 2021 Feb 10.

Abstract

Filamentous bacteriophages (bacterial viruses) are semiflexible proteinous nanofilaments with high aspect ratios for which the surface chemistry can be controlled with atomic precision via genetic engineering. That, in addition to their ability to self-propagate and replicate a nearly monodisperse batch of biologically and chemically identical nanofilaments, makes these bionanofilaments superior to most synthetic nanoparticles and thus a powerful tool in the bioengineers' toolbox. Furthermore, filamentous phages form liquid crystalline structures at high concentrations; these ordered assemblies create hierarchically ordered macro-, micro-, and nanostructures that, once cross-linked, can form hierarchically ordered hydrogels, hydrated soft material with a variety of physical and chemical properties suitable for biomedical applications (e.g., wound dressings and tissue engineering scaffolds) as well as biosensing, diagnostic assays. We provide a critical review of these hydrogels of filamentous phage, and their physical, mechanical, chemical, and biological properties and current applications, as well as an overview of limitations and challenges and outlook for future applications. In addition, we present a list of design parameters for filamentous phage hydrogels to serve as a guide for the (bio)engineer and (bio)chemist interested in utilizing these powerful bionanofilaments for designing smart, bioactive materials and devices.

摘要

丝状噬菌体(细菌病毒)是具有高纵横比的半柔性蛋白质纳米丝,其表面化学性质可以通过基因工程进行原子级精确控制。除了能够自我传播和复制几乎单分散的一批生物和化学上相同的纳米丝之外,这些生物纳米丝优于大多数合成纳米颗粒,因此成为生物工程师工具包中的有力工具。此外,丝状噬菌体在高浓度下形成液晶结构;这些有序组装形成了具有各种物理和化学性质的宏观、微观和纳米结构的分级有序结构,交联后可以形成分级有序的水凝胶,即具有多种物理和化学性质的水合软材料,适用于生物医学应用(例如,伤口敷料和组织工程支架)以及生物传感、诊断分析。我们对丝状噬菌体水凝胶及其物理、机械、化学和生物学特性以及当前应用进行了批判性评价,并概述了限制和挑战以及未来应用的前景。此外,我们还列出了丝状噬菌体水凝胶的设计参数,以供对利用这些强大的生物纳米丝设计智能、生物活性材料和设备感兴趣的(生物)工程师和(生物)化学家参考。

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