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蛋白质纳米管:从生物纳米技术走向医学应用

Protein Nanotubes: From Bionanotech towards Medical Applications.

作者信息

Audette Gerald F, Yaseen Ayat, Bragagnolo Nicholas, Bawa Raj

机构信息

Department of Chemistry and the Centre for Research on Biomolecular Interactions, York University, Toronto, ON M3J 1P3, Canada.

Patent Law Department, Bawa Biotech LLC, Ashburn, VA 20147, USA.

出版信息

Biomedicines. 2019 Jun 23;7(2):46. doi: 10.3390/biomedicines7020046.

Abstract

Nanobiotechnology involves the study of structures found in nature to construct nanodevices for biological and medical applications with the ultimate goal of commercialization. Within a cell most biochemical processes are driven by proteins and associated macromolecular complexes. Evolution has optimized these protein-based nanosystems within living organisms over millions of years. Among these are flagellin and pilin-based systems from bacteria, viral-based capsids, and eukaryotic microtubules and amyloids. While carbon nanotubes (CNTs), and protein/peptide-CNT composites, remain one of the most researched nanosystems due to their electrical and mechanical properties, there are many concerns regarding CNT toxicity and biodegradability. Therefore, proteins have emerged as useful biotemplates for nanomaterials due to their assembly under physiologically relevant conditions and ease of manipulation via protein engineering. This review aims to highlight some of the current research employing protein nanotubes (PNTs) for the development of molecular imaging biosensors, conducting wires for microelectronics, fuel cells, and drug delivery systems. The translational potential of PNTs is highlighted.

摘要

纳米生物技术涉及对自然界中发现的结构进行研究,以构建用于生物和医学应用的纳米器件,最终目标是实现商业化。在细胞内,大多数生化过程由蛋白质和相关的大分子复合物驱动。经过数百万年的进化,这些基于蛋白质的纳米系统在生物体中得到了优化。其中包括细菌的鞭毛蛋白和菌毛蛋白系统、病毒衣壳、真核微管和淀粉样蛋白。虽然碳纳米管(CNT)以及蛋白质/肽-CNT复合材料由于其电学和力学性能仍然是研究最多的纳米系统之一,但人们对CNT的毒性和生物降解性存在诸多担忧。因此,蛋白质因其在生理相关条件下的组装以及通过蛋白质工程易于操作,已成为纳米材料有用的生物模板。本综述旨在强调一些当前利用蛋白质纳米管(PNT)开发分子成像生物传感器、微电子导线、燃料电池和药物递送系统的研究。突出了PNT的转化潜力。

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