用于纳米生物/生物纳米技术的生物分子工程

Biomolecular engineering for nanobio/bionanotechnology.

作者信息

Nagamune Teruyuki

机构信息

Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, Tokyo, Japan.

出版信息

Nano Converg. 2017;4(1):9. doi: 10.1186/s40580-017-0103-4. Epub 2017 Apr 24.

Abstract

Biomolecular engineering can be used to purposefully manipulate biomolecules, such as peptides, proteins, nucleic acids and lipids, within the framework of the relations among their structures, functions and properties, as well as their applicability to such areas as developing novel biomaterials, biosensing, bioimaging, and clinical diagnostics and therapeutics. Nanotechnology can also be used to design and tune the sizes, shapes, properties and functionality of nanomaterials. As such, there are considerable overlaps between nanotechnology and biomolecular engineering, in that both are concerned with the structure and behavior of materials on the nanometer scale or smaller. Therefore, in combination with nanotechnology, biomolecular engineering is expected to open up new fields of nanobio/bionanotechnology and to contribute to the development of novel nanobiomaterials, nanobiodevices and nanobiosystems. This review highlights recent studies using engineered biological molecules (e.g., oligonucleotides, peptides, proteins, enzymes, polysaccharides, lipids, biological cofactors and ligands) combined with functional nanomaterials in nanobio/bionanotechnology applications, including therapeutics, diagnostics, biosensing, bioanalysis and biocatalysts. Furthermore, this review focuses on five areas of recent advances in biomolecular engineering: (a) nucleic acid engineering, (b) gene engineering, (c) protein engineering, (d) chemical and enzymatic conjugation technologies, and (e) linker engineering. Precisely engineered nanobiomaterials, nanobiodevices and nanobiosystems are anticipated to emerge as next-generation platforms for bioelectronics, biosensors, biocatalysts, molecular imaging modalities, biological actuators, and biomedical applications.

摘要

生物分子工程可用于在生物分子(如肽、蛋白质、核酸和脂质)的结构、功能和性质及其在开发新型生物材料、生物传感、生物成像以及临床诊断和治疗等领域的适用性之间的关系框架内,有目的地操纵这些生物分子。纳米技术也可用于设计和调整纳米材料的尺寸、形状、性质和功能。因此,纳米技术和生物分子工程之间存在相当大的重叠,因为两者都关注纳米级及更小尺度材料的结构和行为。因此,与纳米技术相结合,生物分子工程有望开拓纳米生物/生物纳米技术的新领域,并为新型纳米生物材料、纳米生物器件和纳米生物系统的开发做出贡献。本综述重点介绍了在纳米生物/生物纳米技术应用(包括治疗、诊断、生物传感、生物分析和生物催化剂)中使用工程化生物分子(如寡核苷酸、肽、蛋白质、酶、多糖、脂质、生物辅因子和配体)与功能纳米材料相结合的最新研究。此外,本综述重点关注生物分子工程最近取得进展的五个领域:(a)核酸工程,(b)基因工程,(c)蛋白质工程,(d)化学和酶促偶联技术,以及(e)连接体工程。精确设计的纳米生物材料、纳米生物器件和纳米生物系统有望成为生物电子学、生物传感器、生物催化剂、分子成像模式、生物致动器和生物医学应用的下一代平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6067/6141843/bca207d26c83/40580_2017_103_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索