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在生物技术应用中掺入 DNA 的纳米材料。

DNA-incorporating nanomaterials in biotechnological applications.

机构信息

Biology Department, Brookhaven National Laboratory, Upton, New York, NY 11973, USA.

出版信息

Nanomedicine (Lond). 2010 Feb;5(2):319-34. doi: 10.2217/nnm.10.2.

Abstract

The recently developed ability to controllably connect biological and inorganic objects on a molecular scale opens a new page in biomimetic methods with potential applications in biodetection, tissue engineering, targeted therapeutics and drug/gene delivery. Particularly in the biodetection arena, a rapid development of new platforms has largely been stimulated by a spectrum of novel nanomaterials with physical properties that offer efficient, sensitive and inexpensive molecular sensing. Recently, DNA-functionalized nano-objects have emerged as a new class of nanomaterials that can be controllably assembled in predesigned structures. Such DNA-based nanoscale structures might provide a new detection paradigm due to their regulated optical, electrical and magnetic responses, chemical heterogeneity and high local biomolecular concentration. The specific biorecognition DNA and its physical-chemical characteristics allows for an exploitation of DNA-functionalized nanomaterials for sensing of nucleic acids, while a broad tunability of DNA interactions permits extending their use for detection of proteins, small molecules and ions. We discuss the progress that was achieved in the last decade in the exploration of new detection methods based on DNA-incorporating nanomaterials as well as their applications to gene delivery. The comparison between various detection platforms, their sensitivity and selectivity, and specific applications are reviewed.

摘要

最近发展起来的在分子尺度上可控连接生物和无机物体的能力,为仿生方法开辟了新的篇章,具有在生物检测、组织工程、靶向治疗和药物/基因传递方面的潜在应用。特别是在生物检测领域,由于具有高效、灵敏和廉价的分子传感性能的各种新型纳米材料的出现,极大地刺激了新平台的快速发展。最近,DNA 功能化纳米物体作为一类新的纳米材料出现,可以在预定结构中进行可控组装。由于其受调控的光学、电学和磁学响应、化学异质性和高局部生物分子浓度,基于 DNA 的纳米结构可能为新的检测范例提供依据。特定的生物识别 DNA 及其物理化学特性允许利用 DNA 功能化纳米材料来检测核酸,而 DNA 相互作用的广泛可调性则允许将其扩展用于检测蛋白质、小分子和离子。我们讨论了过去十年中在探索基于包含 DNA 的纳米材料的新检测方法方面取得的进展及其在基因传递中的应用。我们对各种检测平台的比较、它们的灵敏度和选择性以及特定的应用进行了综述。

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