State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Institute of Biology, Hunan University, Key Laboratory for Bio-Nanotechnology and Molecular Engineering of Hunan Province, Changsha 410082, China.
Analyst. 2017 Sep 8;142(18):3322-3332. doi: 10.1039/c7an01154g.
With the rapid development of DNA nanotechnology, various DNA nanostructures with different shapes and sizes have been self-assembled using "bottom-up" fabrication strategies and applied to a wide range of fields such as biosensors, drug delivery and tools for molecular biology. As a classical and simple polyhedron, DNA tetrahedron can be easily synthesised by a one-step assembly. Due to the excellent biocompatibility and cellular permeability, it provides a universal and promising platform to construct a series of biosensors and drug delivery systems for living cells studies. Moreover, the high programmability of DNA tetrahedron determines its capability to perform artful design and combine with other materials. Herein, we review and summarise the development and applications of DNA tetrahedron in living cell studies. We mainly focus on two parts, cellular biosensors for the detection of nucleic acids, proteins, small molecules and cancer cells and drug delivery systems for chemotherapy, immunotherapy, photodynamic therapy and gene silencing. With the rapid progress in DNA tetrahedron as well as DNA nanotechnology, new avenues and opportunities have opened up in analytical chemistry, molecular biology and medicine.
随着 DNA 纳米技术的飞速发展,各种具有不同形状和大小的 DNA 纳米结构已经通过“自下而上”的制造策略进行了自组装,并应用于生物传感器、药物输送和分子生物学工具等广泛的领域。作为一种经典而简单的多面体,DNA 四面体可以通过一步组装轻松合成。由于具有优异的生物相容性和细胞通透性,它为构建一系列用于活细胞研究的生物传感器和药物输送系统提供了通用且有前途的平台。此外,DNA 四面体的高度可编程性决定了它能够进行巧妙的设计并与其他材料结合。本文综述了 DNA 四面体在活细胞研究中的发展和应用。我们主要关注两个部分,用于检测核酸、蛋白质、小分子和癌细胞的细胞生物传感器和用于化学疗法、免疫疗法、光动力疗法和基因沉默的药物输送系统。随着 DNA 四面体以及 DNA 纳米技术的快速发展,分析化学、分子生物学和医学领域开辟了新的途径和机遇。