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Structural DNA Nanotechnology for Intelligent Drug Delivery

机译:用于智能药物输送的结构DNA纳米技术

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摘要

Drug delivery carriers have been popularly employed to improve solubility, stability, and efficacy of chemical and biomolecular drugs. Despite the rapid progress in this field, it remains a great challenge to develop an ideal carrier with minimal cytotoxicity, high biocompatibility and intelligence for targeted controlled release. The emergence of DNA nanotechnology offers unprecedented opportunities in this regard. Due to the unparalleled self-recognition properties of DNA molecules, it is possible to create numerous artificial DNA nanostructures with well-defined structures and DNA nanodevices with precisely controlled motions. More importantly, recent studies have proven that DNA nanostructures possess greater permeability to the membrane barrier of cells, which pave the way to developing new drug delivery carriers with nucleic acids, are summarized. In this Concept, recent advances on the design and fabrication of both static and dynamic DNA nanostructures, and the use of these nanostructures for the delivery of various types of drugs, are highlighted. It is also demonstrated that dynamic DNA nanostructures provide the required intelligence to realize logically controlled drug release.
机译:药物递送载体已被广泛用于改善化学和生物分子药物的溶解度,稳定性和功效。尽管在该领域中取得了快速的进展,但是开发一种具有最小细胞毒性,高生物相容性和智能化靶向释放的理想载体仍然是一个巨大的挑战。 DNA纳米技术的出现在这方面提供了前所未有的机会。由于DNA分子具有无与伦比的自我识别特性,有可能创建具有明确结构的许多人造DNA纳米结构以及具有精确控制的运动的DNA纳米装置。更重要的是,最近的研究证明,DNA纳米结构对细胞的膜屏障具有更大的渗透性,这为使用核酸开发新的药物递送载体铺平了道路。在这个概念中,重点介绍了静态和动态DNA纳米结构的设计和制造的最新进展,以及这些纳米结构在各种药物输送中的应用。还证明了动态DNA纳米结构提供了实现逻辑控制药物释放所需的情报。

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