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Design and Application of Multifunctional DNA Nanocarriers for Therapeutic Delivery

机译:治疗用多功能DNA纳米载体的设计与应用

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摘要

The unique programmability of nucleic acids offers versatility and flexibility in the creation of self-assembled DNA nanostructures. To date, many three-dimensional DNA architectures have been precisely formed of varying sizes and shapes. Their biocompatibility, biodegradability, and high intrinsic stability in physiological environments emphasize their emerging use as carriers for drug and gene delivery. Furthermore, DNA nanocarriers have been shown to enter cells efficiently and without the aid of transfection reagents. A key strength of DNA nanocarriers over other delivery systems is their modularity and their ability to control the spatial distribution of cargoes and ligands. Optimizing DNA nanocarrier properties to dictate their localization, uptake, and intracellular trafficking is also possible. In this review, we present design considerations for DNA nanocarriers and examples of their use in the context of therapeutic delivery applications. The assembly of DNA nanocarriers and approaches for loading and releasing cargo are described. The stability and safety of DNA nanocarriers is also discussed, with particular attention to the in vivo physiological environment. Mechanisms of cellular uptake and intracellular trafficking are examined, and we conclude with strategies to enhance the delivery efficiency of DNA nanocarriers.
机译:核酸的独特可编程性为创建自组装DNA纳米结构提供了多功能性和灵活性。迄今为止,已经精确地形成了具有不同大小和形状的许多三维DNA结构。它们的生物相容性,生物降解性和在生理环境中的高固有稳定性强调了它们作为药物和基因传递载体的新兴用途。此外,已经显示出DNA纳米载体可以有效地进入细胞而无需转染试剂的帮助。 DNA纳米载体相对于其他递送系统的关键优势在于其模块化以及控制货物和配体空间分布的能力。优化DNA纳米载体的性质以决定其定位,摄取和细胞内运输也是可能的。在这篇综述中,我们介绍了DNA纳米载体的设计考虑因素及其在治疗性递送应用中的应用实例。描述了DNA纳米载体的组装以及装载和释放货物的方法。还讨论了DNA纳米载体的稳定性和安全性,并特别关注体内生理环境。检查了细胞摄取和细胞内运输的机制,我们以提高DNA纳米载体的递送效率的策略作为总结。

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