Smith David M, Keller Adrian
DNA Nanodevices Unit Department Diagnostics Fraunhofer Institute for Cell Therapy and Immunology IZI 04103 Leipzig Germany.
Peter Debye Institute for Soft Matter Physics Faculty of Physics and Earth Sciences University of Leipzig 04103 Leipzig Germany.
Adv Nanobiomed Res. 2021 Mar;1(3):2000049. doi: 10.1002/anbr.202000049. Epub 2021 Jan 6.
Throughout history, humanity has been threatened by countless epidemic and pandemic outbreaks of infectious diseases, from the Justinianic Plague to the Spanish flu to COVID-19. While numerous antimicrobial and antiviral drugs have been developed over the last 200 years to face these threats, the globalized and highly connected world of the 21st century demands for an ever-increasing efficiency in the detection and treatment of infectious diseases. Consequently, the rapidly evolving field of nanomedicine has taken up the challenge and developed a plethora of strategies to fight infectious diseases with the help of various nanomaterials such as noble metal nanoparticles, liposomes, nanogels, and virus capsids. DNA nanotechnology represents a comparatively recent addition to the nanomedicine arsenal, which, over the past decade, has made great progress in the area of cancer diagnostics and therapy. However, the past few years have seen also an increasing number of DNA nanotechnology-related studies that particularly focus on the detection and inhibition of microbial and viral pathogens. Herein, a brief overview of this rather young research field is provided, successful concepts as well as potential challenges are identified, and promising directions for future research are highlighted.
纵观历史,人类一直受到无数传染病的流行和大流行的威胁,从查士丁尼瘟疫到西班牙流感再到新冠疫情。在过去的200年里,虽然已经开发了许多抗菌和抗病毒药物来应对这些威胁,但21世纪全球化且高度互联的世界对传染病的检测和治疗效率提出了越来越高的要求。因此,快速发展的纳米医学领域接受了这一挑战,并借助各种纳米材料,如贵金属纳米颗粒、脂质体、纳米凝胶和病毒衣壳,开发了大量对抗传染病的策略。DNA纳米技术是纳米医学武器库中相对较新的成员,在过去十年中,它在癌症诊断和治疗领域取得了巨大进展。然而,在过去几年中,越来越多与DNA纳米技术相关的研究特别关注微生物和病毒病原体的检测和抑制。在此,对这个相当年轻的研究领域进行简要概述,确定成功的概念以及潜在的挑战,并突出未来研究的有前景的方向。