Institut Pasteur, Department of Structural Biology and Chemistry, Laboratory for Bioorganic Chemistry of Nucleic Acids, CNRS UMR3523, 28, rue du Docteur Roux, 75724 Paris CEDEX 15, France.
Institute of Systems & Synthetic Biology, Xenome Team, 5 rue Henri Desbruères Genopole Campus 1, University of Evry, F-91030 Evry, France.
Int J Mol Sci. 2017 Nov 16;18(11):2430. doi: 10.3390/ijms18112430.
Recent progresses in organic chemistry and molecular biology have allowed the emergence of numerous new applications of nucleic acids that markedly deviate from their natural functions. Particularly, DNA and RNA molecules-coined aptamers-can be brought to bind to specific targets with high affinity and selectivity. While aptamers are mainly applied as biosensors, diagnostic agents, tools in proteomics and biotechnology, and as targeted therapeutics, these chemical antibodies slowly begin to be used in other fields. Herein, we review recent progress on the use of aptamers in the construction of smart DNA origami objects and MRI and PET imaging agents. We also describe advances in the use of aptamers in the field of neurosciences (with a particular emphasis on the treatment of neurodegenerative diseases) and as drug delivery systems. Lastly, the use of chemical modifications, modified nucleoside triphosphate particularly, to enhance the binding and stability of aptamers is highlighted.
近年来,有机化学和分子生物学的进展使得核酸的许多新应用得以出现,这些应用明显偏离了它们的自然功能。特别是 DNA 和 RNA 分子——被称为适配体——可以与特定的靶标高亲和力和选择性地结合。虽然适配体主要作为生物传感器、诊断剂、蛋白质组学和生物技术工具以及靶向治疗剂应用,但这些化学抗体开始在其他领域缓慢应用。在此,我们综述了适配体在智能 DNA 折纸物体和 MRI 和 PET 成像剂的构建中的最新应用进展。我们还描述了适配体在神经科学领域(特别强调对神经退行性疾病的治疗)和作为药物输送系统的应用进展。最后,强调了通过化学修饰,特别是修饰核苷三磷酸,来增强适配体的结合和稳定性。
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