适体
生物分子
纳米技术
DNA
纳米结构
核酸
DNA纳米技术
碱基对
材料科学
计算生物学
化学
生物
生物化学
分子生物学
作者
Simon Chi‐Chin Shiu,Andrew B. Kinghorn,Wei Guo,Liane S. Slaughter,Danyang Ji,Xiaoyong Mo,Lin Wang,Ngoc Chau Tran,Chun Kit Kwok,Anderson Ho Cheung Shum,Edmund C. M. Tse,Julian A. Tanner
标识
DOI:10.1007/978-1-0716-3028-0_17
摘要
Watson-Crick base-pairing of DNA allows the nanoscale fabrication of biocompatible synthetic nanostructures for diagnostic and therapeutic biomedical purposes. DNA nanostructure design elicits exquisite control of shape and conformation compared to other nanoparticles. Furthermore, nucleic acid aptamers can be coupled to DNA nanostructures to allow interaction and response to a plethora of biomolecules beyond nucleic acids. When compared to the better-known approach of using protein antibodies for molecular recognition, nucleic acid aptamers are bespoke with the underlying DNA nanostructure backbone and have various other stability, synthesis, and cost advantages. Here, we provide detailed methodologies to synthesize and characterize aptamer-enabled DNA nanostructures. The methods described can be generally applied to various designs of aptamer-enabled DNA nanostructures with a wide range of applications both within and beyond biomedical nanotechnology.
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