Biological Engineering Discipline, Indian Institute of Technology Gandhinagar, Palaj, Gujarat 382355, India.
The RNA Institute, University at Albany, State University of New York, Albany, New York 12222, United States.
ACS Appl Bio Mater. 2021 Jul 19;4(7):5392-5404. doi: 10.1021/acsabm.1c00413. Epub 2021 Jun 18.
DNA has been demonstrated to be a versatile material for construction at the nanoscale. DNA nanodevices are highly programmable and allow functionalization with multiple entities such as imaging modalities (fluorophores), targeting entities (aptamers), drug conjugation (chemical linkers), and triggered release (photoresponsive molecules). These features enhance the use of DNA nanodevices in biological applications, catalyzing the rapid growth of this domain of research. In this review, we focus on recent progress in the development and use of aptamer-functionalized DNA nanodevices as theranostic agents, their characterization, applications as delivery platforms, and advantages. We provide a brief background on the development of aptamers and DNA nanodevices in biomedical applications, and we present specific applications of these entities in cancer diagnosis and therapeutics. We conclude with a perspective on the challenges and possible solutions for the clinical translation of aptamer-functionalized DNA nanodevices in the domain of cancer therapeutics.
DNA 已被证明是一种用于纳米级构建的多功能材料。DNA 纳米器件具有高度可编程性,并允许与多种实体(如成像模式、靶向实体、药物偶联(化学连接物)和触发释放(光响应分子))进行功能化。这些特性增强了 DNA 纳米器件在生物应用中的用途,促进了该研究领域的快速发展。在这篇综述中,我们重点介绍了最近在作为治疗剂的适配体功能化 DNA 纳米器件的开发和应用方面的进展,对它们的特性、作为递药平台的应用以及优势进行了介绍。我们简要介绍了适配体和 DNA 纳米器件在生物医学应用中的发展情况,并介绍了这些实体在癌症诊断和治疗中的具体应用。最后,我们对适配体功能化 DNA 纳米器件在癌症治疗领域临床转化的挑战和可能的解决方案进行了展望。