Functionalized-DNA nanostructures as potential targeted drug delivery systems for cancer therapy

纳米技术 药物输送 DNA纳米技术 DNA折纸 DNA 靶向给药 纳米结构 化学 材料科学 生物化学
作者
Ajay Kumar,Anas Ahmad,Md. Meraj Ansari,Vemana Gowd,Summya Rashid,Anis Ahmad Chaudhary,Hassan A. Rudayni,Sulaiman A. Alsalamah,Rehan Khan
出处
期刊:Seminars in Cancer Biology [Elsevier]
卷期号:86: 54-68 被引量:9
标识
DOI:10.1016/j.semcancer.2022.09.003
摘要

Seeman's pioneer idea has led to the foundation of DNA nanostructures, resulting in a remarkable advancement in DNA nanotechnology. Over the last few decades, remarkable advances in drug delivery techniques have resulted in the self-assembly of DNA for encapsulating candidate drug molecules. The nuclear targeting capability of DNA nanostructures is lies within their high spatial addressability and tremendous potential for active targeting. However, effective programming and assembling those DNA molecules remains a challenge, making the path to DNA nanostructures for real-world applications difficult. Because of their small size, most nanostructures are self-capable of infiltrating into the tumor cellular environment. Furthermore, to enable controlled and site-specific delivery of encapsulated drug molecules, DNA nanostructures are functionalized with special moieties that allow them to bind specific targets and release cargo only at targeted sites rather than non-specific sites, resulting in the prevention/limitation of cellular toxicity. In light of this, the current review seeks to shed light on the versatility of the DNA molecule as a targeting and encapsulating moiety for active drugs in order to achieve controlled and specific drug release with spatial and temporal precision. Furthermore, this review focused on the challenges associated with the construction of DNA nanostructures as well as the most recent advances in the functionalization of DNA nanostructures using various materials for controlled and targeted delivery of medications for cancer therapy.
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