核酸
小干扰RNA
基因沉默
核糖核酸
生物分子
DNA
小RNA
纳米技术
计算生物学
RNA干扰
基因传递
遗传增强
生物
化学
基因
生物化学
材料科学
作者
Bárbara B. Mendes,João Conniot,Aviram Avital,Dongbao Yao,Xingya Jiang,Xiang Zhou,Noga Sharf-Pauker,Yuling Xiao,Omer Adir,Haojun Liang,Jianjun Shi,Avi Schroeder,João Conde
标识
DOI:10.1038/s43586-022-00104-y
摘要
There is growing need for a safe, efficient, specific and non-pathogenic means for delivery of gene therapy materials. Nanomaterials for nucleic acid delivery offer an unprecedented opportunity to overcome these drawbacks; owing to their tunability with diverse physico-chemical properties, they can readily be functionalized with any type of biomolecules/moieties for selective targeting. Nucleic acid therapeutics such as antisense DNA, mRNA, small interfering RNA (siRNA) or microRNA (miRNA) have been widely explored to modulate DNA or RNA expression Strikingly, gene therapies combined with nanoscale delivery systems have broadened the therapeutic and biomedical applications of these molecules, such as bioanalysis, gene silencing, protein replacement and vaccines. Here, we overview how to design smart nucleic acid delivery methods, which provide functionality and efficacy in the layout of molecular diagnostics and therapeutic systems. It is crucial to outline some of the general design considerations of nucleic acid delivery nanoparticles, their extraordinary properties and the structure-function relationships of these nanomaterials with biological systems and diseased cells and tissues.
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