纳米载体
适体
DNA折纸
细胞毒性
阿霉素
药物输送
纳米结构
纳米技术
MUC1号
DNA
癌细胞
毒品携带者
靶向给药
生物物理学
材料科学
化学
生物
分子生物学
癌症
生物化学
体外
化疗
粘蛋白
遗传学
作者
Anuttara Udomprasert,Chanida Wootthichairangsan,Ratchanee Duangrat,Supattra Chaithongyot,Yuwei Zhang,Rachel Nixon,Wenyan Liu,Risheng Wang,Mathurose Ponglikitmongkol,Thaned Kangsamaksin
出处
期刊:ACS applied bio materials
[American Chemical Society]
日期:2022-05-02
卷期号:5 (5): 2262-2272
被引量:6
标识
DOI:10.1021/acsabm.2c00114
摘要
Previous studies have shown that chemotherapeutic efficacy could be enhanced with targeted drug delivery. Various DNA origami nanostructures have been investigated as drug carriers. Here, we compared drug delivery functionalities of three similar DNA origami nanostructures, Disc, Donut, and Sphere, that differ in structural dimension. Our results demonstrated that Donut was the most stable and exhibited the highest Dox-loading capacity. MUC1 aptamer modification in our nanostructures increased cellular uptake in MUC1-high MCF-7. Among the three nanostructures, unmodified Donut exerted the highest Dox cytotoxicity in MCF-7, and MUC1 aptamer modification did not further improve its effect, implicating that Dox delivery by Donut was efficient. However, all Dox-loaded nanostructures showed comparable cytotoxicity in MDA-MB-231 due to the innate sensitivity of this cell line to Dox. Our results successfully demonstrated that functional properties of DNA origami nanocarriers could be tuned by structural design, and three-dimensional Donut appeared to be the most efficient nanocarrier.
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