纳米器件
适体
变构调节
DNA
化学
药物输送
靶向给药
生物物理学
纳米技术
癌细胞
癌症治疗
计算生物学
细胞膜
药品
DNA纳米技术
A-DNA
机制(生物学)
膜
毒品携带者
碱基
细胞
分子生物物理学
癌症治疗
计算机科学
血浆蛋白结合
药物发现
HEK 293细胞
基因传递
分子动力学
结合位点
作者
Meiqin Zhang,Yu Cheng,Nan Chen,Wenbin Huang,Linwen Lan,Yi Yuan,Jiangchuan Du,Li Zhang,Xuefen Chen,Zhifa Shen,Chang Xue
标识
DOI:10.1038/s41467-026-75300-5
摘要
DNA-based molecular computation enables targeting of cells via multiple surface receptors. However, existing platforms are often limited to single-receptor detection per operation or rely on freely diffusing components, a common source of off-target interference. Here we show an intelligent DNA nanodevice (DND) that integrates multivalent recognition, logic‑gated computation, and spatially precise drug delivery in a single nanostructure. The DND comprises a doxorubicin-loaded tetrahedral DNA framework (tFNA@Dox) connected via three allosteric aptamer arms to a cholesterol-modified membrane anchor. Simultaneous binding of all three aptamers triggers an AND‑logic gate, releasing tFNA@Dox specifically at the target cell membrane. This localized sense‑and‑act mechanism maximizes therapeutic specificity and minimizes systemic exposure. In tumor-bearing mice, DND@Dox effectively accumulated in tumors, significantly inhibited tumor growth under local and systemic administration, and reduced systemic toxicity. This work establishes a versatile platform for logic‑controlled, multimarker‑guided cancer theranostics.
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