纳米机器人学
阿霉素
变构调节
体内
胶质瘤
药物输送
靶向给药
纳米医学
癌症研究
DNA
纳米技术
体外
抗癌药
化学
毒品携带者
生物
药品
材料科学
限制
细胞生物学
血脑屏障
生物物理学
纳米载体
药理学
作者
Fengyu Liu,Lixin Dong,Qiang Huang,Qing Shi,Tatsuo Arai,Toshio Fukuda,Xiaoming Liu
标识
DOI:10.1002/adfm.202527455
摘要
ABSTRACT Chemotherapy remains the primary therapeutic option for glioma treatment due to its noninvasive nature and broad applicability. However, most existing chemotherapeutic carriers suffer from poor blood‐brain barrier (BBB) permeability and undefined drug delivery mechanisms, limiting their effectiveness in brain tumor therapy. Here, we present an allosteric DNA nanorobot for targeted glioma therapy, engineered via DNA origami for acid‐triggered doxorubicin (Dox) delivery. This nanorobot features cytosine‐rich pH sensors that facilitate its assembly into a stable tetrahedral configuration, crucial for efficient BBB traversal. Striking in vitro and in vivo studies demonstrate that these Dox‐loaded nanorobots not only effectively cross the BBB but also accumulate in glioma tissues, resulting in significant suppression of tumor growth. We decode the drug delivery mechanism: acid‐induced destabilization of DNA nanorobots triggers Dox release with optimal bioavailability. This pioneering nanorobot, powered by pH‐responsive allosteric dynamics, enables revolutionary precision glioma therapy.
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