光热治疗
清脆的
癌症研究
癌症治疗
纳米技术
热疗
癌细胞
癌症
光热效应
化学
材料科学
靶向治疗
纳米材料
癌症治疗
遗传增强
细胞
计算生物学
生物
基因
生物物理学
基因组编辑
肿瘤细胞
细胞生物学
后天抵抗
作者
Zhi Chen,Huiling Lin,Changyu Yoon,Hao Huang,Yujin Kim,Changle Meng,Hoyeon Jang,Zhongjian Xie,Bo Liu,Yingxia Liu,Jong Seung Kim,Han Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-03-03
卷期号:26 (10): 3407-3416
标识
DOI:10.1021/acs.nanolett.5c06006
摘要
Overcoming tumor thermotolerance within clinically safe temperature ranges remains a central limitation of photothermal therapy (PTT). Here we report a closed-loop therapeutic nanoplatform that integrates topologically enhanced photothermal conversion with thermally gated CRISPR/Cas9 regulation. Rationally engineered hexagonal bismuthene nanodiscs exhibit strong near-infrared responsiveness, enabling mild hyperthermia (∼45 °C) that activates a heat-sensitive CRISPR switch targeting CDK7. The resulting disruption of the CDK7-HSP70 stress axis lowers the thermal resistance threshold and reprograms tumor adaptation, thereby amplifying photothermal efficacy and promoting immunogenic cell death. In triple-negative breast cancer models, this gene-thermal feedback achieves >93% tumor inhibition with minimal systemic toxicity. This work establishes a genetically programmable, thermogenetic nanomaterial paradigm that links material design with gene logic for next-generation precision cancer therapy.
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