光热治疗
癌症研究
体内
药物输送
免疫原性细胞死亡
纳米医学
药品
免疫系统
癌细胞
化学
抗药性
细胞凋亡
化疗
癌症
细胞毒性
药理学
程序性细胞死亡
体外
细胞
靶向给药
联合疗法
线粒体
两亲性
阳离子脂质体
生物反应调节剂
脂质体
毒品携带者
癌症治疗
阿霉素
免疫疗法
多重耐药
细胞穿透肽
紫杉醇
医学
肽
治疗指标
癌症治疗
作者
Miaoxiu Li,Jiangqi Feng,Junyang Zhuang,Qingguo Zhong,Yong Li,Yanzhuo Lv,Shaoteng Huang,Xiangyu Huang,Mingbo Zhang,Xiaofeng Cai,Yuxin Wang,Wenxing Chen,Zhenyu Duan,Zhou Chen,Kui Luo,Ning Li
标识
DOI:10.1002/advs.202522226
摘要
The presence of "cold" tumors in the tumor site is characterized with poor immune cell infiltration and resistance to conventional cancer therapies. To address these challenges, we developed an amphiphilic peptide dendrimer-based multifunctional drug delivery system for integrating photothermal therapy (PTT), chemotherapy, and immunogenic cell death (ICD) to overcome the limitations of single-modality treatments. Efficient drug delivery via the nanoplatform is realized through improving circulation stability, facilitating accumulation and penetration in tumor tissues, promoting cellular uptake, and accelerating tumor microenvironment-responsive drug release. The mitochondria-targeting property is derived from a mitochondria-specific photothermal agent and a lipophilic cationic structure in the amphiphilic dendrimer, and it allows selective mitochondrial accumulation and disruption of the mitochondrial function. In vivo and in vitro studies confirm that PTT synergizes with chemotherapy to significantly enhance therapeutic efficacy, effectively induce ICD to modulate the tumor microenvironment, and strengthen antitumor responses. This nanoplatform enhances drug delivery, induces mitochondrial dysfunction, and achieves potent therapeutic effects, therefore, it could be fine-tuned to become versatile for combination cancer therapies.
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