旁观者效应
细胞凋亡
级联
癌症治疗
线粒体
光动力疗法
癌症
癌症研究
化学
医学
生物
细胞生物学
免疫学
生物化学
内科学
有机化学
色谱法
作者
Shengyu Liu,Zhongsheng Ji,Shenguang Ge,Cui Cai,Huaqing Zhang,Yi Wang,Yifan Zhou,Jianping Zhou,Hao Cheng,Yang Ding
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-03-28
标识
DOI:10.1021/acs.nanolett.5c00878
摘要
Tumor-specific apoptosis exerts considerable curative efficacy in cancer, particularly with TRAIL, which has been approved in the clinic; however, therapeutic outcome is compromised due to apoptosis evasion and the short half-life of exogenously infused TRAIL. Herein, we propose a synergistic apoptosis strategy of orthotopic TRAIL expression for enhancing the bystander effect and mitochondrial photodamage for intrinsic apoptosis activation. To actualize synergetic apoptosis, we develop cascade-targeting nanoparticles to perform cell-to-mitochondria shuttling, in which TRAIL-expressing plasmid (pTRAIL) is coprecipitated with calcium phosphate on a glycyrrhetinic acid (GA)-modified graphene oxide nanosheet. For apoptosis synergy, GA mediates tumor accumulation of nanoparticles, followed by structure dissociation for efficient pTRAIL release and expression (cascade module I). Thereafter, GA-modified graphene carriers perform mitochondria distribution for laser-triggered photodamage (cascade module II). The nanoparticles yield tumor inhibition of 86.78% in the melanoma model and demonstrate metastasis blocking activity. Collectively, a cascade-targeting apoptosis technology via a combination of TRAIL-specific bystander effects and mitochondrial photodamage provides innovative oncotherapy synergy.
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