细胞生物学
化学
免疫检查点
基因沉默
细胞外
免疫系统
黑色素瘤
癌症研究
细胞内
封锁
DNA
核酸
下调和上调
DNA损伤
自愈水凝胶
免疫抑制
癌细胞
细胞
抑制器
癌症治疗
融合蛋白
转录调控
转录因子
细胞周期检查点
易普利姆玛
PD-L1
生物
小干扰RNA
癌症
G2-M DNA损伤检查点
免疫疗法
磷酸化
作者
Rui Zhang,Yi-Xiang Wang,Shuo Wu,Xinghong Shen,Feng Xiao,Xingyu Jiang,Chi Yao,D Yang
标识
DOI:10.1073/pnas.2602147123
摘要
Immune checkpoint blockade has revolutionized oncology, yet low response rates and acquired resistance-often driven by inadequate Programmed death-ligand 1 (PD-L1) suppression-remain significant barriers. While degradation-based proteolysis-targeting chimeras offer a promising alternative to traditional antibodies, targeting the intracellular and transcriptional drivers of checkpoint expression remains a challenge. We report a programmable, tumor-responsive DNA hydrogel platform, synthesized via rolling circle amplification, designed for the comprehensive, dual-mode modulation of PD-L1. This modular nucleic acid framework codelivers polyvalent aptamer-based lysosome-targeting chimeras (LYTAC mimics) to induce extracellular PD-L1 degradation and siSMARCAL1 to silence the chromatin-remodeling-driven transcriptional activation of PD-L1. By integrating localized, sequential release within the tumor microenvironment, this system achieves a synergistic "degrade-and-silence" effect that effectively dismantles PD-1/PD-L1-mediated immunosuppression while concurrently triggering immunogenic cell death. In murine melanoma models, the hydrogel significantly suppressed primary tumor growth and prevented postoperative recurrence, eliciting a robust and durable systemic antitumor immune response. Our findings establish a versatile, DNA-based materials strategy for programmable protein degradation and multilevel checkpoint modulation, offering a generalizable approach for enhancing the efficacy of cancer immunotherapy.
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