免疫原性细胞死亡
先天免疫系统
癌症研究
前列腺癌
免疫系统
细胞生物学
肿瘤微环境
癌细胞
程序性细胞死亡
生物
免疫疗法
DU145型
细胞
化学
声动力疗法
癌症免疫疗法
获得性免疫系统
内体
上睑下垂
细胞毒性T细胞
癌症
TLR3型
材料科学
溶酶体
T细胞
树突状细胞
作者
Qishu Jiao,J Zhang,Chunlu Wang,Zhaohan Liu,Yongming Jia,Jia Chen,Kui Wang,Shicheng Pei,Wenying Zhong,Ji Zheng
摘要
Prostate cancer (PCa) remains a major clinical challenge due to therapeutic resistance and immunologically cold tumor microenvironment. Lysosomal membrane permeabilization (LMP)-induced lysosome-dependent cell death offers an alternative route to eliminate resistant tumor cells and initiate immunogenic cell death, yet its efficacy is often limited by insufficient spatiotemporal control and immune activation. Here, we report a spatiotemporally programmable supramolecular nanoplatform (Cu-P-MSA) that integrates lysosome-targeted sonodynamic therapy with tumor-confined innate immune activation for PCa treatment. Cu-P-MSA is a modular self-assembling peptide incorporating a PSMA-targeting ligand, morpholine moiety, and cathepsin B-cleavable linker, enabling tumor-selective uptake and in situ formation of fibrous sonosensitizer depots within lysosomes. Upon ultrasound irradiation, a glutathione-responsive open-shell sonosensitizer induces controlled LMP, simultaneously activating ferroptosis and pyroptosis and promoting immunogenic cell death. Meanwhile, tumor-specific release of a STING agonist MSA-2 elicits robust type I interferon responses, driving dendritic cell maturation and cytotoxic T-cell infiltration. This coordinated lysosomal disruption-immune amplification strategy effectively reprograms the tumor immune microenvironment and suppresses both primary and distant tumors, with inhibition rates reaching 84.3% and 77.5%, respectively. Overall, this work establishes a spatiotemporally controlled supramolecular approach that integrates lysosomal disruption with innate immune activation to overcome therapeutic resistance and immunosuppression in PCa.
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