Carrier-Free Nanoprodrug Mediating Laser-Activable Chemotherapeutic Immunomodulation against Cancer

癌症研究 激光器 常用化疗药物 材料科学 癌症 医学 内科学 光学 物理
作者
Di Gao,Xinyu He,Liangliang Jia,Xinyuan Zhang,Liujiao Ren,Xuechun Ren,Xinyang Liu,Rong Yun,Hu Zeyu,Zhongmin Tian,Zhe Yang
出处
期刊:ACS Nano [American Chemical Society]
卷期号:19 (35): 31582-31597 被引量:9
标识
DOI:10.1021/acsnano.5c08856
摘要

Gemcitabine (GEM), an "old-school" chemotherapeutic agent, holds significant potential for repurposing due to its immunomodulatory properties, particularly in mitigating the immunosuppressive tumor microenvironment by depleting myeloid-derived suppressor cells and regulatory T cells. However, it is not regarded as an immunogenic agent, leaving a "cold" tumor state. Thus, we developed a carrier-free nanoprodrug that self-assembles from two zinc phthalocyanine (ZnPc)-based photosensitizer prodrugs, incorporating photodynamic therapy (PDT) to induce immunogenic cell death. A reactive oxygen species (ROS)-cleavable β-aminoacrylate linker (AA) was utilized to conjugate ZnPc and GEM, synthesizing the prodrug ZnPc-AA-GEM, which enables GEM release following ROS generation induced by PDT. Furthermore, the amphiphilic ZnPc-PEG enhances the stability and circulation time of the nanoprodrugs. These nanoprodrugs facilitate efficient tumor accumulation of GEM, activating its function through laser irradiation. Importantly, the combination of PDT and GEM increases tumor immunogenicity, enhancing effector T cell recruitment and mitigating tumor-associated immunosuppression, thereby amplifying the chemotherapeutic immunomodulatory effects of GEM. Comprehensive biosecurity evaluations indicated that carrier-free nanoprodrug exhibits minimal hemotoxicity and no significant adverse effects. Our study proposes a strategy that leverages traditional chemotherapeutics alongside advanced photodynamic approaches for more effective cancer treatment.
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