Department of Breast Surgery, Harbin Medical University Cancer Hospital, Harbin 150081, China.
Department of Breast Surgery, The Second Affiliated Hospital of Guangxi Medical University, Nanning 530000, China.
ACS Nano. 2024 Oct 29;18(43):29689-29703. doi: 10.1021/acsnano.4c09021. Epub 2024 Oct 14.
Cold exposure (CE) therapy can quickly induce tumor starvation by brown adipose tissue (BAT) thermogenesis. Exploring the combined antitumor mechanism of CE and traditional therapies (such as radiotherapy (RT)) is exciting and promising. In this study, we investigated the effect of CE in combination with nitric oxide (NO) gas therapy on sensitizing tumors to RT and promoting tumor radio-immunotherapy. We first constructed a liposome (SL) loaded with the NO prodrug S-nitroso-N-acetylpenicillamine (SNAP). When SL is injected, the glutathione (GSH) within the tumor region promotes the release of NO from SNAP. Subsequently, the superoxide anion produced by RT reacts with NO to generate peroxynitrite (ONOO), which has strong oxidative properties and induces cell death. Meanwhile, the mice were exposed to a CE environment of 4 °C. CE-mediated BAT thermogenesis induced tumor starvation, which led to a decrease in ATP and GSH content within the tumor as well as an improvement in the hypoxic microenvironment and a decrease in myeloid-derived suppressor cells. All of the above have promoted the effectiveness of RT and activated the systemic antitumor immunity. In the bilateral tumor experiment, treatment of the primary tumor inhibited the growth of the distant tumor and promoted the infiltration of CD8 T cells into the tumor. These findings reveal that the synergy of CE, NO gas therapy, and RT could confer high effective anticancer effects, providing possibilities in personalized cancer treatment.
冷暴露(CE)疗法可以通过棕色脂肪组织(BAT)产热迅速诱导肿瘤饥饿。探索 CE 与传统疗法(如放射治疗(RT))联合的抗肿瘤机制令人兴奋和充满希望。在这项研究中,我们研究了 CE 联合一氧化氮(NO)气体治疗对增强肿瘤对 RT 的敏感性和促进肿瘤放射免疫治疗的影响。我们首先构建了一种装载 NO 前体 S-亚硝基-N-乙酰青霉胺(SNAP)的脂质体(SL)。当 SL 被注射时,肿瘤区域内的谷胱甘肽(GSH)促进 SNAP 释放 NO。随后,RT 产生的超氧阴离子与 NO 反应生成过氧亚硝酸盐(ONOO),具有很强的氧化性质,诱导细胞死亡。同时,小鼠暴露在 4°C 的 CE 环境中。CE 介导的 BAT 产热诱导肿瘤饥饿,导致肿瘤内 ATP 和 GSH 含量降低,缺氧微环境改善,髓样来源抑制细胞减少。所有这些都提高了 RT 的有效性并激活了全身抗肿瘤免疫。在双侧肿瘤实验中,治疗原发性肿瘤抑制了远处肿瘤的生长,并促进了 CD8 T 细胞浸润到肿瘤中。这些发现表明,CE、NO 气体治疗和 RT 的协同作用可以赋予高效的抗癌效果,为个性化癌症治疗提供了可能性。