Department of Radiology, Huaxi MR Research Center (HMRRC), Frontiers Science Center for Disease-Related Molecular Network, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, 610041, China.
Functional and Molecular Imaging Key Laboratory of Sichuan Province, and Research Unit of Psychoradiology, Chinese Academy of Medical Sciences, Chengdu, 610041, China.
Adv Mater. 2024 Jun;36(25):e2400582. doi: 10.1002/adma.202400582. Epub 2024 Mar 25.
The effects of dendron side chains in polymeric conjugates on tumor penetration and antigen presentation are systematically examined. Three polymer-gemcitabine (Gem) conjugates (pG0-Gem, pG1-Gem, pG2-Gem) are designed and prepared. The pG2-Gem conjugate uniquely binds to the mitochondria of tumor cells, thus regulating mitochondrial dynamics. The interaction between the pG2-Gem conjugate and the mitochondria promotes great penetration and accumulation of the conjugate at the tumor site, resulting in pronounced antitumor effects in an animal model. Such encouraging therapeutic effects can be ascribed to immune modulation since MHC-1 antigen presentation is significantly enhanced due to mitochondrial fusion and mitochondrial metabolism alteration after pG2-Gem treatment. Crucially, the drug-free dendronized polymer, pG2, is identified to regulate mitochondrial dynamics, and the regulation is independent of the conjugated Gem. Furthermore, the combination of pG2-Gem with anti-PD-1 antibody results in a remarkable tumor clearance rate of 87.5% and a prolonged survival rate of over 150 days, demonstrating the potential of dendronized polymers as an innovative nanoplatform for metabolic modulation and synergistic tumor immunotherapy.
系统研究了聚合物缀合物中树枝状侧链对肿瘤穿透和抗原呈递的影响。设计并制备了三种聚合物-吉西他滨(Gem)缀合物(pG0-Gem、pG1-Gem、pG2-Gem)。pG2-Gem 缀合物独特地与肿瘤细胞的线粒体结合,从而调节线粒体动力学。pG2-Gem 缀合物与线粒体之间的相互作用促进了缀合物在肿瘤部位的良好穿透和积累,从而在动物模型中产生了明显的抗肿瘤效果。这种令人鼓舞的治疗效果可以归因于免疫调节,因为 pG2-Gem 处理后 MHC-1 抗原呈递显著增强,这是由于线粒体融合和线粒体代谢改变所致。至关重要的是,鉴定出无药物的树枝状聚合物 pG2 可调节线粒体动力学,并且这种调节与缀合的 Gem 无关。此外,pG2-Gem 与抗 PD-1 抗体的联合使用导致 87.5%的显著肿瘤清除率和超过 150 天的延长存活率,表明树枝状聚合物作为代谢调节和协同肿瘤免疫治疗的创新纳米平台具有潜力。