School of Chemistry and Chemical Engineering, Southeast University, Nanjing, 211189, China.
Chem Asian J. 2024 Jun 17;19(12):e202400305. doi: 10.1002/asia.202400305. Epub 2024 May 14.
Designing and developing photosensitizers with cell membrane specificity is crucial for achieving effective multimodal therapy of tumors compared to other organelles. Here, we designed and screened a photosensitizer CM34 through donor/receptor regulation strategies, and it is able to achieve long-retention cell membrane targeting. It is not only an extremely excellent cell membrane targeted tumor theranostic agent, but also found to be a promising potential immune activator. Specifically, CM34 with a larger intramolecular twist angle is more likely to form larger aggregates in aqueous solutions, and the introduction of cyanide group also enhances its interaction with cell membranes, which were key factors hindering molecular penetration of the cell membrane and prolonging its residence time on the cell membrane, providing conditions for further membrane targeted photodynamic therapy. Furthermore, the efflux of contents caused by cell necrosis directly activates the immune response. In summary, this study realizes to clarify and refine all potential mechanisms of action through density functional theory calculations, photophysical property measurements, and cellular level mechanism exploration, providing a new direction for the clinical development of cell membrane targeted anti-tumor immune activators.
设计和开发具有细胞膜特异性的光敏剂对于实现肿瘤的有效多模态治疗至关重要,与其他细胞器相比。在这里,我们通过供体/受体调节策略设计和筛选了一种光敏剂 CM34,它能够实现长时间保留的细胞膜靶向。它不仅是一种非常出色的细胞膜靶向肿瘤治疗剂,而且还被发现是一种有前途的潜在免疫激活剂。具体来说,具有较大分子内扭转角的 CM34在水溶液中更有可能形成较大的聚集体,氰基的引入也增强了其与细胞膜的相互作用,这是阻碍分子穿透细胞膜并延长其在细胞膜上停留时间的关键因素,为进一步的膜靶向光动力治疗提供了条件。此外,细胞坏死引起的内容物外排直接激活免疫反应。总之,本研究通过密度泛函理论计算、光物理性质测量和细胞水平机制探索,实现了阐明和细化所有潜在作用机制,为细胞膜靶向抗肿瘤免疫激活剂的临床开发提供了新的方向。