Faculty of Chemistry, Jagiellonian University, 30-387 Kraków, Poland.
Doctoral School of Exact and Natural Sciences, Jagiellonian University, 30-348 Kraków, Poland.
ACS Appl Mater Interfaces. 2024 Sep 25;16(38):50389-50406. doi: 10.1021/acsami.4c11171. Epub 2024 Sep 14.
Tetraphenyloporphyrin derivatives are a useful scaffold for developing new pharmaceuticals for photodynamic therapy (PDT) and the photodiagnosis (PD) of cancer. We synthesized new sulfonamide fluorinated porphyrin derivatives and investigated their potential as photosensitizers and real-time bioimaging agents for cancer. We found that 5,10,15,20-tetrakis-[2',3',5',6'-tetrafluoro-4'-methanesulfamidyl)phenyl]bacteriochlorin () has intense absorption and fluorescence in the near-infrared, efficiently generates singlet oxygen and hydroxyl radicals, has low toxicity in the dark, and high phototoxicity. We increased its bioavailability with encapsulation in Pluronic-based micelles, which also improved the photodynamic effect. exhibits pH-dependent properties (lower pH promoted its aggregation), and a GlyGly buffer was used to effectively solubilize the compound. In vitro findings with 2D cell culture were complemented with human-induced pluripotent stem cell (hiPSC)-derived organoids. in micelles showed enhanced efficacy compared to in the formulation. was further evaluated in real-time bioimaging and PDT of BALB/c mice bearing CT26 tumors. After injection, the photosensitizer was visible in the tumor area 3 h after injection. The most successful therapeutic approach proved to be tumor-targeted PDT using P123-encapsulated illuminated 24 h after administration with a light dose of 42 J/cm, which led to a 30% long-term cure rate.
四苯卟啉衍生物是开发用于光动力疗法(PDT)和癌症光诊断(PD)的新型药物的有用支架。我们合成了新的磺酰胺氟化卟啉衍生物,并研究了它们作为光敏剂和实时生物成像剂用于癌症的潜力。我们发现 5,10,15,20-四-[2',3',5',6'-四氟-4'-甲磺酰基)苯基]细菌卟啉()在近红外区域具有强烈的吸收和荧光,有效地产生单线态氧和羟基自由基,在黑暗中毒性低,光毒性高。我们通过封装在基于 Pluronic 的胶束中提高了其生物利用度,这也提高了光动力效应。表现出 pH 值依赖性(较低的 pH 值促进其聚集),并用 GlyGly 缓冲液有效溶解该化合物。与二维细胞培养的体外研究结果相补充的是,人类诱导多能干细胞(hiPSC)衍生的类器官。在胶束中的表现出比在游离药物中的更好的疗效。在携带 CT26 肿瘤的 BALB/c 小鼠中进行了实时生物成像和 PDT 的进一步评估。注射后,在注射后 3 小时,在肿瘤区域可以看到光敏剂。最成功的治疗方法被证明是使用 P123 包封的 进行肿瘤靶向 PDT,在给药后 24 小时用 42 J/cm 的光剂量照射,这导致 30%的长期治愈率。