Deng Wenbo, Wei Zixiang, Xu Yunhao, Gong Zhichao, Cai Fenglin, Shi Quan, Guo Kai, Jia Meng, Zhao Yanming, Feng Yaqing, Deng Jingyu, Zhang Bao
School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300350, China.
Department of Gastric Surgery, National Clinical Research Center for Cancer, Tianjin Key Laboratory of Digestive Cancer, Tianjin's Clinical Research Center for Cancer, Tianjin Medical University Cancer Institute and Hospital, Tianjin, 300060, China.
Small. 2024 Dec 15:e2408975. doi: 10.1002/smll.202408975.
As a distinctive class of porphyrin derivatives, corroles offer exceptional potential in phototherapy applications owing to their unique electronic structures. However, developing metal-organic frameworks (MOFs) that incorporate photosensitive corroles as functional ligands for synergistic phototherapy remains a formidable challenge. Herein, for the first time, the unique phosphorus corrole-based MOFs Cor(P)-Hf with (3,18)-connected gea topology are reported, which are constructed by Cs-symmetric dicarboxylate 3-connected linkers, 10-pentafluorophenyl-5,15-di(p-benzoate)phosphorus corrole (Cor(P)), and the peculiar D-symmetric 18-connected Hf-oxo clusters. Interestingly, six para-position F substituents of six Cor(P) linkers are found to be coordinated with the apex of the Hf-oxo cluster through Hf-F bonds along the c-axis direction, which is believed to help stabilize the framework. Furthermore, the mixed corrolic ligand-based MOFs Cor(P)/Cor(Cu)-Hf and Cor(P)/Cor(Fe)-Hf involving Cor(Fe) or Cor(Cu) as the secondary functional linkers are constructed by a simple "one-pot" solvent-thermal method, respectively. Remarkably, Cor(P)/Cor(Fe)-Hf facilitates synergistic phototherapy combining photodynamic therapy (PDT), photothermal therapy (PTT), and chemodynamic therapy (CDT) when activated by an 808 nm laser, as evidenced by in vivo and in vitro experiments. This study demonstrates corrole-based MOFs Cor(P)-Hf as a powerful multifunctional nanoplatform for anti-cancer phototherapy.
作为一类独特的卟啉衍生物,由于其独特的电子结构,corrole在光疗应用中具有巨大潜力。然而,开发将光敏corrole作为功能配体用于协同光疗的金属有机框架(MOF)仍然是一项艰巨的挑战。在此,首次报道了具有(3,18)连接的gea拓扑结构的独特的基于磷corrole的MOF Cor(P)-Hf,它由Cs对称的二羧酸3连接配体、10-五氟苯基-5,15-二(对苯甲酸酯)磷corrole(Cor(P))和特殊的D对称18连接的Hf-氧簇构建而成。有趣的是,发现六个Cor(P)配体的六个对位F取代基通过Hf-F键沿c轴方向与Hf-氧簇的顶点配位,这被认为有助于稳定框架。此外,分别通过简单的“一锅法”溶剂热法构建了以Cor(Fe)或Cor(Cu)作为二级功能配体的基于混合corrolic配体的MOF Cor(P)/Cor(Cu)-Hf和Cor(P)/Cor(Fe)-Hf。值得注意的是,体内和体外实验证明,当用808 nm激光激活时,Cor(P)/Cor(Fe)-Hf促进了光动力疗法(PDT)、光热疗法(PTT)和化学动力疗法(CDT)相结合的协同光疗。这项研究证明基于corrole的MOF Cor(P)-Hf是一种强大的用于抗癌光疗的多功能纳米平台。