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通过共价连接对苯二酚探索双核铱(III)配合物中的激发态分子内质子耦合电子转移:通过无效氧化还原循环进行光疗

Exploring Excited-State Intramolecular Proton-Coupled Electron Transfer in Dinuclear Ir(III)-Complex via Covalently Tagged Hydroquinone: Phototherapy Through Futile Redox Cycling.

作者信息

Shee Maniklal, Schleisiek Julia, Maity Nishith, Das Gourav, Montesdeoca Nicolás, Ha-Thi Minh-Huong, Gore Kiran R, Karges Johannes, Singh N D Pradeep

机构信息

Department of Chemistry, Indian Institute of Technology, Kharagpur, West Bengal, 721302, India.

Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstrasse 150, 44780, Bochum, Germany.

出版信息

Small. 2025 Jan;21(4):e2408437. doi: 10.1002/smll.202408437. Epub 2024 Dec 23.

Abstract

Anticipating intramolecular excited-state proton-coupled electron transfer (PCET) process within dinuclear Ir-photocatalytic system via the covalent linkage is seminal, yet challenging. Indeed, the development of various dinuclear complexes is also promising for studying integral photophysics and facilitating applications in catalysis or biology. Herein, this study reports dinuclear [Ir(bis{imidazo-phenanthrolin-2-yl}-hydroquinone)(ppy)] (1) complex by leveraging both ligand-centered redox property and intramolecular H-bonding for exploring dual excited-state proton-transfer assisted PCET process. The vital role of covalently placed hydroquinone in bridged ligand is investigated as electron-proton transfer (ET-PT) mediator in intramolecular PCET and validated from triplet spin density plot. Moreover, bimolecular photoinduced ET reaction is studied in acetonitrile/water medium, forging the lowest energy triplet charge separated (CS) state of 1 with methyl viologen via favorably concerted-PCET pathway. The result indicates strong donor-acceptors coupling, which limits charge recombination and enhances catalytic efficiency. To showcase the potential application, this bioinspired PCET-based photocatalytic platform is studied for phototherapeutics, indicating significant mitochondrial localization and leading to programmed cell death (apoptosis) through futile redox cycling. Indeed, the consequences of effective internalization (via energy-dependent endocytosis), better safety profile, and higher photoinduced antiproliferative activity of 1 compared to Cisplatin, as explored in 3D tumor spheroids, this study anticipates it to be a potential lead compound.

摘要

通过共价连接来预测双核铱光催化体系内的分子内激发态质子耦合电子转移(PCET)过程至关重要,但也具有挑战性。事实上,各种双核配合物的开发对于研究整体光物理以及促进催化或生物学应用也很有前景。在此,本研究报告了双核[Ir(双{咪唑-菲咯啉-2-基}-对苯二酚)(ppy)](1)配合物,利用配体中心氧化还原性质和分子内氢键来探索双激发态质子转移辅助的PCET过程。研究了桥连配体中共价连接的对苯二酚作为分子内PCET中电子-质子转移(ET-PT)介质的重要作用,并从三重态自旋密度图进行了验证。此外,在乙腈/水介质中研究了双分子光诱导ET反应,通过有利的协同PCET途径与甲基紫精形成了1的最低能量三重态电荷分离(CS)态。结果表明供体-受体耦合很强,这限制了电荷复合并提高了催化效率。为了展示潜在应用,研究了这个受生物启发的基于PCET的光催化平台用于光治疗,表明其在线粒体中有显著定位,并通过无效的氧化还原循环导致程序性细胞死亡(凋亡)。实际上,如在三维肿瘤球体中所探索的,与顺铂相比,1具有有效的内化(通过能量依赖的内吞作用)、更好的安全性和更高的光诱导抗增殖活性,本研究预计它将成为一种潜在的先导化合物。

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