钌
光动力疗法
化学
配体(生物化学)
光化学
吸收(声学)
组合化学
催化作用
有机化学
材料科学
受体
生物化学
复合材料
作者
Zongwei Zhang,Xiaolong Zeng,Xiao Zhou,Zhiyuan Ma,Maomao He,Danhong Zhou,Saran Long,Jiangli Fan,Xiaojun Peng,Wen Sun
标识
DOI:10.1002/ange.202512296
摘要
Abstract The development of NIR photosensitizers (PSs) based on Ru complexes with Type‐I process holds substantial promise for photodynamic therapy (PDT) of cancer, though this breakthrough remains unrealized to date. Herein, a pair of cyclometalated Ru enantiomers, [Λ/Δ‐Ru‐dqpy‐TPABP]Cl (dqpy: 2,6‐di(quinolin‐2‐yl)pyridine; TPABP: 4‐(4‐(pyridine‐2‐yl)‐2,1,3‐benzothiadiazol‐7‐yl)triphenylamine) (Λ/Δ‐Ru‐TPABP), were synthesized and evaluated. These complexes exhibit strong Ru(d) and TPABP(π) → dqpy(π*) charge transfer ((metal and ligand)–ligand charge transfer; ML–LCT) absorption at ∼640 nm, with an extended absorption tail reaching up to 800 nm. Moreover, the TPABP ligand, with its strong electron‐rich capacity, contributes to T 1 formation, which increases the electron transfer possibility in the triplet state and promotes Type‐I PDT, making it highly effective for killing cancer cells under hypoxic conditions. Further encapsulating Λ/Δ‐Ru‐TPABP into polymeric nanoparticles results in high tumor inhibition efficiency (>85%) and causes a strong tumoricidal effect and inhibits lung metastasis of breast tumors under 700 nm light irradiation, thus offering a new strategy for developing NIR Ru complexes for anticancer treatment through the design of cyclometalating ligand.
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