Title Lysosome Targeting Bis-terpyridine Ruthenium(II) Complexes: Photophysical Properties and In Vitro Photodynamic Therapy
Authors Liu, Bingqing
Gao, Yibo
Jabed, Mohammed A.
Kilina, Svetlana
Liu, Guoquan
Sun, Wenfang
Affiliation North Dakota State Univ, Dept Chem & Biochem, Fargo, ND 58108 USA
Peking Univ, Sch Pharmaceut Sci, State Key Lab Nat & Biomimet Drugs, Beijing 100191, Peoples R China
Keywords REVERSE SATURABLE ABSORPTION
TRANSITION-METAL-COMPLEXES
EXCITED-STATES
POLYPYRIDYL COMPLEXES
DENSITY FUNCTIONALS
IR(III) COMPLEXES
PHOTOSENSITIZERS
LIGANDS
PHOSPHORESCENCE
APPROXIMATION
Issue Date 21-Sep-2020
Publisher ACS APPLIED BIO MATERIALS
Abstract Three heteroleptAic bis-terpyridine ruthenium(II) complexes (Ru1-Ru3) [Ru(tpy-R-1)(tpy-R-2)](2+) (tpy = 2,2' :6 ',2 ''-terpyridine, R-1/R-2 = phenyl, 4-{2-[2-(2-methoxyethoxy)ethoxy]ethoxy}phenyl, pyren-1-yl, or 4-phenyl-BODIPY (boron dipyrromethene)) were synthesized and investigated for their potential applications as photosensitizers (PSs) for photodynamic therapy. All complexes displayed broad and intense absorption band in the green spectral regions (450-600 nm), which arose from the spin-allowed charge-transfer transitions mixed with ligand-localized 1 pi,pi* transitions. All complexes show weak green emission at 513-549 nm and/or even weaker red emission at 646-674 nm at room temperature depending on the excitation wavelength and the solvent used. Incorporating the BODIPY motif to the 4'-position of one of the tpy ligands in Ru2 and Ru3 drastically prolonged the lifetimes of the lowest triplet excited states (T-1) of Ru2 and Ru3 to tens of microseconds. This promoted the singlet oxygen formation sensitized by Ru2 and Ru3 upon green light activation, which in turn induced significant photocytotoxicity toward the A549 human lung cancer cell line with an EC50 value of 1.50 mu M for Ru2 and 7.41 mu M for Ru3 under 0.48 J.cm(-2) 500 nm light irradiation. Laser confocal scanning microscopy imaging revealed that Ru2 mainly distributed to lysosomes upon cell uptake. Upon 500 nm light activation, Ru2 induced lysosomal damage and subsequent mitochondrial membrane potential decrease. The dominant cell death pathway was apoptosis. These results demonstrated the potential utilization of [Ru(tpy-R-1)(tpy-R-2)](2+) complexes as PSs for PDT.
URI http://hdl.handle.net/20.500.11897/603136
ISSN 2576-6422
DOI 10.1021/acsabm.0c00647
Indexed CCR
ESCI
IC
Appears in Collections: 药学院
天然药物与仿生药物国家重点实验室

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