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具有长寿命三重态激发态和体外光生物活性的杂配 Ir(III)N 配合物。

Heteroleptic Ir(III)N Complexes with Long-Lived Triplet Excited States and in Vitro Photobiological Activities.

机构信息

Department of Chemistry , Acadia University , 6 University Avenue , Wolfville , Nova Scotia B4P 2R6 , Canada.

Department of Chemistry and Biochemistry , University of North Carolina at Greensboro , Greensboro , North Carolina 27402-6170 , United States.

出版信息

ACS Appl Mater Interfaces. 2019 Jan 30;11(4):3629-3644. doi: 10.1021/acsami.8b14744. Epub 2019 Jan 17.

Abstract

A series of cationic heteroleptic iridium(III) complexes bearing tris-diimine ligands [Ir(phen)(R-phen)] (R-phen = phenanthroline (1), 3,8-diphenylphenanthroline (2), 3,8-dipyrenylphenanthroline (3), 3-phenylphenanthroline (4), 3-pyrenylphenanthroline (5), and 3,8-diphenylethynylphenanthroline (6)) were synthesized and characterized. These complexes possessed phen ligand-localized π,π* transitions below 300 nm, and charge transfer (CT) and/or π,π* transitions between 300 and 520 nm. In 1, 2, 4, and 6, the low-energy bands were mixed CT/π,π*. However, the increased π-donating ability of the pyrenyl substituent(s) in 3 and 5 split the low-energy bands into a pyrene-based π,π* transition at 300-380 nm and an intraligand charge transfer (ILCT) transition at 380-520 nm. All complexes were emissive at room temperature in CHCN, but the parentage of the emitting state varied depending on the R substituent(s). Complex 1 exhibited predominantly phen ligand-localized π,π* emission mixed with metal-to-ligand charge transfer (MLCT) character, whereas the emission of 2, 4, and 6 was predominantly from the excited-state with π,π*/ILCT/MLCT character. The emission from 3 and 5 was dominated by pyrene-based π,π* states mixed with ILCT character. The different natures of the lowest triplet excited states were also reflected by the different spectral features and lifetimes of the triplet transient absorption of these complexes. Complexes 3 and 5 had singlet oxygen quantum yields as high as 81 and 72%, respectively. Both gave submicromolar phototoxicities toward cancer cells (SK-MEL-28 human melanoma) and bacteria ( S. aureus and S. mutans) with visible-light activation (and marginal to no photobiological activity with red light). Their visible-light phototherapeutic indices (PIs) toward SK-MEL-28 cells were 248 for 3 and >435 for 5; PIs were lower in bacteria (≤62) because of their inherent antimicrobial activities. Both complexes were shown to produce substantial amounts of intracellular reactive oxygen species (ROS), which may account for their photobiological activities.

摘要

一系列含有三联二吡啶配体的阳离子型杂环铱(III)配合物[Ir(phen)(R-phen)]被合成并进行了表征,其中 R-phen 代表苯并菲(1)、3,8-二苯基苯并菲(2)、3,8-二吡咯基苯并菲(3)、3-苯基苯并菲(4)、3-吡咯基苯并菲(5)和 3,8-二苯乙炔基苯并菲(6)。这些配合物在 300nm 以下具有苯并菲配体局域的π,π跃迁,在 300-520nm 之间具有电荷转移(CT)和/或π,π跃迁。在 1、2、4 和 6 中,低能量带是混合的 CT/π,π*。然而,在 3 和 5 中,吡咯基取代基增加了π给体能力,将低能量带分裂为 300-380nm 的吡咯基π,π跃迁和 380-520nm 的内配体电荷转移(ILCT)跃迁。所有配合物在室温下在 CHCN 中均具有发光性,但发射态的起源取决于 R 取代基。配合物 1 表现出主要的苯并菲配体局域的π,π发射,混合有金属-配体电荷转移(MLCT)特征,而 2、4 和 6 的发射则主要来自具有π,π*/ILCT/MLCT特征的激发态。3 和 5 的发射主要由吡咯基π,π*态与 ILCT 特征混合而成。这些配合物的三重态瞬态吸收的不同光谱特征和寿命也反映了最低三重态激发态的不同性质。配合物 3 和 5 的单线态氧量子产率分别高达 81%和 72%。两者在可见光激活下对癌细胞(SK-MEL-28 人黑色素瘤)和细菌(金黄色葡萄球菌和变形链球菌)均具有亚微米级的光毒性,而在红光下几乎没有光生物学活性(仅有轻微的光生物学活性)。它们对 SK-MEL-28 细胞的可见光治疗指数(PI)分别为 248(3)和>435(5);在细菌中,PI 较低(≤62),因为它们具有固有抗菌活性。这两种配合物都能产生大量的细胞内活性氧(ROS),这可能是它们具有光生物学活性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f5d/6355354/8cb6e777f6e9/nihms-1004426-f0001.jpg

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