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Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions

A panel of iridium(iii) porphyrin complexes containing axial N-heterocyclic carbene (NHC) ligand(s) were synthesized and characterized. X-ray crystal structures of the bis-NHC complexes [Ir(III)(ttp)(IMe)(2)](+) (2a), [Ir(III)(oep)(BIMe)(2)](+) (2d), [Ir(III)(oep)(I(i)Pr)(2)](+) (2e) and [Ir(III)(F(...

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Autores principales: Lam, Tsz-Lung, Tong, Ka-Chung, Yang, Chen, Kwong, Wai-Lun, Guan, Xiangguo, Li, Ming-De, Kar-Yan Lo, Vanessa, Lai-Fung Chan, Sharon, Lee Phillips, David, Lok, Chun-Nam, Che, Chi-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6335621/
https://www.ncbi.nlm.nih.gov/pubmed/30746082
http://dx.doi.org/10.1039/c8sc02920b
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author Lam, Tsz-Lung
Tong, Ka-Chung
Yang, Chen
Kwong, Wai-Lun
Guan, Xiangguo
Li, Ming-De
Kar-Yan Lo, Vanessa
Lai-Fung Chan, Sharon
Lee Phillips, David
Lok, Chun-Nam
Che, Chi-Ming
author_facet Lam, Tsz-Lung
Tong, Ka-Chung
Yang, Chen
Kwong, Wai-Lun
Guan, Xiangguo
Li, Ming-De
Kar-Yan Lo, Vanessa
Lai-Fung Chan, Sharon
Lee Phillips, David
Lok, Chun-Nam
Che, Chi-Ming
author_sort Lam, Tsz-Lung
collection PubMed
description A panel of iridium(iii) porphyrin complexes containing axial N-heterocyclic carbene (NHC) ligand(s) were synthesized and characterized. X-ray crystal structures of the bis-NHC complexes [Ir(III)(ttp)(IMe)(2)](+) (2a), [Ir(III)(oep)(BIMe)(2)](+) (2d), [Ir(III)(oep)(I(i)Pr)(2)](+) (2e) and [Ir(III)(F(20)tpp)(IMe)(2)](+) (2f) display ruffled porphyrin rings with mesocarbon displacements of 0.483–0.594 Å and long Ir–C(NHC) bonds of 2.100–2.152 Å. Variable-temperature (1)H NMR analysis of 2a reveals that the macrocycle porphyrin ring inversion takes place in solution with an activation barrier of 40 ± 1 kJ mol(–1). The UV-vis absorption spectra of Ir(III)(por)–NHC complexes display split Soret bands. TD-DFT calculations and resonance Raman experiments show that the higher-energy Soret band is derived from the (1)MLCT dπ(Ir) → π*(por) transition. The near-infrared phosphorescence of Ir(III)(por)–NHC complexes from the porphyrin-based (3)(π, π*) state features broad emission bands at 701–754 nm with low emission quantum yields and short lifetimes (Φ(em) < 0.01; τ < 4 μs). [Ir(III)(por)(IMe)(2)](+) complexes (por = ttp and oep) are efficient photosensitizers for (1)O(2) generation (Φ(so) = 0.64 and 0.88) and are catalytically active in the light-induced aerobic oxidation of secondary amines and arylboronic acid. The bis-NHC complexes exhibit potent dark cytotoxicity towards a panel of cancer cells with IC(50) values at submicromolar levels. The cytotoxicity of these complexes could be further enhanced upon light irradiation with IC(50) values as low as nanomolar levels in association with the light-induced generation of reactive oxygen species (ROS). Bioimaging of [Ir(III)(oep)(IMe)(2)](+) (2c) treated cells indicates that this Ir complex mainly targets the endoplasmic reticulum. [Ir(III)(oep)(IMe)(2)](+) catalyzes the photoinduced generation of singlet oxygen and triggers protein oxidation, cell cycle arrest, apoptosis and the inhibition of angiogenesis. It also causes pronounced photoinduced inhibition of tumor growth in a mouse model of human cancer.
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spelling pubmed-63356212019-02-11 Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions Lam, Tsz-Lung Tong, Ka-Chung Yang, Chen Kwong, Wai-Lun Guan, Xiangguo Li, Ming-De Kar-Yan Lo, Vanessa Lai-Fung Chan, Sharon Lee Phillips, David Lok, Chun-Nam Che, Chi-Ming Chem Sci Chemistry A panel of iridium(iii) porphyrin complexes containing axial N-heterocyclic carbene (NHC) ligand(s) were synthesized and characterized. X-ray crystal structures of the bis-NHC complexes [Ir(III)(ttp)(IMe)(2)](+) (2a), [Ir(III)(oep)(BIMe)(2)](+) (2d), [Ir(III)(oep)(I(i)Pr)(2)](+) (2e) and [Ir(III)(F(20)tpp)(IMe)(2)](+) (2f) display ruffled porphyrin rings with mesocarbon displacements of 0.483–0.594 Å and long Ir–C(NHC) bonds of 2.100–2.152 Å. Variable-temperature (1)H NMR analysis of 2a reveals that the macrocycle porphyrin ring inversion takes place in solution with an activation barrier of 40 ± 1 kJ mol(–1). The UV-vis absorption spectra of Ir(III)(por)–NHC complexes display split Soret bands. TD-DFT calculations and resonance Raman experiments show that the higher-energy Soret band is derived from the (1)MLCT dπ(Ir) → π*(por) transition. The near-infrared phosphorescence of Ir(III)(por)–NHC complexes from the porphyrin-based (3)(π, π*) state features broad emission bands at 701–754 nm with low emission quantum yields and short lifetimes (Φ(em) < 0.01; τ < 4 μs). [Ir(III)(por)(IMe)(2)](+) complexes (por = ttp and oep) are efficient photosensitizers for (1)O(2) generation (Φ(so) = 0.64 and 0.88) and are catalytically active in the light-induced aerobic oxidation of secondary amines and arylboronic acid. The bis-NHC complexes exhibit potent dark cytotoxicity towards a panel of cancer cells with IC(50) values at submicromolar levels. The cytotoxicity of these complexes could be further enhanced upon light irradiation with IC(50) values as low as nanomolar levels in association with the light-induced generation of reactive oxygen species (ROS). Bioimaging of [Ir(III)(oep)(IMe)(2)](+) (2c) treated cells indicates that this Ir complex mainly targets the endoplasmic reticulum. [Ir(III)(oep)(IMe)(2)](+) catalyzes the photoinduced generation of singlet oxygen and triggers protein oxidation, cell cycle arrest, apoptosis and the inhibition of angiogenesis. It also causes pronounced photoinduced inhibition of tumor growth in a mouse model of human cancer. Royal Society of Chemistry 2018-10-10 /pmc/articles/PMC6335621/ /pubmed/30746082 http://dx.doi.org/10.1039/c8sc02920b Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Lam, Tsz-Lung
Tong, Ka-Chung
Yang, Chen
Kwong, Wai-Lun
Guan, Xiangguo
Li, Ming-De
Kar-Yan Lo, Vanessa
Lai-Fung Chan, Sharon
Lee Phillips, David
Lok, Chun-Nam
Che, Chi-Ming
Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title_full Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title_fullStr Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title_full_unstemmed Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title_short Luminescent ruffled iridium(iii) porphyrin complexes containing N-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
title_sort luminescent ruffled iridium(iii) porphyrin complexes containing n-heterocyclic carbene ligands: structures, spectroscopies and potent antitumor activities under dark and light irradiation conditions
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6335621/
https://www.ncbi.nlm.nih.gov/pubmed/30746082
http://dx.doi.org/10.1039/c8sc02920b
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