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Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation

Synthetic anion transporters that can interfere with the intracellular pH homeostasis are gaining increasing attention for tumor therapy, however, the biological mechanism of anion transporters remains to be explored. In this work, two phosphorescent cyclometalated Ir(iii) complexes containing 2-phe...

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Autores principales: Chen, Mu-He, Zheng, Yue, Cai, Xiong-Jie, Zhang, Hang, Wang, Fang-Xin, Tan, Cai-Ping, Chen, Wen-Hua, Ji, Liang-Nian, Mao, Zong-Wan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6428141/
https://www.ncbi.nlm.nih.gov/pubmed/30996918
http://dx.doi.org/10.1039/c8sc04520h
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author Chen, Mu-He
Zheng, Yue
Cai, Xiong-Jie
Zhang, Hang
Wang, Fang-Xin
Tan, Cai-Ping
Chen, Wen-Hua
Ji, Liang-Nian
Mao, Zong-Wan
author_facet Chen, Mu-He
Zheng, Yue
Cai, Xiong-Jie
Zhang, Hang
Wang, Fang-Xin
Tan, Cai-Ping
Chen, Wen-Hua
Ji, Liang-Nian
Mao, Zong-Wan
author_sort Chen, Mu-He
collection PubMed
description Synthetic anion transporters that can interfere with the intracellular pH homeostasis are gaining increasing attention for tumor therapy, however, the biological mechanism of anion transporters remains to be explored. In this work, two phosphorescent cyclometalated Ir(iii) complexes containing 2-phenylpyridine (ppy) as the cyclometalated ligand, and 2,2′-biimidazole (H(2)biim, Ir1) or 2-(1H-imidazol-2-yl)pyridine (Hpyim, Ir2) as the ancillary ligands have been synthesized and characterized. Due to the protonation and deprotonation process of the N–H groups on H(2)biim and Hpyim, Ir1 and Ir2 display pH-dependent phosphorescence and can specifically image lysosomes. Both Ir1 and Ir2 can act as anion transporters mainly through the anion exchange mechanism with higher potency observed for Ir1. Mechanism investigation shows that Ir1 and Ir2 can induce caspase-independent cell death through reactive oxygen species (ROS) elevation. As Ir1 and Ir2 can alkalinize lysosomes through anion disturbance, they can inhibit autophagic flux. Our work provides a novel anticancer mechanism of metal complexes, which gives insights into the innovative structure-based design of new metallo-anticancer agents.
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spelling pubmed-64281412019-04-17 Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation Chen, Mu-He Zheng, Yue Cai, Xiong-Jie Zhang, Hang Wang, Fang-Xin Tan, Cai-Ping Chen, Wen-Hua Ji, Liang-Nian Mao, Zong-Wan Chem Sci Chemistry Synthetic anion transporters that can interfere with the intracellular pH homeostasis are gaining increasing attention for tumor therapy, however, the biological mechanism of anion transporters remains to be explored. In this work, two phosphorescent cyclometalated Ir(iii) complexes containing 2-phenylpyridine (ppy) as the cyclometalated ligand, and 2,2′-biimidazole (H(2)biim, Ir1) or 2-(1H-imidazol-2-yl)pyridine (Hpyim, Ir2) as the ancillary ligands have been synthesized and characterized. Due to the protonation and deprotonation process of the N–H groups on H(2)biim and Hpyim, Ir1 and Ir2 display pH-dependent phosphorescence and can specifically image lysosomes. Both Ir1 and Ir2 can act as anion transporters mainly through the anion exchange mechanism with higher potency observed for Ir1. Mechanism investigation shows that Ir1 and Ir2 can induce caspase-independent cell death through reactive oxygen species (ROS) elevation. As Ir1 and Ir2 can alkalinize lysosomes through anion disturbance, they can inhibit autophagic flux. Our work provides a novel anticancer mechanism of metal complexes, which gives insights into the innovative structure-based design of new metallo-anticancer agents. Royal Society of Chemistry 2019-01-31 /pmc/articles/PMC6428141/ /pubmed/30996918 http://dx.doi.org/10.1039/c8sc04520h Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Chen, Mu-He
Zheng, Yue
Cai, Xiong-Jie
Zhang, Hang
Wang, Fang-Xin
Tan, Cai-Ping
Chen, Wen-Hua
Ji, Liang-Nian
Mao, Zong-Wan
Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title_full Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title_fullStr Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title_full_unstemmed Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title_short Inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
title_sort inhibition of autophagic flux by cyclometalated iridium(iii) complexes through anion transportation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6428141/
https://www.ncbi.nlm.nih.gov/pubmed/30996918
http://dx.doi.org/10.1039/c8sc04520h
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