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A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin

Ruthenium complexes are often investigated as potential replacements for platinum-based chemotherapeutics in hopes of identifying systems with improved tolerability in vivo and reduced susceptibility to cellular resistance mechanisms. Inspired by phenanthriplatin, a non-traditional platinum agent th...

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Autores principales: Mitchell, Richard J., Kriger, Sarah M., Fenton, Alexander D., Havrylyuk, Dmytro, Pandeya, Ankit, Sun, Yang, Smith, Tami, DeRouchey, Jason E., Unrine, Jason M., Oza, Viral, Blackburn, Jessica S., Wei, Yinan, Heidary, David K., Glazer, Edith C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170627/
https://www.ncbi.nlm.nih.gov/pubmed/37181632
http://dx.doi.org/10.1039/d2cb00247g
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author Mitchell, Richard J.
Kriger, Sarah M.
Fenton, Alexander D.
Havrylyuk, Dmytro
Pandeya, Ankit
Sun, Yang
Smith, Tami
DeRouchey, Jason E.
Unrine, Jason M.
Oza, Viral
Blackburn, Jessica S.
Wei, Yinan
Heidary, David K.
Glazer, Edith C.
author_facet Mitchell, Richard J.
Kriger, Sarah M.
Fenton, Alexander D.
Havrylyuk, Dmytro
Pandeya, Ankit
Sun, Yang
Smith, Tami
DeRouchey, Jason E.
Unrine, Jason M.
Oza, Viral
Blackburn, Jessica S.
Wei, Yinan
Heidary, David K.
Glazer, Edith C.
author_sort Mitchell, Richard J.
collection PubMed
description Ruthenium complexes are often investigated as potential replacements for platinum-based chemotherapeutics in hopes of identifying systems with improved tolerability in vivo and reduced susceptibility to cellular resistance mechanisms. Inspired by phenanthriplatin, a non-traditional platinum agent that contains only one labile ligand, monofunctional ruthenium polypyridyl agents have been developed, but until now, few demonstrated promising anticancer activity. Here we introduce a potent new scaffold, based on [Ru(tpy)(dip)Cl]Cl (tpy = 2,2′:6′,2′′-terpyridine and dip = 4,7-diphenyl-1,10-phenanthroline) in pursuit of effective Ru(ii)-based monofunctional agents. Notably, the extension of the terpyridine at the 4′ position with an aromatic ring resulted in a molecule that was cytotoxic in several cancer cell lines with sub-micromolar IC(50) values, induced ribosome biogenesis stress, and exhibited minimal zebrafish embryo toxicity. This study demonstrates the successful design of a Ru(ii) agent that mimics many of the biological effects and phenotypes seen with phenanthriplatin, despite numerous differences in both the ligands and metal center structure.
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spelling pubmed-101706272023-05-11 A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin Mitchell, Richard J. Kriger, Sarah M. Fenton, Alexander D. Havrylyuk, Dmytro Pandeya, Ankit Sun, Yang Smith, Tami DeRouchey, Jason E. Unrine, Jason M. Oza, Viral Blackburn, Jessica S. Wei, Yinan Heidary, David K. Glazer, Edith C. RSC Chem Biol Chemistry Ruthenium complexes are often investigated as potential replacements for platinum-based chemotherapeutics in hopes of identifying systems with improved tolerability in vivo and reduced susceptibility to cellular resistance mechanisms. Inspired by phenanthriplatin, a non-traditional platinum agent that contains only one labile ligand, monofunctional ruthenium polypyridyl agents have been developed, but until now, few demonstrated promising anticancer activity. Here we introduce a potent new scaffold, based on [Ru(tpy)(dip)Cl]Cl (tpy = 2,2′:6′,2′′-terpyridine and dip = 4,7-diphenyl-1,10-phenanthroline) in pursuit of effective Ru(ii)-based monofunctional agents. Notably, the extension of the terpyridine at the 4′ position with an aromatic ring resulted in a molecule that was cytotoxic in several cancer cell lines with sub-micromolar IC(50) values, induced ribosome biogenesis stress, and exhibited minimal zebrafish embryo toxicity. This study demonstrates the successful design of a Ru(ii) agent that mimics many of the biological effects and phenotypes seen with phenanthriplatin, despite numerous differences in both the ligands and metal center structure. RSC 2023-02-27 /pmc/articles/PMC10170627/ /pubmed/37181632 http://dx.doi.org/10.1039/d2cb00247g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mitchell, Richard J.
Kriger, Sarah M.
Fenton, Alexander D.
Havrylyuk, Dmytro
Pandeya, Ankit
Sun, Yang
Smith, Tami
DeRouchey, Jason E.
Unrine, Jason M.
Oza, Viral
Blackburn, Jessica S.
Wei, Yinan
Heidary, David K.
Glazer, Edith C.
A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title_full A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title_fullStr A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title_full_unstemmed A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title_short A monoadduct generating Ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
title_sort monoadduct generating ru(ii) complex induces ribosome biogenesis stress and is a molecular mimic of phenanthriplatin
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170627/
https://www.ncbi.nlm.nih.gov/pubmed/37181632
http://dx.doi.org/10.1039/d2cb00247g
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