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Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex

A series of seven fac-[Re(CO)(3)(5Me-Sal-Trypt)(L)] complexes containing tryptamine on the N,O 5-methyl-salicylidene bidentate ligand backbone and where L is MeOH, Py, Imi, DMAP, PPh(3) coordinated to the 6th position have been studied, including the formation of a dinuclear Re(2) cluster. The cryst...

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Autores principales: Jacobs, Frederick J. F., Venter, Gertruida J. S., Fourie, Eleanor, Kroon, Robin E., Brink, Alice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9036643/
https://www.ncbi.nlm.nih.gov/pubmed/35479015
http://dx.doi.org/10.1039/d1ra03750a
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author Jacobs, Frederick J. F.
Venter, Gertruida J. S.
Fourie, Eleanor
Kroon, Robin E.
Brink, Alice
author_facet Jacobs, Frederick J. F.
Venter, Gertruida J. S.
Fourie, Eleanor
Kroon, Robin E.
Brink, Alice
author_sort Jacobs, Frederick J. F.
collection PubMed
description A series of seven fac-[Re(CO)(3)(5Me-Sal-Trypt)(L)] complexes containing tryptamine on the N,O 5-methyl-salicylidene bidentate ligand backbone and where L is MeOH, Py, Imi, DMAP, PPh(3) coordinated to the 6th position have been studied, including the formation of a dinuclear Re(2) cluster. The crystallographic solid state structures show marked similarity in structural tendency, in particular the rigidity of the Re core and the hydrogen bond interactions similar to those found in protein structures. The rates of formation and stability of the complexes were evaluated by rapid time-resolved stopped-flow techniques and the methanol substitution reaction indicates the significant activation induced by the use of the N,O salicylidene bidentate ligand as manifested by the second-order rate constants for the entering nucleophiles. Both linear and limiting kinetics were observed and a systematic evaluation of the kinetics is reported clearly indicating an interchange type of intimate mechanism for the methanol substitution. The anticancer activity of compounds 1–7 was tested on HeLa cells and it was found that all compounds showed similar cytotoxicity where solubility allowed. IC(50)-values between ca. 11 and 22 μM indicate that some cytotoxicity resides most likely on the salicylidene–tryptamine ligand. The photoluminescence of the seven complexes is similar in maximum emission wavelength with little variation despite the broad range of ligands coordinated to the 6th position on the metal centre.
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spelling pubmed-90366432022-04-26 Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex Jacobs, Frederick J. F. Venter, Gertruida J. S. Fourie, Eleanor Kroon, Robin E. Brink, Alice RSC Adv Chemistry A series of seven fac-[Re(CO)(3)(5Me-Sal-Trypt)(L)] complexes containing tryptamine on the N,O 5-methyl-salicylidene bidentate ligand backbone and where L is MeOH, Py, Imi, DMAP, PPh(3) coordinated to the 6th position have been studied, including the formation of a dinuclear Re(2) cluster. The crystallographic solid state structures show marked similarity in structural tendency, in particular the rigidity of the Re core and the hydrogen bond interactions similar to those found in protein structures. The rates of formation and stability of the complexes were evaluated by rapid time-resolved stopped-flow techniques and the methanol substitution reaction indicates the significant activation induced by the use of the N,O salicylidene bidentate ligand as manifested by the second-order rate constants for the entering nucleophiles. Both linear and limiting kinetics were observed and a systematic evaluation of the kinetics is reported clearly indicating an interchange type of intimate mechanism for the methanol substitution. The anticancer activity of compounds 1–7 was tested on HeLa cells and it was found that all compounds showed similar cytotoxicity where solubility allowed. IC(50)-values between ca. 11 and 22 μM indicate that some cytotoxicity resides most likely on the salicylidene–tryptamine ligand. The photoluminescence of the seven complexes is similar in maximum emission wavelength with little variation despite the broad range of ligands coordinated to the 6th position on the metal centre. The Royal Society of Chemistry 2021-07-13 /pmc/articles/PMC9036643/ /pubmed/35479015 http://dx.doi.org/10.1039/d1ra03750a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Jacobs, Frederick J. F.
Venter, Gertruida J. S.
Fourie, Eleanor
Kroon, Robin E.
Brink, Alice
Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title_full Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title_fullStr Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title_full_unstemmed Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title_short Substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
title_sort substitution reactivity and structural variability induced by tryptamine on the biomimetic rhenium tricarbonyl complex
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9036643/
https://www.ncbi.nlm.nih.gov/pubmed/35479015
http://dx.doi.org/10.1039/d1ra03750a
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