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Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes

Self-aggregating calix[4]arenes carrying four DOTA ligands on the upper rim for stable complexation of paramagnetic Gd(III)-ions have already been proposed as MRI probes. In this work, we investigate the luminescence properties of Tb(III)-DOTA-calix[4]arene-4OPr containing four propyl-groups and com...

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Autores principales: Mayer, Florian, Tiruvadi Krishnan, Sriram, Schühle, Daniel T., Eliseeva, Svetlana V., Petoud, Stéphane, Tóth, Éva, Djanashvili, Kristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5797610/
https://www.ncbi.nlm.nih.gov/pubmed/29441345
http://dx.doi.org/10.3389/fchem.2018.00001
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author Mayer, Florian
Tiruvadi Krishnan, Sriram
Schühle, Daniel T.
Eliseeva, Svetlana V.
Petoud, Stéphane
Tóth, Éva
Djanashvili, Kristina
author_facet Mayer, Florian
Tiruvadi Krishnan, Sriram
Schühle, Daniel T.
Eliseeva, Svetlana V.
Petoud, Stéphane
Tóth, Éva
Djanashvili, Kristina
author_sort Mayer, Florian
collection PubMed
description Self-aggregating calix[4]arenes carrying four DOTA ligands on the upper rim for stable complexation of paramagnetic Gd(III)-ions have already been proposed as MRI probes. In this work, we investigate the luminescence properties of Tb(III)-DOTA-calix[4]arene-4OPr containing four propyl-groups and compare them with those of the analog substituted with a phthalimide chromophore (Tb(III)-DOTA-calix[4]arene-3OPr-OPhth). We show that, given its four aromatic rings, the calix[4]arene core acts as an effective sensitizer of Tb-centered luminescence. Substituents on the lower rim can modulate the aggregation behavior, which in turn determines the luminescence properties of the compounds. In solid state, the quantum yield of the phthalimide derivative is almost three times as high as that of the propyl-functionalized analog demonstrating a beneficial role of the chromophore on Tb-luminescence. In solution, however, the effect of the phthalimide group vanishes, which we attribute to the large distance between the chromophore and the lanthanide, situated on the opposite rims of the calix[4]arene. Both quantum yields and luminescence lifetimes show clear concentration dependence in solution, related to the strong impact of aggregation on the luminescence behavior. We also evidence the variability in the values of the critical micelle concentration depending on the experimental technique. Such luminescent calix[4]arene platforms accommodating stable lanthanide complexes can be considered valuable building blocks for the design of dual MR/optical imaging probes.
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spelling pubmed-57976102018-02-13 Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes Mayer, Florian Tiruvadi Krishnan, Sriram Schühle, Daniel T. Eliseeva, Svetlana V. Petoud, Stéphane Tóth, Éva Djanashvili, Kristina Front Chem Chemistry Self-aggregating calix[4]arenes carrying four DOTA ligands on the upper rim for stable complexation of paramagnetic Gd(III)-ions have already been proposed as MRI probes. In this work, we investigate the luminescence properties of Tb(III)-DOTA-calix[4]arene-4OPr containing four propyl-groups and compare them with those of the analog substituted with a phthalimide chromophore (Tb(III)-DOTA-calix[4]arene-3OPr-OPhth). We show that, given its four aromatic rings, the calix[4]arene core acts as an effective sensitizer of Tb-centered luminescence. Substituents on the lower rim can modulate the aggregation behavior, which in turn determines the luminescence properties of the compounds. In solid state, the quantum yield of the phthalimide derivative is almost three times as high as that of the propyl-functionalized analog demonstrating a beneficial role of the chromophore on Tb-luminescence. In solution, however, the effect of the phthalimide group vanishes, which we attribute to the large distance between the chromophore and the lanthanide, situated on the opposite rims of the calix[4]arene. Both quantum yields and luminescence lifetimes show clear concentration dependence in solution, related to the strong impact of aggregation on the luminescence behavior. We also evidence the variability in the values of the critical micelle concentration depending on the experimental technique. Such luminescent calix[4]arene platforms accommodating stable lanthanide complexes can be considered valuable building blocks for the design of dual MR/optical imaging probes. Frontiers Media S.A. 2018-01-30 /pmc/articles/PMC5797610/ /pubmed/29441345 http://dx.doi.org/10.3389/fchem.2018.00001 Text en Copyright © 2018 Mayer, Tiruvadi Krishnan, Schühle, Eliseeva, Petoud, Tóth and Djanashvili. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Mayer, Florian
Tiruvadi Krishnan, Sriram
Schühle, Daniel T.
Eliseeva, Svetlana V.
Petoud, Stéphane
Tóth, Éva
Djanashvili, Kristina
Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title_full Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title_fullStr Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title_full_unstemmed Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title_short Luminescence Properties of Self-Aggregating Tb(III)-DOTA-Functionalized Calix[4]arenes
title_sort luminescence properties of self-aggregating tb(iii)-dota-functionalized calix[4]arenes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5797610/
https://www.ncbi.nlm.nih.gov/pubmed/29441345
http://dx.doi.org/10.3389/fchem.2018.00001
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