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Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
The ionophore 8-hydroxyquinoline (oxine) has been used to radiolabel cells and liposomal medicines with (111)In and, more recently, (89)Zr, for medical nuclear imaging applications. Oxine has also shown promising ionophore activity for the positron-emitting radionuclide (52)Mn that should allow imag...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Royal Society of Chemistry
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049564/ https://www.ncbi.nlm.nih.gov/pubmed/29796500 http://dx.doi.org/10.1039/c8dt00100f |
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author | Gawne, Peter Man, Francis Fonslet, Jesper Radia, Riya Bordoloi, Jayanta Cleveland, Matthew Jimenez-Royo, Pilar Gabizon, Alberto Blower, Philip J. Long, Nicholas de Rosales, Rafael T. M. |
author_facet | Gawne, Peter Man, Francis Fonslet, Jesper Radia, Riya Bordoloi, Jayanta Cleveland, Matthew Jimenez-Royo, Pilar Gabizon, Alberto Blower, Philip J. Long, Nicholas de Rosales, Rafael T. M. |
author_sort | Gawne, Peter |
collection | PubMed |
description | The ionophore 8-hydroxyquinoline (oxine) has been used to radiolabel cells and liposomal medicines with (111)In and, more recently, (89)Zr, for medical nuclear imaging applications. Oxine has also shown promising ionophore activity for the positron-emitting radionuclide (52)Mn that should allow imaging of labelled cells and nanomedicines for long periods of time (>14 days). However, to date, the radiometal complex formed and its full labelling capabilities have not been fully characterised. Here, we provide supporting evidence of the formation of [(52)Mn]Mn(oxinate)(2) as the metastable complex responsible for its ionophore activity. The cell labelling properties of [(52)Mn]Mn(oxinate)(2) were investigated with various cell lines. The liposomal nanomedicine, DOXIL® (Caelyx) was also labelled with [(52)Mn]Mn(oxinate)(2) and imaged in vivo using PET imaging. [(52)Mn]Mn(oxinate)(2) was able to label various cell lines with moderate efficiency (15–53%), however low cellular retention of (52)Mn (21–25% after 24 h) was observed which was shown not to be due to cell death. PET imaging of [(52)Mn]Mn-DOXIL at 1 h and 24 h post-injection showed the expected pharmacokinetics and biodistribution of this stealth liposome, but at 72 h post-injection showed a profile matching that of free (52)Mn, consistent with drug release. We conclude that oxine is an effective ionophore for (52)Mn, but high cellular efflux of the isotope limits its use for prolonged cell tracking. [(52)Mn]Mn(oxinate)(2) is effective for labelling and tracking DOXIL in vivo. The release of free radionuclide after liposome extravasation could provide a non-invasive method to monitor drug release in vivo. |
format | Online Article Text |
id | pubmed-6049564 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-60495642018-08-03 Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore Gawne, Peter Man, Francis Fonslet, Jesper Radia, Riya Bordoloi, Jayanta Cleveland, Matthew Jimenez-Royo, Pilar Gabizon, Alberto Blower, Philip J. Long, Nicholas de Rosales, Rafael T. M. Dalton Trans Chemistry The ionophore 8-hydroxyquinoline (oxine) has been used to radiolabel cells and liposomal medicines with (111)In and, more recently, (89)Zr, for medical nuclear imaging applications. Oxine has also shown promising ionophore activity for the positron-emitting radionuclide (52)Mn that should allow imaging of labelled cells and nanomedicines for long periods of time (>14 days). However, to date, the radiometal complex formed and its full labelling capabilities have not been fully characterised. Here, we provide supporting evidence of the formation of [(52)Mn]Mn(oxinate)(2) as the metastable complex responsible for its ionophore activity. The cell labelling properties of [(52)Mn]Mn(oxinate)(2) were investigated with various cell lines. The liposomal nanomedicine, DOXIL® (Caelyx) was also labelled with [(52)Mn]Mn(oxinate)(2) and imaged in vivo using PET imaging. [(52)Mn]Mn(oxinate)(2) was able to label various cell lines with moderate efficiency (15–53%), however low cellular retention of (52)Mn (21–25% after 24 h) was observed which was shown not to be due to cell death. PET imaging of [(52)Mn]Mn-DOXIL at 1 h and 24 h post-injection showed the expected pharmacokinetics and biodistribution of this stealth liposome, but at 72 h post-injection showed a profile matching that of free (52)Mn, consistent with drug release. We conclude that oxine is an effective ionophore for (52)Mn, but high cellular efflux of the isotope limits its use for prolonged cell tracking. [(52)Mn]Mn(oxinate)(2) is effective for labelling and tracking DOXIL in vivo. The release of free radionuclide after liposome extravasation could provide a non-invasive method to monitor drug release in vivo. Royal Society of Chemistry 2018-07-28 2018-05-24 /pmc/articles/PMC6049564/ /pubmed/29796500 http://dx.doi.org/10.1039/c8dt00100f Text en This journal is © The Royal Society of Chemistry 2018 https://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 Gawne, Peter Man, Francis Fonslet, Jesper Radia, Riya Bordoloi, Jayanta Cleveland, Matthew Jimenez-Royo, Pilar Gabizon, Alberto Blower, Philip J. Long, Nicholas de Rosales, Rafael T. M. Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore |
title | Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
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title_full | Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
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title_fullStr | Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
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title_full_unstemmed | Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
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title_short | Manganese-52: applications in cell radiolabelling and liposomal nanomedicine PET imaging using oxine (8-hydroxyquinoline) as an ionophore
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title_sort | manganese-52: applications in cell radiolabelling and liposomal nanomedicine pet imaging using oxine (8-hydroxyquinoline) as an ionophore |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049564/ https://www.ncbi.nlm.nih.gov/pubmed/29796500 http://dx.doi.org/10.1039/c8dt00100f |
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