Molecular imaging probes for 31P contrast

<p><sup>31</sup>P magnetic resonance has yet to realise its clinical potential principally due to the relatively low sensitivity of the <sup>31</sup>P nucleus. While <sup>31</sup>P-MRS can uniquely provide vital information regarding in vivo phosphorus met...

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Main Author: Tear, L
Other Authors: Faulkner, S
Format: Thesis
Language:English
Published: 2018
Subjects:
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author Tear, L
author2 Faulkner, S
author_facet Faulkner, S
Tear, L
author_sort Tear, L
collection OXFORD
description <p><sup>31</sup>P magnetic resonance has yet to realise its clinical potential principally due to the relatively low sensitivity of the <sup>31</sup>P nucleus. While <sup>31</sup>P-MRS can uniquely provide vital information regarding in vivo phosphorus metabolism, the long acquisition times required are incompatible with observing dynamic changes in phosphorus speciation (e.g. monitoring ATP/phosphocreatine ratios in real time).</p> <p>This thesis reports how heptadentate Gd.DO3A derivatives can be used to enhance <sup>31</sup>P relaxivity reducing T<sub>1</sub> values by more than an order of magnitude per millimolar Gd. This enables shorter repetition times markedly improving the signal to noise ratio (SNR) per unit time. These complexes bind in fast exchange with phosphate species, while linear commercial Gd complexes were found to demonstrate competitive binding of ATP to Gd.</p> <p>Structural modifications of the DO3A complex were found to alter the affinity for specific phosphate species, as monitored by luminescence spectroscopy of the europium complexes, and also influenced the relaxivity of the Gd complex.</p> <p><em>In vivo</em>, the phosphate species of interest reside intracellularly and therefore cellular uptake of these complexes was investigated, using fluorescence microscopy on luminescent complexes and NMR diffusion methods for the gadolinium complexes themselves. The complexes were found to remain extracellular or display endosomal uptake. These results indicate that these systems have clear potential as extracellular <sup>31</sup>P contrast agents. Alternative approaches will be required to achieve intracellular 31P contrast.</p>
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spelling oxford-uuid:2032f88a-dac8-4e17-801d-db9747b8c9362024-12-01T17:40:09ZMolecular imaging probes for 31P contrastThesishttp://purl.org/coar/resource_type/c_db06uuid:2032f88a-dac8-4e17-801d-db9747b8c936Contrast media (Diagnostic imaging)Nuclear magnetic resonance spectroscopyGadoliniumEnglishORA Deposit2018Tear, LFaulkner, SSchneider, JFarrer, N<p><sup>31</sup>P magnetic resonance has yet to realise its clinical potential principally due to the relatively low sensitivity of the <sup>31</sup>P nucleus. While <sup>31</sup>P-MRS can uniquely provide vital information regarding in vivo phosphorus metabolism, the long acquisition times required are incompatible with observing dynamic changes in phosphorus speciation (e.g. monitoring ATP/phosphocreatine ratios in real time).</p> <p>This thesis reports how heptadentate Gd.DO3A derivatives can be used to enhance <sup>31</sup>P relaxivity reducing T<sub>1</sub> values by more than an order of magnitude per millimolar Gd. This enables shorter repetition times markedly improving the signal to noise ratio (SNR) per unit time. These complexes bind in fast exchange with phosphate species, while linear commercial Gd complexes were found to demonstrate competitive binding of ATP to Gd.</p> <p>Structural modifications of the DO3A complex were found to alter the affinity for specific phosphate species, as monitored by luminescence spectroscopy of the europium complexes, and also influenced the relaxivity of the Gd complex.</p> <p><em>In vivo</em>, the phosphate species of interest reside intracellularly and therefore cellular uptake of these complexes was investigated, using fluorescence microscopy on luminescent complexes and NMR diffusion methods for the gadolinium complexes themselves. The complexes were found to remain extracellular or display endosomal uptake. These results indicate that these systems have clear potential as extracellular <sup>31</sup>P contrast agents. Alternative approaches will be required to achieve intracellular 31P contrast.</p>
spellingShingle Contrast media (Diagnostic imaging)
Nuclear magnetic resonance spectroscopy
Gadolinium
Tear, L
Molecular imaging probes for 31P contrast
title Molecular imaging probes for 31P contrast
title_full Molecular imaging probes for 31P contrast
title_fullStr Molecular imaging probes for 31P contrast
title_full_unstemmed Molecular imaging probes for 31P contrast
title_short Molecular imaging probes for 31P contrast
title_sort molecular imaging probes for 31p contrast
topic Contrast media (Diagnostic imaging)
Nuclear magnetic resonance spectroscopy
Gadolinium
work_keys_str_mv AT tearl molecularimagingprobesfor31pcontrast