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Large-scale synthesis of a monophosphonated tetrathiatriarylmethyl spin probe for concurrent in vivo measurement of pO2, pH and inorganic phosphate by EPR.


ABSTRACT: Low-field electron paramagnetic resonance spectroscopy paired with pTAM, a mono-phosphonated triarylmethyl radical, is an unmatched technique for concurrent and non-invasive measurement of oxygen concentration, pH, and inorganic phosphate concentration for in vivo investigations. However, the prior reported synthesis is limited by its low yield and poor scalability, making wide-spread application of pTAM unfeasible. Here, we report a new strategy for the synthesis of pTAM with significantly greater yields demonstrated on a large scale. We also present a standalone application with user-friendly interface for automatic spectrum fitting and extraction of pO2, pH, and [Pi] values. Finally, we confirm that pTAM remains in the extracellular space and has low cytotoxicity appropriate for local injection.

SUBMITTER: Gluth TD 

PROVIDER: S-EPMC8314523 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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Large-scale synthesis of a monophosphonated tetrathiatriarylmethyl spin probe for concurrent <i>in vivo</i> measurement of <i>p</i>O<sub>2</sub>, pH and inorganic phosphate by EPR.

Gluth Teresa D TD   Poncelet Martin M   DeVience Stephen S   Gencheva Marieta M   Hoblitzell Emily H EH   Khramtsov Valery V VV   Eubank Timothy D TD   Driesschaert Benoit B  

RSC advances 20210727 42


Low-field electron paramagnetic resonance spectroscopy paired with <b>pTAM</b>, a mono-phosphonated triarylmethyl radical, is an unmatched technique for concurrent and non-invasive measurement of oxygen concentration, pH, and inorganic phosphate concentration for <i>in vivo</i> investigations. However, the prior reported synthesis is limited by its low yield and poor scalability, making wide-spread application of <b>pTAM</b> unfeasible. Here, we report a new strategy for the synthesis of <b>pTAM  ...[more]

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