Over four minutes of pyruvate T1 using chemically and physically induced deceleration of relaxation

J Josh P. Peters F Florin Teleanu H Huijing Zou E Ehtisham Rasool F Farhad Haj Mohamad H Heiner Schäfer J Jan-Bernd Hövener A Alexej Jerschow A Andrey N. Pravdivtsev

Abstract

Abstract [1- 13 C]pyruvate is the most widely used probe for hyperpolarized metabolic magnetic resonance imaging, with profound applications in tumor and inflammation diagnosis as well as treatment monitoring. The most fundamental hurdle to broader application, however, remains the rapid relaxation of polarization and the associated signal loss. Here, we report a method to address this challenge. Studying the nuclear spin relaxation dispersion of [1- 13 C]pyruvate across magnetic fields from 8 μT to 9.4 T, as a function of additives, solvents, and preparation methods, allows us to achieve T 1 relaxation times of up to four minutes. Such a long T 1 could enable reliable quality control and nearly polarization loss-free transport, further boosting the power of hyperpolarized metabolic MRI. The power of the optimized protocol for T 1 elongation in vitro is showcased by more than doubling the sensitivity in a metabolic experiment.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 21, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

J

Josh P. Peters

F

Florin Teleanu

H

Huijing Zou

E

Ehtisham Rasool

F

Farhad Haj Mohamad

H

Heiner Schäfer

J

Jan-Bernd Hövener

A

Alexej Jerschow

A

Andrey N. Pravdivtsev