Method for the production of hyperpolarized
View Patent ↗The present invention relates to a method for the production of hyperpolarized 129 Xe and to a method for the production of a contrast agent.
1. A method for producing hyperpolarized 129 Xe comprising
a) preparing a mixture of xenon, at least one solvent or a mixture of solvents selected from the group of single chain alcohols glycols, toluene, cyclopentane and methylcyclohexane, and a free radical
b) hyperpolarizing said mixture according to the DNP method to obtain hyperpolarized 129 Xe and
c) optionally separating said xenon from the other components of the mixture.
2. A method according to claim 1 , wherein the mixture in step a) is prepared from liquid xenon.
3. A method according to claim 1 , wherein the mixture in step a) is prepared by condensing xenon gas on the top of the at least one solvent or mixture of solvents and the free radical, warming the components until xenon and the at least one solvent or mixture of solvents are in a liquid state and mixing the components until a homogeneous mixture is obtained.
4. A method according to claim 1 , wherein in step b) 129 Xe is directly hyperpolarized.
5. A method according to claim 1 , wherein in step b) the NMR active nuclei of the at least one solvent or mixture of solvents are hyperpolarized and this polarization is subsequently transferred to 129 Xe by a cross-polarization sequence.
6. A method according to claim 1 , wherein xenon enriched with 129 Xe is used.
7. A method according to claim 1 , wherein in step c) xenon is separated from the other components of the mixture by warming the mixture until xenon is in the gas state and collecting said xenon in a suitable container.
8. A method for the production of a contrast agent comprising
a) preparing a mixture of xenon, at least one solvent or a mixture of solvents selected from the group of single chain alcohols, glycols, toluene, cyclopentane and methylcyclohexane, and a free radical;
b) hyperpolarizing said mixture according to the DNP method to obtain hyperpolarized 129 Xe
c) separating said xenon from the other components of the mixture, and
d) optionally condensing the separated xenon again.