Nuclear magnetic resonance (NMR) is widely applied from analytics to biomedicine although it is an inherently insensitive phenomenon. Overcoming sensitivity challenges is key to further broaden the applicability of NMR and, for example, improve medical diagnostics. Here, we present a rapid strategy to enhance the signals of 13C-labelled metabolites with para-hydrogen and, in particular, 13C-pyruvate, an important molecule for the energy metabolism. We succeeded to obtain an average of 27 % 13C polarization of 1-13C-pyruvate in water which allowed us to introduce two applications for studying cellular metabolism. Firstly, we demonstrate that the metabolism of 1-13C-pyruvate can serve as a biomarker in cellular models of Parkinson's disease a...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
Hyperpolarized (HP) 13C magnetic resonance imaging (MRI) has demonstrated the powerful potential for...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The phenomenon of nuclear magnetic resonance (NMR) is widely applied in biomedical and biological sc...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
The mammalian brain relies primarily on glucose as a fuel to meet its high metabolic demand. Among t...
Purpose: To develop a technique for quantifying the 13C-metabolites by performing frequency-selectiv...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
The metabolism of malignant cells differs significantly from that of healthy cells and thus, it is p...
(13)C magnetic resonance spectroscopy (MRS) combined with the administration of (13)C labeled substr...
Diseases such as Alzheimer's and cancer have been linked to metabolic dysfunctions, and further unde...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
Hyperpolarized (HP) 13C magnetic resonance imaging (MRI) has demonstrated the powerful potential for...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The phenomenon of nuclear magnetic resonance (NMR) is widely applied in biomedical and biological sc...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
The mammalian brain relies primarily on glucose as a fuel to meet its high metabolic demand. Among t...
Purpose: To develop a technique for quantifying the 13C-metabolites by performing frequency-selectiv...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
The metabolism of malignant cells differs significantly from that of healthy cells and thus, it is p...
(13)C magnetic resonance spectroscopy (MRS) combined with the administration of (13)C labeled substr...
Diseases such as Alzheimer's and cancer have been linked to metabolic dysfunctions, and further unde...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
Hyperpolarized (HP) 13C magnetic resonance imaging (MRI) has demonstrated the powerful potential for...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...