1H-MR spectroscopy for analysis of cardiac lipid and creatine metabolism

Faller, K. M.E., Lygate, C. A., Neubauer, S. and Schneider, J. E. (2013) 1H-MR spectroscopy for analysis of cardiac lipid and creatine metabolism. Heart Failure Reviews, 18(5), pp. 657-668. (doi: 10.1007/s10741-012-9341-z) (PMID:22945240) (PMCID:PMC3782658)

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Abstract

Magnetic resonance spectroscopy (MRS) is the only non-invasive, non-radiation-based technique for investigating the metabolism of living tissue. MRS of protons (1H-MRS), which provides the highest sensitivity of all MR-visible nuclei, is a method capable of detecting and quantifying specific cardiac biomolecules, such as lipids and creatine in normal and diseased hearts in both animal models and humans. This can be used to study mechanisms of heart failure development in a longitudinal manner, for example, the potential contribution of myocardial lipid accumulation in the context of ageing and obesity. Similarly, quantifying creatine levels provides insight into the energy storage and buffering capacity in the heart. Creatine depletion is consistently observed in heart failure independent of aetiology, but its contribution to pathophysiology remains a matter of debate. These and other questions can in theory be answered with cardiac MRS, but fundamental technical challenges have limited its use. The metabolites studied with MRS are much lower concentration than water protons, requiring methods to suppress the dominant water signal and resulting in larger voxel sizes and longer scan times compared to MRI. However, recent technical advances in MR hardware and software have facilitated the application of 1H-MRS in humans and animal models of heart disease as detailed in this review.

Item Type:Articles
Additional Information:This research was supported by the British Heart Foundation (BHF, Grants PG/05/115, BS/06/001, FS/07/065, RG/10/002/28187 and FS/11/50/29038). The authors also acknowledge support from the Oxford BHF Centre of Research Excellence, the Oxford NIHR Biomedical Research Centre and the Wellcome Trust Core Grant 090532/Z/09/Z.
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Faller, Ms Kiterie
Authors: Faller, K. M.E., Lygate, C. A., Neubauer, S., and Schneider, J. E.
College/School:College of Medical Veterinary and Life Sciences > School of Biodiversity, One Health & Veterinary Medicine
Journal Name:Heart Failure Reviews
Publisher:Springer
ISSN:1382-4147
ISSN (Online):1573-7322
Published Online:04 September 2012
Copyright Holders:Copyright © 2012 The Authors
First Published:First published in Heart Failure Reviews 18(5): 657-668
Publisher Policy:Reproduced under a Creative Commons License

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