4.6 Article

Lipid Profile and Hepatic Fat Content Measured by 1H MR Spectroscopy in Patients before and after Liver Transplantation

Journal

METABOLITES
Volume 11, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/metabo11090625

Keywords

magnetic resonance; MR spectroscopy; liver; steatosis; lipid saturation; lipid profile; NASH; NAFLD; transplantation

Funding

  1. Ministry of Health, Czech Republic-conceptual development of research organization (Institute for Clinical and Experimental Medicine-IKEM) [IN 00023001]

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This study utilized H-1 MRS to measure hepatic fat content and fatty acid composition in liver transplant recipients, finding that HFC can effectively differentiate different types of fatty liver diseases. It was observed that relative hepatic lipid saturation increases with higher HFC, while unsaturation decreases.
Increased hepatic fat content (HFC) is a hallmark of non-alcoholic fatty liver (NAFL) disease, a common condition in liver transplant recipients. Proton MR spectroscopy (H-1 MRS) and MR imaging-based proton density fat fraction as the only diagnosis modality enable precise non-invasive measurement of HFC and, also, fatty acid profiles in vivo. Using H-1 MRS at 3T, we examined 47 liver transplantation candidates and 101 liver graft recipients. A point-resolved spectroscopy sequence was used to calculate the steatosis grade along with the saturated, unsaturated and polyunsaturated fractions of fatty acids in the liver. The steatosis grade measured by MRS was compared with the histological steatosis grade. HFC, represented by fat fraction values, is adept at distinguishing non-alcoholic steatohepatitis (NASH), NAFL and non-steatotic liver transplant patients. Relative hepatic lipid saturation increases while unsaturation decreases in response to increased HFC. Additionally, relative hepatic lipid saturation increases while unsaturation and polyunsaturation both decrease in liver recipients with histologically proven post-transplant NASH or NAFL compared to non-steatotic patients. HFC, measured by in vivo H-1 MRS, correlated well with histological results. H-1 MRS is a simple and fast method for in vivo analysis of HFC and its composition. It provides non-invasive support for NAFL and NASH diagnoses.

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