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The Role of Diagnostic Biomarkers, Omics Strategies, and Single-Cell Sequencing for Nonalcoholic Fatty Liver Disease in Severely Obese Patients

期刊

JOURNAL OF CLINICAL MEDICINE
卷 10, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/jcm10050930

关键词

bariatric surgery; NAFLD; NASH; fatty liver; biomarkers; omics technologies

资金

  1. Danish National Research Foundation [DNRF141]
  2. European Union [668031, 847989, 825694]
  3. Novo Nordisk Foundation [NNF15OC0016692, NNF20OC0059393]

向作者/读者索取更多资源

Liver disease caused by metabolic dysfunction is a global health issue, with obesity being a strong risk factor for non-alcoholic fatty liver disease. Current diagnostic markers focus on advanced fibrosis detection, with elastography being the most accurate tool, although limited in patients with large abdominal circumference and subcutaneous fat. Advances in omics technologies show promise for discovering biomarkers and increasing understanding of the pathophysiology of liver disease.
Liver disease due to metabolic dysfunction constitute a worldwide growing health issue. Severe obesity is a particularly strong risk factor for non-alcoholic fatty liver disease, which affects up to 93% of these patients. Current diagnostic markers focus on the detection of advanced fibrosis as the major predictor of liver-related morbidity and mortality. The most accurate diagnostic tools use elastography to measure liver stiffness, with diagnostic accuracies similar in normal-weight and severely obese patients. The effectiveness of elastography tools are however hampered by limitations to equipment and measurement quality in patients with very large abdominal circumference and subcutaneous fat. Blood-based biomarkers are therefore attractive, but those available to date have only moderate diagnostic accuracy. Ongoing technological advances in omics technologies such as genomics, transcriptomics, and proteomics hold great promise for discovery of biomarkers and increased pathophysiological understanding of non-alcoholic liver disease and steatohepatitis. Very recent developments have allowed for single-cell sequencing and cell-type resolution of gene expression and function. In the near future, we will therefore likely see a multitude of breakthrough biomarkers, developed from a deepened understanding of the biological function of individual cell types in the healthy and injured liver.

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