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A Three-Dimensional Digital Model for Early Diagnosis of Hepatic Fibrosis Based on Magnetic Resonance Elastography
Published on: July 21, 2023
Circulating fibronectin isoforms predict the degree of fibrosis in chronic hepatitis C
Norman J Hackl1, Claus Bersch, Peter Feick
1Max-Planck Institute for Biochemistry, Martinsried, Germany.
Insights
Circulating fibronectin isoforms like oncofetal fibronectin (oFN) and extra domain-A (EDA) can help detect liver fibrosis in patients with chronic hepatitis C. Elevated levels indicate significant fibrosis, aiding in diagnosis and potentially reducing the need for biopsies.
Area of Science:
- Hepatology
- Biochemistry
- Medical Diagnostics
Background:
- Hepatic stellate cells (HSCs) are key players in liver fibrogenesis.
- During disease states, HSCs produce specific fibronectin isoforms.
- Isoform-defining domains of fibronectin can be detected in circulation.
Purpose of the Study:
- To investigate the relationship between circulating fibronectin isoforms and liver fibrosis histology.
- To assess the diagnostic potential of fibronectin isoforms in chronic hepatitis C patients.
Main Methods:
- Prospective study design.
- Inclusion of 50 chronic hepatitis C patients with liver biopsy.
- Comparison with 50 matched controls and 35 patients with other liver conditions.
Main Results:
- Significantly higher levels of oncofetal fibronectin (oFN), extra domain-A (EDA), and extra domain-B (EDB) in chronic hepatitis C patients versus controls.
- Correlation found between oFN and EDA levels with fibrosis scores.
- High specificity (>99% for significant fibrosis, 95% for advanced fibrosis) for combined oFN and EDA elevation.
- High specificity (94%) for combined oFN and EDA decrease in excluding significant fibrosis.
- Potential to correctly classify 30% of patients regarding significant fibrosis.
Conclusions:
- Circulating fibronectin isoforms (oFN, EDA) are viable biomarkers for liver fibrosis.
- Activated stellate cell-derived fibronectin isoforms correlate with fibrosis presence and absence.
- These markers may aid in non-invasive fibrosis assessment.
Objective:
Hepatic stellate cells only produce fibronectin isoforms in disease states. The isoform-defining domains can be detected in the blood circulation. This study examines whether circulating levels of fibronectin isoforms show a relationship with liver fibrosis on histology in patients with chronic hepatitis C.
Material And Methods:
In a prospective study, 50 patients with chronic hepatitis C who underwent a liver biopsy were compared to 50 matched controls and 35 patients with other liver conditions.
Results:
Circulating levels of the fibronectin isoforms were significantly higher in patients with chronic hepatitis C compared to healthy controls [oncofetal fibronectin (oFN) 2.45 +/- 0.17 versus 1.76 +/- 0.16 mg/l, P < 0.005; extra domain-A (EDA) 1.05 +/- 0.06 versus 0.86 +/- 0.06 mg/l, P < 0.05; and extra domain-B (EDB) 14.55 +/- 0.74 versus 9.31 +/- 0.58 mg/l, P < 0.001], even though total fibronectin was lower (198.9 +/- 3.5 versus 343.6 +/- 14.5 mg/l, P < 0.001). A correlation with the fibrosis score was found for both oFN (r = 0.46, P < 0.005) and EDA (r = 0.51, P < 0.001). The combination of an elevation in both markers (oFN and EDA) in the upper quartile was associated with a specificity of > 99% for predicting significant fibrosis (stages 2-4) and 95% for predicting advanced fibrosis (stages 3-4). A combination of decreased values in the lowest tertile for both markers had a specificity of 94% for excluding significant fibrosis. Based on these findings, 30% of the patients scheduled for a liver biopsy could be correctly classified as having or not having significant fibrosis. The remainder would have to proceed with a biopsy.
Conclusion:
Circulating fibronectin isoforms produced by activated stellate cells represent a viable marker for the presence of significant fibrosis or a lack thereof.
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