Novel Potential Markers of Metabolic Dysfunction-Associated Steatohepatitis Prone to Hepatocellular Carcinoma
Abstract
<h4>Background</h4>Metabolic dysfunction-associated steatohepatitis (MASH), the progressive phenotype of metabolic dysfunction-associated steatotic liver disease (MASLD), is well recognized for its increased risk of progressing to cirrhosis and hepatocellular carcinoma (HCC). However, early diagnosis and identification of the MASH patients with a tendency toward malignancy HCC remain a significant challenge.<h4>Method</h4>In previous studies, we established a novel conditional inducible HRAS gene expression murine model with normal diet and lifestyle conditions, which exhibited 100% HCC incidence and recapitulated the four major progression stages of MASH to HCC: MASH, fibrosis, cirrhosis, and HCC. Based on this model, we revealed the potential markers of MASH prone to HCC characteristics of malignant MASH through RNA-Seq and bioinformatics analysis, and further confirmed by pathological biopsy, biochemical tests, inflammatory cytokines measurement, Oil O red staining, and immunohistochemical examination.<h4>Results</h4>For MASH, the initial stage of HCC, we observed evidence of hyperlipidemia and insulin resistance in the HRAS mouse model based on blood morphology, biochemical parameters, and insulin tolerance test. Furthermore, the pathological features of MASH were confirmed by the presence of hepatocellular fatty vacuolar changes, lipid droplet accumulation, and inflammation. Then, RNA-Seq analysis revealed the molecular signatures of malignant MASH and revealed three novel potential markers associated with adverse progression of MASH to HCC: Klk1b4, Alox5, and Pla2g2e.<h4>Conclusion</h4>Based on a stable and novel murine model of MASH prone to HCC, we, for the first time, presented a comprehensive molecular signature and identified novel potential adverse progression markers of MASH prone to malignant HCC, which contributed possibly to early clinical diagnosis and prognostic assessment, even becoming potential therapeutic target.