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Nunez-Sanchez, M. A.

Publications and source records attributed to Nunez-Sanchez, M. A..

2 recordsLinked to original sources

Hepatic HKDC1 Deletion Alleviates Western Diet-Induced MASH in Mice

The global prevalence of Metabolic dysfunction-associated steatohepatitis (MASH) has been rising sharply, closely mirroring the increasing rates of obesity and metabolic syndrome. MASH exhibits a strong sexual dimorphism where females are affected with more severe forms after menopause. Hexokinase domain-containing protein 1 (HKDC1) has recently been recognized for its role in liver diseases, where its expression is minimal under normal conditions but significantly increases in response to metabolic stressors like obesity and liver injury. This selective upregulation suggests HKDC1s potential specialization in hepatic glucose and lipid dysregulation, linking it closely to the progression of MASLD and MASH. This study aims to clarify the role of HKDC1 in Western diet-induced MASH in female mice by examining its impact on hepatic glucose and lipid metabolism, offering insights into its potential as a therapeutic target and addressing the need for sex-specific research in liver disease. This study reveals that HKDC1 expression is elevated in obese women with MASH and correlates with liver pathology. In a mouse model, liver-specific HKDC1 knockout (HKDC1LKO) protected against Western diet-induced obesity, glucose intolerance, and MASH features, including steatosis, inflammation, and fibrosis. Transcriptomic analysis showed that HKDC1 deletion reduced pro-inflammatory and pro-fibrotic gene expression, while gut microbiome analysis indicated a shift toward MASH-protective bacteria. These findings suggest that HKDC1 may exacerbate MASH progression through its role in metabolic and inflammatory pathways, making it a potential therapeutic target.

biochemistry↗

NLRP1 is activated by palmitic acid and induced in human metabolic dysfunction-associated steatohepatitis

Metabolic dysfunction-associated steatotic liver disease (MASLD) is the most prevalent cause of liver disease worldwide. This progressive condition ranges from simple steatosis to a more advanced stage, known as metabolic dysfunction-associated steatohepatitis (MASH), which is characterized by inflammation, hepatocellular ballooning, and hepatic steatosis. Several studies have demonstrated the involvement of inflammasomes in MASH development. Recently, the NLRP1 inflammasome has gained attention as an important sensor in various human inflammatory conditions, though its role in metabolic diseases like MASLD remains unclear. In this study, we identified significantly higher mRNA and protein levels of NLRP1 in liver samples from patients with MASH compared to those with normal or steatotic livers. Furthermore, NLRP1 mRNA levels correlated with hepatic palmitic acid (PA) levels. We also showed that NLRP1 inflammasome expression is mediated by PA in both human HepG2 cells and human liver organoids. Importantly, we found that NLRP1 was activated by PA, but not by other saturated fatty acids like myristic acid, and that PA-induced NLRP1 activation was inhibited by oleic acid. These findings uncover a previously unknown role of the hepatic NLRP1 inflammasome in the human liver. However, further research is needed to fully understand the complex interactions between NLRP1, inflammation, and metabolic processes in the development of MASLD.

molecular biology↗