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Cordoba-Chacon, J.

Publications and source records attributed to Cordoba-Chacon, J..

2 recordsLinked to original sources

Hepatocyte PPARγ contributes to the progression of non-alcoholic steatohepatitis in male and female obese mice.

Background & AimsNon-alcoholic steatohepatitis (NASH) is associated with obesity and increased expression of hepatic peroxisome proliferator-activated receptor {gamma} (PPAR{gamma}) in humans. Although we previously showed that the expression of PPAR{gamma} in hepatocytes contributes to the development NASH in lean mice, the relevance of hepatocyte PPAR{gamma} in the development of NASH associated with obesity is still poorly understood. MethodsHepatocyte PPAR{gamma} was knocked out (Pparg{Delta}Hep) after the development of high-fat diet-induced obesity in male and female mice and before NASH was induced with a high fat, cholesterol and fructose (HFCF) diet. We assessed the effect of the diets and Pparg{Delta}Hep on body composition and glucose homeostasis, as well as on the liver pathology, gene expression, and metabolome. In addition, liver biopsies from a cohort of 102 bariatric surgery patients were assessed for liver histology and gene expression. ResultsPPAR{gamma} expression, specifically PPAR{gamma}2, is mostly derived from hepatocytes and increased by high fat diets. Pparg{Delta}Hep reduced HFCF-induced NASH progression without altering steatosis. Interestingly, Pparg{Delta}Hep reduced the expression of key genes involved in hepatic fibrosis in HFCF-fed male and female mice, and collagen- stained fibrotic area in the liver of HFCF-fed male mice. In addition, transcriptomic and metabolomic data suggested that HFCF-diet regulated hepatic amino acid metabolism in a hepatocyte PPAR{gamma}-dependent manner. Specifically, Pparg{Delta}Hep increased betaine-homocysteine methyltransferase expression and reduced homocysteine levels in HFCF- fed male mice. In a cohort of 102 bariatric surgery patients, 16 cases of NASH were associated with increased insulin resistance and hepatic PPAR{gamma} expression. ConclusionsHepatocyte PPAR{gamma} expression associated with obesity could regulate methionine metabolism and the progression of fibrosis in NASH.

physiology↗

The hexokinase ''HKDC1'' interaction with the mitochondria is essential for hepatocellular carcinoma progression

Hepatocellular carcinoma (HCC) is a leading cause of death from cancer malignancies. Recently, hexokinase domain containing 1 (HKDC1), was shown to have significant overexpression in HCC compared to healthy tissue. Using in vitro and in vivo tools, we examined the role of HKDC1 in HCC progression. Importantly, HKDC1 ablation stops HCC progression by promoting metabolic reprogramming by shifting glucose flux away from the TCA cycle. Next, HKDC1 ablation leads to mitochondrial dysfunction resulting in less cellular energy which cannot be compensated by enhanced glucose uptake. And finally, we show that the interaction of HKDC1 with the mitochondria is essential for its role in HCC progression, and without this mitochondrial interaction mitochondrial dysfunction occurs. In sum, HKDC1 is highly expressed in HCC cells compared to normal hepatocytes, therefore targeting HKDC1, specifically its interaction with the mitochondria, reveals a highly selective approach to target cancer cells in HCC.

cancer biology↗