Search results for "Drug metabolism"
showing 3 items of 103 documents
Effects of steatosis on drug-metabolizing capability of primary human hepatocytes.
2007
Abstract The suitability of liver grafts discarded for transplantation because of macrosteatosis for preparing human hepatocyte cultures for in vitro drug metabolism studies has been examined. Lower cell viability and yield of isolation procedure were obtained from fatty livers (>40% steatosis) with respect to normal tissue. Significant reductions in 7-ethoxycoumarin O-deethylation (ECOD) and testosterone oxidations were found in hepatocytes prepared from steatotic livers. The potential impact of lipid accumulation on P450 enzymes was studied in vitro by incubation of cultured hepatocytes with long chain free fatty acids (FFA). Treatment of cells with 0.25–3 mM FFA induced dose-dependent ac…
Pantoprazole: from drug metabolism to clinical relevance.
2008
Conditions requiring inhibition of acid secretion, such as gastro-oesophageal reflux disease (GORD), peptic ulcers, non-ulcer dyspepsia or the use of NSAIDs, are very common, and their prevalence is expecting to rise as they are seen predominantly amongst the elderly. Among the drugs available to inhibit acid secretion, proton pump inhibitors (PPI) have been shown to have the best efficacy-safety ratio and have been used widely.This paper was intended to provide an overall presentation of one of these PPIs, pantoprazole.This study was first intended to give an overview of pantoprazole, so a Medline search was conducted using pantoprazole as unique search term, without publication date restr…
Sox17 regulates liver lipid metabolism and adaptation to fasting.
2014
Liver is a major regulator of lipid metabolism and adaptation to fasting, a process involving PPARalpha activation. We recently showed that the Vnn1 gene is a PPARalpha target gene in liver and that release of the Vanin-1 pantetheinase in serum is a biomarker of PPARalpha activation. Here we set up a screen to identify new regulators of adaptation to fasting using the serum Vanin-1 as a marker of PPARalpha activation. Mutagenized mice were screened for low serum Vanin-1 expression. Functional interactions with PPARalpha were investigated by combining transcriptomic, biochemical and metabolic approaches. We characterized a new mutant mouse in which hepatic and serum expression of Vanin-1 is …