National Repository of Grey Literature 3 records found  Search took 0.01 seconds. 
Interactions of rifampicin derivatives with pregnane X receptor and OATP1B1 transporter
Krajníková, Zdeňka ; Smutný, Tomáš (advisor) ; Mladěnka, Přemysl (referee)
Charles University in Prague Faculty of Pharmacy in Hradec Králové Department of Pharmacology and Toxicology Student: Zdeňka Krajníková Supervisor: PharmDr. Tomáš Smutný, Ph.D. Title of diploma thesis: Interactions of rifampicin derivatives with pregnane X receptor and OATP1B1 transporter Pregnane X receptor (PXR) is a ligand-activated transcription factor, which regulates gene expression in the liver. Among PXR target genes, cytochrome P450 3A4 (CYP3A4) is the most important enzyme responsible for metabolism of clinically used drugs. Rifampicin (RIF) is a prototype PXR ligand. It enters hepatocytes across the basolateral membrane by OATP1B1 transporter. Noteworthy, RIF is a chemically unstable molecule. Additionally, it is also metabolized in the human body. In this diploma thesis, we decided to determine the affinity of RIF derivatives (i.e. rifampicin quinone, rifampicin N-oxide, 25-desacetylrifampicin, and 3-formylrifamycin SV) to PXR and OATP1B1, which has not been explored in details so far. For this, two hybrid and gene reporter assays were employed. As revealed by two hybrid assay, rifampicin quinone, rifampicin N-oxide, and 3- formylrifamycin SV (10 µM) activated PXR at a level comparable with RIF (positive control). Contrary, 25-desacetylrifampicin showed a lower affinity to PXR than that...
Interactions of rifampicin derivatives with pregnane X receptor and OATP1B1 transporter
Krajníková, Zdeňka ; Smutný, Tomáš (advisor) ; Mladěnka, Přemysl (referee)
Charles University in Prague Faculty of Pharmacy in Hradec Králové Department of Pharmacology and Toxicology Student: Zdeňka Krajníková Supervisor: PharmDr. Tomáš Smutný, Ph.D. Title of diploma thesis: Interactions of rifampicin derivatives with pregnane X receptor and OATP1B1 transporter Pregnane X receptor (PXR) is a ligand-activated transcription factor, which regulates gene expression in the liver. Among PXR target genes, cytochrome P450 3A4 (CYP3A4) is the most important enzyme responsible for metabolism of clinically used drugs. Rifampicin (RIF) is a prototype PXR ligand. It enters hepatocytes across the basolateral membrane by OATP1B1 transporter. Noteworthy, RIF is a chemically unstable molecule. Additionally, it is also metabolized in the human body. In this diploma thesis, we decided to determine the affinity of RIF derivatives (i.e. rifampicin quinone, rifampicin N-oxide, 25-desacetylrifampicin, and 3-formylrifamycin SV) to PXR and OATP1B1, which has not been explored in details so far. For this, two hybrid and gene reporter assays were employed. As revealed by two hybrid assay, rifampicin quinone, rifampicin N-oxide, and 3- formylrifamycin SV (10 µM) activated PXR at a level comparable with RIF (positive control). Contrary, 25-desacetylrifampicin showed a lower affinity to PXR than that...

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