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1.
Xenobiotica ; 41(8): 701-11, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21521079

ABSTRACT

The bile duct-cannulated (BDC) rat is a standard animal model used in ADME experiments. The aim of this study was to investigate post-surgical alterations that are relevant to ADME investigations in BDC rats compared with sham- and non-operated animals. Water and food intake was reduced in the animals' post-surgery. This led to a lower body weight in operated animals. In BDC animals, aspartate aminotransferase (AST) levels in plasma were transiently elevated and total bile acid levels were reduced. Alpha(1)-acid glycoprotein (AGP) in plasma and the concentration of bile components in bile were elevated. Histopathology showed inflammation in the area of the cannulation between the liver and the small intestine. A microarray-based gene expression and RTq-PCR analysis identified altered expression for several genes involved in drug disposition including the down-regulation of cytochrome P450 enzymes. This led to reduced cytochrome P450 content in the liver and lower metabolic activity in microsomes from BDC and sham-operated rats compared with naïve animals. The results of the study suggest that the post-surgical inflammation leads to physiological changes relevant for drug absorption and disposition. These alterations should be accounted for in the interpretation of ADME studies in BDC animals.


Subject(s)
Bile Ducts/surgery , Pharmacokinetics , Animals , Aspartate Aminotransferases/blood , Bile/metabolism , Catheterization , Cytochrome P-450 Enzyme System/metabolism , Male , Models, Animal , Protein Array Analysis , Rats , Rats, Wistar
2.
Toxicol In Vitro ; 22(4): 899-909, 2008 Jun.
Article in English | MEDLINE | ID: mdl-18325729

ABSTRACT

Bisphosphonates are potent inhibitors of osteoclast-mediated bone resorption and play an important role in the treatment of osteoporosis, metastatic bone disease, and Paget disease. However, nephrotoxicity has been reported with some bisphosphonates. Nitrogen-containing bisphosphonates directly inhibit farnesyl diphosphate (FPP) synthase activity (mevalonate pathway) and reduce protein prenylation leading to osteoclast cell death. The aim here was to elucidate if this inhibition also occurs in kidney cells and may directly account for nephrotoxicity. In an exploratory study in rats receiving zoledronate or ibandronate an approximate 2-fold increase in FPP synthase mRNA levels was observed in the kidney. The involvement of the mevalonate pathway was confirmed in subsequent in vitro studies with zoledronate, ibandronate, and pamidronate, using the non-nitrogen containing bisphosphonate clodronate as a comparator. In vitro changes in FPP synthase mRNA expression, enzyme activity, and levels of prenylated proteins were assessed. Using two cell lines (a rat normal kidney cell line, NRK-52E, and a human kidney proximal tubule cell line, HK-2), ibandronate and zoledronate were identified as most cytotoxic (EC50: 23/>1000 microM and 16/82 microM, respectively) and as the most potent inhibitors of FPP synthase (IC50; 1.6/7.4 microM and 0.5/0.7 microM, respectively). In both cell lines, inhibition of FPP synthase activity occurred prior to a decrease in levels of prenylated proteins followed by cytotoxicity. This further supports that the mechanism responsible for osteoclast inhibition (therapeutic effect) might also underlie the mechanism of nephrotoxicity.


Subject(s)
Diphosphonates/toxicity , Geranyltranstransferase/antagonists & inhibitors , Imidazoles/toxicity , Kidney/drug effects , Animals , Bone Density Conservation Agents/administration & dosage , Bone Density Conservation Agents/toxicity , Cell Line , Clodronic Acid/toxicity , Diphosphonates/administration & dosage , Dose-Response Relationship, Drug , Drug Evaluation, Preclinical , Geranyltranstransferase/metabolism , Humans , Ibandronic Acid , Imidazoles/administration & dosage , Inhibitory Concentration 50 , Kidney/cytology , Kidney/enzymology , Male , Pamidronate , RNA, Messenger/drug effects , RNA, Messenger/metabolism , Rats , Rats, Sprague-Dawley , Zoledronic Acid
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