RRC ID 52345
著者 Watanabe H, Sugimoto R, Ikegami K, Enoki Y, Imafuku T, Fujimura R, Bi J, Nishida K, Sakaguchi Y, Murata M, Maeda H, Hirata K, Jingami S, Ishima Y, Tanaka M, Matsushita K, Komaba H, Fukagawa M, Otagiri M, Maruyama T.
タイトル Parathyroid hormone contributes to the down-regulation of cytochrome P450 3A through the cAMP/PI3K/PKC/PKA/NF-κB signaling pathway in secondary hyperparathyroidism.
ジャーナル Biochem Pharmacol
Abstract Chronic kidney disease (CKD), which affects, not only renal clearance, but also non-renal clearance, is accompanied by a decline in renal function. Although it has been suggested that humoral factors, such as uremic toxins that accumulate in the body under CKD conditions, could be involved in the changes associated with non-renal drug clearance, the overall process is not completely understood. In this study, we report on the role of parathyroid hormone (PTH), a middle molecule uremic toxin, on the expression of drug metabolizing or transporting proteins using rats with secondary hyperparathyroidism (SHPT) as models. In SHPT rats, hepatic and intestinal CYP3A expression was suppressed, but the changes were recovered by the administration of the calcimimetic cinacalcet, a PTH suppressor. Under the same experimental conditions, a pharmacokinetic study using orally administered midazolam, a substrate for CYP3A, showed that the AUC was increased by 5 times in SHPT rats, but that was partially recovered by a cinacalcet treatment. This was directly tested in rat primary hepatocytes and intestinal Caco-2 cells where the expression of the CYP3A protein was down-regulated by PTH (1-34). In Caco-2 cells, PTH (1-34) down-regulated the expression of CYP3A mRNA, but an inactive PTH derivative (13-34) had no effect. 8-Bromo-cyclic adenosine monophosphate, a membrane-permeable cAMP analog, reduced mRNA expression of CYP3A whereas the inhibitors of PI3K, NF-κB, PKC and PKA reversed the PTH-induced CYP3A down-regulation. These results suggest that PTH down-regulates CYP3A through multiple signaling pathways, including the PI3K/PKC/PKA/NF-κB pathway after the elevation of intracellular cAMP, and the effect of PTH can be prevented by cinacalcet treatment.
巻・号 145
ページ 192-201
公開日 2017-12-1
DOI 10.1016/j.bcp.2017.08.016
PII S0006-2952(17)30543-9
PMID 28843775
MeSH Animals Caco-2 Cells Cinacalcet / toxicity Cyclic AMP / genetics Cyclic AMP / metabolism* Cytochrome P-450 CYP3A / genetics Cytochrome P-450 CYP3A / metabolism* Down-Regulation / physiology* GABA Modulators / pharmacokinetics Gene Expression Regulation, Enzymologic / physiology Hepatocytes / drug effects Hepatocytes / metabolism Humans Hyperparathyroidism / chemically induced Hyperparathyroidism / metabolism Male Midazolam / pharmacokinetics NF-kappa B / genetics NF-kappa B / metabolism Parathyroid Hormone / metabolism* Phosphatidylinositol 3-Kinases / genetics Phosphatidylinositol 3-Kinases / metabolism* Protein Kinase C / genetics Protein Kinase C / metabolism* Random Allocation Rats Renal Insufficiency, Chronic / metabolism Signal Transduction
IF 4.96
引用数 9
リソース情報
ヒト・動物細胞 CACO-2(RCB0988)