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Hepatic drug metabolizing profile of Flinders Sensitive Line rat model of depression
Authors:Olga Kotsovolou  Magnus Ingelman-Sundberg  Matti A. Lang  Marios Marselos  David H. Overstreet  Zoi Papadopoulou-Daifoti  Inger Johanson  Andrew Fotopoulos  Maria Konstandi
Affiliation:1. Dept of Pharmacology, Medical School, University of Ioannina, Ioannina GR-451 10, Greece;2. Dept of Physiology and Pharmacology, Karolinska Institutet, Stockholm, Sweden;3. Division of Biochemistry, Faculty of Pharmacy, University of Uppsala, Uppsala Box 578S75123, Sweden;4. Center for Alcohol Studies, University of North Carolina, Chapel Hill, NC 27599-7178, USA;5. Dept of Experimental Pharmacology, Medical School, University of Athens, Athens, Greece;6. Department of Nuclear Medicine, Medical School, University Hospital of Ioannina, Dourouti, Ioannina GR-451 10, Greece
Abstract:The Flinders Sensitive Line (FSL) rat model of depression exhibits some behavioral, neurochemical, and pharmacological features that have been reported in depressed patients and has been very effective in screening antidepressants. Major factor that determines the effectiveness and toxicity of a drug is the drug metabolizing capacity of the liver. Therefore, in order to discriminate possible differentiation in the hepatic drug metabolism between FSL rats and Sprague–Dawley (SD) controls, their hepatic metabolic profile was investigated in this study. The data showed decreased glutathione (GSH) content and glutathione S-transferase (GST) activity and lower expression of certain major CYP enzymes, including the CYP2B1, CYP2C11 and CYP2D1 in FSL rats compared to SD controls. In contrast, p-nitrophenol hydroxylase (PNP), 7-ethoxyresorufin-O-dealkylase (EROD) and 16α-testosterone hydroxylase activities were higher in FSL rats. Interestingly, the wide spread environmental pollutant benzo(α)pyrene (B(α)P) induced CYP1A1, CYP1A2, CYP2B1/2 and ALDH3c at a lesser extend in FSL than in SD rats, whereas the antidepressant mirtazapine (MIRT) up-regulated CYP1A1/2, CYP2C11, CYP2D1, CYP2E1 and CYP3A1/2, mainly, in FSL rats. The drug also further increased ALDH3c whereas suppressed GSH content in B(α)P-exposed FSL rats. In conclusion, several key enzymes of the hepatic biotransformation machinery are differentially expressed in FSL than in SD rats, a condition that may influence the outcome of drug therapy. The MIRT-induced up-regulation of several drug-metabolizing enzymes indicates the critical role of antidepressant treatment that should be always taken into account in the designing of treatment and interpretation of insufficient pharmacotherapy or drug toxicity.
Keywords:FSL, Flinders Sensitive Rat Line   SD, Sprague&ndash  Dawley   GSH, reduced glutathione content   GST, glutathione S-transferase   CYP, cytochrome   MIRT, mirtazapine   HPLC, high performance liquid chromatography   DA, dopamine   NA, noradrenaline   EROD, 7-ethoxyresorufin-O-dealkylase   MROD, 7-methoxyresorufin-O-dealkylase   PROD, 7-pentoxyresorufin-O-dealkylase   ALDH, aldehyde dehydrogenase   PNP, p-nitrophenol hydroxylase
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