PT - JOURNAL ARTICLE AU - Anja-Maria Möller AU - Corinna Hermsen AU - Tilman Floehr AU - Marja H. Lamoree AU - Helmut Segner TI - Tissue-Specific Metabolism of Benzo[a]pyrene in Rainbow Trout (<em>Oncorhynchus mykiss</em>): A Comparison between the Liver and Immune Organs AID - 10.1124/dmd.113.053777 DP - 2014 Jan 01 TA - Drug Metabolism and Disposition PG - 111--118 VI - 42 IP - 1 4099 - http://dmd.aspetjournals.org/content/42/1/111.short 4100 - http://dmd.aspetjournals.org/content/42/1/111.full SO - Drug Metab Dispos2014 Jan 01; 42 AB - Polycyclic aromatic hydrocarbons (PAHs) are immunotoxicants in fish. In mammals, phase I metabolites are believed to be critically involved in the immunotoxicity of PAHs. This mechanism has been suggested for fish as well. The present study investigates the capacity of immune organs (head kidney, spleen) of rainbow trout, Oncorhynchus mykiss, to metabolize the prototypic PAH, benzo[a]pyrene (BaP). To this end, we analyzed 1) the induction of enzymatic capacity measured as 7-ethoxyresorufin-O-deethylase (EROD) activity in immune organs compared with liver, 2) the organ profiles of BaP metabolites generated in vivo, and 3) rates of microsomal BaP metabolite production in vitro. All measurements were done for control fish and for fish treated with an intraperitoneal injection of 15 mg BaP/kg body weight. In exposed trout, the liver, head kidney, and spleen contained similar levels of BaP, whereas EROD induction differed significantly between the organs, with liver showing the highest induction factor (132.8×), followed by head kidney (38.4×) and spleen (1.4×). Likewise, rates of microsomal metabolite formation experienced the highest induction in the liver of BaP-exposed trout, followed by the head kidney and spleen. Microsomes from control fish displayed tissue-specific differences in metabolite production. In contrast, in BaP-exposed trout, microsomes of all organs produced the potentially immunotoxic BaP-7,8-dihydrodiol as the main metabolite. The findings from this study show that PAHs, like BaP, are distributed into immune organs of fish and provide the first evidence that immune organs possess inducible PAH metabolism leading to in situ production of potentially immunotoxic PAH metabolites.