Ivanova Lada, Fæste Christiane Kruse, Solhaug Anita
Chemistry and Toxinology Research Group, Norwegian Veterinary Institute, 1433 Ås, Norway.
Metabolites. 2023 Jun 20;13(6):771. doi: 10.3390/metabo13060771.
Fish are exposed to xenobiotics in the water. Uptake occurs mainly through the gills, which function as an exchange point with the environment. The gills' ability to detoxify harmful compounds by biotransformation is an essential protection mechanism. The enormous numbers of waterborne xenobiotics requiring ecotoxicological assessment makes it necessary to replace in vivo fish studies with predictive in vitro models. Here, we have characterized the metabolic capacity of the ASG-10 gill epithelial cell line from Atlantic salmon. Inducible CYP1A expression was confirmed by enzymatic assays and immunoblotting. The activities of important cytochrome P450 (CYP) and uridine 5'-diphospho-glucuronosyltransferase (UGT) enzymes were established using specific substrates and metabolite analysis by liquid chromatography (LC) triple quadrupole mass spectrometry (TQMS). Metabolism of the fish anesthetic benzocaine (BZ) in ASG-10 confirmed esterase and acetyl transferase activities through the production of N-acetylbenzocaine (AcBZ), -aminobenzoic acid (PABA) and p-acetaminobenzoic acid (AcPABA). Moreover, we were able to determine hydroxylamine benzocaine (BZOH), benzocaine glucuronide (BZGlcA) and hydroxylamine benzocaine glucuronide (BZ(O)GlcA) by LC high-resolution tandem mass spectrometry (HRMS/MS) fragment pattern analysis for the first time. Comparison to metabolite profiles in hepatic fractions, and in plasma of BZ-euthanized salmon, confirmed the suitability of the ASG-10 cell line for investigating biotransformation in gills.
鱼类会接触水中的外源化合物。摄取主要通过鳃进行,鳃作为与环境的交换点发挥作用。鳃通过生物转化对有害化合物进行解毒的能力是一种重要的保护机制。大量需要进行生态毒理学评估的水中外源化合物使得有必要用预测性体外模型取代体内鱼类研究。在此,我们对来自大西洋鲑鱼的ASG - 10鳃上皮细胞系的代谢能力进行了表征。通过酶促测定和免疫印迹证实了可诱导的CYP1A表达。使用特定底物并通过液相色谱(LC)三重四极杆质谱(TQMS)进行代谢物分析,确定了重要的细胞色素P450(CYP)和尿苷5'-二磷酸葡萄糖醛酸转移酶(UGT)的活性。ASG - 10中鱼类麻醉剂苯佐卡因(BZ)的代谢通过产生N - 乙酰苯佐卡因(AcBZ)、对氨基苯甲酸(PABA)和对乙酰氨基苯甲酸(AcPABA)证实了酯酶和乙酰转移酶活性。此外,我们首次通过LC高分辨率串联质谱(HRMS/MS)碎片模式分析确定了羟胺苯佐卡因(BZOH)、苯佐卡因葡萄糖醛酸苷(BZGlcA)和羟胺苯佐卡因葡萄糖醛酸苷(BZ(O)GlcA)。与肝部分以及经BZ安乐死的鲑鱼血浆中的代谢物谱进行比较,证实了ASG - 10细胞系适用于研究鳃中的生物转化。