Helmholtz Centre for Infection Research, Helmholtz Institute for Pharmaceutical Research Saarland (HIPS), Campus E8 1, Saarland University, 66123 Saarbrücken, Germany.
Environmental Safety Group, Korea Institute of Science and Technology (KIST) Europe, 66123 Saarbrücken, Germany.
Molecules. 2022 Feb 15;27(4):1290. doi: 10.3390/molecules27041290.
Zebrafish (ZF; ) larvae have become a popular in vivo model in drug metabolism studies. Here, we investigated the metabolism of methyl 2-[1-(4-fluorobutyl)-1-indazole-3-carboxamido]-3,3-dimethylbutanoate (4F-MDMB-BINACA) in ZF larvae after direct administration of the cannabinoid via microinjection, and we visualized the spatial distributions of the parent compound and its metabolites by mass spectrometry imaging (MSI). Furthermore, using genetically modified ZF larvae, the role of cannabinoid receptor type 1 (CB1) and type 2 (CB2) on drug metabolism was studied. Receptor-deficient ZF mutant larvae were created using morpholino oligonucleotides (MOs), and CB2-deficiency had a critical impact on liver development of ZF larva, leading to a significant reduction of liver size. A similar phenotype was observed when treating wild-type ZF larvae with 4F-MDMB-BINACA. Thus, we reasoned that the cannabinoid-induced impaired liver development might also influence its metabolic function. Studying the metabolism of two synthetic cannabinoids, 4F-MDMB-BINACA and methyl 2-(1-(5-fluoropentyl)-1-pyrrolo[2,3-b]pyridine-3-carboxamido)-3,3-dimethylbutanoate (7'-5F-ADB), revealed important insights into the in vivo metabolism of these compounds and the role of cannabinoid receptor binding.
斑马鱼(ZF)幼虫已成为药物代谢研究中一种流行的体内模型。在这里,我们通过微注射直接给予大麻素,研究了甲基 2-[1-(4-氟丁基)-1-吲哚-3-羧酰胺基]-3,3-二甲基丁酸酯(4F-MDMB-BINACA)在 ZF 幼虫中的代谢,并通过质谱成像(MSI)可视化母体化合物及其代谢物的空间分布。此外,使用基因修饰的 ZF 幼虫研究了大麻素受体 1 型(CB1)和 2 型(CB2)在药物代谢中的作用。使用单链核苷酸(MOs)创建了受体缺陷型 ZF 突变体幼虫,CB2 缺陷对 ZF 幼虫的肝脏发育有重要影响,导致肝脏大小显著减小。当用 4F-MDMB-BINACA 处理野生型 ZF 幼虫时,也观察到类似的表型。因此,我们推断大麻素诱导的肝脏发育不良也可能影响其代谢功能。研究两种合成大麻素,4F-MDMB-BINACA 和甲基 2-(1-(5-氟戊基)-1-吡咯并[2,3-b]吡啶-3-羧酰胺基)-3,3-二甲基丁酸酯(7'-5F-ADB)的代谢,揭示了这些化合物在体内代谢的重要见解以及大麻素受体结合的作用。