Department of Hematology, Zhongshan Hospital of Sun Yat-Sen University & Zhongshan City People's Hospital, Zhongshan, China.
Drug Test Anal. 2021 Jun;13(6):1118-1126. doi: 10.1002/dta.3008. Epub 2021 Feb 8.
Taletrectinib is a potent, orally active, and selective ROS1/NTRK kinase inhibitor. The aim of this study was to study the metabolism of taletrectinib in rat, dog, and human liver microsomes. The biotransformation of taletrectinib was carried out using rat, dog, and human liver microsomes supplemented with nicotinamide adenine dinucleotide phosphate tetrasodium salt (NADPH) and uridine diphosphate glucuronic acid (UDPGA). The microsomal incubations were conducted at 37°C for 60 min. The formed metabolites were identified by ultrahigh performance liquid chromatography coupled to high-resolution tandem mass spectrometry (UHPLC-HRMS) using electrospray ionization in the positive ion mode. They were identified by accurate masses and MS/MS spectra and based on their fragmentation pathways. With UHPLC-HRMS, a total of 10 metabolites including one glucuronide conjugate (M7) were structurally identified. M9 and M10 were unambiguously identified as taletrectinib alcohol and taletrectinib ketone, respectively, using reference standards. The phase I metabolic pathways of taletrectinib involved N-dealkylation, O-dealkylation, oxidative deamination, and oxygenation; the phase II metabolic pathways referred to glucuronidation. The current study investigated the in vitro metabolic fate of taletrectinib in animals and human species, which would bring us considerable benefits for the subsequent studies focusing on the pharmacological effect and toxicity of this drug.
塔勒特替尼是一种强效、口服活性和选择性的 ROS1/NTRK 激酶抑制剂。本研究旨在研究塔勒特替尼在大鼠、犬和人肝微粒体中的代谢情况。采用大鼠、犬和人肝微粒体,补充烟酰胺腺嘌呤二核苷酸磷酸四钠盐(NADPH)和尿苷二磷酸葡萄糖醛酸(UDPGA),进行塔勒特替尼的生物转化。将微粒体孵育在 37°C 下进行 60 分钟。使用电喷雾电离正离子模式的超高效液相色谱-高分辨率串联质谱联用仪(UHPLC-HRMS),对形成的代谢物进行鉴定。通过精确质量和 MS/MS 图谱,并基于它们的碎裂途径来鉴定。使用 UHPLC-HRMS,共鉴定出 10 种代谢物,包括一种葡萄糖醛酸缀合物(M7)。使用参比标准品,M9 和 M10 被明确鉴定为塔勒特替尼醇和塔勒特替尼酮。塔勒特替尼的 I 相代谢途径涉及 N-去烷基化、O-去烷基化、氧化脱氨和氧化;II 相代谢途径涉及葡萄糖醛酸化。本研究调查了塔勒特替尼在动物和人类中的体外代谢命运,这将为我们后续研究该药物的药理作用和毒性提供重要依据。