School of Nursing, Nanjing Medical University, Nanjing, Jiangsu, China (mainland).
School of Public Health, Nanjing Medical University, Nanjing, Jiangsu, China (mainland).
Med Sci Monit. 2020 Apr 14;26:e922149. doi: 10.12659/MSM.922149.
BACKGROUND Leonurine is an active component of the traditional Chinese medicine Leonurus japonicus. This study aimed to investigate the effects of overexpressed CYP450s on the metabolic activity of leonurine. MATERIAL AND METHODS BEAS-2B cells stably expressing CYP1A1, 1A2, 2A13, 2B6, and 3A4 were constructed. CYP450s expression was identified using reverse-transcription PCR and Western blot assay. CCK-8 assay was used to evaluate the effect of leonurine on cell activity. Leonurine was incubated in vitro with CYP1A1, 1A2, 2A13, 2B6, and 3A4 metabolic enzymes to evaluate the clearance rate of CYP450 enzymes for leonurine. UPLC-MS was used to detect changes of drug concentration and discover the main metabolic enzymes affecting leonurine. RESULTS BEAS-2B cells stably expressing CYP1A1, 1A2, 2A13, 2B6, and 3A4 were successfully constructed. According to primary mass spectra and secondary mass spectra of leonurine, the main metabolic enzymes were 312.1550 [H+] and 181.0484. Compared to the control group, residue of leonurine in CYP2A13 group was significantly reduced (F=5.307, p=0.024). Compared to the 0-min group, the clearance rate of leonurine in the CYP2A13-treated group was significantly decreased at 120 min after treatment (F=7.273, p=0.007). CCK-8 results also showed that activity of BEAS-2B cells that overexpress CYP2A13 gradually decreased with increased concentration of leonurine. Although CYP2A13 demonstrated good metabolic activity for leonurine, we found that CYP1A1, 1A2, 2B6, and 3A4 had no metabolic effects on leonurine. CONCLUSIONS Leonurine can be effectively activated through CYP2A13 enzyme metabolism, and further inhibits activity of human lung epithelial cells (BEAS-2B). Therefore, CYP2A13 is a main metabolic enzyme for leonurine in BEAS-2B cells.
益母草碱是中药益母草的一种活性成分。本研究旨在探讨过表达的 CYP450 对益母草碱代谢活性的影响。
构建了稳定表达 CYP1A1、1A2、2A13、2B6 和 3A4 的 BEAS-2B 细胞。采用逆转录 PCR 和 Western blot 检测 CYP450s 的表达。CCK-8 法评价益母草碱对细胞活性的影响。体外孵育益母草碱与 CYP1A1、1A2、2A13、2B6 和 3A4 代谢酶,评价 CYP450 酶对益母草碱清除率。采用 UPLC-MS 检测药物浓度变化,发现影响益母草碱的主要代谢酶。
成功构建了稳定表达 CYP1A1、1A2、2A13、2B6 和 3A4 的 BEAS-2B 细胞。根据益母草碱的母离子和子离子质谱,主要代谢酶为 312.1550 [H+]和 181.0484。与对照组相比,CYP2A13 组的益母草碱残留量明显减少(F=5.307,p=0.024)。与 0 分钟组相比,CYP2A13 处理组在处理后 120 分钟时,益母草碱的清除率明显降低(F=7.273,p=0.007)。CCK-8 结果也表明,过表达 CYP2A13 的 BEAS-2B 细胞活性随益母草碱浓度的增加而逐渐降低。虽然 CYP2A13 对益母草碱具有良好的代谢活性,但我们发现 CYP1A1、1A2、2B6 和 3A4 对益母草碱没有代谢作用。
益母草碱可通过 CYP2A13 酶代谢被有效激活,进一步抑制人肺上皮细胞(BEAS-2B)的活性。因此,CYP2A13 是 BEAS-2B 细胞中益母草碱的主要代谢酶。