Jiangsu Key Laboratory for Pharmacology and Safety Evaluation of Chinese Materia Medica, School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing, 210023, China.
Jiangsu Key Laboratory for Pharmacology and Safety Evaluation of Chinese Materia Medica, School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing, 210023, China.
J Ethnopharmacol. 2022 Oct 28;297:115545. doi: 10.1016/j.jep.2022.115545. Epub 2022 Jul 15.
Scutellaria baicalensis (SB) and Coptis chinensis (CC) are widely used traditional Chinese medicine (TCM) for "heat-clearing and damp-drying" and "purging fire and detoxifying". SB-CC are commonly used as a herbal pair for synergistic treatment of various diseases such as bacteria-related infections, metabolic syndromes, and some inflammatory disorders. This herbal pair is commonly used in many famous TCM formula, like Huang-Lian-Jie-Du, Gegen-Qinlian, Banxia Xiexin decoction. Aryl hydrocarbon receptor (AHR) plays an essential role in the disposition of both xenobiotics and endogenous substances through the induction of cytochrome P450 1A (CYP1A) enzymes. Regulation of the AHR-CYP1A axis is increasingly implicated in drug-drug and drug-herb interactions. Research on SB-CC for regulatory effect on the AHR-CYP1A axis is only limited to few compounds.
This study aimed to systematically investigate the regulatory effect of SB-CC and its main constitutes on the AHR-CYP1A axis in vitro and in vivo.
The livers of mice treated with SB-CC extract were subjected to RNA-sequencing (RNA-seq). The key target genes related to drug metabolism were screened, and the differential expression genes (DEGs) were validated by qRT-PCR, Western blot, and enzyme activity assay. Luciferase reporter gene, qRT-PCR, and Western blot assays were used to determine whether SB-CC and their main constituents could activate AHR and regulate CYP1A expression in HepG2 cells. The effect of SB-CC on the pharmacokinetics of phenacetin, a CYP1A substrate, were further observed in mice to test the net effect of SB-CC on CYP1A functions. The potential CYP1A inhibitors in SB-CC were screened and their inhibitory mechanisms were also studied using human liver microsomes.
AHR and drug metabolism system, especially CYP1A1 and CYP1A2, were strongly affected in the liver of SB-CC-treated mice. These results were further validated by the findings that SB-CC increased CYP1A's mRNA, protein expression and activity in mouse liver. In HepG2 cells, SB, CC, baicalin, baicalein, chrysin, oroxylin A, berberine, coptisine and epiberberine increased CYP1A1 mRNA expression in an AHR-dependent way. Interestingly, SB-CC treatment for 14 days only slightly increased the systemic exposure of paracetamol in mice. In the CYP1A inhibition assay, SB, CC, baicalin, baicalein, wogonoside, wogonin, chrysin, oroxylin A, scutellarein, columbamine, coptisine, palmatine, epiberberine, and berberrubine inhibited CYP1A activity in different degree.
These results suggested that SB-CC exerted dual regulatory effect on the AHR-CYP1A axis by increasing CYP1A expression but simultaneously inhibiting CYP1A activity, which may contribute to a tight modulation of AHR signaling for homeostatic control.
背景:黄芩(SB)和黄连(CC)是广泛应用于中医(TCM)的“清热燥湿”和“泻火解毒”的传统药物。SB-CC 常被用作协同治疗各种疾病的草药组合,如细菌相关感染、代谢综合征和一些炎症性疾病。该草药组合常用于许多著名的 TCM 配方,如黄连解毒汤、葛根芩连汤、半夏泻心汤。芳烃受体(AHR)通过诱导细胞色素 P450 1A(CYP1A)酶在内外源物质的处置中发挥重要作用。AHR-CYP1A 轴的调节作用越来越多地涉及药物相互作用和药物-草药相互作用。关于 SB-CC 对 AHR-CYP1A 轴的调节作用的研究仅局限于少数几种化合物。
目的:本研究旨在系统研究 SB-CC 及其主要成分在体外和体内对 AHR-CYP1A 轴的调节作用。
材料与方法:用 SB-CC 提取物处理的小鼠肝脏进行 RNA 测序(RNA-seq)。筛选与药物代谢相关的关键靶基因,并通过 qRT-PCR、Western blot 和酶活性测定验证差异表达基因(DEGs)。利用荧光素酶报告基因、qRT-PCR 和 Western blot 测定,研究 SB-CC 及其主要成分是否能在 HepG2 细胞中激活 AHR 并调节 CYP1A 的表达。进一步观察 SB-CC 对乙酰氨基酚(CYP1A 底物)药代动力学的影响,以测试 SB-CC 对 CYP1A 功能的净效应。用人类肝微粒体筛选 SB-CC 中的潜在 CYP1A 抑制剂,并研究其抑制机制。
结果:在 SB-CC 处理的小鼠肝脏中,AHR 和药物代谢系统,特别是 CYP1A1 和 CYP1A2,受到强烈影响。这些结果进一步通过以下发现得到验证:SB-CC 增加了小鼠肝脏中 CYP1A 的 mRNA、蛋白表达和活性。在 HepG2 细胞中,SB、CC、黄芩苷、黄芩素、白杨素、氧化小檗碱、黄连素、小檗碱和小檗碱能以 AHR 依赖性方式增加 CYP1A1 mRNA 的表达。有趣的是,SB-CC 治疗 14 天仅略微增加了乙酰氨基酚在小鼠体内的全身暴露量。在 CYP1A 抑制试验中,SB、CC、黄芩苷、黄芩素、汉黄芩苷、汉黄芩素、白杨素、氧化小檗碱、小檗碱、小檗碱、苦参碱、小檗碱、巴马汀、小檗碱、小檗碱和小檗碱以不同程度抑制 CYP1A 活性。
结论:这些结果表明,SB-CC 通过增加 CYP1A 的表达同时抑制 CYP1A 活性,对 AHR-CYP1A 轴发挥双重调节作用,这可能有助于 AHR 信号的紧密调节,以实现体内平衡控制。