Zhang Dan, Lü Jintao, Ren Zhixin, Zhang Xiaomeng, Wu Huanzhang, Sa Rina, Wang Xiaofang, Wang Yu, Lin Zhijian, Zhang Bing
School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, China.
Centre for Pharmacovigilance and Rational Use of Chinese Medicine, Beijing University of Chinese Medicine, Beijing, China.
Front Pharmacol. 2022 Oct 24;13:1028046. doi: 10.3389/fphar.2022.1028046. eCollection 2022.
Euodiae Fructus, a well-known herbal medicine, is widely used in Asia and has also gained in popularity in Western countries over the last decades. It has known side effects, which have been observed in clinical settings, but few studies have reported on its cardiotoxicity. In the present study, experiments using techniques of untargeted metabolomics clarify the hazardous effects of Euodiae Fructus on cardiac function and metabolism in rats in situations of overdosage and unsuitable syndrome differentiation. assays are conducted to observe the toxic effects of evodiamine and rutaecarpine, two main chemical constituents of Euodiae Fructus, in H9c2 and neonatal rat cardiomyocytes (NRCMs), with their signaling mechanisms analyzed accordingly. The cardiac cytotoxicity of evodiamine and rutaecarpine in experiments is associated with remarkable alterations in lactate dehydrogenase, creatine kinase, and mitochondrial membrane potential; also with increased intensity of calcium fluorescence, decreased protein expression of the cGMP-PKG pathway in H9c2 cells, and frequency of spontaneous beat in NRCMs. Additionally, the results in rats with Yin deficiency receiving a high-dosage of Euodiae Fructus suggest obvious cardiac physiological dysfunction, abnormal electrocardiogram, pathological injuries, and decreased expression of PKG protein. At the level of endogenous metabolites, the cardiac side effects of overdose and irrational usage of Euodiae Fructus relate to 34 differential metabolites and 10 metabolic pathways involving among others, the purine metabolism, the glycerophospholipid metabolism, the glycerolipid metabolism, and the sphingolipid metabolism. These findings shed new light on the cardiotoxicity induced by Euodiae Fructus, which might be associated with overdose and unsuitable syndrome differentiation, that comes from modulating the cGMP-PKG pathway and disturbing the metabolic pathways of purine, lipid, and amino acid. Continuing research is needed to ensure pharmacovigilance for the safe administration of Chinese herbs in the future.
吴茱萸是一种著名的草药,在亚洲广泛使用,并且在过去几十年里在西方国家也越来越受欢迎。它存在已知的副作用,在临床环境中已被观察到,但很少有研究报道其心脏毒性。在本研究中,采用非靶向代谢组学技术的实验阐明了吴茱萸在大鼠过量服用和辨证不当情况下对心脏功能和代谢的有害影响。进行实验以观察吴茱萸的两种主要化学成分吴茱萸碱和吴茱萸次碱对H9c2和新生大鼠心肌细胞(NRCMs)的毒性作用,并相应分析其信号传导机制。吴茱萸碱和吴茱萸次碱在实验中的心脏细胞毒性与乳酸脱氢酶、肌酸激酶和线粒体膜电位的显著变化有关;还与钙荧光强度增加、H9c2细胞中cGMP-PKG途径的蛋白表达降低以及NRCMs的自发搏动频率降低有关。此外,阴虚大鼠高剂量服用吴茱萸的结果表明存在明显的心脏生理功能障碍、心电图异常、病理损伤以及PKG蛋白表达降低。在内源性代谢物水平上,过量和不合理使用吴茱萸的心脏副作用与34种差异代谢物和10条代谢途径有关,其中包括嘌呤代谢、甘油磷脂代谢、甘油酯代谢和鞘脂代谢。这些发现为吴茱萸引起的心脏毒性提供了新的线索,其可能与过量服用和辨证不当有关,这是通过调节cGMP-PKG途径以及扰乱嘌呤、脂质和氨基酸的代谢途径实现的。未来需要持续研究以确保对中药安全用药进行药物警戒。