a Department of Anesthesiology, School of Medicine, College of Medicine , Taipei Medical University , Taipei City , Taiwan.
b Department of Anesthesiology, Wan-Fang Hospital , Taipei Medical University , Taipei City , Taiwan.
Expert Opin Drug Metab Toxicol. 2018 Jul;14(7):709-720. doi: 10.1080/17425255.2018.1487397. Epub 2018 Jun 17.
Although used as an anesthetic drug for decades, ketamine appears to have garnered renewed interest due to its potential therapeutic uses in pain therapy, neurology, and psychiatry. Ketamine undergoes extensive oxidative metabolism by cytochrome P450 (CYP) enzymes. Considerable efforts have been expended to elucidate the ketamine-induced regulation of CYP gene expression. The safety profile of chronic ketamine administration is still unclear. Understanding how ketamine regulates CYP gene expression is clinically meaningful. Areas covered: In this article, the authors provide a brief review of clinical applications of ketamine and its metabolism by CYP enzymes. We discuss the effects of ketamine on the regulation of CYP gene expression, exploring aspects of cytoskeletal remodeling, mitochondrial functions, and calcium homeostasis. Expert opinion: Ketamine may inhibit CYP gene expression through inhibiting calcium signaling, decreasing ATP levels, producing excessive reactive oxygen species, and subsequently perturbing cytoskeletal dynamics. Further research is still needed to avoid possible ketamine-drug interactions during long-term use in the clinic.
虽然氯胺酮作为麻醉药物已经使用了几十年,但由于其在疼痛治疗、神经病学和精神病学方面的潜在治疗用途,它似乎重新引起了人们的兴趣。氯胺酮通过细胞色素 P450(CYP)酶进行广泛的氧化代谢。人们已经付出了相当大的努力来阐明氯胺酮诱导的 CYP 基因表达的调节。慢性氯胺酮给药的安全性概况尚不清楚。了解氯胺酮如何调节 CYP 基因表达在临床上具有重要意义。涵盖领域:在本文中,作者简要回顾了氯胺酮的临床应用及其被 CYP 酶代谢的情况。我们讨论了氯胺酮对 CYP 基因表达调节的影响,探讨了细胞骨架重塑、线粒体功能和钙动态平衡的方面。专家意见:氯胺酮可能通过抑制钙信号、降低 ATP 水平、产生过多的活性氧,从而扰乱细胞骨架动力学,抑制 CYP 基因表达。为了避免在临床长期使用中可能发生的氯胺酮-药物相互作用,还需要进一步研究。