Zhang Jing, Hu Yupei, Wang Zheng
Beijing Advanced Innovation Center for Soft Matter Science and Engineering Beijing University of Chemical Technology Beijing China.
University of Pittsburgh Pittsburgh USA.
Eng Life Sci. 2025 Sep 11;25(9):e70039. doi: 10.1002/elsc.70039. eCollection 2025 Sep.
Menthol, a natural organic compound and the primary component of mint, exhibits diverse biological activities, including analgesic, anti-inflammatory, antibacterial, neuroprotective, and anticancer effects. The chemical modification of menthol, through processes such as esterification and amination, further enhances these activities, expanding its potential applications in drug development, agriculture, and food preservation. This review explores the structure-activity relationships (SAR) of menthol and its derivatives, emphasizing the significance of molecular modifications in enhancing their pharmacological effects. Research indicates that menthol and its derivatives can improve drug permeation, reduce inflammation, enhance memory, and even target cancer cells through various mechanisms. In addition, we examine the safety and pharmacokinetics of menthol and its derivatives to better understand their clinical potential. Although significant progress has been made in preclinical models, further research is necessary to fully elucidate their mechanisms of action and optimize their therapeutic efficacy in clinical settings. Continued innovation in drug delivery technologies and the development of novel menthol derivatives present promising prospects for future therapeutic applications.
薄荷醇是一种天然有机化合物,也是薄荷的主要成分,具有多种生物活性,包括镇痛、抗炎、抗菌、神经保护和抗癌作用。通过酯化和胺化等过程对薄荷醇进行化学修饰,可进一步增强这些活性,扩大其在药物开发、农业和食品保鲜中的潜在应用。本综述探讨了薄荷醇及其衍生物的构效关系(SAR),强调了分子修饰对增强其药理作用的重要性。研究表明,薄荷醇及其衍生物可通过多种机制改善药物渗透、减轻炎症、增强记忆,甚至靶向癌细胞。此外,我们还研究了薄荷醇及其衍生物的安全性和药代动力学,以更好地了解它们的临床潜力。尽管在临床前模型中已取得显著进展,但仍需进一步研究以充分阐明其作用机制,并在临床环境中优化其治疗效果。药物递送技术的持续创新和新型薄荷醇衍生物的开发为未来的治疗应用带来了广阔前景。