Bell Rae F, Moreira Vânia M, Kalso Eija A, Yli-Kauhaluoma Jari
(Emerita) Regional Centre of Excellence in Palliative Care, Haukeland University Hospital, Jonas Lies vei 65, Bergen 5021, Norway.
Laboratory of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Coimbra, Coimbra, Portugal.
Ther Adv Psychopharmacol. 2021 Jul 16;11:20451253211024873. doi: 10.1177/20451253211024873. eCollection 2021.
Liquorice has a long history of use in traditional Chinese, Ayurvedic and herbal medicine. The liquorice plant contains numerous bioactive compounds, including triterpenes, flavonoids and secondary metabolites, with glycyrrhizin being the main active compound. Liquorice constituents have been found to have anti-inflammatory, antioxidant, antiviral, anticancer, hepatoprotective and neuroprotective properties. In addition, they appear to have antidepressant actions and effects on morphine tolerance. Glycyrrhizin, its metabolite glycyrrhetic (glycyrrhetinic) acid and other liquorice-derived compounds such as isoflavonoids and -chalcones, exert potent anti-inflammatory effects a wide range of mechanisms including high mobility group box 1 protein (HMGB1) inhibition, gap junction blockade and α-adrenoceptor antagonism. These properties, together with an increasing body of preclinical studies and a long history of use in herbal medicine, suggest that liquorice constituents may be useful for pain management. Glycyrrhizin is used widely in the confectionary, food and tobacco industries, but has documented adverse effects that may limit clinical use. Whether liquorice plant-derived compounds represent a novel class of analgesics is yet to be established. Having a host of bioactive compounds with a broad range of mechanisms of effect, liquorice is a plant that, in the future, may give rise to new therapies for pain.
甘草在传统中医、阿育吠陀医学和草药医学中有着悠久的使用历史。甘草植物含有多种生物活性化合物,包括三萜类、黄酮类和次生代谢产物,其中甘草甜素是主要的活性化合物。已发现甘草成分具有抗炎、抗氧化、抗病毒、抗癌、保肝和神经保护特性。此外,它们似乎还具有抗抑郁作用以及对吗啡耐受性的影响。甘草甜素、其代谢产物甘草次酸以及其他甘草衍生化合物,如异黄酮和查耳酮,通过多种机制发挥强大的抗炎作用,包括抑制高迁移率族蛋白B1(HMGB1)、阻断缝隙连接和拮抗α-肾上腺素能受体。这些特性,连同越来越多的临床前研究以及草药医学的悠久使用历史,表明甘草成分可能对疼痛管理有用。甘草甜素广泛应用于糖果、食品和烟草行业,但有文献记载的不良反应可能会限制其临床应用。源自甘草植物的化合物是否代表一类新型镇痛药还有待确定。甘草含有大量具有广泛作用机制的生物活性化合物,是一种未来可能会产生新的疼痛治疗方法的植物。