Marchese Anna, Arciola Carla Renata, Barbieri Ramona, Silva Ana Sanches, Nabavi Seyed Fazel, Tsetegho Sokeng Arold Jorel, Izadi Morteza, Jafari Nematollah Jonaidi, Suntar Ipek, Daglia Maria, Nabavi Seyed Mohammad
Sezione di Microbiologia DISC-IRCCS San Martino-IST University of Genoa, 16132 Genoa, Italy.
Research Unit on Implant Infections, Rizzoli Orthopaedic Institute, via di Barbiano 1/10, 40136 Bologna, Italy.
Materials (Basel). 2017 Aug 15;10(8):947. doi: 10.3390/ma10080947.
p-Cymene [1-methyl-4-(1-methylethyl)-benzene] is a monoterpene found in over 100 plant species used for medicine and food purposes. It shows a range of biological activity including antioxidant, anti-inflammatory, antinociceptive, anxiolytic, anticancer and antimicrobial effects. This last property has been widely investigated due to the urgent need for new substances with antimicrobial properties, to be used to treat communicable diseases whose diffusion in developed countries has been facilitated by globalization and the evolution of antimicrobial resistance. This review summarizes available scientific data, as reported by the most recent studies describing the antimicrobial activity of p-cymene either alone, or as the main component of plant extracts, as well as addressing the mechanisms of action of cymenes as antimicrobial agents. While p-cymene is one of the major constituents of extracts and essential oils used in traditional medicines as antimicrobial agents, but considering the limited data on its in vivo efficacy and safety, further studies are required to reach a definitive recommendation on the use and beneficial effects of p-cymene in human healthcare and in biomedical applications as a promising candidate to functionalize biomaterials and nanomaterials.
对异丙基甲苯[1-甲基-4-(1-甲基乙基)-苯]是一种单萜,存在于100多种用于医药和食品用途的植物中。它具有一系列生物活性,包括抗氧化、抗炎、抗伤害感受、抗焦虑、抗癌和抗菌作用。由于迫切需要具有抗菌特性的新物质来治疗传染病,而传染病在发达国家的传播因全球化和抗菌药物耐药性的演变而加剧,因此对其抗菌特性进行了广泛研究。本综述总结了现有科学数据,这些数据来自最近描述对异丙基甲苯单独或作为植物提取物主要成分的抗菌活性的研究,以及探讨了对异丙基甲苯作为抗菌剂的作用机制。虽然对异丙基甲苯是传统药物中用作抗菌剂的提取物和精油的主要成分之一,但考虑到其体内疗效和安全性的数据有限,需要进一步研究才能就对异丙基甲苯在人类医疗保健和生物医学应用中的使用及有益效果达成明确建议,它有望作为一种有前途的候选物质使生物材料和纳米材料功能化。