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Insights into Eucalyptus genus chemical constituents, biological activities and health-promoting effects

桉树油 桉树醇 桉树 茶树油 抗菌剂 蓝桉 保健品 桃金娘科 生物 传统医学 毒理 精油 生物技术 医学 植物 食品科学 微生物学 免疫学
作者
Bahare Salehi,Javad Sharifi-Rad,Cristina Quispe,Henrry Llaique,Michael J. Villalobos,Antonella Smeriglio,Domenico Trombetta,Shahira M. Ezzat,Mohamed L. Salem,Ahmed I. Zayed,Carla Marina Salgado Castillo,Simin Emamzadeh Yazdi,Surjit Sen,Krishnendu Acharya,Farukh Sharopov,Natália Martins
出处
期刊:Trends in Food Science and Technology [Elsevier]
卷期号:91: 609-624 被引量:55
标识
DOI:10.1016/j.tifs.2019.08.003
摘要

Eucalyptus genus members have received a great interest worldwide for their antibacterial, antiviral, antifungal, anti-inflammatory and insect-repellent properties for cosmetic, pharmaceutical, nutraceutical and furniture purposes. Indeed, the application of Eucalyptus essential oil in cosmetic and personal hygiene products is gradually increasing. Also, it has been widely used in the traditional medicine for centuries, in the treatment of respiratory diseases, common cold, influenza, and sinus congestion. This review addressed botanical and ethnopharmacological aspects of Eucalyptus plants, as also its in vitro and in vivo pharmacological activities, and current insights with regards to clinical efficacy and safety. Eucalyptol (1,8-cineole) is the main component present in Eucalyptus oils. According to the previously reported uses of Eucalyptus oils and extracts, there is urgently required further in vivo studies with the distinct Eucalyptus constituents to reveal the secrets beyond the traditional uses for treatment of a wide spectrum of ailments. A great attention has also been given for its nanotechnological applications by food and pharmaceutical industries. Nanoemulsions containing Eucalyptus globulus oil have been recognized for its antimicrobial and antibiofilm effects against gram-negative bacteria and the major microorganism responsible for causing fungal infections worldwide (Candida albicans). Moreover, eucalyptol does not present genotoxicity or carcinogenicity. Subacute hepatotoxic and nephrotoxic effects in animal models have been stated after application of high doses, higher than the estimated LD50 (2400 mg/kg b.w. In rats). However, an in-deep risk assessment on further exposure and toxicity data is highly needed.
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