ElSohly Mahmoud A, Radwan Mohamed M, Gul Waseem, Chandra Suman, Galal Ahmed
National Center for Natural Products Research, Research Institute of Pharmaceutical Sciences, School of Pharmacy, The University of Mississippi, University, MS, 38677, USA.
ElSohly Laboratories, Inc., 5 Industrial Park Drive, Oxford, MS, 38655, USA.
Prog Chem Org Nat Prod. 2017;103:1-36. doi: 10.1007/978-3-319-45541-9_1.
Cannabis (Cannabis sativa, or hemp) and its constituents-in particular the cannabinoids-have been the focus of extensive chemical and biological research for almost half a century since the discovery of the chemical structure of its major active constituent, Δ-tetrahydrocannabinol (Δ-THC). The plant's behavioral and psychotropic effects are attributed to its content of this class of compounds, the cannabinoids, primarily Δ-THC, which is produced mainly in the leaves and flower buds of the plant. Besides Δ-THC, there are also non-psychoactive cannabinoids with several medicinal functions, such as cannabidiol (CBD), cannabichromene (CBC), and cannabigerol (CBG), along with other non-cannabinoid constituents belonging to diverse classes of natural products. Today, more than 560 constituents have been identified in cannabis. The recent discoveries of the medicinal properties of cannabis and the cannabinoids in addition to their potential applications in the treatment of a number of serious illnesses, such as glaucoma, depression, neuralgia, multiple sclerosis, Alzheimer's, and alleviation of symptoms of HIV/AIDS and cancer, have given momentum to the quest for further understanding the chemistry, biology, and medicinal properties of this plant.This contribution presents an overview of the botany, cultivation aspects, and the phytochemistry of cannabis and its chemical constituents. Particular emphasis is placed on the newly-identified/isolated compounds. In addition, techniques for isolation of cannabis constituents and analytical methods used for qualitative and quantitative analysis of cannabis and its products are also reviewed.
自大麻( Cannabis sativa,或大麻)的主要活性成分Δ-四氢大麻酚(Δ-THC)的化学结构被发现以来,近半个世纪,大麻及其成分——尤其是大麻素——一直是广泛的化学和生物学研究的焦点。该植物的行为和精神作用归因于这类化合物即大麻素的含量,主要是Δ-THC,它主要在植物的叶子和花芽中产生。除了Δ-THC,还有具有多种药用功能的非精神活性大麻素,如大麻二酚(CBD)、大麻色烯(CBC)和大麻萜酚(CBG),以及属于不同类别的天然产物的其他非大麻素成分。如今,在大麻中已鉴定出560多种成分。最近发现大麻和大麻素除了在治疗一些严重疾病(如青光眼、抑郁症、神经痛、多发性硬化症、阿尔茨海默病)方面的潜在应用,以及缓解艾滋病毒/艾滋病和癌症的症状外,其药用特性也推动了对该植物的化学、生物学和药用特性的进一步了解。本文概述了大麻的植物学、种植方面以及大麻及其化学成分的植物化学。特别强调了新鉴定/分离的化合物。此外,还综述了大麻成分的分离技术以及用于大麻及其产品定性和定量分析的分析方法。