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基于化学指纹图谱的大麻品种分类——德国市场化学变种的广泛分析

Classification of Cannabis Strains Based on their Chemical Fingerprint-A Broad Analysis of Chemovars in the German Market.

作者信息

Herwig N, Utgenannt S, Nickl F, Möbius P, Nowak L, Schulz O, Fischer M

机构信息

Schurer Pharma & Kosmetik GmbH, Leipzig, Germany.

出版信息

Cannabis Cannabinoid Res. 2025 Jun;10(3):409-419. doi: 10.1089/can.2024.0127. Epub 2024 Aug 13.

Abstract

Cannabis cultivars were usually categorized based on their genetic profile as sativa, indica, or hybrid types. However, these three criteria do not allow sufficient differentiation between the numerous varieties of cannabis strains. Furthermore, this classification is based on morphological and bio-geographical properties of the plants and does not represent the chemical composition of different cultivars. The concentration of cannabinoids and terpenes are crucial for the pharmacological effect, not only because of the known entourage effect, and therefore needs to be considered by categorization. A total of 140 medicinal cannabis flowers available on the German market were analyzed regarding their individual terpene profile using GC-MS analysis. Statistical evaluation was performed to investigate correlations and data relations as well as for clustering. Multivariate analysis showed correlations between individual terpenes. However, there was no statistical correlation between terpene profiles and their respective genetic profile. Terpene profiles of sativa, indica, and hybrid strains are quite heterogenous and clearly showed that there is no relation between terpenes and the estimated pharmacological effect. As a result, we suggest a new classification system based on individual terpene profiles to faster a comprehensive understanding of the expected medical effect. Considering main terpenes, we established a concept of six clusters with various terpene profiles being attributed to different medicinal applications. We excluded tetrahydrocannabinol (THC) and cannabidiol (CBD) content from clustering as most of the strains were THC dominant and therefore distort the results. Our pattern of strains with similar terpene profiles might refine the existing classes of chemotypes with different THC:CBD content. The categorization of cannabis strains based on their terpene profiles allows a clearer, finer and, above all, more meaningful classification than the existing sativa/indica classification. Due to the entourage effect and the interactions between cannabinoids and terpenes, this group of substances is also given the necessary consideration when selecting the right medicine for the individual. Within the next steps, further studies are needed with the aim of mapping clinical validated effects to our chemovars. If it is possible to correlate therapy of symptoms to specific chemical profiles personalized cannabinoid therapy will be possible.

摘要

大麻品种通常根据其基因特征被归类为大麻属、印度大麻或杂交类型。然而,这三个标准不足以充分区分众多的大麻品系。此外,这种分类是基于植物的形态和生物地理特性,并不代表不同品种的化学成分。大麻素和萜烯的浓度对药理作用至关重要,不仅因为已知的协同效应,因此在分类时需要考虑。使用气相色谱 - 质谱分析法对德国市场上可获得的140种药用大麻花的个体萜烯谱进行了分析。进行了统计评估以研究相关性和数据关系以及聚类情况。多变量分析显示了个体萜烯之间的相关性。然而,萜烯谱与其各自的基因谱之间没有统计相关性。大麻属、印度大麻和杂交品系的萜烯谱非常不均一,清楚地表明萜烯与估计的药理作用之间没有关系。因此,我们建议基于个体萜烯谱建立一个新的分类系统,以便更快地全面了解预期的医疗效果。考虑到主要萜烯,我们建立了一个六类的概念,将各种萜烯谱归因于不同的药用应用。我们在聚类中排除了四氢大麻酚(THC)和大麻二酚(CBD)的含量,因为大多数品系以THC为主,因此会扭曲结果。我们具有相似萜烯谱的品系模式可能会完善现有的不同THC:CBD含量的化学型类别。基于萜烯谱对大麻品系进行分类比现有的大麻属/印度大麻分类更清晰、更精细,最重要的是更有意义。由于协同效应以及大麻素和萜烯之间的相互作用,在为个体选择合适药物时,这组物质也得到了必要的考虑。在接下来的步骤中,需要进一步研究,目的是将临床验证的效果与我们的化学变种进行映射。如果能够将症状治疗与特定化学谱相关联,个性化大麻素治疗将成为可能。

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