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蒸气压、蒸气和对与医用大麻活性药物成分物理性质和组成相关的误解的纠正。

Vapor Pressure, Vaping, and Corrections to Misconceptions Related to Medical Cannabis' Active Pharmaceutical Ingredients' Physical Properties and Compositions.

机构信息

Bazelet Medical Cannabis Group, Or Akiva, Israel.

Department of Anesthesiology, CCM and Pain Relief, Hadassah Hebrew University Hospital, Jerusalem, Israel.

出版信息

Cannabis Cannabinoid Res. 2023 Jun;8(3):414-425. doi: 10.1089/can.2021.0173. Epub 2022 Apr 18.

Abstract

Medical cannabis products contain dozens of active pharmaceutical ingredients (APIs) derived from the cannabis plant. However, their actual compositions and relative doses significantly change according to the production methods. Product compositions are strongly dependent on processing step conditions and on components' evaporation during those steps. Review of the documentation presented to caregivers and to patients show erroneous data or misinterpretation of data related to the evaporation, for example, cannabinoids' boiling points, as well as confusions between terms, such as boiling, vaporization, and evaporation. Clarifying these aspects is essential for caregivers, for researchers, and for developers of manufacturing processes. Original and literature data were analyzed, comparing composition changes during various processing steps and correlating the extent of change to components' vapor pressures at the corresponding temperature. Evaporation-related composition changes start at temperatures as low as those of drying and curing and become extensive during decarboxylation. The relative rate of components' evaporation is determined by their relative vapor pressure and monoterpenes are lost first. On vaping, terpenes are inhaled before cannabinoids do. Commercial medical cannabis products are deficient in terpenes, mainly monoterpenes, compared with the cannabis plants used to produce them. Terms, such as "whole plant" and "full spectrum," are misleading since no product actually reflects the original cannabis plant composition. There are important implications for medical cannabis manufacturing and for the ability to make the most out of the terpene API contribution. Medical cannabis products' composition and product delivery are controlled by the relative vapor pressure of the various APIs. Quantitative data provided in this study can be used for improvement to reach better accuracy, reproducibility, and preferred medical cannabis compositions.

摘要

医用大麻制品含有数十种源自大麻植物的活性药物成分 (API)。然而,其实际成分和相对剂量根据生产方法有很大变化。产品成分强烈依赖于生产步骤的条件以及这些步骤中成分的蒸发。对向护理人员和患者提供的文件进行审查表明,与蒸发有关的数据存在错误或数据解释有误,例如大麻素的沸点,以及术语之间的混淆,如沸腾、蒸发和挥发。澄清这些方面对于护理人员、研究人员和制造工艺的开发者来说至关重要。分析了原始数据和文献数据,比较了不同加工步骤中成分变化,并将变化程度与相应温度下成分的蒸气压相关联。与蒸发有关的成分变化始于干燥和固化温度,在脱羧过程中变得广泛。成分蒸发的相对速率由其相对蒸气压决定,萜烯首先丢失。在蒸气吸入时,萜烯先于大麻素被吸入。与用于生产它们的大麻植物相比,商业医用大麻制品中萜烯(主要是单萜烯)含量不足。术语,如“全植物”和“全谱”是有误导性的,因为没有一种产品实际上反映了原始大麻植物的成分。这对医用大麻的制造以及充分利用萜烯 API 贡献有重要影响。医用大麻产品的组成和产品输送由各种 API 的相对蒸气压控制。本研究提供的定量数据可用于改进,以达到更好的准确性、重现性和首选医用大麻成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2c2/10249740/3a365aff0371/can.2021.0173_figure1.jpg

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