Meehan-Atrash Jiries, Luo Wentai, McWhirter Kevin J, Strongin Robert M
Department of Chemistry and Department of Civil and Environmental Engineering, Portland State University, Portland, Oregon 97207-0751, United States.
ACS Omega. 2019 Sep 16;4(14):16111-16120. doi: 10.1021/acsomega.9b02301. eCollection 2019 Oct 1.
Consumption of cannabis by nontraditional methods has surged since the advent of legalization in North America and worldwide. Inhaling cannabis extracts using vaporizers and via dabbing has risen in popularity, while concerns over product safety have not hindered their proliferation. The work herein is the first step toward assessing the safety of vaporizing and dabbing concentrated cannabis extracts as a function of gas-phase reaction products. The gas-phase thermal degradants of Δ-tetrahydrocannabinol (THC) have not been previously investigated. It was found that users may be exposed to concerning degradants such as methacrolein, benzene, and methyl vinyl ketone when using cartridge vaporizers and dabbing. It was shown that THC alone and mixed with terpenes generated similar degradation products and, most notably, elevated levels of isoprene. Importantly, it was shown that added terpenes led to higher levels of gas-phase products compared to THC alone. To estimate cancer and noncancer risks associated with exposure to these and other degradants, quantitative risk assessment was applied to experimentally determined values for dabbing and vaping and literature-sourced levels of hazardous components in cannabis smoke. Overall, gas-phase aerosol products had significantly lower values in dabbing and vaporizing compared to cannabis smoking, although these results should be interpreted in light of potential variations in degradant levels due to disparate usage patterns and the dangers of the higher aerosol concentration of THC.
自北美及全球大麻合法化以来,非传统方式吸食大麻的情况激增。使用蒸发器和通过滴吸方式吸入大麻提取物越来越流行,而对产品安全性的担忧并未阻碍它们的扩散。本文的工作是评估浓缩大麻提取物蒸发和滴吸安全性(作为气相反应产物的函数)的第一步。此前尚未对Δ-四氢大麻酚(THC)的气相热降解产物进行研究。研究发现,使用烟弹蒸发器和滴吸时,使用者可能会接触到诸如甲基丙烯醛、苯和甲基乙烯基酮等令人担忧的降解产物。研究表明,单独的THC以及与萜烯混合时会产生类似的降解产物,最显著的是异戊二烯水平升高。重要的是,研究表明,与单独的THC相比,添加萜烯会导致更高水平的气相产物。为了估计接触这些及其他降解产物所带来的癌症和非癌症风险,将定量风险评估应用于通过实验确定的滴吸和蒸发数值以及大麻烟雾中有害成分的文献来源水平。总体而言,与吸食大麻相比,气相气溶胶产品在滴吸和蒸发时的值显著更低,不过鉴于不同使用模式导致的降解产物水平潜在差异以及THC更高气溶胶浓度的危险性,这些结果应谨慎解读。