四氢大麻酚降解不会影响SyqeAir吸入器雾化四氢大麻酚剂量的准确性:一项为期24个月的稳定性试验。

Joshua Aviram, Daniella Atzmony, Anna Frenklakh, Asaf Kroll, Ilana Zaks, Arno Hazekamp
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引用次数: 0

摘要

背景:虽然世界范围内医用大麻(MC)的使用量正在上升,但关于植物材料中植物大麻素在不同储存条件下的长期稳定性的数据不足。具体而言,关于储存条件对汽化大麻中(-)-∆9-反式四氢大麻酚(THC)可得性的影响的数据不足。Syqe吸入器通过吸入提供计量剂量的植物大麻素,并利用精确数量的地面大麻花序包装在防篡改的药筒中。我们的目的是评估Syqe药筒包装前后磨碎大麻中植物大麻素的稳定性以及四氢大麻酚在雾化剂量中传递的再现性。方法:在Syqe药筒包装前和包装后,分别在不同温度和湿度条件下保存地面的MC花序。采用超高高效液相色谱法(uhplc)分析了不同时间点大麻素中主要植物素的浓度。通过Syqe吸入器雾化的THC剂量使用在25°C下储存长达2年的药筒进行评估。每个蒸汽片含有13.5±0.9毫克的MC粉。结果:在聚丙烯容器中大量储存3个月,并在铝箔袋中密封5°C后,磨碎的大麻花序中的植物大麻素浓度没有明显变化。相比之下,当地面花序在25°C下储存2年时,发现植物大麻素浓度发生了显著变化。其中,CBGA、THCA和总THC浓度分别从基线时的0.097±0.023、2.7±0.3和2.80±0.16 mg/片下降至0.044±0.007(下降55%)、1.50±0.27(下降44%)和2.20±0.083(下降21%)mg/片,CBN和THC浓度分别从基线时的0.005±0.005和0.44±0.11 mg/片上升至0.14±0.006(增加2700%)和0.88±0.22(增加100%)mg/片。在30°C的储存中,植物大麻素浓度在更短的时间内发生了更大的变化。尽管药筒内的相对大麻素成分发生了显著变化,但在此期间,气溶胶中存在的实际THC剂量保持相对稳定,并且在药用级吸入器所需的500mcg±25%的剂量范围内。结论:Syqe药筒中的MC粉在生产后可在室温下保存至少2年,而不影响给患者的四氢大麻酚雾化剂量超过±25%。未来的研究应该分析大麻花序中的其他植物大麻素和萜烯,并评估不同大麻品种在Syqe药筒中储存后的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

THC degradation does not impair the accuracy of THC doses aerosolized by the metered-dose SyqeAir inhaler: a 24-month stability trial.

THC degradation does not impair the accuracy of THC doses aerosolized by the metered-dose SyqeAir inhaler: a 24-month stability trial.

THC degradation does not impair the accuracy of THC doses aerosolized by the metered-dose SyqeAir inhaler: a 24-month stability trial.

THC degradation does not impair the accuracy of THC doses aerosolized by the metered-dose SyqeAir inhaler: a 24-month stability trial.

Background: Although the worldwide use of medical cannabis (MC) is on the rise, there is insufficient data regarding the long-term stability of phytocannabinoids in the plant material under different storage conditions. Specifically, there is insufficient data on the effect of storage conditions on the availability of (-)-∆9-trans-tetrahydrocannabinol (THC) in vaporized cannabis. The Syqe inhaler delivers metered doses of phytocannabinoids by inhalation and utilizes accurate quantities of ground cannabis inflorescence packaged in tamper-proof cartridges. We aimed to assess the stability of phytocannabinoids in ground cannabis before and after packaging in Syqe cartridges as well as the reproducibility of THC delivery in the aerosolized dose.

Methods: Ground MC inflorescence was stored under different temperature and humidity conditions, before or after being packaged in Syqe cartridges. Concentrations of the major phytocannabinoids therein were analyzed at different time points using ultra-high performance liquid chromatography (U-HPLC). THC doses aerosolized via the Syqe inhaler were evaluated using cartridges stored for up to 2 years at 25°C. Every vapor chip contains 13.5±0.9 mg of ground MC powder.

Results: No significant changes were observed in phytocannabinoid concentrations in ground cannabis inflorescence after 3 months of bulk storage in a polypropylene container and sealed in an aluminum foil pouch at 5°C. In contrast, significant changes in phytocannabinoid concentrations were found when ground inflorescence was stored in the cartridges at 25°C for 2 years. Specifically, CBGA, THCA, and total THC concentrations decreased from 0.097±0.023, 2.7±0.3, and 2.80±0.16 mg/chip at baseline to 0.044±0.007 (55% decrease), 1.50±0.27 (44% decrease), and 2.20±0.083 (21% decrease) mg/chip following 2 years, respectively, while CBN and THC concentrations increased from 0.005±0.005 and 0.44±0.11 mg/chip at baseline to 0.14±0.006 (2700% increase) and 0.88±0.22 (100% increase) mg/chip following 2 years, respectively. Storage at 30°C revealed a steeper change in phytocannabinoid concentrations within an even shorter period. Despite the significant change of relative cannabinoid composition within the cartridge, the actual THC dose present in the aerosol remained relatively stable throughout this period and within the dosage range of 500mcg±25% required for pharmaceutical-grade inhalers.

Conclusions: MC powder in Syqe cartridges may be stored at room temperature for at least 2 years after production without affecting the aerosolized THC dose delivered to patients by more than ±25%. Future studies should analyze additional phytocannabinoids and terpenes in the cannabis inflorescence and assess the stability of different cannabis cultivars following storage in Syqe cartridges.

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