适合 "微剂量 "应用的固体 Δ9-Tetrahydrocannabinol 纳米制剂的合理设计、合成和表征。

IF 3.1 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Cannabis and Cannabinoid Research Pub Date : 2024-10-01 Epub Date: 2023-08-09 DOI:10.1089/can.2023.0084
Abhinandan Banerjee, William Hosie, Ana Carolina Terso Ventura, Kasra Razmkhah, Joseph Bautista, Afeson Beyene, Justin Binder, John F Trant
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引用次数: 0

摘要

背景:本文重点介绍了用纯四氢大麻酚蒸馏物制备的固体Δ9-四氢大麻酚(THC)摄取剂的配方。方法:采用溶剂置换技术制备了含 THC 的乙醇辅助大麻素纳米乳液(EACNE)。随后,EACNE 被转化为固体粉末状材料,同时仍保留其四氢大麻酚的效力,这种形式非常适合 "微剂量 "应用。结果EACNE 的平均脂滴大小为 190 纳米,多分散指数为 0.15,平均液滴ζ电位为 -49±10 mV。经高效液相色谱分析确定,纳米乳液(NE)的胶体稳定性至少持续了 6 周,在实验期间大麻素效力没有明显变化。EACNE 在受到物理应力(如高温、冻融循环、碳酸化、稀释至饮料浓度、高浓度蔗糖以及 5 至 8 之间的 pH 值范围)时仍保持稳定。微胶囊化的 EACNE 表现出有限的自由流动性,但可在水中自由再分散,没有任何明显的相分离。结论:我们报告了四氢大麻酚 NE 的设计、制作和特性分析,无需使用微流体器或高压匀浆器等专业设备。这种乳液可以很容易地转化为水可再分散粉末。本发明特别适用于四氢大麻酚的 "微剂量",这种做法可能会将四氢大麻酚的健康益处与其精神作用分离开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rational Design, Synthesis, and Characterization of a Solid Δ9-Tetrahydrocannabinol Nanoformulation Suitable for "Microdosing" Applications.

Background: This article highlights the formulation of a solid Δ9-tetrahydrocannabinol (THC)-loaded ingestible prepared from pure THC distillate. Methods: A THC-containing ethanol-assisted cannabinoid nanoemulsion (EACNE) was created using a solvent displacement technique. Subsequently, the EACNE was converted to a solid powdery material while still retaining its THC potency, a format uniquely suited for "microdosing" applications. Results: EACNE had an average lipid droplet size of ∼190 nm, with a polydispersity index of 0.15, and an average droplet ζ potential of -49±10 mV. The nanoemulsion (NE) was colloidally stable for at least 6 weeks, with no meaningful change in cannabinoid potency over the experimental period, as determined by high-performance liquid chromatography analysis. The EACNE remained stable when subjected to physical stresses such as heat, freeze/thaw cycles, carbonation, dilution to beverage concentrations, high sucrose concentrations, and a pH range between 5 and 8. The microencapsulated EACNE demonstrated limited free-flowing behavior but was freely redispersible in water without any visible phase separation. Conclusions: We report the design, creation, and characterization of a THC NE generated without the use of specialized equipment, such as a microfluidizer or a high-pressure homogenizer. This emulsion could readily be converted to a water-redispersible powder. This embodiment is particularly suited for THC "microdosing," a practice that might decouple the health benefits of THC from its psychotropic effects.

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来源期刊
Cannabis and Cannabinoid Research
Cannabis and Cannabinoid Research PHARMACOLOGY & PHARMACY-
CiteScore
6.80
自引率
7.90%
发文量
164
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