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原位脱羧-加压热水萃取法结合化学计量学方法从[具体物质]中选择性萃取大麻素。 (你提供的原文中“from”后面似乎缺失了具体的物质,我按照完整的句子结构进行了翻译。如果原文完整内容不是这样,请补充后再让我翻译。)

In Situ Decarboxylation-Pressurized Hot Water Extraction for Selective Extraction of Cannabinoids from Chemometric Approach.

作者信息

Nuapia Yannick, Maraba Kgomotso, Tutu Hlanganani, Chimuka Luke, Cukrowska Ewa

机构信息

Molecular Sciences Institute, School of Chemistry, University of Witwatersrand, Private Bag X3, Johannesburg 2050, South Africa.

School of Animal, Plant and Environmental Sciences, University of the Witwatersrand, Johannesburg 2050, South Africa.

出版信息

Molecules. 2021 Jun 2;26(11):3343. doi: 10.3390/molecules26113343.

Abstract

Isolation of the therapeutic cannabinoid compounds from () is important for the development of cannabis-based pharmaceuticals for cancer treatment, among other ailments. The main pharmacological cannabinoids are THC and CBD. However, THC also induces undesirable psychoactive effects. The decarboxylation process converts the naturally occurring acidic forms of cannabinoids, such as cannabidiolic acid (CBDA) and tetrahydrocannabinolic acid (THCA), to their more active neutral forms, known as cannabidiol (CBD) and tetrahydrocannabinol (THC). The purpose of this study was to selectively extract cannabinoids using a novel in situ decarboxylation pressurized hot water extraction (PHWE) system. The decarboxylation step was evaluated at different temperature (80-150 °C) and time (5-60 min) settings to obtain the optimal conditions for the decarboxylation-PHWE system using response surface methodology (RSM). The system was optimized to produce cannabis extracts with high CBD content, while suppressing the THC and CBN content. The identification and quantification of cannabinoid compounds were determined using UHPLC-MS/MS with external calibration. As a result, the RSM has shown good predictive capability with a -value < 0.05, and the chosen parameters revealed to have a significant effect on the CBD, CBN and THC content. The optimal decarboxylation conditions for an extract richer in CBD than THC were set at 149.9 °C and 42 min as decarboxylation temperature and decarboxylation time, respectively. The extraction recoveries ranged between 96.56 and 103.42%, 95.22 and 99.95%, 99.62 and 99.81% for CBD, CBN and THC, respectively.

摘要

从()中分离出治疗性大麻素化合物对于开发用于癌症治疗及其他疾病的大麻基药物至关重要。主要的药理大麻素是四氢大麻酚(THC)和大麻二酚(CBD)。然而,THC也会产生不良的精神活性作用。脱羧过程将天然存在的酸性形式的大麻素,如大麻二酚酸(CBDA)和四氢大麻酚酸(THCA),转化为其活性更高的中性形式,即大麻二酚(CBD)和四氢大麻酚(THC)。本研究的目的是使用新型原位脱羧加压热水萃取(PHWE)系统选择性地提取大麻素。使用响应面法(RSM)在不同温度(80 - 150°C)和时间(5 - 60分钟)设置下评估脱羧步骤,以获得脱羧 - PHWE系统的最佳条件。该系统经过优化,可生产出CBD含量高、同时抑制THC和CBN含量的大麻提取物。使用超高效液相色谱 - 串联质谱(UHPLC - MS/MS)结合外标法对大麻素化合物进行鉴定和定量。结果表明,RSM具有良好的预测能力,p值<(此处原文缺失具体数值)0.05,所选参数对CBD、CBN和THC含量有显著影响。对于CBD含量高于THC的提取物,最佳脱羧条件设定为脱羧温度149.9°C和脱羧时间42分钟。CBD、CBN和THC的提取回收率分别在96.56%至103.42%、95.22%至99.95%、99.62%至99.81%之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa95/8199533/1f4db1dfa217/molecules-26-03343-g001.jpg

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