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大麻的采后操作及其对大麻素含量的影响:综述

Postharvest Operations of Cannabis and Their Effect on Cannabinoid Content: A Review.

作者信息

Das Pabitra Chandra, Vista Alec Roger, Tabil Lope G, Baik Oon-Doo

机构信息

Department of Chemical and Biological Engineering, University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada.

出版信息

Bioengineering (Basel). 2022 Aug 3;9(8):364. doi: 10.3390/bioengineering9080364.

Abstract

In recent years, cannabis ( L.) has been legalized by many countries for production, processing, and use considering its tremendous medical and industrial applications. Cannabis contains more than a hundred biomolecules (cannabinoids) which have the potentiality to cure different chronic diseases. After harvesting, cannabis undergoes different postharvest operations including drying, curing, storage, etc. Presently, the cannabis industry relies on different traditional postharvest operations, which may result in an inconsistent quality of products. In this review, we aimed to describe the biosynthesis process of major cannabinoids, postharvest operations used by the cannabis industry, and the consequences of postharvest operations on the cannabinoid profile. As drying is the most important post-harvest operation of cannabis, the attributes associated with drying (water activity, equilibrium moisture content, sorption isotherms, etc.) and the significance of novel pre-treatments (microwave heating, cold plasma, ultrasound, pulse electric, irradiation, etc.) for improvement of the process are thoroughly discussed. Additionally, other operations, such as trimming, curing, packaging and storage, are discussed, and the effect of the different postharvest operations on the cannabinoid yield is summarized. A critical investigation of the factors involved in each postharvest operation is indeed key for obtaining quality products and for the sustainable development of the cannabis industry.

摘要

近年来,鉴于大麻(L.)在医学和工业方面的巨大应用价值,许多国家已将其生产、加工和使用合法化。大麻含有一百多种生物分子(大麻素),具有治愈不同慢性疾病的潜力。收获后,大麻要经过不同的采后处理,包括干燥、养护、储存等。目前,大麻产业依赖于不同的传统采后处理方式,这可能导致产品质量不稳定。在本综述中,我们旨在描述主要大麻素的生物合成过程、大麻产业所采用的采后处理方式,以及采后处理对大麻素谱的影响。由于干燥是大麻最重要的采后处理操作,因此我们深入讨论了与干燥相关的属性(水分活度、平衡水分含量、吸附等温线等)以及新型预处理(微波加热、冷等离子体、超声、脉冲电场、辐照等)对改进该过程的重要性。此外,还讨论了其他操作,如修剪、养护、包装和储存,并总结了不同采后处理对大麻素产量的影响。对每个采后处理所涉及的因素进行批判性研究,确实是获得优质产品和大麻产业可持续发展的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b69/9404914/8befbbff0c44/bioengineering-09-00364-g001.jpg

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