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冷等离子体、伽马射线和电子束辐照对医用大麻花序中真菌集落形成单位水平降低的影响。

Effects of cold plasma, gamma and e-beam irradiations on reduction of fungal colony forming unit levels in medical cannabis inflorescences.

作者信息

Jerushalmi Shachar, Maymon Marcel, Dombrovsky Aviv, Freeman Stanley

机构信息

Department of Plant Pathology and Weed Research, The Volcani Center, Agriculture Research Organization, 7505101, Rishon Lezion, Israel.

The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, 7610001, Rehovot, Israel.

出版信息

J Cannabis Res. 2020 Feb 28;2(1):12. doi: 10.1186/s42238-020-00020-6.

Abstract

BACKGROUND

The use of medical cannabis (MC) in the medical field has been expanding over the last decade, as more therapeutic beneficial properties of MC are discovered, ranging from general analgesics to anti-inflammatory and anti-bacterial treatments. Together with the intensified utilization of MC, concerns regarding the safety of usage, especially in immunocompromised patients, have arisen. Similar to other plants, MC may be infected by fungal plant pathogens (molds) that sporulate in the tissues while other fungal spores (nonpathogenic) may be present at high concentrations in MC inflorescences, causing a health hazard when inhaled. Since MC is not grown under sterile conditions, it is crucial to evaluate current available methods for reduction of molds in inflorescences that will not damage the active compounds. Three different sterilization methods of inflorescences were examined in this research; gamma irradiation, beta irradiation (e-beam) and cold plasma to determine their efficacy in reduction of fungal colony forming units (CFUs) in vivo.

METHODS

The examined methods were evaluated for decontamination of both uninoculated and artificially inoculated Botrytis cinerea MC inflorescences, by assessing total yeast and mold (TYM) CFU levels per g plant tissue. In addition, e-beam treatment was also tested on naturally infected commercial MC inflorescences.

RESULTS

All tested methods significantly reduced TYM CFUs at the tested dosages. Gamma irradiation reduced CFU levels by approximately 6- and 4.5-log fold, in uninoculated and artificially inoculated B. cinerea MC inflorescences, respectively. The effective dosage for elimination of 50% (ED)TYM CFU of uninoculated MC inflorescence treated with e-beam was calculated as 3.6 KGy. In naturally infected commercial MC inflorescences, e-beam treatments reduced TYM CFU levels by approximately 5-log-fold. A 10 min exposure to cold plasma treatment resulted in 5-log-fold reduction in TYM CFU levels in both uninoculated and artificially inoculated B. cinerea MC inflorescences.

CONCLUSIONS

Although gamma irradiation was very effective in reducing TYM CFU levels, it is the most expensive and complicated method for MC sterilization. Both e-beam and cold plasma treatments have greater potential since they are cheaper and simpler to apply, and are equally effective for MC sterilization.

摘要

背景

在过去十年中,医用大麻(MC)在医学领域的应用不断扩大,因为人们发现了MC更多的治疗有益特性,从一般镇痛药到抗炎和抗菌治疗。随着MC使用的增加,对其使用安全性的担忧也随之出现,尤其是在免疫功能低下的患者中。与其他植物类似,MC可能会被在组织中形成孢子的真菌病原体(霉菌)感染,而其他真菌孢子(非致病性)可能在MC花序中高浓度存在,吸入时会造成健康危害。由于MC不是在无菌条件下种植的,因此评估当前可用的减少花序中霉菌且不损害活性成分的方法至关重要。本研究考察了三种不同的花序灭菌方法;伽马射线辐照、贝塔射线辐照(电子束)和冷等离子体,以确定它们在体内减少真菌菌落形成单位(CFU)的效果。

方法

通过评估每克植物组织中的总酵母和霉菌(TYM)CFU水平,对未接种和人工接种灰葡萄孢菌的MC花序的两种情况,考察所研究的方法的去污效果。此外,还对天然感染的商业MC花序进行了电子束处理测试。

结果

所有测试方法在测试剂量下均显著降低了TYM CFU。伽马射线辐照分别使未接种和人工接种灰葡萄孢菌的MC花序中的CFU水平降低了约6和4.5个对数级。经电子束处理的未接种MC花序消除50%(ED)TYM CFU的有效剂量计算为3.6千戈瑞。在天然感染的商业MC花序中,电子束处理使TYM CFU水平降低了约5个对数级。暴露于冷等离子体处理10分钟导致未接种和人工接种灰葡萄孢菌的MC花序中的TYM CFU水平均降低了5个对数级。

结论

虽然伽马射线辐照在降低TYM CFU水平方面非常有效,但它是MC灭菌最昂贵和最复杂的方法。电子束和冷等离子体处理都有更大的潜力,因为它们更便宜且应用更简单,并且对MC灭菌同样有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ad7/7819314/d45c204f489b/42238_2020_20_Fig1_HTML.jpg

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