The effect of sowing rate on the bioaccumulation of biologically active compounds and their radical scavenging activity in Cannabis sativa L

IF 0.5 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
Chemija Pub Date : 2022-12-09 DOI:10.6001/chemija.v33i4.4811
Ieva Čalkaitė, Algimanta Kundrotaitė, V. Tilvikienė, K. Barčauskaitė
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引用次数: 2

Abstract

Industrial hemp (Cannabis sativa L.) is a very beneficial plant because it is characterised as easy adaptable and advantageous raw material for many products which are used in daily life. Hempseeds are investigated most of all, but there is no a lot of information about other parts of this plant (stem, leaves and inflorescences). In this study, polyphenolic compounds, flavonoids and the radical scavenging activity of Cannabis sativa L. were investigated. The influence of two different sowing rates (15 and 80 plants per square meter) and two solvents on the recovery of biologically active compounds was determined. Spectrophotometric tests were used for the identification of phenolic compounds and flavonoids content and their radical scavenging activity. It was found that industrial hemp which grew in the sparse area accumulated more biologically active compounds and was a better radical scavenger than the other one, which grew under denser conditions. Moreover, it was determined that polyphenolic compounds dissolved better in methanol and thus showed better radical scavenging properties while flavonoids dissolved better in ethanol.
播量对大麻生物活性物质积累及其自由基清除活性的影响
工业大麻(大麻sativa L.)是一种非常有益的植物,因为它的特点是适应性强,是许多日常生活中使用的产品的有利原料。对大麻种子的研究最多,但对这种植物的其他部分(茎、叶和花序)的研究却不多。研究了大麻中多酚类化合物、黄酮类化合物和自由基清除活性。测定了两种不同播量(15株/ m2和80株/ m2)和两种溶剂对生物活性化合物回收率的影响。用分光光度法测定了黄酮类化合物和酚类化合物的含量及其清除自由基的活性。研究发现,生长在稀疏地区的工业大麻比生长在密集地区的工业大麻积累了更多的生物活性物质,具有更好的自由基清除能力。此外,多酚类化合物在甲醇中溶解性较好,具有较好的自由基清除能力,而黄酮类化合物在乙醇中溶解性较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemija
Chemija 化学-化学综合
CiteScore
1.30
自引率
16.70%
发文量
14
审稿时长
>12 weeks
期刊介绍: Chemija publishes original research articles and reviews from all branches of modern chemistry, including physical, inorganic, analytical, organic, polymer chemistry, electrochemistry, and multidisciplinary approaches.
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