鹅掌楸精油的成分组成和抗菌活性

O. Askarova, K. Bobakulov, S. Sasmakov, Tulkin Sadullaev, E. Botirov
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摘要

从生长在乌兹别克斯坦共和国纳曼干地区的植物 Perovskia angustifolia Kudr.的风干和新鲜地上部分通过水蒸馏获得的精油(EO)的成分组成。通过气相色谱-质谱(GC-MS)分析,在风干植物的环氧乙烷成分中发现了 57 种化合物,而在新鲜植物的环氧乙烷成分中发现了 46 种物质,分别占环氧乙烷总量的 94.0% 和 96.2%。 风干和新鲜气生部分的主要环氧乙烷成分都是 1,8-蒎烯,其含量分别为 24.2% 和 25.1%。风干植物的环氧乙烷中含有樟脑(8.6%)、内龙脑(7.3%)、乙酸龙脑酯(6.2%)、茶叶烯(4.4%)、α-胡麻烯(4.1%)、δ-石竹烯(3.8%)和其他成分。在新鲜植物的环氧乙烷成分中,除了 1,8-cineol,主要成分还有樟脑(13.8%)、内龙脑(8.6%)、乙酸冰片酯(7.0%)、γ-萜品烯(7.0%)、间千层烯(5.2%)、Δ-3-蒈烯(4.5%)、δ-cadinene(2.9%)。P. angustifolia 的气生部分是 1,8-松油的丰富来源,可用于治疗支气管炎、呼吸道感冒、慢性和炎症性呼吸道疾病。 从风干的 P. angustifolia 的气生部分提取的 EO 对测试菌株的革兰氏阳性和革兰氏阴性细菌有明显的抗菌和抗真菌作用,而革兰氏阳性细菌枯草杆菌和金黄色葡萄球菌对精油的作用最敏感。
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COMPONENT COMPOSITION AND ANTIMICROBIAL ACTIVITY OF PEROVSKIA ANGUSTIFOLIA ESSENTIAL OIL
The component composition of the essential oil (EO) obtained by hydrodistillation from the air-dry and fresh aboveground parts of the plant Perovskia angustifolia Kudr., growing on the territory of the Namangan region of the Republic of Uzbekistan. By GC-MS, 57 compounds were identified in the composition of the EO from the air-dried plant, while 46 substances were found in the composition of the EO from the fresh plant, which is 94.0 and 96.2% of the total amount of EOs, respectively. The main EO components of both the air-dry and fresh aerial parts are 1,8-cineole, its content is 24.2 and 25.1%, respectively. EO from an air-dry plant contains camphor (8.6%), endoborneol (7.3%), bornyl acetate (6.2%), caryophyllene (4.4%), α-humulene (4.1%), δ-cadinene (3.8%) and other connections. The dominant components in the composition of EO from a fresh plant, in addition to 1,8-cineol, are camphor (13.8%), endoborneol (8.6%), bornyl acetate (7.0%), γ-terpinene (7.0%), m-cymene (5.2% ), Δ-3-karene (4.5%), δ-cadinene (2.9%). The aerial part of P. angustifolia can serve as a rich source of 1,8-cineole, which is used in bronchitis, colds of the respiratory tract, chronic and inflammatory respiratory diseases. EO from the aerial part of the air-dry P. angustifolia exhibits a noticeable antimicrobial and antifungal effect against test strains of gram-positive, gram-negative bacteria, while gram-positive bacteria Bacillus subtilis and Staphylococcus aureus turned out to be the most sensitive to the effects of essential oil.
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