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GC-MS Study of the Chemical Components of Different (Lour.) Gilgorgans and Agarwood from Different Asian Countries. | LitMetric

GC-MS Study of the Chemical Components of Different (Lour.) Gilgorgans and Agarwood from Different Asian Countries.

Molecules

Key Laboratory of Bio-Based Material Science and Technology (Ministry of Education), College of Material Science and Engineering, Northeast Forestry University, Harbin 150040, China.

Published: August 2018


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Article Abstract

As a traditional medicinal herb and valuable natural spice in China, (Lour.) Gilg has many significant pharmacological effects. Agarwood is the resinous heartwood acquired from wounded trees, and is widely used in pharmaceuticals owing to its excellent medicinal value. In this study, the chemical composition of volatile components and alcohol extracts from different organs of and agarwoods grown in different regions were investigated using GC-MS. The results showed that Vietnam agarwood had the highest moisture content, which was attributed to the local climate, while the fruit and bark of had higher moisture contents than the other organs. The volatile components of organs included 3-ethyl-5-(2-ethylbutyl)-octadecane, oleic acid 3-(octadecyloxy) propyl ester, and docosanoic acid 1,2,3-propanetriyl ester, while the alcohol extracts of organs contained benzoic acid ethyl ester, hexadecanoic acid ethyl ester, oleic acid, and -hexadecanoic acid. Furthermore, the main active ingredients in agarwood from different habitats were sesquiterpenoids, aromatic species, and chromone compounds. The role of chromone compound 2-phenylethyl-benzopyran as an elicitor and the mechanism of agarwood formation were also investigated. Antioxidant tests showed that essential oils from agarwood and had antioxidant capacities by comparison with butylated hydroxytoluene and vitamin E. An antibacterial activity test showed that the inhibition effect of the essential oil was better against Gram-positive bacteria than against Gram-negative bacteria.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6225301PMC
http://dx.doi.org/10.3390/molecules23092168DOI Listing

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