A novel eudesmol derivative from the leaf essential oil of Guatteria friesiana (Annonaceae) and evaluation of the antinociceptive activity.

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Emmanoel V Costa, Leociley R Alencar Menezes, Lívia M Dutra, Maria Lúcia B Pinheiro, Érica M Lavor, Mariana G Silva, Cristiane Dos S C Alves, Jackson R G S Almeida, Felipe Moura A da Silva, Hector H F Koolen, Andersson Barison
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引用次数: 1

Abstract

In the present study, it was evaluated the chemical composition and the antinociceptive activity of the essential oil obtained from the leaves of Guatteria friesiana. Seven compounds corresponding to 96.2% of the crude essential oil were identified. The main components identified were the mixture of β-eudesmol and α-eudesmol (58.1%), and γ-eudesmol (16.8%). A new α-eudesmol derivative, named 5-hydroxy-α-eudesmol, was isolated together with the known compounds β-eudesmol and a mixture of α-eudesmol, β-eudesmol and γ-eudesmol of the essential oil. The chemical structures were determined by 1D and 2D NMR, and MS experiments. Essential oil has significant antinociceptive properties, which are related probably with the involvement of the opioid receptors and K+-ATP channels.

从番石榴叶精油中提取一种新型苦参酚衍生物及抗伤活性评价。
本研究对从瓜叶中提取的精油的化学成分和抗伤活性进行了研究。共鉴定出7个化合物,占粗挥发油的96.2%。主要成分为β-eudesmol和α-eudesmol的混合物(58.1%)和γ-eudesmol(16.8%)。与已知化合物β-eudesmol以及α-eudesmol、β-eudesmol和γ-eudesmol的混合物一起分离得到一个新的α-eudesmol衍生物,命名为5-羟基-α-eudesmol。通过一维、二维核磁共振和质谱实验确定了其化学结构。精油具有显著的抗伤害性,这可能与阿片受体和K+-ATP通道的参与有关。
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
CiteScore
4.10
自引率
5.00%
发文量
55
期刊介绍: A Journal of Biosciences: Zeitschrift für Naturforschung C (ZNC) is an international scientific journal and a community resource for the emerging field of natural and natural-like products. The journal publishes original research on the isolation (including structure elucidation), bio-chemical synthesis and bioactivities of natural products, their biochemistry, pharmacology, biotechnology, and their biological activity and innovative developed computational methods for predicting the structure and/or function of natural products. A Journal of Biosciences: Zeitschrift für Naturforschung C (ZNC) welcomes research papers in fields on the chemistry-biology boundary which address scientific ideas and approaches to generate and understand natural compounds on a molecular level and/or use them to stimulate and manipulate biological processes.
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