当归邻苯酞单体手性测定及抗炎活性研究。

IF 3.3 2区 生物学 Q2 CHEMISTRY, MEDICINAL
Shuai Zhang, Hong-Ting Luo, Ke-Xin Fan, Chun-Xia Liu, Zhao-Han Wang, Chu-Ning Huang, Yong-Heng Wang, Yi-Fang Li, Rong-Rong He, Xin-Luan Wang, Jian Zou, Xin-Sheng Yao, Hao Gao
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引用次数: 0

摘要

当归,俗称当归,是一种著名的药用和食用植物。邻苯酞单体是中华沙棘的主要生物活性成分,但其光学纯度和绝对构型尚不清楚。从中华沙棘中分离到3个新的邻苯酞单体(1-3)和10个已知的邻苯酞单体(4-13);系统地阐明了它们的手性分辨率、绝对构型和抗炎活性。本研究总结了当贵中邻苯酞单体衍生物的光学纯度特征,发现衍生物的光学纯度受其手性中心位置的显著影响。当手性中心位于六元环或正丁基链时,衍生化反应无手性选择性,生成外消旋物。而当手性中心位于五元环的C-8位时,衍生化反应表现出明显的手性选择性,有利于形成以s构型为主的标度混合物。该研究为确定中华白杨及其近缘种邻苯酞的立体化学性质提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chirality Determination and Anti-inflammatory Activity of Phthalide Monomers in Angelica sinensis.

Angelica sinensis, commonly known as Dang-gui, is a renowned medicinal and edible plant. Phthalide monomers are the key bioactive components in A. sinensis, yet their optical purities and absolute configurations remain unclear. In this study, three new phthalide monomers (1-3) and 10 known ones (4-13) were isolated from A. sinensis; their chiral resolutions, absolute configurations, and anti-inflammatory activities were systematically elucidated. Our study summarizes the optical purity characteristics of phthalide monomer derivatives in Dang-gui, revealing that the optical purity of the derivatives is significantly influenced by the position of their chiral centers. When the chiral center is located at the six-membered ring or the n-butyl chain, the derivatization reaction exhibits no chiral selectivity, yielding racemates. In contrast, when the chiral center is at C-8 on the five-membered ring, the derivatization reaction shows significant chiral selectivity, favoring the formation of scalemic mixtures dominated by the S-configuration. This study provides critical insights for defining the stereochemistry of phthalides in A. sinensis and related species.

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来源期刊
CiteScore
9.10
自引率
5.90%
发文量
294
审稿时长
2.3 months
期刊介绍: The Journal of Natural Products invites and publishes papers that make substantial and scholarly contributions to the area of natural products research. Contributions may relate to the chemistry and/or biochemistry of naturally occurring compounds or the biology of living systems from which they are obtained. Specifically, there may be articles that describe secondary metabolites of microorganisms, including antibiotics and mycotoxins; physiologically active compounds from terrestrial and marine plants and animals; biochemical studies, including biosynthesis and microbiological transformations; fermentation and plant tissue culture; the isolation, structure elucidation, and chemical synthesis of novel compounds from nature; and the pharmacology of compounds of natural origin. When new compounds are reported, manuscripts describing their biological activity are much preferred. Specifically, there may be articles that describe secondary metabolites of microorganisms, including antibiotics and mycotoxins; physiologically active compounds from terrestrial and marine plants and animals; biochemical studies, including biosynthesis and microbiological transformations; fermentation and plant tissue culture; the isolation, structure elucidation, and chemical synthesis of novel compounds from nature; and the pharmacology of compounds of natural origin.
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