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探索复杂混合物中植物源次生代谢产物的意义、提取及表征

Exploring the Significance, Extraction, and Characterization of Plant-Derived Secondary Metabolites in Complex Mixtures.

作者信息

Barthwal Ruchi, Mahar Rohit

机构信息

Department of Chemistry, Hemvati Nandan Bahuguna Garhwal University (A Central University), Srinagar Garhwal 246174, Uttarakhand, India.

出版信息

Metabolites. 2024 Feb 11;14(2):119. doi: 10.3390/metabo14020119.

Abstract

Secondary metabolites are essential components for the survival of plants. Secondary metabolites in complex mixtures from plants have been adopted and documented by different traditional medicinal systems worldwide for the treatment of various human diseases. The extraction strategies are the key components for therapeutic development from natural sources. Polarity-dependent solvent-selective extraction, acidic and basic solution-based extraction, and microwave- and ultrasound-assisted extraction are some of the most important strategies for the extraction of natural products from plants. The method needs to be optimized to isolate a specific class of compounds. Therefore, to establish the mechanism of action, the characterization of the secondary metabolites, in a mixture or in their pure forms, is equally important. LC-MS, GC-MS, and extensive NMR spectroscopic strategies are established techniques for the profiling of metabolites in crude extracts. Various protocols for the extraction and characterization of a wide range of classes of compounds have been developed by various research groups and are described in this review. Additionally, the possible means of characterizing the compounds in the mixture and their uniqueness are also discussed. Hyphenated techniques are crucial for profiling because of their ability to analyze a vast range of compounds. In contrast, inherent chemical shifts make NMR an indispensable tool for structure elucidation in complex mixtures.

摘要

次生代谢产物是植物生存的重要组成部分。来自植物的复杂混合物中的次生代谢产物已被世界各地不同的传统医学体系采用并记录,用于治疗各种人类疾病。提取策略是天然来源治疗开发的关键组成部分。基于极性的溶剂选择性提取、基于酸性和碱性溶液的提取以及微波和超声辅助提取是从植物中提取天然产物的一些最重要策略。该方法需要优化以分离特定类别的化合物。因此,为了确定作用机制,混合物或纯形式的次生代谢产物的表征同样重要。液相色谱 - 质谱联用(LC-MS)、气相色谱 - 质谱联用(GC-MS)以及广泛的核磁共振光谱策略是用于分析粗提物中代谢物的成熟技术。各个研究小组已经开发了各种用于提取和表征多种类化合物的方案,并在本综述中进行了描述。此外,还讨论了表征混合物中化合物的可能方法及其独特性。联用技术对于分析至关重要,因为它们能够分析大量化合物。相比之下,固有的化学位移使核磁共振成为复杂混合物中结构解析不可或缺的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e62/10890687/31242681fe82/metabolites-14-00119-g001.jpg

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