探索研究植物化学的途径:方法和技术

Rohit Saxena
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引用次数: 0

摘要

从植物中提取、分离和分析生物活性化合物是药用植物研究的基础。本文综述了从植物材料中提取、分离和分析生物活性化合物的各种技术和方法。传统的方法,如浸渍,渗透和索氏萃取是常用的,但新的技术已经出现,以提高效率和选择性。微波辅助提取(MAE)、超声辅助提取(UAE)、加压液体提取(PLE)、超临界流体提取(SFE)和酶辅助提取是提高产量和效率的现代方法。提取后,需要对生物活性化合物进行表征和分析。色谱技术,如高效液相色谱(HPLC)和气相色谱(GC),通常用于分离和定量。光谱技术,包括核磁共振(NMR)光谱和质谱(MS),提供了有价值的结构信息。提取和分析技术的不断发展促进了植物中生物活性化合物的发现和利用。未来的研究可以探索代谢组学、高通量筛选、化学信息学、网络药理学、多变量数据分析和计算模型来加强植物化学研究。所提出的方法和技术补充了传统的方法,扩大了我们对植物化学及其潜在应用的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EXPLORING APPROACHES FOR INVESTIGATING PHYTOCHEMISTRY: METHODS AND TECHNIQUES
The extraction, isolation, and analysis of bioactive compounds from plants are fundamental in the study of medicinal plants. This review explores various techniques and methods used for the extraction, isolation, and analysis of bioactive compounds from plant materials. Traditional methods such as maceration, percolation, and Soxhlet extraction are commonly used, but novel techniques have emerged to enhance efficiency and selectivity. Microwave-assisted extraction (MAE), ultrasound-assisted extraction (UAE), pressurized liquid extraction (PLE), supercritical fluid extraction (SFE), and enzyme-assisted extraction are modern approaches that offer improved yields and efficiency. After extraction, bioactive compounds need to be characterized and analyzed. Chromatographic techniques, such as high-performance liquid chromatography (HPLC) and gas chromatography (GC), are commonly employed for separation and quantification. Spectroscopic techniques, including nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MS), provide valuable structural information. The continuous development of extraction and analytical techniques contributes to the discovery and utilization of bioactive compounds from plants in various applications. Future research can explore metabolomics, high-throughput screening, chemoinformatics, network pharmacology, multivariate data analysis, and computational modeling to enhance phytochemical investigations. The proposed methods and techniques complement traditional approaches, expanding our understanding of plant chemistry and its potential applications.
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