The Genus Stauntonia DC.: Botany, Phytochemistry, Bioactivity, and Application.

IF 1.6 4区 医学 Q4 BIOCHEMICAL RESEARCH METHODS
Ming-San Miao, Shuo Tian, Wen-Min Liu, Qin-Ge Ma, Rong-Rui Wei, Zhi-Hui Zhang
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引用次数: 0

Abstract

Background: The plants of genus Stauntonia DC. are important Chinese medicines. To better develop and utilize the edible and medicinal values of Stauntonia DC., the botany, phytochemistry, bioactivity, and application of genus Stauntonia DC. plants were summarized in this review.

Methods: The references of genus Stauntonia DC. were obtained from multiple databases, including ScienceDirect, Web of Science, Elsevier, SciFinder, PubMed, Willy, Baidu Scholar, Google Scholar, Scopus, SciHub, CNKI, and ancient classics on Chinese herbal medicine. The Latin names presented in the review are retrieved by the World Flora Online (http://www.worldfloraonline.org/) and the updated version of "The Plant List".

Results: A total number of 267 compounds were isolated from the plants of genus Stauntonia DC., which were classified as pentacyclic triterpenoids and their glycosides, methylated pentacyclic triterpenoids and their glycosides, phenylpropanoids, flavonoids, and so on. The bioactivities of genus Stauntonia DC. plants are diverse, including analgesic, anti-inflammatory, anti-cancer, hyperphilidemic, anti-oxidant, and other activities. The fruits from plants of genus Stauntonia DC. are edible, and seeds can be used for oil extraction.

Conclusion: This review analysized and summarized the contents of botany, phytochemistry, bioactivity, application of genus Stauntonia DC. plants, which provided a comprehensive information resource for development and utilization of genus Stauntonia DC. plants.

水仙属。:植物学、植物化学、生物活性与应用。
背景:水仙属植物。是重要的中药。为了更好地开发和利用水仙的食用和药用价值。综述了水仙属植物的植物学、植物化学、生物活性及其应用。本文对植物进行了综述。方法:选取水仙属植物。数据来源于ScienceDirect、Web of Science、Elsevier、SciFinder、PubMed、Willy、百度Scholar、谷歌Scholar、Scopus、SciHub、CNKI等数据库和中草药古籍。该文中出现的拉丁名称可通过World Flora Online (http://www.worldfloraonline.org/)和更新版的“The Plant List”检索。结果:从水藤属植物中共分离得到267个化合物。分类为五环三萜及其苷类、甲基化五环三萜及其苷类、苯丙类、黄酮类等。水仙属植物的生物活性研究。植物是多种多样的,包括镇痛、抗炎、抗癌、高亢、抗氧化等多种活性。水仙属植物的果实。可食用,种子可用于榨油。结论:本文对水仙属植物的植物学、植物化学、生物活性、应用等方面的研究内容进行了分析和综述。为水蛭属植物的开发利用提供了全面的信息资源。植物。
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来源期刊
CiteScore
3.10
自引率
5.60%
发文量
327
审稿时长
7.5 months
期刊介绍: Combinatorial Chemistry & High Throughput Screening (CCHTS) publishes full length original research articles and reviews/mini-reviews dealing with various topics related to chemical biology (High Throughput Screening, Combinatorial Chemistry, Chemoinformatics, Laboratory Automation and Compound management) in advancing drug discovery research. Original research articles and reviews in the following areas are of special interest to the readers of this journal: Target identification and validation Assay design, development, miniaturization and comparison High throughput/high content/in silico screening and associated technologies Label-free detection technologies and applications Stem cell technologies Biomarkers ADMET/PK/PD methodologies and screening Probe discovery and development, hit to lead optimization Combinatorial chemistry (e.g. small molecules, peptide, nucleic acid or phage display libraries) Chemical library design and chemical diversity Chemo/bio-informatics, data mining Compound management Pharmacognosy Natural Products Research (Chemistry, Biology and Pharmacology of Natural Products) Natural Product Analytical Studies Bipharmaceutical studies of Natural products Drug repurposing Data management and statistical analysis Laboratory automation, robotics, microfluidics, signal detection technologies Current & Future Institutional Research Profile Technology transfer, legal and licensing issues Patents.
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