樟科生物碱。

Q1 Biochemistry, Genetics and Molecular Biology Alkaloids: Chemistry and Biology Pub Date : 2019-01-01 Epub Date: 2019-02-26 DOI:10.1016/bs.alkal.2018.11.002
Maria Madalena Rocha Silva Teles, Anderson Angel Vieira Pinheiro, Celidarque Da Silva Dias, Josean Fechine Tavares, José Maria Barbosa Filho, Emidio Vasconcelos Leitão Da Cunha
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引用次数: 8

摘要

本章概述了樟科植物中发现的生物碱的化学和药理学。以信息丰富、易于理解的表格概述了樟科植物中生物碱的分布及其化学结构。在樟科植物中,Ocotea属(195)、Litsea属(180)、Cryptocarya属(133)和Neolitsea属(110)在生物碱含量方面发表的文章较多。提供了有关这些生物碱结构的有价值和全面的信息。在23个属中的22个属中发现了阿啡型生物碱,代表了这个科的优势群。许多分离的生物碱具有独特的结构。从该科植物中分离出22种不同类型的骨架,其中只有嘌呤类生物碱被归类为假生物碱,苯乙胺类、苯乙基肉桂酸类和邻苯二甲酸异喹啉类被归类为原生物碱。本章是为科学界做出的贡献,主要是为了在樟科的物种中寻找生物碱。
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Alkaloids of the Lauraceae.

This chapter presents an overview of the chemistry and pharmacology of the alkaloids found in species of the Lauraceae family. The occurrence of alkaloids from Lauraceae species as well as their chemical structures is summarized in informative and easy-to-understand tables. Within the Lauraceae family, the genera Ocotea (195), Litsea (180), Cryptocarya (133), and Neolitsea (110) have led to the greater number of publications regarding alkaloids content. Valuable and comprehensive information about the structure of these alkaloids is provided. The alkaloids of the aporphine type, found in 22 of the 23 genera, represent the predominant group in this family. Many of the isolated alkaloids exhibit unique structures. From plants of this family, 22 different types of skeletons have been isolated, among them only the purine alkaloids are classified as pseudoalkaloids, and the types phenethylamines, phenethylcinnamides, and phthalidoisoquinoline are classified as protoalkaloids. The chapter is presented as a contribution for the scientific community, mainly to enable the search for alkaloids in species belonging to the Lauraceae family.

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来源期刊
Alkaloids: Chemistry and Biology
Alkaloids: Chemistry and Biology Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
13.70
自引率
0.00%
发文量
21
期刊最新文献
Preface. Structural variety and pharmacological potential of naphthylisoquinoline alkaloids. Structure, biosynthesis and activity of indolactam alkaloids. The synthetic chemistry of sarpagine-ajmaline-type alkaloids. Chemistry and biology of ent-morphinan alkaloids.
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