Biosynthesis, total synthesis, and biological profiles of Ergot alkaloids.

Q1 Biochemistry, Genetics and Molecular Biology
Alkaloids: Chemistry and Biology Pub Date : 2021-01-01 Epub Date: 2020-09-30 DOI:10.1016/bs.alkal.2020.08.001
Nikhil R Tasker, Peter Wipf
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引用次数: 9

Abstract

While the use of ergot alkaloids in folk medicine has been practiced for millennia, systematic investigations on their therapeutic potential began about 100 years ago. Subsequently, Albert Hofmann's discovery of lysergic acid diethylamide (LSD) and its intense psychedelic properties garnered worldwide attention and prompted further studies of this compound class. As a result, several natural ergot alkaloids were discovered and unnatural analogs were synthesized, and some were used to treat an array of maladies, including Alzheimer's and Parkinson's disease. While LSD was never commercially approved, recent clinical studies have found it can be an innovative and effective treatment option for several psychiatric disorders. Ongoing biosynthetic and total synthetic investigations aim to understand the natural origins of ergot alkaloids, help develop facile means to produce these natural products and enable their continued use as medicinal chemistry lead structures. This review recounts major developments over the past 20 years in biosynthetic, total synthetic, and pharmaceutical studies. Many ergot alkaloid biosynthetic pathways have been elucidated, with some of them subsequently applied toward "green" syntheses. New chemical methodologies have fostered a fast and efficient access to the ergoline scaffold, prompting some groups to investigate biological properties of natural product-like ergot alkaloids. Limited pharmaceutical applications have yet to completely bypass the undesirable side effects of ergotism, suggesting further studies of this drug class are likely needed and will potentially harness major therapeutic significance.

麦角生物碱的生物合成、全合成及生物学特性。
虽然麦角生物碱在民间医学中的使用已经有上千年的历史,但对其治疗潜力的系统调查始于大约100年前。随后,艾伯特·霍夫曼(Albert Hofmann)发现了麦角酸二乙胺(LSD)及其强烈的致幻剂特性,引起了全世界的关注,并促进了这类化合物的进一步研究。结果,人们发现了几种天然麦角生物碱,并合成了非天然的类似物,其中一些被用于治疗一系列疾病,包括阿尔茨海默病和帕金森病。虽然LSD从未获得商业批准,但最近的临床研究发现,它可以成为几种精神疾病的创新和有效治疗选择。正在进行的生物合成和全合成研究旨在了解麦角生物碱的天然来源,帮助开发生产这些天然产物的简便方法,并使其继续作为药物化学先导结构使用。这篇综述叙述了过去20年来生物合成、全合成和药物研究的主要进展。许多麦角生物碱的生物合成途径已被阐明,其中一些随后应用于“绿色”合成。新的化学方法促进了对麦角碱支架的快速和有效的获取,促使一些小组研究天然产物如麦角生物碱的生物学特性。有限的药物应用尚未完全绕过麦角肽的不良副作用,这表明这类药物的进一步研究可能是必要的,并且可能具有重大的治疗意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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
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