苯并吡喃酮--药物发现中的一种特殊支架:美国 FDA 批准的药物和临床候选药物概览。

IF 10.9 1区 医学 Q1 CHEMISTRY, MEDICINAL
Venu Sharma, Ankita Sharma, Bhagyashri N. Wadje, Sandip B. Bharate
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引用次数: 0

摘要

天然产物一直是治疗各种疾病的重要药物来源。在各种珍贵的天然产物支架中,苯并吡喃酮类化合物在生物活性化合物中占有重要地位。1954 年批准的抗凝血药物先驱之一华法林就具有苯并-α-吡喃酮(香豆素)核。被广泛研究的牛皮癣药物甲氧沙林和三氧沙林也含有苯并-α-吡喃酮核。含有苯并-γ-吡喃酮(铬酮)的药物色甘酸和普鲁司特分别于 1982 年和 2007 年被批准作为治疗哮喘的药物。还有许多以苯并吡喃酮为核心的小分子药物正在接受临床研究。本综述讨论了食品药品管理局批准的和处于临床阶段的苯并吡喃酮类化合物的发现、吸收、分布、代谢、排泄特性和合成方法。此外,还讨论了吡喃酮核心在生物活性中的作用。本综述揭示了苯并吡喃酮核心在药物化学和药物开发中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Benzopyrone, a privileged scaffold in drug discovery: An overview of FDA-approved drugs and clinical candidates

Natural products have always served as an important source of drugs for treating various diseases. Among various privileged natural product scaffolds, the benzopyrone class of compounds has a substantial presence among biologically active compounds. One of the pioneering anticoagulant drugs, warfarin approved in 1954 bears a benzo-α-pyrone (coumarin) nucleus. The widely investigated psoriasis drugs, methoxsalen, and trioxsalen, also contain a benzo-α-pyrone nucleus. Benzo-γ-pyrone (chromone) containing drugs, cromoglic acid, and pranlukast were approved as treatments for asthma in 1982 and 2007, respectively. Numerous other small molecules with a benzopyrone core are under clinical investigation. The present review discusses the discovery, absorption, distribution, metabolism, excretion properties, and synthetic approaches for the Food and Drug Administration-approved and clinical-stage benzopyrone class of compounds. The role of the pyrone core in biological activity has also been discussed. The present review unravels the potential of benzopyrone core in medicinal chemistry and drug development.

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来源期刊
CiteScore
29.30
自引率
0.00%
发文量
52
审稿时长
2 months
期刊介绍: Medicinal Research Reviews is dedicated to publishing timely and critical reviews, as well as opinion-based articles, covering a broad spectrum of topics related to medicinal research. These contributions are authored by individuals who have made significant advancements in the field. Encompassing a wide range of subjects, suitable topics include, but are not limited to, the underlying pathophysiology of crucial diseases and disease vectors, therapeutic approaches for diverse medical conditions, properties of molecular targets for therapeutic agents, innovative methodologies facilitating therapy discovery, genomics and proteomics, structure-activity correlations of drug series, development of new imaging and diagnostic tools, drug metabolism, drug delivery, and comprehensive examinations of the chemical, pharmacological, pharmacokinetic, pharmacodynamic, and clinical characteristics of significant drugs.
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