从天然产物中合成具有生物活性的化合物

Sowmya Mudunuru, Chandra Sekhara Rao Gurubilli, V. G, S. G
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引用次数: 0

摘要

天然产物及其结构类似物在历史上对药物治疗做出了重大贡献,特别是对癌症和传染病。然而,天然产物也对药物发现提出了挑战,例如筛选、分离、表征和优化方面的技术障碍,这导致制药工业从1990年代起减少了对天然产物的追求。近年来,一些技术和科学的发展,包括改进的分析工具,基因组挖掘和工程策略,以及微生物培养的进步,正在解决这些挑战并开辟新的机会。因此,对天然产物作为药物先导的兴趣正在恢复,特别是在处理抗菌素耐药性方面。在这里,我们总结了最近的技术发展,使天然产品为基础的药物发现,重点选择的应用和讨论的关键机会。利用碳水化合物作为手性来源,首次实现了多种生物活性天然产物的全合成和开发。此外,实际有用的中间体已经被创造出来,天然产物的类似物已经被制备出来,它们的结构-活性关系已经被研究,药用化合物的大规模制备已经建立。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of biologically active compounds derived from natural products
Natural products and their structural analogues have historically made a major contribution to pharmacotherapy, especially for cancer and infectious diseases. Nevertheless, natural products also present challenges for drug discovery, such as technical barriers to screening, isolation, characterization and optimization, which contributed to a decline in their pursuit by the pharmaceutical industry from the 1990s onwards. In recent years, several technological and scientific developments including improved analytical tools, genome mining and engineering strategies, and microbial culturing advances are addressing such challenges and opening up new opportunities. Consequently, interest in natural products as drug leads is being revitalized, particularly for tackling antimicrobial resistance. Here, we summarize recent technological developments that are enabling natural product-based drug discovery, highlight selected applications and discuss key opportunities.The first total synthesis and development of a variety of bioactive natural products have been accomplished by using carbohydrates as a chiral source. In addition, practically useful intermediates have been created, analogs of natural products have been prepared, their structure-activity relationships studied, and the large-scale preparations of medicinally useful compounds established.
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