4.5 Review

Semisynthetic Triazoles as an Approach in the Discovery of Novel Lead Compounds

期刊

CURRENT ORGANIC CHEMISTRY
卷 25, 期 10, 页码 1097-1179

出版社

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1385272825666210126100227

关键词

Triazole; heterocyclic; natural products; semisynthesis; lead compounds; drug discovery

资金

  1. National Council for Scientific and Technological Development (CNPq) [307035/2018-2]
  2. Coordination for the Improvement of Higher Education Personnel (CAPES) [001]
  3. Foundation of Support to Research and Innovation of Espirito Santo (FAPES PPP) [120/2017]
  4. PNPD/CAPES [88887.342293/2019-00]
  5. FAPES [104/2020]

向作者/读者索取更多资源

Medicinal chemistry has historically focused on the approach of organic chemistry for new drug synthesis, with dedicated efforts resulting in fruitful collections of new molecular entities. Scientists' altruistic nature drives the planning and search for new and applicable pharmacologic therapies. Since the 19th century, the use of isolated and characterized plant-derived compounds in modern drug discovery and clinical development has highlighted its viability and significance.
Historically, medicinal chemistry has been concerned with the approach of organic chemistry for new drug synthesis. Considering the fruitful collections of new molecular entities, the dedicated efforts for medicinal chemistry are rewarding. Planning and search for new and applicable pharmacologic therapies involve the altruistic nature of the scientists. Since the 19th century, notoriously applying isolated and characterized plant-derived compounds in modern drug discovery and various stages of clinical development highlight its viability and significance. Natural products influence a broad range of biological processes, covering transcription, translation, and post-translational modification, being effective modulators of most basic cellular processes. The research of new chemical entities through click chemistry continuously opens up a map for the remarkable exploration of chemical space towards leading natural products optimization by structure-activity relationship. Finally, in this review, we expect to gather a broad knowledge involving triazolic natural product derivatives, synthetic routes, structures, and their biological activities.

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