Recent Advances in the Synthesis of Bioactive Glycohybrids via Click-Chemistry

IF 2 Q2 CHEMISTRY, ORGANIC
SynOpen Pub Date : 2023-06-13 DOI:10.1055/a-2130-7319
Kavita Singh, Rajdeep Tyagi, V. Mishra, Ghanshyam Tiwari, R. Sagar
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引用次数: 0

Abstract

Carbohydrates, traditionally known for their energy-providing role, have gained significant attention in drug discovery due to their diverse bioactivities and stereodiversity. However, pure carbohydrate molecules often exhibit limited bioactivity and suboptimal chemical and physical characteristics. To address these challenges, functional groups with bioactive scaffolds have been incorporated into carbohydrate to enhance their bioactivity and improve their overall properties. Among the various synthetic methods available, click chemistry has emerged as a powerful tool for the synthesis of carbohydrate-containing bioactive scaffolds, known as glycohybrids. Click chemistry offers several advantages, including high chemo- and regioselectivity, mild reaction conditions, easy purification and compatibility with multiple functional groups. In the present review, we have emphasized the recent advances and most pertinent research on the development of 1,2,3-triazole-containing glycohybrids using click reaction, their biological evaluations and the structure-activity relationship during 2017-2023. These newly synthesised glycohybrids could potentially be developed as new chemical entities (NCE) in pharmaceutical chemistry and may encourage the use of carbohydrates in drug discovery processes. 1 Introduction 2 CuAAC click chemistry mediated synthesis of triazole based glycohybrids and their biological activities 3 Conclusions and perspective

Abstract Image

点击化学合成生物活性糖苷杂化物的研究进展
碳水化合物,传统上以其提供能量的作用而闻名,由于其多样的生物活性和立体多样性,在药物发现中受到了极大的关注。然而,纯碳水化合物分子通常表现出有限的生物活性和次优的化学和物理特性。为了应对这些挑战,具有生物活性支架的官能团已被掺入碳水化合物中,以增强其生物活性并改善其整体性能。在各种可用的合成方法中,点击化学已成为合成含碳水化合物的生物活性支架(称为糖杂化物)的有力工具。点击化学提供了几个优点,包括高化学选择性和区域选择性、温和的反应条件、易于纯化以及与多个官能团的兼容性。在本综述中,我们强调了2017-2023年使用点击反应开发含1,2,3-三唑的糖杂合物的最新进展和最相关的研究,以及它们的生物学评价和构效关系。这些新合成的糖杂合物可能被开发为药物化学中的新化学实体(NCE),并可能鼓励在药物发现过程中使用碳水化合物。1引言2 CuAAC点击化学介导的三唑基糖杂合体的合成及其生物活性3结论和展望
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来源期刊
SynOpen
SynOpen CHEMISTRY, ORGANIC-
CiteScore
2.30
自引率
4.00%
发文量
35
审稿时长
6 weeks
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