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天然产物与生物活性导向的合成研究与碳水化合物的相互作用:C-糖苷的持续探索。

Natural Products & Bioactivity Inspired Synthetic Pursuits Interfacing with Carbohydrates: Ongoing Journey with C-Glycosides.

机构信息

Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.

出版信息

Chem Rec. 2021 Nov;21(11):3131-3177. doi: 10.1002/tcr.202100216. Epub 2021 Oct 29.

Abstract

Natural products, remains the most important source for the discovery of new drugs for the treatment of human diseases. This has inspired the synthetic community to design and develop mimics of natural products either to answer important questions in biology or to explore their therapeutic potentials. Glycosides present themselves abundantly in nature, right from the cell surface receptors to natural products of any origin. The O-Glycosides are hydrolytically less stable compared to C-glycosides and this feature has presented a great opportunity for drug discovery. The discovery of Dapagliflozin, an SGLT inhibitor and C-glucoside, for the treatment of diabetes is one such example. Aryl acyl-anion chemistry has been explored for the synthesis of 2-deoxy-C-aryl furanoside/pyranoside/septanosides. Besides success, the studies have provided valuable insight into the natural propensities of the architectural framework for the cascade to furan derivatives. The aryl acyl-anion chemistry has also enabled the synthesis of biologically active diaryl heptanoids. Inspired from sucesss of Dapagliflozin, new analogues have been synthesized with pyridine and isocoumarin heterocycle as the proximal ring. C-glucosides of isoliquiritigenin have been synthesized for the first time and evaluated as an efficient aldose reductase inhibitor. The synthesis and evaluation of acyl-C-β-D-glucosides and benzyl-C-β-D-glucoside as glucose-uptake promoters has revealed promise in small molecules. The concept of building blocks has been used to obtain natural oxylipins, D-xylo and L-xylo-configured alkane tetrols and novel lipophilic ketones with erythro/threo configured trihydroxy polar head-group as possible anti-mycobacterial agents.

摘要

天然产物仍然是发现治疗人类疾病新药的最重要来源。这激发了合成界设计和开发天然产物类似物的灵感,要么是为了回答生物学中的重要问题,要么是为了探索它们的治疗潜力。糖苷在自然界中大量存在,从细胞表面受体到任何来源的天然产物都有糖苷。与 C-糖苷相比,O-糖苷的水解稳定性较差,这为药物发现提供了一个很好的机会。达格列净(一种 SGLT 抑制剂和 C-糖苷)的发现就是一个例子,它用于治疗糖尿病。芳酰阴离子化学已被用于合成 2-脱氧-C-芳基呋喃糖苷/吡喃糖苷/庚糖苷。除了成功之外,这些研究还为呋喃衍生物级联的建筑框架的自然倾向提供了宝贵的见解。芳酰阴离子化学还使生物活性的二芳基庚烷的合成成为可能。受达格列净成功的启发,人们用吡啶和异香豆素杂环作为近端环合成了新的类似物。首次合成了异甘草素的 C-糖苷,并将其作为有效的醛糖还原酶抑制剂进行了评估。酰基-C-β-D-葡萄糖苷和苄基-C-β-D-葡萄糖苷作为葡萄糖摄取促进剂的合成和评价显示出了小分子的潜力。构建块的概念已被用于获得天然氧化脂、D-木糖和 L-木糖构型烷二醇以及新型亲脂性酮,它们具有赤型/苏型构型的三羟基极性头基,作为可能的抗分枝杆菌药物。

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