首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Synthesis of novel l-rhamnose derived acyclic C-nucleosides with substituted 1,2,3-triazole core as potent sodium-glucose co-transporter (SGLT) inhibitors
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Synthesis of novel l-rhamnose derived acyclic C-nucleosides with substituted 1,2,3-triazole core as potent sodium-glucose co-transporter (SGLT) inhibitors

机译:具有取代的1,2,3-三唑核心作为强力钠葡萄糖共转运蛋白(SGLT)抑制剂的新型1-鼠李糖衍生的无环C-核苷的合成

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摘要

Sodium-glucose co-transporter (SGLT) inhibitors are a novel class of therapeutic agents for the treatment of type 2 diabetes by preventing renal glucose reabsorption. In our efforts to identify novel inhibitors of SGLT, we synthesized a series of l-rhamnose derived acyclic C-nucleosides with 1,2,3-triazole core. The key β-ketoester building block 4 prepared from l-rhamnose in five steps, was reacted with various aryl azides to produce the respective 1,2,3-triazole derivatives in excellent yields. Deprotection of acetonide group gave the desired acyclic C-nucleosides 7a-o. All the new compounds were screened for their sodium-glucose co-transporters (SGLT1 and SGLT2) inhibition activity using recently developed cell-based nonradioactive fluorescence glucose uptake assay. Among them, 7m with IC50: 125.9 nM emerged as the most potent SGLT2 inhibitor. On the other hand compound 7d exhibited best selectivity for inhibition of SGLT2 (IC50: 149.1 nM) over SGLT1 (IC50: 693.2 nM). The results presented here demonstrated the utility of acyclic C-nucleosides as novel SGLT inhibitors for future investigations.
机译:钠葡萄糖共转运蛋白(SGLT)抑制剂是一类新型的治疗药物,可通过防止肾脏对葡萄糖的重吸收来治疗2型糖尿病。为了确定新的SGLT抑制剂,我们合成了一系列具有1,2,3-三唑核心的l-鼠李糖衍生的无环C-核苷。由1-鼠李糖在五个步骤中制备的关键β-酮酸酯结构单元4与各种芳基叠氮化物反应,以优异的产率生产相应的1,2,3-三唑衍生物。乙炔基的脱保护得到所需的无环C-核苷7a-o。使用最近开发的基于细胞的非放射性荧光葡萄糖摄取测定法,筛选了所有新化合物的钠-葡萄糖共转运蛋白(SGLT1和SGLT2)抑制活性。其中,以IC50为125.9 nM的7m成为最有效的SGLT2抑制剂。另一方面,化合物7d相对于SGLT1(IC50:693.2nM)表现出对SGLT2(IC50:149.1nM)的抑制的最佳选择性。此处给出的结果证明了无环C-核苷作为新型SGLT抑制剂在未来研究中的实用性。

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