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首页> 外文期刊>Organic process research & development >Synthesis of an alpha-Amylase Inhibitor: Highly Stereoselective Glycosidation and Regioselective Manipulations of Hydroxyl Groups in Carbohydrate Derivatives
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Synthesis of an alpha-Amylase Inhibitor: Highly Stereoselective Glycosidation and Regioselective Manipulations of Hydroxyl Groups in Carbohydrate Derivatives

机译:α-淀粉酶抑制剂的合成:碳水化合物衍生物中羟基的高度立体选择性糖基化和区域选择性操纵。

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摘要

Here, we describe the efficient synthesis of a-amylase inhibitor 1. To introduce the most expensive C ring unit at a late stage in the synthesis, we developed 1,2-cis-O-glycosidation of AB and C ring intermediates. Taking advantage of the effect of non-neighboring protecting groups, reaction solvents, and temperature for the glycosidation led to high stereoselectivity and high yield of the 1,2-cis-glycoside product bearing the API skeleton. We also explored protection and deprotection methods for regioselective manipulation of hydroxyl groups in A and B ring intermediates. One-pot benzylation of the 2,3-hydroxyl groups of d-glucose under phase-transfer conditions and regioselective anomeric deacetylation with N-methylpiperazine were developed for the syntheses of A, B, and AB ring intermediates. Thus, the efficiency of the process was dramatically improved. The raw material cost of API was reduced to approximately one-third that of the original route, and the total process was decreased by six steps.
机译:在这里,我们描述了α-淀粉酶抑制剂1的有效合成。为了在合成后期引入最昂贵的C环单元,我们开发了AB和C环中间体的1,2-顺式-O-糖基化。利用非相邻保护基,反应溶剂和温度进行的糖苷化作用导致具有API骨架的1,2-顺式糖苷产物的高立体选择性和高产率。我们还探索了保护和脱保护方法,用于区域选择性操纵A和B环中间体中的羟基。开发了在相转移条件下d-葡萄糖的2,3-羟基的一锅位苄基化以及用N-甲基哌嗪进行区域选择性异头脱乙酰基化的方法,用于合成A,B和AB环中间体。因此,该过程的效率大大提高了。 API的原材料成本降低到原始路线的三分之一,整个过程减少了六个步骤。

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