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首页> 外文期刊>The Journal of Organic Chemistry >Pyrrolo[3,2-e][1,4]diazepin-2-one synthesis: A head-to-head comparison of soluble versus insoluble supports
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Pyrrolo[3,2-e][1,4]diazepin-2-one synthesis: A head-to-head comparison of soluble versus insoluble supports

机译:吡咯并[3,2-e] [1,4]二氮杂-2-酮合成:可溶和不可溶支持物的头对头比较

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Aryldiazepin-2-ones are known as "privileged structures", because they bind to multiple receptor types with high affinity. Toward the development of a novel class of aryldiazepin-2-one scaffolds, the synthesis of pyrrolo[3,2-e][1,4]diazepin-2-ones on a support was explored starting from N-(PhF)-4-hydroxyproline and featuring an acid-catalyzed Pictet-Spengler reaction to form the diazepine ring. Three supports [Wang resin, tetraarylphosphonium (TAP) soluble support, and Merrifield resin] were examined in the synthesis of the heterocycle and exhibited different advantages and disadvantages. Wang resin proved effective for exploratory optimization of the synthesis by identification of intermediates after resin cleavage under mild conditions; however, the acidic conditions of the Pictet-Spengler reaction caused premature loss of resin-bound material. Direct monitoring of reactions by TLC, RP-HPLC-MS, and in certain cases NMR spectroscopy was possible with the TAP support, which facilitated purification of intermediates by precipitation; however, incomplete precipitation of material led to overall yields lower than those from solid-phase approaches on resin. Merrifield resin proved stable to the conditions for the synthesis of the pyrrolo[3,2-e][1,4]diazepin-2-one targets and would be amenable to "split-and-mix" chemistry; however, relatively harsh conditions were necessary for final product cleavage. Perspective for the application of different solid-phase approaches in heterocycle library synthesis was thus obtained by demonstration of the respective utility of the three supports for preparation of pyrrolo[3,2-e][1,4] diazepin-2-one.
机译:芳基二氮杂-2-酮被称为“特权结构”,因为它们以高亲和力结合多种受体类型。为了开发一类新型的芳基二氮杂-2-酮骨架,从N-(PhF)-4开始探索在载体上的吡咯并[3,2-e] [1,4]二氮杂-2-酮骨架的合成。 -羟基脯氨酸,具有酸催化的Pictet-Spengler反应形成二氮杂环。在杂环的合成中检查了三种载体[Wang树脂,四芳基phosph(TAP)可溶性载体和Merrifield树脂],它们表现出不同的优缺点。 Wang树脂通过在温和条件下裂解树脂后鉴定中间体,证明对探索性合成优化有效。但是,Pictet-Spengler反应的酸性条件导致树脂结合材料过早损失。借助TAP载体可以通过TLC,RP-HPLC-MS以及在某些情况下NMR光谱直接监测反应,这有助于通过沉淀纯化中间体。然而,材料的不完全沉淀导致总收率低于固相法在树脂上的收率。已证明Merrifield树脂对吡咯并[3,2-e] [1,4]二氮杂-2--2-靶的合成条件是稳定的,并且适合“拆分和混合”化学;但是,最终产品的裂解需要相对苛刻的条件。因此,通过证明三种支持物用于制备吡咯并[3,2-e] [1,4]二氮杂-2--2-酮的各自用途,获得了在杂环库合成中应用不同固相方法的前景。

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