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A cycloaddition strategy for use toward berkelic acid, an MMP inhibitor and potent anticancer agent displaying a unique chroman spiroketal motif

机译:一种环加成策略,用于表现出独特的苯并二氢吡喃酮基序的苯甲酸,MMP抑制剂和强效抗癌剂

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摘要

A kinetically controlled diastereoselective cycloaddition between a chiral enol ether and an ortho-quinone methide (o-QM) produces a chroman spiroketal motif that is found in the core of berkelic acid, a novel matrix metalloproteinase (NIMP) inhibitor and potent anticancer agent. The transformation lays the groundwork for preparation of future inhibitors aimed at distinguishing among the active sites of the twenty-three known MMP. Experimental findings suggest that the stereochemistry that emerges from cycloaddition is opposite that which results from thermodynamic ketalization.
机译:在手性烯醇醚和邻醌甲基化物(o-QM)之间进行动力学控制的非对映选择性环加成反应,会在苯甲酸,一种新型的基质金属蛋白酶(NIMP)抑制剂和有效的抗癌剂的核心中发现苯并二氢吡喃酮基序。该转化为将来的抑制剂的制备奠定了基础,这些抑制剂旨在区分23种已知的MMP的活性位点。实验结果表明,环加成反应产生的立体化学与热力学缩酮化反应相反。

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