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首页> 外文期刊>藥學雜誌 >Asymmetric reactions based on activation and structure control of molecule--asymmetric reaction of lithiated nucleophiles
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Asymmetric reactions based on activation and structure control of molecule--asymmetric reaction of lithiated nucleophiles

机译:基于分子的活化和结构控制的不对称反应-锂化亲核试剂的不对称反应

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摘要

The methodology we developed relies on an external chiral coordinating reagent that forms a deaggregated chelate complex with organolithium reagents. Under the positive control of a chiral dimethyl ether of stilbenediol 4, an asymmetric conjugate addition reaction of organolithium reagents with unsaturated imines and esters proceeded successfully to yield the corresponding addition products with reasonably high stereoselectivity. The sense of stereochemistry is predictable based on a coordination model. The methodology has been extended to a catalytic asymmetric 1,2-addition reaction of organolithium reagents with imines. An enantiotopic group differentiating the opening of cyclohexene oxide with organolithium was also mediated by a chiral ligand. The asymmetric Horner-Wadsworth-Emmons reaction of phosphonates and Peterson reaction of alpha-silylester with 4-substituted cyclohexanone were another successful extension of the methodology. A three-component reagent of lithium ester enolate, lithium amide,and chiral diether reacts with imines to afford beta-lactam with reasonably high enantioselectivity. Tridentate aminoether ligands were also shown to affect the catalytic asymmetric addition of lithium ester enoaltes to imines, giving beta-lactams with high enantioselectivity. Asymmetric conjugate addition of lithium amide to enoates was mediated by a chiral diether ligand to give the beta-aminoester with high yield and enatioselectivity. The methodology has been successfully applied to an asymmetric synthesis of biologically potent compounds. Dihydrexidine, a promising anti-Parkinsonism candidate, and salsolidine, a representative isoquinoline alkaloid, have been synthesized using asymmetric addition reactions of organolithium reagents as the key steps.
机译:我们开发的方法依赖于外部手性配位试剂,该试剂与有机锂试剂形成解聚的螯合物。在烯二醇4的手性二甲醚的正控制下,有机锂试剂与不饱和亚胺和酯的不对称共轭加成反应成功进行,得到了具有相当高的立体选择性的相应加成产物。立体化学感是基于配位模型可预测的。该方法已扩展到有机锂试剂与亚胺的催化不对称1,2-加成反应。也可以通过手性配体介导使环己烯氧化物与有机锂分开的对映体基团。膦酸酯的不对称Horner-Wadsworth-Emmons反应和α-甲硅烷基酯与4-取代的环己酮的Peterson反应是该方法的另一成功扩展。烯醇酸锂,酰胺化锂和手性二醚的三组分试剂与亚胺反应生成对映体,具有相当高的对映选择性。还显示了三齿氨基醚配体会影响锂酯烯醛到亚胺的催化不对称加成反应,从而产生具有高对映选择性的β-内酰胺。通过手性二醚配体介导酰胺酸锂向烯酸酯的不对称共轭加成,以高收率和对映选择性得到β-氨基酯。该方法已成功地应用于生物有效化合物的不对称合成。使用有机锂试剂的不对称加成反应作为关键步骤合成了有希望的抗帕金森病候选药物二氢己定和代表性的异喹啉碱生物碱沙丁胺醇。

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