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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Acid-Base Catalysis of Chiral Pd Complexes:Development of Novel Catalytic Asymmetric Reactions and Their Application to Synthesis of Drug Candidates
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Acid-Base Catalysis of Chiral Pd Complexes:Development of Novel Catalytic Asymmetric Reactions and Their Application to Synthesis of Drug Candidates

机译:手性钯配合物的酸碱催化:新型催化不对称反应的发展及其在候选药物合成中的应用

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Using the unique character of the chiral Pd complexes 1 and 2, highly efficient catalytic asymmetric reactions have been developed. In contrast to conventional Pd(0)-catalyzed reactions, these complexes function as an acid-base catalyst. Thus active methine and methylene compounds were activated to form chiral palladium eno-lates, which underwent enantioselective carbon-carbon bond-forming reactions such as Michael reaction and Mannich-type reaction with up to 99% ee. Interestingly, these palladium enolates acted cooperatively with a strong protic acid, formed concomitantly during the formation of the enolates to activate electrophiles, thereby promoting the C-C bond-forming reaction. This palladium enolate chemistry was also applicable to electrophilic enantioselective fluorination reactions, and various carbonyl compounds including beta-ketoesters, beta-ketophospho-nates, tert-butoxycarbonyl lactone/lactams, cyanoesters, and oxindole derivatives could be fluorinated in a highly enantioselective manner (up to 99% ee). Using this method, the catalytic enantioselective synthesis of BMS-204352, a promising anti-stroke agent, was achieved. In addition, the direct enantioselective conjugate addition of aromatic and aliphatic amines to alpha,beta-unsaturated carbonyl compound was successfully demonstrated. In this reaction, combined use of the Pd complex 2 having basic character and the amine salt was the key to success, allowing controlled generation of the nucleophilic free amine. This aza-Michael reaction was successfully applied to asymmetric synthesis of the CETP inhibitor torcetrapib.
机译:利用手性Pd配合物1和2的独特特性,开发了高效的催化不对称反应。与常规的Pd(0)催化反应相反,这些络合物起酸碱催化剂的作用。因此,活性次甲基和亚甲基化合物被活化以形成手性钯烯醇盐,其经历高达99%ee的对映选择性碳-碳键形成反应,例如Michael反应和Mannich型反应。有趣的是,这些钯烯醇盐与强质子酸协同作用,该质子酸在烯醇盐的形成过程中同时形成以活化亲电子试剂,从而促进了C-C键形成反应。这种烯醇钯化学方法也适用于亲电对映选择性氟化反应,包括β-酮酸酯,β-酮膦酸酯,叔丁氧羰基内酯/内酰胺,氰基酸酯和氧吲哚衍生物在内的各种羰基化合物可以高度对映选择性的方式进行氟化(到99%ee)。使用该方法,实现了有希望的抗中风剂BMS-204352的催化对映选择性合成。此外,成功地证明了芳香族和脂肪族胺直接对映选择性共轭加成到α,β-不饱和羰基化合物上。在该反应中,具有碱性的Pd络合物2和胺盐的组合使用是成功的关键,从而可以控制亲核游离胺的生成。该氮杂-迈克尔反应已成功地应用于CETP抑制剂torcetrapib的不对称合成。

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