Imashiro Ritsuo, Kuroda Tooru
CMC Research Laboratory, Tanabe Seiyaku Co., Ltd., 3-16-89 Kashima, Yodogawa-ku, Osaka 532-8505, Japan.
J Org Chem. 2003 Feb 7;68(3):974-9. doi: 10.1021/jo026361+.
An efficient synthesis of methyl (2R,3S)-3-(4-methoxyphenyl)glycidate (-)-2, a key intermediate for diltiazem (1), has been developed on the basis of the highly enantioselective Mukaiyama aldol reaction of p-anisaldehyde (4a) with alpha,alpha-dichloro ketene silyl acetal 5. Thus, the reaction using a stoichiometric amount of chiral oxazaborolidinone catalyst 12a proceeded to excellent yield (83%) and high enantioselectivity (96% ee), together with the chiral ligand 13a in nearly quantitative recovery. The reaction using a substoichiometric amount of 12e (20 mol %) also proceeded to excellent yield (88%), with somewhat lower enantioselectivity (77% ee). The aldol product 3a thus obtained was easily converted to (-)-2 in excellent yield (80%) and high optical purity (>99% ee). The highly enantioselective Mukaiyama aldol reaction with 5 catalyzed by 12a proved to be applicable to various aldehydes. An efficient preparation of 5 from inexpensive starting materials was also described.
已基于对甲氧基苯甲醛(4a)与α,α-二氯烯酮硅基缩醛5的高对映选择性 Mukaiyama 羟醛反应,开发出一种有效的合成方法来制备地尔硫䓬(1)的关键中间体(2R,3S)-3-(4-甲氧基苯基)缩水甘油酸甲酯(-)-2。因此,使用化学计量的手性恶唑硼烷酮催化剂12a进行的反应,以优异的产率(83%)和高对映选择性(96% ee)进行,手性配体13a几乎定量回收。使用亚化学计量的12e(20 mol%)进行的反应也以优异的产率(88%)进行,但对映选择性稍低(77% ee)。由此得到的羟醛产物3a很容易以优异的产率(80%)和高光学纯度(>99% ee)转化为(-)-2。由12a催化的与5的高对映选择性 Mukaiyama 羟醛反应被证明适用于各种醛。还描述了由廉价起始原料高效制备5的方法。