Yamaguchi Kazuya, Kazuta Yuji, Abe Hiroshi, Matsuda Akira, Shuto Satoshi
Graduate School of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo 060-0812, Japan.
J Org Chem. 2003 Nov 28;68(24):9255-62. doi: 10.1021/jo0302206.
(1S,2S)-, (1S,2R)-, and (1R,2S)-1-(2,4-Dimethylphenyl)piperazyl-2-phenylcyclopropane (2a, 3, and ent-3, respectively), which were designed as conformationally restricted analogues of haloperidol (1), a clinically effective antipsychotic agent, were synthesized from chiral epichlorohydrins using the Barton reductive radical decarboxylation as the key step. (1S,2R)-1-(tert-Butyldiphenylsilyloxy)methyl-2-carboxy-2-phenylcyclopropane (5), which was prepared from (S)-epichlorohydrin ((S)-7), was converted into its N-hydroxypyridine-2-thione ester 12, the substrate for the reductive radical decarboxylation. When 12 was treated with TMS3SiH in the presence of Et3B or AIBN, the decarboxylation and subsequent hydride attack on the cyclopropyl radical intermediate from the side opposite to the bulky silyloxymethyl moiety occurred, resulting in selective formation of the corresponding reductive decarboxylation product 4-cis with the cis-cyclopropane structure. From 4-cis, the cis-cyclopropane-type target compound 3 was readily synthesized. Starting from (R)-epichlorohydrin ((R)-7), ent-3 was similarly synthesized. Epimerization of the cyclopropanecarboxamide ent-16-cis, a synthetic intermediate for ent-3, on treatment with a base prepared from Bu2Mg and i-Pr2NH in THF occurred effectively to give the corresponding trans isomer 16-trans, which was converted into 2a with the trans-cyclopropane structure.
(1S,2S)-、(1S,2R)-和(1R,2S)-1-(2,4-二甲基苯基)哌嗪基-2-苯基环丙烷(分别为2a、3和对映体-3),它们被设计为临床有效抗精神病药物氟哌啶醇(1)的构象受限类似物,以手性环氧氯丙烷为原料,以巴顿还原自由基脱羧反应为关键步骤合成。由(S)-环氧氯丙烷((S)-7)制备的(1S,2R)-1-(叔丁基二苯基硅氧基)甲基-2-羧基-2-苯基环丙烷(5)被转化为其N-羟基吡啶-2-硫酮酯12,即还原自由基脱羧反应的底物。当12在三乙硼或偶氮二异丁腈存在下用三甲基硅烷化氢处理时,发生脱羧反应,随后氢化物从与庞大的硅氧基甲基部分相对的一侧进攻环丙基自由基中间体,导致选择性形成具有顺式环丙烷结构的相应还原脱羧产物4-顺式。由4-顺式很容易合成出顺式环丙烷型目标化合物3。从(R)-环氧氯丙烷((R)-7)出发,类似地合成了对映体-3。对映体-3的合成中间体环丙烷甲酰胺对映体-16-顺式在用四氢呋喃中由二丁基镁和二异丙基胺制备的碱处理时有效地发生差向异构化,得到相应的反式异构体16-反式,其被转化为具有反式环丙烷结构的2a。