Tanaka Hiroshi, Hasegawa Tsuyoshi, Kita Narumi, Nakahara Hiroko, Shibata Takahiro, Oe Sho, Ojika Makoto, Uchida Koji, Takahashi Takashi
Department of Applied Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro, Tokyo 152-8552, Japan.
Chem Asian J. 2006 Nov 20;1(5):669-77. doi: 10.1002/asia.200600172.
An efficient solution-phase synthesis of rac-15-deoxy-delta(12,14)-PGJ2 (15dPGJ2) derivatives that contain variable alpha and omega chains based on a polymer-assisted strategy and their neurite-outgrowth-promoting activity are described. The strategy for the synthesis of PGJ2 derivatives involves the use of a vinyl iodide bearing cyclopentenone as a key intermediate, which undergoes Suzuki-Miyaura coupling and subsequent Lewis acid catalyzed aldol condensation for incorporation of the omega and alpha chains, respectively. For easy access to the PGJ2 derivatives, a polymer-supported catalyst and scavengers were adapted for use in these four diverse steps, in which workup and purification can be performed by simple filtration of the solid-supported reagents. By using this methodology, we succeeded in the synthesis of 16 PGJ2 derivatives with four alkyl boranes and four aldehydes. The neurite-outgrowth-promoting activity of the 16 synthetic compounds in PC12 cells revealed that the side-chains play a major role in modulating their biological activity. The carboxylic acid on the alpha chain improved the biological activity, although it was not absolutely required. Furthermore, a PGJ2 derivative with a phenyl moiety on the omega chain was found to exhibit an activity comparable to that of natural 15dPGJ2.
描述了一种基于聚合物辅助策略的rac-15-脱氧-δ(12,14)-前列腺素J2(15dPGJ2)衍生物的高效溶液相合成方法,该衍生物含有可变的α链和ω链,以及它们促进神经突生长的活性。PGJ2衍生物的合成策略涉及使用带有环戊烯酮的乙烯基碘作为关键中间体,该中间体分别进行铃木-宫浦偶联和随后的路易斯酸催化的羟醛缩合反应以引入ω链和α链。为了便于获得PGJ2衍生物,将聚合物负载的催化剂和清除剂应用于这四个不同的步骤,其中后处理和纯化可以通过对固体负载试剂进行简单过滤来完成。通过使用这种方法,我们成功合成了16种含有四种烷基硼烷和四种醛的PGJ2衍生物。这16种合成化合物在PC12细胞中促进神经突生长的活性表明,侧链在调节其生物活性中起主要作用。α链上的羧酸提高了生物活性,尽管不是绝对必需的。此外,发现一种在ω链上带有苯基部分的PGJ2衍生物表现出与天然15dPGJ2相当的活性。