Bergeron R J, Müller R, Huang G, McManis J S, Algee S E, Yao H, Weimar W R, Wiegand J
Department of Medicinal Chemistry, J. Hillis Miller Health Science Center, University of Florida, Gainesville, Florida 32610, USA.
J Med Chem. 2001 Jul 19;44(15):2451-9. doi: 10.1021/jm000532q.
A new means of accessing N(1)-cyclopropylmethyl-N(11)-ethylnorspermine (CPMENSPM) and the first synthesis of (2R,10S)-N(1)-cyclopropylmethyl-2,10-dihydroxy-N(11)-ethylnorspermine [(2R,10S)-(HO)(2)CPMENSPM] are described. Both of these polyamine analogues are shown to be more active against L1210 murine leukemia cell growth than either N(1),N(11)-diethylnorspermine (DENSPM) or (2R,10R)-N(1),N(11)-diethyl-2,10-dihydroxynorspermine [(2R,10R)-(HO)(2)DENSPM] after 96 h of treatment; the activity was comparable to that of (2S,10S)-N(1),N(11)-diethyl-2,10-dihydroxynorspermine [(2S,10S)-(HO)(2)DENSPM] at 96 h. Both cyclopropyl compounds reduced putrescine and spermidine pools, but less effectively than did DENSPM and its derivatives. Only CPMENSPM, and not (2R,10S)-(HO)(2)CPMENSPM, lowered spermine pools. As with DENSPM and (2R,10R)-(HO)(2)DENSPM, both cyclopropyl analogues diminished ornithine decarboxylase and S-adenosylmethionine decarboxylase activity. Unlike the hydroxylated DENSPM compounds, both cyclopropyl norspermines substantially upregulated spermidine/spermine N(1)-acetyltransferase. The most interesting effect of hydroxylating CPMENSPM is the profound reduction in toxicity compared with that of the parent drug. The same phenomenon had been observed for the DENSPM/(2R,10R)-(HO)(2)DENSPM pair. Thus, hydroxylation of norspermine analogues appears to be a way to maintain the compounds' antiproliferative activity while reducing their toxicity.
本文描述了一种获取N(1)-环丙基甲基-N(11)-乙基去甲精胺(CPMENSPM)的新方法以及(2R,10S)-N(1)-环丙基甲基-2,10-二羟基-N(11)-乙基去甲精胺[(2R,10S)-(HO)(2)CPMENSPM]的首次合成。在处理96小时后,这两种多胺类似物对L1210小鼠白血病细胞生长的活性均高于N(1),N(11)-二乙基去甲精胺(DENSPM)或(2R,10R)-N(1),N(11)-二乙基-2,10-二羟基去甲精胺[(2R,10R)-(HO)(2)DENSPM];其活性在96小时时与(2S,10S)-N(1),N(11)-二乙基-2,10-二羟基去甲精胺[(2S,10S)-(HO)(2)DENSPM]相当。两种环丙基化合物均降低了腐胺和亚精胺池,但效果不如DENSPM及其衍生物。只有CPMENSPM,而不是(2R,10S)-(HO)(2)CPMENSPM,降低了精胺池。与DENSPM和(2R,10R)-(HO)(2)DENSPM一样,两种环丙基类似物均降低了鸟氨酸脱羧酶和S-腺苷甲硫氨酸脱羧酶的活性。与羟基化的DENSPM化合物不同,两种环丙基去甲精胺均显著上调了亚精胺/精胺N(1)-乙酰转移酶。与母体药物相比,CPMENSPM羟基化最有趣的效果是毒性大幅降低。DENSPM/(2R,10R)-(HO)(2)DENSPM对也观察到了相同的现象。因此,去甲精胺类似物的羟基化似乎是一种在保持化合物抗增殖活性的同时降低其毒性的方法。