Laboratory of Medicinal Chemistry, Oncology and Genomic Unit, CHUQ-CHUL Research Center and Laval University, Québec, Canada.
Steroids. 2012 Nov;77(13):1403-18. doi: 10.1016/j.steroids.2012.07.012. Epub 2012 Aug 14.
The steroid nucleus is an interesting scaffold for the development of new therapeutic agents. Within the goal of identifying anticancer agents, new pregnane derivatives were prepared by using a sequence of liquid and solid-phase reactions. After we dehydrated epi-allopregnanolone in one step with diethylaminosulfur trifluoride and generated a 2,3α-epoxide, the regio- and stereo-selective aminolysis of this epoxide enabled us to obtain a 2β-piperazino-pregnane, whose secondary amine was protected as N-Fmoc-derivative. Using the difference in reactivity between OHs 3 and 20, we linked the pregnane nucleus-selectively on the polystyrene diethylbutylsilane resin via the OH in position 20. We next achieved in parallel the coupling of an amino acid (1st level of diversity) and the coupling of a carboxylic acid (2nd level of diversity) to generate two libraries of pregnane derivatives. The compounds inhibited the HL-60 leukemia cell growth and the most potent were three compounds (PD, LPC-37 and LPC-48) with a l-proline as first level of diversity and a cyclohexyl-carbonyl, a naphthalene-2-carbonyl or a 3-acetylbenzoyl as second level of diversity. LPC-48 efficiently inhibited HL-60 cell proliferation with IC(50) value of 1.9 μM and exhibited a low toxicity on normal peripheral blood lymphocytes (IC(50)=31 μM). These results encouraged us to further evaluate the biological activity of these new aminosteroids by investigating their preliminary mechanism of action.
甾体核是开发新治疗剂的有趣支架。在鉴定抗癌剂的目标内,通过一系列液相和固相反应制备了新的孕烷衍生物。在我们用二乙氨基三氟化硫一步脱水表全孕烷醇酮并生成 2,3α-环氧化物后,该环氧化物的区域和立体选择性氨解使我们能够获得 2β-哌嗪孕烷,其仲胺被保护为 N-Fmoc-衍生物。利用 3 和 20 位 OHs 之间的反应性差异,我们通过 20 位的 OH 选择性地将孕烷核连接到聚苯乙烯二乙基丁基硅烷树脂上。接下来,我们同时实现了氨基酸(第一级多样性)和羧酸的偶联,生成了两个孕烷衍生物文库。这些化合物抑制 HL-60 白血病细胞生长,其中最有效的是三种化合物(PD、LPC-37 和 LPC-48),它们的第一个氨基酸为 l-脯氨酸,第二个氨基酸为环己基羰基、萘-2-羰基或 3-乙酰苯甲酰基。LPC-48 以 1.9 μM 的 IC(50)值有效地抑制 HL-60 细胞增殖,并对正常外周血淋巴细胞表现出低毒性(IC(50)=31 μM)。这些结果鼓励我们通过研究其初步作用机制,进一步评估这些新氨基甾体的生物活性。