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Microwave assisted synthesis and biomedical potency of salicyloyloxy and 2-methoxybenzoyloxy androstane and stigmastane derivatives

机译:水杨酰氧基和2-甲氧基苯甲酰氧基雄烷和柱头烷衍生物的微波辅助合成及其生物医学活性

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A convenient microwave assisted solvent free synthesis as well as conventional synthesis of salicyloyloxy and 2-methoxybenzoyloxy androstane and stigmastane derivatives 7-19 from appropriate steroidal precursors 1-6 and methyl salicylate is reported. The microwave assisted synthesis in most cases was more successful regarding reaction time and product yields. It was more environmentally friendly too, compared to the conventional method. The antioxidant activity and cytotoxicity of the synthesized derivatives were evaluated in a series of in vitro tests, as well as their inhibition potency exerted on hydroxysteroid dehydrogenase enzymes (Delta 5-3 beta HSD, 17 beta HSD2 and 17 beta HSD2). All of the tested compounds were effective in OH radical neutralization, particularly compounds 9,11 and 14, which exhibited about 100-fold stronger activity than commercial antioxidants BHT and BHA. In DPPH radical scavenging new compounds were effective, but less than reference compounds. 2-Methoxybenzoyl ester 10 exhibited strong cytotoxicity against MDA-MB-231 cells. Most compounds inhibited growth of PC-3 cells, where salicyloyloxy stigmastane derivative 15 showed the best inhibition potency. Compounds 9, 10 and 11 were the best inhibitors of 17 beta HSD2 enzyme. X-ray structure analysis and molecular mechanics calculations (MMC) were performed for the best cytotoxic agents, compounds 10 and 15. A comparison of crystal and MMC structures of compounds 10 and 15 revealed that their molecules conformations are stable even after releasing of the influence of crystalline field and that the influence of crystal packing on molecular conformation is not predominant. (C) 2014 Elsevier Inc. All rights reserved.
机译:据报道,由合适的甾族前体1-6和水杨酸甲酯可方便地进行微波辅助的无溶剂合成以及水杨酰氧基和2-甲氧基苯甲酰氧基雄烷和柱头烷衍生物7-19的常规合成。在大多数情况下,微波辅助合成在反应时间和产物收率方面更为成功。与传统方法相比,它也更环保。在一系列体外测试中评估了合成衍生物的抗氧化活性和细胞毒性,以及它们对羟基类固醇脱氢酶(δ5-3 beta HSD,17 beta HSD2和17 beta HSD2)的抑制作用。所有测试的化合物都能有效地中和OH自由基,尤其是化合物9,11和14,它们的活性比市售抗氧化剂BHT和BHA强约100倍。在DPPH中,自由基清除新化合物是有效的,但少于参考化合物。 2-甲氧基苯甲酸酯10对MDA-MB-231细胞表现出强的细胞毒性。大多数化合物抑制PC-3细胞的生长,其中水杨酰氧基stigmastane衍生物15表现出最佳的抑制效能。化合物9、10和11是17βHSD2酶的最佳抑制剂。对最佳的细胞毒剂化合物10和15进行了X射线结构分析和分子力学计算(MMC)。化合物10和15的晶体和MMC结构的比较表明,即使释放了这种影响,它们的分子构象也是稳定的晶体场的影响以及晶体堆积对分子构象的影响并不重要。 (C)2014 Elsevier Inc.保留所有权利。

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