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首页> 外文期刊>Steroids: An International Journal >Explorative study on the anticancer activity, selectivity and metabolic stability of related analogs of aminosteroid RM-133
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Explorative study on the anticancer activity, selectivity and metabolic stability of related analogs of aminosteroid RM-133

机译:Aminosteroid RM-133相关类似物的抗癌活性,选择性和代谢稳定性的探索性研究

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摘要

RM-133 is a key representative of a new family of aminosteroids reported as potent anticancer agents. Although RM-133 produced interesting results in 4 mouse xenograft cancer models when injected subcutaneously, it needs to be improved to increase its in vivo potency. Thus, to obtain an analog of RM-133 with a better drug potential, a structure-activity relationship study was conducted by synthesizing eleven RM-133-related compounds and addressing their antiproliferative activity on 3 human cancer cells (HL-60, OVCAR-3 and PANC-1) and 3 human normal cell lines (primary ovary, pancreas and renal proximal tubule) as well as their metabolic stability in human liver microsomes. When the 2 beta-tertiary amine of RM-133 was transformed into a salt or moved to position 30, the anticancer activity was lost. Modifying the orientation of the side chain of RM-133 increased anticancer activity and selectivity, but led to a drastic loss of stability. The protection of the 3 alpha-hydroxyl of RM-133 by the formation of an ester or a carbamate stabilized the molecule against the phase I metabolic enzymes without affecting its anticancer activity. In comparison to RM-133, the 3-dimethylcarbamate derivative 3 is more selective for cancer cells over normal cells and is much more stable in liver microsomes. Those results support the use of a pro-drug strategy targeting the 3 alpha-hydroxyl of RM-133 as an approach to improve its drug properties. The work presented will enable the development of an optimized anticancer drug of the aminosteroid family that is suitable for a future phase I clinical trial. (C) 2016 Elsevier Inc. All rights reserved.
机译:RM-133是一系列新的氨基甾醇家族,被称为有效的抗癌剂。虽然RM-133在皮下注射时,在4个小鼠异种移植癌模型中产生了有趣的结果,但需要改善以增加其体内效力。因此,为了获得具有更好的药物潜力的RM-133的类似物,通过合成11M-133相关化合物并对3种人癌细胞(HL-60,OVCAR - 3和Panc-1)和3种人正常细胞系(原发性卵巢,胰腺和肾近管)以及它们在人肝微粒体中的代谢稳定性。当将2β-叔胺的RM-133转化成盐或移动到第30位时,抗癌活性丢失。改变RM-133侧链的方向增加抗癌活动和选择性,但导致了稳定性的急剧丧失。通过形成酯或氨基甲酸酯的3α-羟基的3α-羟基的保护稳定分子I的代谢酶而不影响其抗癌活性。与RM-133相比,3-二甲基氨基甲酸酯衍生物3对正常细胞上的癌细胞更具选择性,并且在肝微粒体中更稳定。这些结果支持使用靶向RM-133的3个α-羟基的药物策略作为改善其药物性质的方法。所呈现的工作将能够开发适用于未来I期临床试验的氨基甾醇系列的优化抗癌药物。 (c)2016年Elsevier Inc.保留所有权利。

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