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New Steroidal Anti-Inflammatory Antedrugs: 21-Thioalkylether Derivatives of Methyl 16-Prednisolone Carboxylates

机译:新的类固醇抗炎抗炎药:16-泼尼松龙羧酸甲酯的21-硫代烷基醚衍生物

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摘要

Antedrug approach of the corticosteroids has been described as a fundamentally sound approach for the development of safer anti-inflammatory steroids devoid of systemic side effects. In our continued efforts under the antedrug paradigm, we have recently extended this effort to synthesize the 21-thioalkylether derivatives of methyl 16- prednisolonecarboxylates. The 21-mesylate of the methyl-16-perdnisolonecarboxylates and 9-fluoro-17-dehydro methyl 16-prednisolonecarboxylate were reacted with Na-thioalkoxides to furnish the desired thioalkylethers in 60-75% yields. These newly synthesized thioalkylether steroid series were tested for their in vitro metabolism and corticosteroid receptor binding affinity. They were metabolized in predictable manner to inactive 16-carboxylic acids. All the newly synthesized antedrugs showed lowered glucocorticoid receptor binding affinity than prednisolone indicating that the replacement of the 21-OH function with thioalkylether of the 16-prednisolone carboxylate esters decreases their receptor binding affinity.
机译:皮质类固醇的抗前药方法已被描述为开发无系统副作用的更安全的抗炎类固醇的基本合理方法。在我们对前药范式的不断努力中,我们最近将这一努力扩展到了合成16-泼尼松龙羧酸甲酯的21-硫代烷基醚衍生物。使甲基-16-泼尼松龙羧酸酯的21-甲磺酸酯和9-氟-17-脱氢甲基16-泼尼松龙羧酸的酯与Na-硫代醇盐反应,以60-75%的产率提供所需的硫代烷基醚。对这些新合成的硫代烷基醚类固醇系列进行了体外代谢和皮质类固醇受体结合亲和力的测试。它们以可预测的方式代谢为非活性的16-羧酸。所有新合成的前药显示出比泼尼松龙更低的糖皮质激素受体结合亲和力,表明用16-泼尼松龙羧酸酯的硫代烷基醚代替21-OH官能团降低了它们的受体结合亲和力。

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