Department of Pharmaceutical Chemistry-Medicinal Chemistry, Institute of Pharmaceutical Sciences, University of Graz, Graz, Austria.
J Med Chem. 2009 Mar 12;52(5):1268-74. doi: 10.1021/jm800985z.
A series of mifepristone derivatives with different "linker groups" in position 4' of the phenyl ring in the 11beta-position of the steroid scaffold (2-41) have been synthesized. Their antigestagenic activites were determined in a cell-based assay (alkali phosphatase assay in T47-D breast cancer cells) and compared with that of the parent compound mifepristone. SAR and QSAR studies reveal the influence of both lipophilicity and partial charge based van der Waals surface area descriptors on biological activity. Within the series of compounds described in this study, three mifepristone derivatives are identified with considerably high antigestagenic activity. These compounds are regarded as useful starting materials for the synthesis of either physiologically stable or cleavable progesterone receptor-binding conjugates for therapeutic or diagnostic purposes.
已经合成了一系列米非司酮衍生物,它们在甾体支架 11β 位的苯环 4'位的“连接基团”不同(2-41)。在基于细胞的测定法(T47-D 乳腺癌细胞的碱性磷酸酶测定法)中测定了它们的抗孕激素活性,并与母体化合物米非司酮进行了比较。SAR 和 QSAR 研究揭示了脂溶性和基于部分电荷的范德华表面积描述符对生物活性的影响。在所描述的化合物系列中,鉴定出了三种米非司酮衍生物,它们具有相当高的抗孕激素活性。这些化合物被认为是用于合成用于治疗或诊断目的的生理稳定或可裂解孕激素受体结合缀合物的有用起始材料。