Landeros-Martínez Linda-Lucila, Glossman-Mitnik Daniel, Flores-Holguín Norma
Laboratorio Virtual NANOCOSMOS, Departamento de Medio Ambiente y Energía, Centro de Investigación en Materiales Avanzados, Chihuahua, Mexico.
Front Chem. 2018 Jul 13;6:293. doi: 10.3389/fchem.2018.00293. eCollection 2018.
In this paper, the antiestrogenic properties of Tamoxifen analogs have been investigated and a theoretical report of its analogs interaction with the pocket site of some hormone receptors are presented. Analogs were generated by modification of the hydrophilic functional group of Tamoxifen by hydroxyl, amide, carboxyl, and sulfhydryl functional groups, in an attempt to improve their activity and selectivity. The analogs exhibit a negative binding energy in the estrogen and progesterone receptors, which indicates a spontaneous interaction between the analogs and the pocket site in the hormone receptors. The values of the molecular polar surface area indicate that the analogs have good permeability and are strong electrophiles. The couplings showed electrostatic interactions such as hydrogen bond and π-π interactions. According with the Lipinsky Rule of Five, the four analogs presented a good biodistribution, permeability, and pharmacological action on the hormone receptors. The analysis of the charge transfer suggests a limited enhanced oxidative damage in the estrogen receptor that not takes place with the progesterone receptor.
在本文中,已对他莫昔芬类似物的抗雌激素特性进行了研究,并给出了其类似物与某些激素受体口袋位点相互作用的理论报告。通过用羟基、酰胺、羧基和巯基官能团修饰他莫昔芬的亲水性官能团来生成类似物,以试图提高其活性和选择性。这些类似物在雌激素和孕激素受体中表现出负结合能,这表明类似物与激素受体口袋位点之间存在自发相互作用。分子极性表面积的值表明这些类似物具有良好的渗透性且是强亲电试剂。偶联显示出诸如氢键和π-π相互作用等静电相互作用。根据Lipinsky五规则,这四种类似物在激素受体上呈现出良好的生物分布、渗透性和药理作用。电荷转移分析表明雌激素受体中的氧化损伤增强有限,而孕激素受体则未出现这种情况。