Murphy C S, Langan-Fahey S M, McCague R, Jordan V C
Department of Human Oncology, University of Wisconsin Clinical Cancer Center, Madison 53792.
Mol Pharmacol. 1990 Nov;38(5):737-43.
Several hydroxylated derivatives of tamoxifen were tested for their effects on the growth of T47D human breast cancer cells in vitro. Compounds containing a fused seven-membered ring were used to prevent isomerization of the triphenyl-ethylenes at the double bond. This stable structure permitted the determination of the activity of the cis and trans forms of tamoxifen and the true activity of two of its metabolites, 4-hydroxytamoxifen and metabolite E. Estradiol stimulates the growth of T47D cells 3-4-fold over control after 6 days of treatment (EC50 = congruent to 3 x 10(-12) to 3 x 10(-11) M, depending upon the particular experiment). The fixed ring form of the trans isomer of tamoxifen is an antiestrogen, whereas the cis isomer is estrogenic. Fixed ring-trans-4-hydroxytamoxifen is a potent antiestrogen, and its cis isomer is a weak antiestrogen (IC50 congruent to 4 x 10(-8) to 2 x 10(-7) M). The fixed ring form of trans-metabolite E (tamoxifen without the dimethylaminoethane side chain) is only a weak partial estrogen agonist, whereas the fixed ring derivative of its cis isomer is a potent estrogen agonist (EC50 congruent to 4 x 10(-12) to 1 x 10(-11) M). These studies have determined the true biological activities of the hydroxylated derivatives of tamoxifen. This information will be valuable for the development of drug receptor models and will be particularly useful when the three-dimensional structure of the receptor complex is determined.
对他莫昔芬的几种羟基化衍生物进行了体外实验,以研究它们对T47D人乳腺癌细胞生长的影响。含有稠合七元环的化合物用于防止三苯乙烯在双键处异构化。这种稳定的结构使得能够测定他莫昔芬顺式和反式异构体的活性以及其两种代谢物4-羟基他莫昔芬和代谢物E的真实活性。用雌二醇处理6天后,T47D细胞的生长比对照刺激了3至4倍(EC50约为3×10^(-12)至3×10^(-11) M,具体取决于特定实验)。他莫昔芬反式异构体的固定环形式是一种抗雌激素,而顺式异构体具有雌激素活性。固定环反式-4-羟基他莫昔芬是一种强效抗雌激素,其顺式异构体是一种弱抗雌激素(IC50约为4×10^(-8)至2×10^(-7) M)。反式代谢物E(不含二甲基氨基乙烷侧链的他莫昔芬)的固定环形式只是一种弱部分雌激素激动剂,而其顺式异构体的固定环衍生物是一种强效雌激素激动剂(EC50约为4×10^(-12)至1×10^(-11) M)。这些研究确定了他莫昔芬羟基化衍生物的真实生物学活性。这些信息对于药物受体模型的开发将是有价值的,并且当确定受体复合物的三维结构时将特别有用。