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Clinical Cancer Research Vol. 8, 1003-1007, April 2002
© 2002 American Association for Cancer Research


Advances in Brief

Inhibition of Androgen-independent Growth of Prostate Cancer Xenografts by 17ß-Estradiol1

Eva Corey2, Janna E. Quinn, Mary J. Emond, Kent R. Buhler, Lisha G. Brown and Robert L. Vessella

Departments of Urology [E. C., J. E. Q., K. R. B., L. G. B., R. L. V.] and Biostatistics [M. J. E.], University of Washington, Seattle, Washington 98195

Purpose: Estrogen treatment has long been known to be of benefit in prostate cancer (CaP), but its mechanism was thought to involve merely a reduction in androgen levels. However, new evidence indicates that estrogen may exert effects on CaP cells in the absence of androgens.

Experimental Design: Implantation of CaP xenografts (LuCaP 35, LuCaP 49, LuCaP 58, LuCaP 73, PC-3, and LNCaP) into intact and ovariectomized female mice was done to characterize growth and take rates in the absence of androgens. Ovariectomized female mice were supplemented with 17ß-estradiol, and LuCaP 35 CaP xenograft take and growth rates were determined. Reverse transcription-PCR was used to evaluate the presence of the estrogen receptor messages in CaP xenografts.

Results: We have observed significant inhibition of CaP growth in intact versus ovariectomized female animals in five of six CaP xenograft lines. 17ß-Estradiol supplements given to ovariectomized female mice led to inhibition of tumor establishment and diminished growth of LuCaP 35 similar to that observed in intact female mice. Using reverse transcription-PCR, we have shown that these xenografts express the estrogen receptor ß message.

Conclusions: We have determined that 17ß-estradiol supplementation causes inhibition of CaP growth in an animal model by mechanisms that are independent of androgen action. This gives rise to the possibility that estrogen therapy may be of potential use with hormone-refractory cancers. The xenograft models we describe herein may be useful as well in elucidating the pathways mediating the androgen-independent effects of estrogen on CaP.




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Copyright © 2002 by the American Association for Cancer Research.