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Updated: Aug 20, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Role of estrogens in development of prostate cancer
Pirkko L Härkönen1, Sari I Mäkelä
1Department of Laboratory Medicine, Tumor Biology, Lund University, 20502 Malmö, Sweden. Pirkko.Harkonen@klkemi.mas.lu.se
Abstract:
Estrogens have previously been extensively used in prostate cancer treatment. Serious side effects, primarily in cardiovascular system have, however, limited their use. The therapeutic effect of estrogen in preventing prostate cancer growth was mainly obtained indirectly by feedback inhibition of the hypothalamic release of LRH leading to lowered serum androgen levels and castration like effects. Prostate tissue is also most probably a target for direct regulation by estrogens. Prostate contains estrogen receptor alpha (ERalpha) and beta (ERbeta), which are localized characteristically in stroma and epithelium, respectively. The physiological function of these receptors is not known but there is evidence of the role of estrogens in prostatic carcinogenesis. Developing prostate seems particularly sensitive to increased level of endogenous and/or exogenous estrogens. Perinatal or neonatal exposure of rats and mice to estrogens leads to "imprinting" of prostate associated with increased proliferation, inflammation and dysplastic epithelial changes later in life. Prolonged treatment of adult rodents with estrogens along with androgens also leads to epithelial metaplasia, PIN-like lesions and even adenocarcinoma of prostate speaking for the role of estrogen in prostate cancer development. Recent results concerning antiestrogen inhibition of prostate cancer development beyond PIN-type lesions in transgenic mouse models further suggests a role for estrogens in prostate cancer progression. These results also suggest that direct inhibition of estrogen action at the level of prostate tissue may provide an important novel principle of development of prostate cancer therapies.
Insights
Estrogens influence prostate cancer development and progression. Targeting estrogen action directly in prostate tissue may offer a novel therapeutic strategy for prostate cancer.
Area of Science:
- Endocrinology
- Oncology
- Urology
Background:
- Estrogens were historically used for prostate cancer treatment but caused severe side effects.
- Estrogen's therapeutic effects were primarily indirect, lowering androgen levels.
- Prostate tissue expresses estrogen receptors alpha and beta (ERalpha and ERbeta).
Purpose of the Study:
- To investigate the role of estrogens in prostate cancer development and progression.
- To explore the direct effects of estrogens on prostate tissue.
Main Methods:
- Review of existing literature on estrogen's effects on the prostate.
- Examination of rodent models with perinatal/neonatal estrogen exposure.
- Analysis of studies involving prolonged estrogen and androgen treatment in adult rodents.
- Evaluation of antiestrogen effects in transgenic mouse models of prostate cancer.
Main Results:
- Estrogen exposure during development can "imprint" the prostate, leading to later-life inflammation and dysplasia.
- Estrogen and androgen treatment in adult rodents can induce prostatic intraepithelial neoplasia (PIN)-like lesions and adenocarcinoma.
- Antiestrogen treatment inhibits prostate cancer progression beyond PIN-type lesions in mouse models.
Conclusions:
- Estrogens play a significant role in prostate carcinogenesis and progression.
- Direct inhibition of estrogen action within prostate tissue presents a potential new therapeutic approach for prostate cancer.
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