Secreto, G., Toniolo, P., Berrino, F., Recchione, C., Di Pietro, S., Fariselli, G., & Decarli, A. (1984). Increased androgenic activity and breast cancer risk in premenopausal women. Cancer Research, 44(12 Pt 1), 5902-5905.
Secreto G, Toniolo P, Berrino F, Recchione C, Di Pietro S, Fariselli G, et al. Increased androgenic activity and breast cancer risk in premenopausal women. Cancer Res. 1984;44(12 Pt 1):5902-5905.
Secreto, Giorgio, et al. "Increased androgenic activity and breast cancer risk in premenopausal women." Cancer Research, vol. 44, no. 12 Pt 1, 1984, pp. 5902-5905.
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Blood and urine specimens from 27 premenopausal breast cancer patients and 62 healthy controls have been compared with respect to concentration of testosterone and progesterone in blood and of testosterone and androstanediol in urine, measured in the luteal phase of the menstrual cycle. There was a strong positive association between the concentration of the two androgens, either in blood or urine, and breast cancer risk. A strong association was also observed with decreasing levels of progesterone. The association was statistically significant (p for trend less than 0.01) for each hormone; the rate ratios were 10.2 for serum testosterone (highest category), 5.6 for serum progesterone (lowest category), 8.4 for urinary testosterone (highest category), and 5.2 for androstanediol (highest category). The rate ratio for women presenting both high serum testosterone and low progesterone was 21.8 (4.1 to 116.1). Considering the exposure to at least one of three androgens at the highest level and low progesterone, the rate ratio was as high as 90.2 (8.2 to 989.7). This study provides evidence for the hypothesis that increased androgenic activity is an important risk indicator for breast cancer, particularly when associated with anovulation, as indicated by low serum progesterone level.
Fournier A et al., 2008·Breast Cancer Research and Treatment·Free full text on PubMed Central
Large numbers of hormone replacement therapies (HRTs) are available for the treatment of menopausal symptoms. It is still unclear whether some are more deleterious than others regarding breast cancer risk. The goal of this study was to assess and compare the association between different HRTs and breast cancer risk, using data from the French E3N cohort study. Invasive breast cancer cases were identified through biennial self-administered questionnaires completed from 1990 to 2002. During follow-up (mean duration 8.1 postmenopausal years), 2,354 cases of invasive breast cancer occurred among 80,377 postmenopausal women. Compared with HRT never-use, use of estrogen alone was associated with a significant 1.29-fold increased risk (95% confidence interval 1.02-1.65). The association of estrogen-progestagen combinations with breast cancer risk varied significantly according to the type of progestagen: the relative risk was 1.00 (0.83-1.22) for estrogen-progesterone, 1.16 (0.94-1.43) for estrogen-dydrogesterone, and 1.69 (1.50-1.91) for estrogen combined with other progestagens. This latter category involves progestins with different physiologic activities (androgenic, nonandrogenic, antiandrogenic), but their associations with breast cancer risk did not differ significantly from one another. This study found no evidence of an association with risk according to the route of estrogen administration (oral or transdermal/percutaneous). These findings suggest that the choice of the progestagen component in combined HRT is of importance regarding breast cancer risk; it could be preferable to use progesterone or dydrogesterone.
Two long and broad streams of medical literature, from the 1950's to date, have established the existence of two unrelated abnormalities of androgen production in women with breast cancer. One is the genetically determined presence of subnormal production of adrenal androgens (i.e. DHEA and DHEAS) in women with premenopausal breast cancer and their sisters, who are at increased risk for breast cancer. The other is excessive production of testosterone, of ovarian origin, in subsets of women with either premenopausal or postmenopausal breast cancer and women with atypical breast-duct hyperplasia, who are at increased risk for breast cancer; along with the hypertestosteronism, there is frequently chronic anovulation in the premenopausal patients. The combination of ovarian hypertestosteronism and chronic anovulation is characteristic of the polycystic ovary syndrome and is also frequently seen in women with abdominal ("android") obesity; both PCOS and abdominal obesity are known to be characterized by high risk for postmenopausal cancer. The elevated testosterone levels and the increased levels of insulin, IGF-I, and IGF-II that are seen in PCOS and abdominal obesity could favor the development of breast cancer in several ways, all of which have been demonstrated experimentally: binding of testosterone to cancer cells bearing testosterone receptors, with direct stimulation; intratissular aromatization of testosterone to estradiol, with stimulation of estrogen-sensitive cells; stimulation of the production of epithelial growth factor (EGF) by testosterone, with direct mitogenic effect of EGF on cancer cells; stimulation of aromatase by insulin and IGF-I; direct mitogenic stimulation of cancer cells by insulin, IGF-I, and IGF-II; and stimulation by IGF-I and IGF-II of the intratissular reduction of estrone to estradiol. Since PCOS is probably largely genetically determined, and abdominal obesity may also be, the hypertestosteronism of these conditions may represent a second genetically determined hormonal risk factor for breast cancer.
Gammon and Thompson (1) recently reported in the Journal the results of an analysis of data from the Center for Disease Control's Cancer and Steroid Hormones Study to examine the association between a history of physician-diagnosed polycystic ovaries and the risk of breast cancer. Despite the small number of exposed cases (n =23) and controls (nm 44), their data strongly support the conclusion that a history of polycystic ovaries protects against premenopausal and carly postmenopausal breast cancer. These results are in apparent conflict with those reported in a previous cohort study by Coulam et al. (2), who found a threefold increase in postmenopausal breast cancer in women with polycystic ovaries. Such discrepancy may reflect real, albeit unexplained differences between premenopausal and postmenopausal women in the influence of endogenous hormones on breast cancer.
Serum testosterone, progesterone, luteinizing hormone, prolactin, and sex hormone-binding globulin levels were measured in 55 normal controls, in 31 patients with hyperplastic alterations of breast epithelium, and in 23 patients with breast cancer. All patients and controls were premenopausal, and they were comparable for age, weight, and body surface. In the controls, the mean level of testosterone [0.47 +/- 0.16 (S.D.) ng/ml] was lower and the mean level of progesterone (17.63 +/- 8.11 ng/ml) was higher than in breast cancer patients [testosterone level, 0.62 +/- 0.22 ng/ml (p less than 0.005); progesterone level, 11.4 +/- 8.0 ng/ml (p less than 0.005)] and in patients with breast epithelial hyperplasia [testosterone level, 0.55 +/- 0.2 ng/ml (p less than or equal to 0.05); progesterone level, 13.9 +/- 8.6 ng/ml (p less than 0.05)]. No difference was found in the mean circulating levels of luteinizing hormone, prolactin, or sex hormone-binding globulin between controls and patients. These results confirm previous findings of increased urinary testosterone excretion in women with anovulatory menstrual cycles and epithelial hyperplasia or cancer of the breast and strongly support the hypothesis that androgens play an important role in both induction and development of breast cancer.
Urinary testosterone and androstanediol were measured by gas chromatography in four groups of premenopausal 22 healthy women (control group), 21 healthy women with a family history of breast cancer (familiality group), 39 patients with breast lumps which consisted of ductal or lobular hyperplasia (hyperplasia group) and 18 patients with infiltrating breast carcinoma (carcinoma group). On the basis of normal values found in our laboratory, steroid levels were above normal in 4.5% of the controls, 4.7% of the familiality group, 38.5% of the hyperplasia group (P less than 0.01 vs controls) and 61.1% of the carcinoma group (P less than 0.001 vs control group). The mean testosterone level in the carcinoma group (11.3 +/- 6.78 S.D.) and the mean androstanediol level in the hyperplasia group (47.25 +/- 31.0 S.D.) were significantly higher than those of the control group (testosterone 6.25 +/- 3.48 S.D., androstanediol 32.55 +/- 20.0 S.D.). No significant difference was found in mean testosterone or androstanediol levels between the control group and the familiality group (testerone 5.41 +/- 3.6 S.D., androstanediol 29.38 +/- 15.89 S.D.). We conclude that increased excretion of androgenic steroids is a hormonal abnormality common to breast cancer patients and to patients with breast epithelial hyperplasia, but not to subjects with a family history of carcinoma of the breast.
Forty-one women with breast cancer and 119 controls participated in a case-control study of the relation of endogenous sex hormones to breast carcinoma in premenopausal women. During the follicular phase of the menstrual cycle, one overnight urine specimen was collected. During the luteal phase, urine and blood specimens were obtained. 17 beta-Estradiol, sex hormone-binding globulin, progesterone, and prolactin were measured in plasma, whereas estrogen metabolites (estrone, estradiol, and estriol) and pregnanediol were assessed in the urine. Breast cancer was associated with high-plasma estradiol and prolactin and with low progesterone. Similar but weaker associations were observed for urinary estrogens and pregnanediol in the luteal phase.
Breast cancer incidence rates are high in societies with a Western lifestyle characterized by low levels of physical activity, and by an energy-dense diet rich in total and saturated fat and refined carbohydrates. Epidemiologic studies, so far mostly on postmenopausal women, have shown that breast cancer risk is increased in hyperandrogenic women, with decreased levels of plasma sex-hormone binding globulin, and with increased levels of testosterone and of free estrogens. This paper describes the role of hyperinsulinemia as a physiologic link between nutritional lifestyle factors, obesity, and the development of a hyperandrogenic endocrine profile, and reviews evidence that may or may not support the theory that chronic hyperinsulinemia is an underlying cause of breast cancer. An hypothesis is presented, stipulating that breast cancer risk is increased not only in hyperandrogenic postmenopausal women, but also in premenopausal women with mild hyperandrogenism and normal (ovulatory) menstrual cycles. The author suggests further investigation as to whether there is a positive association between risk of breast cancer before menopause and subclinical forms of the polycystic ovary syndrome (PCOS), and to what extent diet and physical activity during childhood, by modulating the degree of insulin resistance during adolescence, may or may not be determinants of a PCO-like hyperandrogenic endocrine profile persisting into adulthood.
Collaborative Group on Hormonal Factors in Breast Cancer, 2012·Lancet Oncol·Free full text on PubMed Central
Menarche and menopause mark the onset and cessation, respectively, of ovarian activity associated with reproduction, and affect breast cancer risk. Our aim was to assess the strengths of their effects and determine whether they depend on characteristics of the tumours or the affected women. Individual data from 117 epidemiological studies, including 118 964 women with invasive breast cancer and 306 091 without the disease, none of whom had used menopausal hormone therapy, were included in the analyses. We calculated adjusted relative risks (RRs) associated with menarche and menopause for breast cancer overall, and by tumour histology and by oestrogen receptor expression. Findings: Breast cancer risk increased by a factor of 1·050 (95% CI 1·044-1·057; p<0·0001) for every year younger at menarche, and independently by a smaller amount (1·029, 1·025-1·032; p<0·0001), for every year older at menopause. Premenopausal women had a greater risk of breast cancer than postmenopausal women of an identical age (RR at age 45-54 years 1·43, 1·33-1·52, p<0·001). All three of these associations were attenuated by increasing adiposity among postmenopausal women, but did not vary materially by women's year of birth, ethnic origin, childbearing history, smoking, alcohol consumption, or hormonal contraceptive use. All three associations were stronger for lobular than for ductal tumours (p<0·006 for each comparison). The effect of menopause in women of an identical age and trends by age at menopause were stronger for oestrogen receptor-positive disease than for oestrogen receptor-negative disease (p<0·01 for both comparisons). Interpretation: The effects of menarche and menopause on breast cancer risk might not be acting merely by lengthening women's total number of reproductive years. Endogenous ovarian hormones are more relevant for oestrogen receptor-positive disease than for oestrogen receptor-negative disease and for lobular than for ductal tumours. Cancer Research UK.
General Gynecology › Breast Health › Breast Cancer Risk · Reproductive Endocrinology › Ovarian Hormones › Androgens
S Di Pietro
PMID 6498847 6498847 Secreto et al. 1984, Secreto 1984
Cite this article
Secreto, G., Toniolo, P., Berrino, F., Recchione, C., Di Pietro, S., Fariselli, G., & Decarli, A. (1984). Increased androgenic activity and breast cancer risk in premenopausal women. Cancer Research, 44(12 Pt 1), 5902-5905.
Secreto G, Toniolo P, Berrino F, Recchione C, Di Pietro S, Fariselli G, et al. Increased androgenic activity and breast cancer risk in premenopausal women. Cancer Res. 1984;44(12 Pt 1):5902-5905.
Secreto, Giorgio, et al. "Increased androgenic activity and breast cancer risk in premenopausal women." Cancer Research, vol. 44, no. 12 Pt 1, 1984, pp. 5902-5905.