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Urinary 2-hydroxyestrone/16alpha-hydroxyestrone ratio and family history of breast cancer in premenopausal women.

It has been hypothesized that the ratio of urinary 2-hydroxyestrone to 16alpha-hydroxyestrone (2-OHE1/16alpha-OHE1 represents a biomarker for breast cancer risk; the lower the ratio the higher the risk. We obtained early morning urine samples from 70 'high risk' premenopausal women who had a first degree family history of breast cancer and 27 'low risk' women with no such history. Five estrogen metabolites in urine were determined: 2-OHE1, 16alpha-OHE1, estrone (E1), estradiol (E2), and estriol (E3) conjugates. We compared geometric mean levels of each metabolite adjusted for age and weight. 'High risk' women did not have elevated levels of any of these metabolites. Instead, we observed decrements of 3-27% in women with a family history of breast cancer compared with women without such history, this difference was statistically significant for E2, 2- OHE1, and 16alpha-OHE1. The ratio of 2-OHE1/16alpha-OHE1 was identical in women with and without a family history of breast cancer. These results were unchanged, when additionally adjusted for recent intake of alcohol or cruciferous vegetables. Our data suggest that among premenopausal women, family history is not associated with higher urinary estrogen levels or a lower ratio of urinary 2-OHE1/16alpha-OHE1.

Adult↗

Urinary estrogen metabolites and prostate cancer: a case-control study in the United States.

OBJECTIVE: To analyze the association of prostate cancer risk with estrogen metabolism, expressed as the ratio of 2-hydroxyestrone (2-OHE1) to 16alpha-hydroxyestrone (16alpha-OHE1), in a case-control study conducted in Buffalo, NY, between 1998 and 2001. METHODS: One hundred and thirteen men, aged 45-85 years, with incident, primary pathologically confirmed prostate cancer were enrolled in the study; 317 residence-matched controls were also enrolled. Cases were enrolled and the specimens collected before starting any therapy. To exclude latent prostate carcinomas, the present study included only patients with clinically apparent disease (stage B and higher). Prostate cancer cases and control subjects were excluded if on hormonal treatment, or affected with metabolic or endocrine diseases. Control subjects with a prostate-specific antigen (PSA) value higher than 4 ng/ml were excluded from the control group. Urine was used for the determinations of 2-OHE1 and 16alpha-OHE1. Age, race, body weight, waist-to-hip ratio, and smoking were analyzed as possible confounders. RESULTS: Althpugh the results were not statistically significant, elevated 2-OHE1 urinary levels suggested a reduced prostate cancer risk: men in the highest tertile had an adjusted odds ratio (OR) for prostate cancer of 0.83 (95% confidence interval (CI) 0.43-1.44). Conversely, elevated 16alpha-OHE1 urinary levels were associated with an increased risk of prostate cancer: the highest tertile had an adjusted OR for prostate cancer of 1.69 (95% CI 0.93-3.06, p for linear trend = 0.02). Finally, the 2-OHE1 to 16alpha-OHE1 ratio was associated with a reduced risk of prostate cancer with an OR of 0.61 (95% CI 0.33-1.15, p for linear trend = 0.04). CONCLUSION: Results of this case-control study suggest that the estrogen metabolic pathway favoring 2-hydroxylation over 16alpha-hydroxylation may reduce risk of clinically evident prostate cancer.

Adenocarcinoma↗

Effects of docosahexaenoic acid supplementation on blood lipids, estrogen metabolism, and in vivo oxidative stress in postmenopausal vegetarian women.

BACKGROUND: Vegetarians are generally deficient in long-chain n-3 fatty acids. Long-chain n-3 fatty acids have a beneficial effect on plasma lipid levels, and some studies showed that they had breast cancer suppression effect. One of the biomarkers of breast cancer risk is the ratio of urinary 2-hydroxyestrone (2-OHE(1)) to 16alpha-hydroxyestrone (16alpha-OHE(1)). OBJECTIVE: To investigate the effect of docosahexaenoic acid (DHA, 22:6n-3) supplementation on blood lipids, estrogen metabolism and oxidative stress in vegetarians. DESIGN: Single-blind, randomized, placebo-controlled trial. INTERVENTIONS: Twenty-seven postmenopausal vegetarian women were recruited. After a 2-week run-in period with 6 g placebo corn oil, the subjects were subsequently randomized to receive either 6 g corn oil (n=13) or 6 g DHA-rich algae oil (2.14 g of DHA/day) (n=14) for 6 weeks. Two subjects in corn oil group withdrew before completion. MAIN OUTCOME MEASURES: Plasma lipids, urinary 2-OHE(1) and 16alpha-OHE(1), urinary F(2)-isoprostanes and plasma alpha-tocopherol. RESULTS: Plasma LDL-DHA and EPA level increased significantly by DHA supplementation. DHA decreased plasma cholesterol (C) levels (P=0.04), but did not influence the levels of plasma TG, LDL-C and HDL-C, alpha-tocopherol, urinary F(2)-isoprostanes, 2-OHE(1), 16alpha-OHE(1) and ratio of 2-OHE(1) to 16alpha-OHE(1) as compared to corn oil. CONCLUSION: DHA supplementation at a dose of 2.14 g/day for 42 days decreases plasma cholesterol but neither does it show beneficial effects on estrogen metabolism, nor does it induce deleterious effects on the observed in vivo antioxidant or oxidative stress marker in postmenopausal vegetarian women. SPONSORSHIP: A grant (# DOH89-TD-1062) from Department of Health, Executive Yuan, Taiwan.

Biomarkers↗

The effects of postmenopausal hormone replacement therapy and oral contraceptives on the endogenous estradiol metabolism.

The estradiol metabolism may be of clinical relevance in the pathophysiology of various diseases; the increase in D-ring metabolites over A-ring metabolites in breast cancer patients is of special interest. Since estrogen therapy has been blamed for increasing the risk of breast cancer, the effects of hormonal replacement therapy (HRT) and oral contraception were investigated on the ratio of the main D-ring metabolite, 16alpha-hydroxyestrone (16-OHE1), to the main A-ring metabolite, 2-hydroxyestrone (2-OHE1). In our study, hormone replacement therapy (HRT) in postmenopausal women consisted of administration of estradiol valerate either with or without addition of the progestin dienogest. In the second part of the study, women of reproductive age received ethinylestradiol plus dienogest or ethinylestradiol plus norethisterone acetate as oral contraceptives (OC). 2-OHE1 and 16-OHE1 were measured by enzyme immunoassay in 8 h night-urine collected before and after 3 months of hormone administration. With HRT, that is, estradiol valerate or estradiol valerate plus dienogest, the ratios before treatment were 0.47 and 0.60; after 3 months, they were 0.54 and 0.52, respectively. There were no significant differences. With oral contraception, that is, ethinylestradiol plus dienogest or norethisterone acetate, the ratios before administration were 0.62 and 0.68, vs. 0.31 and 0.54 after 3 months, respectively. The ratio after ethinylestradiol and dienogest was significantly lower after treatment. HRT and OC in the estrogen-progestin combinations tested did not impose any negative effects on estradiol metabolism--they did not elicit a higher D-ring metabolism, which is considered to increase breast cancer risk.

Adult↗

Effect of norethisterone acetate on estrogen metabolism in postmenopausal women.

Dominance of estradiol metabolism at the D-ring over the A-ring metabolism may play a role in the pathophysiology of human breast carcinogenesis. Currently, the influence of progestins on breast cancer risk is debated when added to postmenopausal estradiol replacement therapy. However, nothing is known about the action of progestins on estradiol metabolism. Therefore, the effect of oral and transdermal estradiol/norethisterone acetate (NETA) was investigated on the ratio of the main D-ring metabolite 16alpha-hydroxyestrone (16-OHE1) to the main Aring metabolite 2-hydroxyestrone (2-OHE1). The ratio of 16-OHE1 to 2-OHE1 after transdermal hormone replacement therapy (HRT) was 0.43 before treatment, 0.35 after estradiol and 0.52 after estradiol + NETA. The ratio after oral HRTwas 0.94 before treatment, 0.86 after estradiol and 2.30 after estradiol + NETA. Because of the high variations, no statistical significance could be calculated. Since there was a tendency to an increase after oral estradiol + NETA treatment, the individual patient profiles were examined. Here, three patients in the oral treatment group showed a significant increase of the ratio after the estradiol/NETA phase. In conclusion, transdermal NETA in HRT did not elicit any change in estrogen metabolism after 2 weeks' treatment. However, oral NETA may in some cases have an impact on estradiol metabolism which should be further evaluated.

Anticarcinogenic Agents↗

Estrogen metabolism as a risk factor for head and neck cancer.

OBJECTIVE: Estrogen metabolites have been associated in the pathogenesis of breast and cervical cancer; 16alpha-hydroxyestrone(16alpha-OHE1) demonstrated proliferative effects whereas 2-hydroxyestrone(2-OHE1) had antiproliferative effects. Our study's objective is to demonstrate that head and neck (H&N) cancer patients metabolize estrogen differently than healthy controls, which may constitute a risk factor for H&N cancer development. STUDY DESIGN: Urinary metabolite levels of 2-OHE1 and 16alpha-OHE1 from 50 H&N cancer patients and 50 age- and sex-matched controls were measured using enzyme-linked immunosorbent assay (ELISA). Absolute values and 2-/16alpha-OHE1 ratios were calculated. Conditional logistic regression for univariate and multivariate analysis with odds ratio (OR) and 95% confidence interval (CI) were used. RESULTS: Thirty percent (15 of 50) from the case group had a low 2-/16alpha-OHE1 ratio compared with only 4% (2 of 50) in the control group (OR = 11.1; 1.4-91.5, 95% CI) (P < 0.05). When adjusted for tobacco, OR remained significant at 15.6 (1.1-212.5, 95% CI) (P < 0.05). CONCLUSION: H&N cancer patients are more likely to express abnormal estrogen metabolism than healthy controls; 2-/16alpha-OHE1 may serve as a potential biological marker of individuals at increased risk of H&N cancer.

Adult↗

Selected diet and lifestyle factors are associated with estrogen metabolites in a multiracial/ethnic population of women.

Diet and lifestyle factors, body size, and smoking behavior may influence estrogen metabolism, but the nature of these relations may vary according to race/ethnic groups. We evaluated the association of lifestyle factors with estrogen metabolites 2-hydroxyestrone (2-OHE1) and 16alpha-hydroxyestrone (16alpha-OHE1) in a racially diverse population. With a cross-sectional study design, urine samples from 1881 African-American, Caucasian, Chinese, Japanese, and Hispanic women, aged 42-52 y, from the Study of Women's Health Across the Nation (SWAN) were assayed by EIA for 2-OHE1 and 16alpha-OHE1. Dietary factors and beverages were measured using a modified Block FFQ. Dietary fiber, vegetable and fruit servings, Brassica vegetables, polyphenols, coffee, caffeine, green and black tea, and total alcohol and wine were related to metabolite values using multiple variable regression analyses. In adjusted analyses, 2-OHE1 concentrations were significantly associated with race/ethnicity, weight, smoking, and consumption of hydroxybenzoic acid, anthocyanidins, wine, and caffeine (P < 0.05). Regression models incorporating these variables explained 19-20% of the variation in 2-OHE1 concentrations. Regression models for 16alpha-OHE1, which explained 16-17% of the variability, included race/ethnicity, smoking, caffeine, total dietary fiber, and fiber from fruits and vegetables as variables. These associations may reflect why increased consumption of polyphenol-containing foods and fruit as well as decreased smoking, caffeine intake, and body size would be consistent with hypothesized benefits and risks for selected health outcomes.

Anticarcinogenic Agents↗

Estrogen metabolites and the risk of breast cancer in older women.

BACKGROUND: Women who metabolize a large proportion of their estrogen via the 16alpha hydroxylation pathway could be at a higher risk of breast cancer. The objective of this study was to test the hypothesis that serum concentrations of 2-hydroxyestrone (2-OHE1) and 16alpha-hydroxyestrone (16alpha-OHE1), as well as their ratio, predict the risk of breast cancer in older women. METHODS: We performed a case-cohort study of 272 women with confirmed incident breast cancer and 291 controls chosen randomly from the cohort. Estrogen metabolites were measured in serum collected at the baseline examination and stored at -120 degrees C. Incident breast cancers were confirmed by medical records and pathology reports during an average follow-up of 8.7 years. RESULTS: Mean concentrations of 2-OHE1 and 16alpha-OHE1, adjusted for age and body mass index, were 3% to 4% higher in cases compared with controls: 2-OHE1 was 176 pg/mL and 169 pg/mL and 16alpha-OHE1 was 233 pg/mL and 226 pg/mL in cases and controls, respectively. There was, however, no difference in the ratio of 2-OHE1 to 16alpha-OHE1. The risk of breast cancer in women with the highest quartile of this ratio compared with those in the lowest quartile was 1.17 (95% confidence interval = 0.73-1.87). CONCLUSION: The study results do not support the hypothesis that the ratio of 2-OHE1 to 16alpha-OHE1 predicts breast cancer risk.

Aged↗

Estrogen metabolism and breast cancer.

BACKGROUND: Specific pathways involved in estrogen metabolism may play a role in the etiology of breast cancer. We used data from a large population-based case-control study to assess the association of the urinary estrogen metabolites 2-hydroxyestrone (2-OHE1), 16alpha-hydroxyestrone (16-OHE1), and their ratio (2/16) with both invasive and in situ breast cancer. METHODS: Study participants from the Long Island Breast Cancer Study Project provided a spot urine specimen and completed a comprehensive interviewer-administered questionnaire. Women who used exogenous hormones or who took tamoxifen in the 6 months before urine collection were excluded from the analysis, leaving 269 invasive cases, 158 in situ cases, and 326 controls. Unconditional logistic regression was used to obtain adjusted odds ratios (ORs) for invasive and in situ breast cancer, separately, in relation to tertiles of the individual metabolites (standardized for creatinine) and the 2/16 ratio, stratified by menopausal status. RESULTS: The OR for invasive breast cancer was inversely associated with the 2/16 ratio among premenopausal women (OR = 0.50 for extreme tertiles; 95% confidence interval = 0.25-1.01). ORs ranged from 0.32 to 0.60 when women were stratified by whether cases had received chemotherapy within 6 months before urine collection and by estrogen receptor status. In postmenopausal women, there was a slight reduction in the odds ratio for invasive cancer with high levels of the 2/16 ratio (OR = 0.78; 95% confidence interval = 0.46-1.33). Neither the individual metabolites nor the ratio were associated with in situ breast cancer. CONCLUSION: These data provide support for the hypothesis that the 2/16 ratio is associated with reduced breast cancer risk. The most consistent associations were observed with invasive cancer in premenopausal women.

Aged↗

Pilot study: effect of 3,3'-diindolylmethane supplements on urinary hormone metabolites in postmenopausal women with a history of early-stage breast cancer.

Dietary indoles, present in Brassica plants such as cabbage, broccoli, and Brussels sprouts, have been shown to provide potential protection against hormone-dependent cancers. 3,3'-Diindolylmethane (DIM) is under study as one of the main protective indole metabolites. Postmenopausal women aged 50-70 yr from Marin County, California, with a history of early-stage breast cancer, were screened for interest and eligibility in this pilot study on the effect of absorbable DIM (BioResponse-DIM) supplements on urinary hormone metabolites. The treatment group received daily DIM (108 mg DIM/day) supplements for 30 days, and the control group received a placebo capsule daily for 30 days. Urinary metabolite analysis included 2-hydroxyestrone (2-OHE1), 16-alpha hydroxyestrone (16alpha-OHE1), DIM, estrone (El), estradiol(E2), estriol (E3), 6beta-hydroxycortisol (6beta-OHC), and cortisol in the first morning urine sample before intervention and 31 days after intervention. Nineteen women completed the study,for a total of 10 in the treatment group and 9 in the placebo group. DIM-treated subjects, relative to placebo, showed a significant increase in levels of2-OHE1 (P=0. 020), DIM (P =0. 045), and cortisol (P = 0.039), and a nonsignificant increase of 47% in the 2-OHE1/16alpha-OHE1 ratio from 1.46 to 2.14 (P=0.059). In this pilot study, DIM increased the 2-hydroxylation of estrogen urinary metabolites.

Aged↗

Impact of continuously administered catechol estrogens on uterine growth and luteinizing hormone secretion.

The biological activity of a series of natural catechol estrogens was examined under conditions of continuous administration. 2-Hydroxyestradiol (2OH-E2), 2-methoxyestradiol (2MeOE2), 4-hydroxyestrone (4OH-E1), 4-methoxyestradiol (4MeOE2), 2-hydroxyestrone (2OH-E1), and 4-methoxyestrone (4MeOE1) were delivered at the rate of 1 microgram/h from osmotic pumps implanted in ovariectomized rats. Uterine growth and plasma LH concentrations were measured 24, 48, and 72 h after implantation. Little or no uterotropic activity was exhibited by the 2-hydroxylated metabolites 2OH-E1 and 2MeOE2 at any interval, while 2OH-E2 exhibited anomalous uterotropic activity, which terminated at 48 h. The 4-hydroxylated compounds 4MeOE2, 4OH-E1, and 4MeOE1 all produced substantial and progressive uterine growth. Tonic LH secretion was suppressed by 2OH-E2, 4OH-E1, and 4MeOE1 in proportion to their uterotropic activity. 2OH-E1 was the only substance which increased plasma LH concentrations. The nuclear receptor occupancy by 2OH-E2 was substantially shorter than that of E2. Binding studies of the test and other related estrogens to the uterine cytosol estradiol receptor showed that their relative binding affinities in many instances did not correlate with their biological activities.

Animals↗

Metabolism of catechol estrogen by human erythrocytes.

In a study designed to evaluate the kinetics of catechol estrogen formation from plasma estrone in vivo, we obtained evidence that the red blood cell (RBC) enzyme, catechol-O-methyl transferase, catalyzes the transformation of 2-hydroxyestrone to 2-methoxyestrone. Under in vitro conditions, the rate of conversion of 2-hydroxyestrone to 2-methoxyestrone by human RBC's was such that 7 nmol of 2-methoxyestrone were formed per h per ml of RBC.

Catechol O-Methyltransferase↗

Formation of 2- and 4-hydroxyestrogens by brain, pituitary, and liver of the human fetus.

When [6,7-3H]estradiol was incubated with tissue homogenates of the brain, the pituitary, and the liver of two human female fetuses, a number of radioactive metabolites more "polar" than the incubated substrate were detected. Among these, the identification of two types of catecholestrogens, i.e. the 2- and 4-hydroxyestrogens, was of major interest. Compared on the basis of wet weight of tissues (250 mg), the conversion of estradiol to 2-hydroxyestrogens (2-hydroxyestradiol and 2-hydroxyestrone) was 0.8% in the frontal cortex, 1.0% in the hypothalamus, 2.1% in the pituitary, and 7.8% in the liver. For the first time, the formation of 4-hydroxyestrogens was demonstrated. The percentages of incubated estradiol hydroxylated at C-atom 4 (4-hydroxyestradiol and 4-hydroxyestrone) were 0.5 in the cortex, 0.4% in the hypothalamus, .1% in the pituitary, and 0.5% in the liver. The results show that fetal brain and pituitary tissue can hydroxylate estradiol in positions 2 and 4 to a similar extent, whereas in the liver, about 15 times more 2-hydroxy than 4-hydroxy compounds are formed. Moreover, the 2-hydroxylating capacity of the liver is definitely greater than that of the brain, whereas the 4-hydroxylating capacity is about the same as that of the brain.

Brain↗

Menstrual cycle effects on urinary estrogen metabolites.

Endogenous estrogen metabolism may play an important role in the pathogenesis of hormone-related cancers, most notably breast cancer. Despite the importance of estrogen metabolism, little is known about estrogen metabolite profiles during different phases of the menstrual cycle. This study was performed to evaluate the effects of the menstrual cycle on endogenous estrogen metabolism. Twenty-four-hour urine samples were collected daily during 4 precisely defined phases of the menstrual cycle (early follicular, midfollicular, periovulatory, and midluteal phases) from 6 healthy premenopausal women. Urine samples were analyzed for 15 endogenous estrogens and their metabolites by an ion exchange chromatography and the capillary gas chromatography-mass spectrometry method. The patterns of urinary estrogen metabolites (including potentially genotoxic 16alpha-hydroxyestrone, 4-hydroxyestradiol, and 4-hydroxyestrone) followed those of plasma estradiol and estrone, showing significant increases in the periovulatory and midluteal phases. Compared to the early and midfollicular phases, the ratios of 2-hydroxyestrogens/16alpha-hydroxyestrogens and 2-hydroxyestrogens/4-hydroxyestrogens were significantly increased during the periovulatory and midluteal phases (by 28% and 72%, respectively; P < 0.05), suggesting that estrogen metabolism is significantly affected by menstrual cycle phase. These data indicate that menstrual cycle phase must be considered in studies of estrogen metabolism in premenopausal women.

Adult↗

Effects of pesticides on the ratio of 16 alpha/2-hydroxyestrone: a biologic marker of breast cancer risk.

Xenobiotic estrogens are external compounds with estrogenic activity that may thereby affect the risk of breast cancer. This paper describes a mechanism by which xeno-estrogens may affect the development of breast cancer. Estradiol metabolism proceeds by hydroxylation at one of two mutually exclusive sites at C-2 and C-16 alpha. The catechol pathway yields the weakly estrogenic 2-hydroxyestrone (2-OHE1), which inhibits breast cell proliferation. In contrast, the alternative pathway yields the genotoxic 16 alpha-hydroxyestrone (16 alpha-OHE1), which enhances breast cell growth, increases unscheduled DNA synthesis, and oncogene and virus expression, and increases anchorage-independent growth. Using a radiometric assay that measures the relative formation of 16 alpha-OHE1 versus 2-OHE1 from specifically tritiated estradiol in (ER+) MCF-7 cells, we compared the ratio of 16 alpha-OHE1/2-OHE1 observed after treatment with the known rodent carcinogen 7,12-dimethylbenz[a]anthracene (DMBA) with the ratios after treatment with DDT, atrazine, gamma-benzene hexachloride, kepone, coplanar PCBs, endosulfans I and II, linoleic and eicosapentenoic acids, and indole-3-carbinol (I3C). These pesticides significantly increase the ratio of 16 alpha-OHE1/2-OHE1 metabolites to values comparable to or greater than those observed after DMBA. In contrast, the antitumor agent I3C increased 2-OHE1 formation and yielded ratios that are 1/3 of those found in unexposed control cells and 1/10th of those found in DMBA-treated cells. Thus the ratio of 16 alpha-OHE1/2-OHE1 may provide a marker for the risk of breast cancer. Assays of this ratio, which can be measured in spot urines, may prove useful for a variety of in vitro and in vivo studies bearing on breast cancer risk.

Biomarkers↗

A pilot study of urinary estrogen metabolites (16alpha-OHE1 and 2-OHE1) in postmenopausal women with and without breast cancer.

The two main pathways for metabolizing estrogen are via 16alpha-hydroxylation and 2-hydroxylation. The 16alpha-hydroxy metabolites are biologically active; the 2-hydroxy metabolites are not. It is suggested that women who metabolize a larger proportion of their endogenous estrogen via the 16alpha-hydroxy pathway may be at significantly elevated risk of breast cancer compared with women who metabolize proportionally more estrogen via the 2-hydroxy pathway. In particular, it is suggested that the ratio of urinary 2-hydroxyestrone (2-OHE1) to 16alpha-hydroxyestrone (16alpha-OHE1) is an index of reduced breast cancer risk. This pilot study compared this ratio in postmenopausal women diagnosed with breast cancer to those of healthy controls. Urinary concentrations of estrone (E1), 17beta-estradiol (E2) and estriol (E3) were also quantified. White women who were subjects in a previous breast cancer case-control study at our institution were eligible for inclusion. All participants provided a sample of their first morning urine. The results from the first 25 cases and 23 controls are presented here. The ratio of 2-OHE1 to 16alpha-OHE1 was 12% lower in the cases (p=0.58). However, urinary E1 was 30% higher (p=0.10), E2 was 58% higher (p=0.07), E3 was 15% higher (p=0.48), and the sum of E1, E2, and E3 was 22% higher (p=0.16) in the cases. These preliminary results do not support the hypothesis that the ratio of the two hydroxylation metabolites (2-OHE1/16alpha-OHE1) is an important risk factor for breast cancer or that it is a better predictor of breast cancer risk than levels of E1, E2 and E3 measured in urine.

Breast Neoplasms↗

Differential effects of estrogen metabolites on bone and reproductive tissues of ovariectomized rats.

The effects of 17 beta-estradiol and the important estrogen metabolites, 2-hydroxyestrone (2-OHE1) and 16 alpha-hydroxyestrone (16 alpha-OHE1) on bone, mammary gland, and uterine histology, and on blood cholesterol were investigated in ovariectomized growing rats. Rats were treated with 200 micrograms/kg of body weight/day of each of the test compounds for 3 weeks. Ovariectomy resulted in uterine and mammary gland atrophy, increased body weight, bone turnover and tibia growth, and hypercholesterolemia. 17 beta-estradiol treatment prevented these changes, with the exception that this high dose of estrogen did not prevent hypercholesterolemia. 2-OHE1 had no effect on any of the measurements. 16 alpha-OHE1 resulted in bone measurements that did not differ from the 17 beta-estradiol-treated rats and prevented the increase in serum cholesterol. In contrast, 16 alpha-OHE1 resulted in increases in uterine weight, uterine epithelial cell height, and mammary gland cell proliferation that were significantly less than the 17 beta-estradiol treatment. These findings demonstrate that 16 alpha-hydroxylation of estrone results in tissue-selective estrogen agonistic activity, whereas 2-hydroxylation resulted in no measured activity. Furthermore, they suggest that factors that modulate the synthesis of these metabolites could selectively influence estrogen target tissues.

Animals↗

Direct action of naturally occurring estrogen metabolites on human osteoblastic cells.

This article describes experiments that were performed to examine the direct action of estrogen metabolites on cultured human osteoblast cells. The human fetal osteoblastic cell line, hFOB/ER9, which expresses high levels of the estrogen receptor (ER) alpha, was used to examine the direct effects of 16alpha-hydroxyestrone (16alpha-OHE1) and 2-hydroxyestrone (2-OHE1) on osteoblast differentiation. The 16alpha-OHE1 caused a decrease in osteocalcin (OC) secretion to a maximum of 40% of control values (vehicle-treated cells) at 10(-7) M. Alkaline phosphatase (AP) activity was significantly induced at 10(-7) M 16alpha-OHE1 with greater than 500% of control at 10(-6) M 16alpha-OHE1. Finally, AP steady-state messenger RNA (mRNA) levels were increased within 24 h of 16alpha-OHE1 treatment. In contrast to 16alpha-OHE1, 2-OHE1 had no effects on the secretion of OC, AP activity, or AP gene expression. The 2-OHE1 also did not display any antiestrogen activity because treatment in combination with 17beta-estradiol (E2) and 16alpha-OHE1 had no significant effect on the reduction in OC secretion or induction of AP activity. Similar to E2, 16alpha-OHE1 stimulated the expression of an early response gene, a TGF-beta inducible early gene, designated TIEG, as early as 60 minutes after treatment, whereas treatment with 2-OHE1 displayed no effect. Support that the 16alpha-OHE1 regulation of these osteoblasts (OB) markers was mediated through the ER is shown by the fact that the estrogen antagonist ICI 182,780 abrogated these effects. These data suggest that is a potent estrogen agonist on human osteoblastic hOB/ER9 cells. In contrast, 2-OHE1 displayed no estrogenic or antiestrogenic activity in this human osteoblast cell model.

Alkaline Phosphatase↗