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Temporal relationships among the excretory patterns of 2-hydroxyestrone, estrone, estradiol, and progesterone during pregnancy in the rat.

The urinary excretion pattern of 2-hydroxyestrone, estradiol, estrone, and progesterone was examined in rats during early, mid, and late pregnancy. Progesterone increased from early to mid pregnancy and declined significantly 2 to 3 days prior to parturition, corresponding to changes observed in blood levels by others. 2-Hydroxyestrone, the major estrogen in rat urine, increased significantly 4 days prior to delivery and remained elevated until it further increased sharply the day of parturition. Urinary estradiol and estrone levels showed little change until the day of parturition, when they increased significantly. Multiple correlation analysis of the data implied that 2-hydroxyestrone and estradiol were negatively correlated at the time of implantation. The results suggest that catechol estrogens, through their effect on prostaglandin synthesis, may participate in the process of implantation as well as in the mechanism involved in the onset of labor.

Animals↗

Structure of the adduct of 16 alpha-hydroxyestrone with a primary amine: evidence for the Heyns rearrangement of steroidal D-ring alpha-hydroxyimines.

16 alpha-Hydroxyestrone, a product of estrogen 16 alpha-hydroxylation in humans that is suspected to be implicated in cell transformation, has been found to form stable adducts with nuclear components. The stable covalent adduct formed from 16 alpha-hydroxyestrone with 2-methoxyethylamine via the Heyns rearrangement of the alpha-hydroxyimine was identified as 3-hydroxy-17 beta-(2-methoxyethylamino)estra-1,3,5(10)-trien-16-one. Since the same product was obtained from 16 beta-hydroxyestrone with the amine, the alpha-hydroxyenamine is the most likely intermediate of the Heyns rearrangement. The adduct was fairly stable at 37 C in phosphate buffer (pH 7.4)/methanol (1:1 v/v), while the adduct formed from 16-oxoestradiol was disrupted reversely and completely within 6 hours. The evidence suggests that N-(3-hydroxy-16-oxoestra-1,3,5(10-trien-17 beta-yl)amine is the partial structure of the stable adducts formed from D-ring alpha-ketol estrogens with proteins.

Amines↗

Structure-activity relationships of four 11-hydroxyestrones isomeric at the C-9 and C-11 positions.

The synthesis of 11 alpha-hydroxyestrone, 11 alpha-hydroxy-9 beta-estrone, and 11 beta-hydroxy-9 beta-estrone are presented. The reduction of 11-keto-9 beta-estrone 17-ethyleneketal by sodium in ethanol or sodium borohydride resulted in 11-hydroxy-9 beta-estrones. The 11-hydroxyl group configurations were opposite to expectations: sodium in boiling ethanol afforded the axial 11 beta-hydroxy-9 beta-estrone, while sodium borohydride in boiling tetrahydrofuran gave the equatorial 11 alpha-hydroxy-9 beta-estrone. In immature rat uterotropic bioassays using subcutaneous injections, 11 alpha-hydroxyestrone was 2 times as active as 11 alpha-hydroxy-9 beta-estrone, and 11 beta-hydroxyestrone was 10 times as active as 11 beta-hydroxy-9 beta-estrone.

Animals↗

Radioimmunoassay for 4-hydroxyestrone 4-methyl ether in human urine.

4-Hydroxyestrone 4-methyl ether (4-OHE1 4-Me) was converted to its 17-(O-carboxymethyl)oxime and then coupled to bovine serum albumin. The injection of this steroid-protein conjugate into rabbits induced the formation of antibodies with high specificity and affinity for 4-OHE1 4-Me. With this antiserum a radioimmunoassay was developed which allowed the measurement of 4-OHE1 4-Me with a lower limit of detection of 6 pg/tube. Using a simple and practicable method for the hydrolysis and purification of urine, the excretion rates of 4-OHE1 4-Me were reliably measured in healthy human subjects: male children 0.1 microgram/24 h, female children 0.2 micrograms/24 h, men (20-45 years) 0.7 micrograms/24 h, men (greater than 50 years) 0.5 micrograms/24 h, women, follic. 0.5 micrograms/24 h, periov. 0.6 micrograms/24 h, luteal 0.6 micrograms/24 h, women pregn., first trim. 2.3 micrograms/24 h, sec. trim. 2.9 micrograms/24 h, third trim. 5 micrograms/24 h, women postmenop. 0.5 micrograms/24 h. These urinary excretion rates of 4-OHE1 4-Me are significantly lower than those of 4-hydroxyestrone. Comparing the ratios 4-OHE1 4-Me/4-hydroxyestrone with those of 2-hydroxyestrone 2-methyl ether/2-hydroxyestrone, it becomes obvious that endogenous 4-hydroxyestrogens are methylated in vivo to a much lesser extent than the isomeric 2-hydroxyestrogens, a finding which could partly explain why 4-hydroxyestrogens have higher biologic potencies than their 2-hydroxylated isomers

Estrogens, Catechol↗

2-Hydroxyestrone suppresses and 2-methoxyestrone augments the preovulatory prolactin surge in the cycling rat.

The nonuterotropic metabolite of estradiol, 2-hydroxyestrone, administered at noon of proestrus to four-day cycling rats, abolishes the preovulatory prolactin rise in a large percentage of animals tested. In animals synchronized with exogenous estradiol, 2-hydroxyestrone universally induced a long delay in the prolactin surge. The principal metabolite of 2-hydroxyestrone, 2-methoxyestrone, given at noon of proestrus, significantly augments the magnitude of the preovulatory prolactin rise possibly by inhibiting the formation of endogenous 2-hydroxyestrogens in the brain. The results obtained are consistent with the concept of a physiological function for 2-hydroxyestrogens as estrogen antagonists in the CNS.

Animals↗

Effects of 2-hydroxyestradiol-17 beta, 2-hydroxyestradiol-17 alpha, and 4-hydroxyestrone on the preovulatory luteinizing hormone surge in the rat: agonist and antagonist actions.

Four-day cycling rats equipped with intracardiac catheters were injected with 2-hydroxyestradiol-17 beta (2OHE2-17 beta) at 0800, 0900, 1000, and 1200 h on the morning of proestrus. The administration at 0800 and 0900 h resulted in abolition of the afternoon preovulatory LH surge in virtually all animals. Injections given at 1000 and 1200 h were ineffective in this respect. The isomeric catechol estrogen 4-hydroxyestrone effectively inhibited the LH surge when given at 0900 h, but not if injected at 1000 or 1200 h. In contrast, the nonestrogenic 2-hydroxyestradiol-17 alpha was effective in blocking the LH surge when given at 0900 or 1000 h. Rats treated with 2OHE2-17 beta at 1000 h responded normally to exogenous LHRH administration in the afternoon, indicating that the action of 2OHE2-17 beta is at the hypothalamic level. 2OHE2-17 beta and 4-hydroxyestrone, which are potent estrogens, may act in this instance first as estrogen agonists, advancing the "time window" when their catechol antagonist properties in blocking the LH surge can be functional. The nonuterotropic 2-hydroxyestradiol-17 alpha and 2-hydroxyestrone act solely as catechol estrogens and inhibit the preovulatory LH surge if administered at a time when they be present during this physiological window, which is thought to involve events at the estrogen-catecholaminergic interphase.

Analysis of Variance↗

The catechol estrogen, 4-hydroxyestrone, has tissue-specific estrogen actions.

Recent data indicate that the catechol estrogen, 2-hydroxyestrone (2-OHE(1)), has no effect on any target tissue including bone, whereas 16 alpha-hydroxyestrone (16 alpha-OHE(1)) exerts tissue-selective estrogen agonist activity. The effect of the catechol estrogen, 4-hydroxyestrone (4-OHE(1)), putatively associated with tumorigenesis, has not been studied in the skeleton. The purpose of this study was to assess the effect of 4-OHE(1) on tibia, uterine and mammary gland histology and blood cholesterol in ovariectomized (OVX'd) growing rats. Ten-week-old female Sprague-Dawley rats were injected subcutaneously with 200 microg/kg BW per day with 4-OHE(1), 17 beta-estradiol (E(2)) or vehicle for three weeks. OVX resulted in uterine atrophy, increased body weight, radial bone growth and cancellous bone turnover, and hypercholesterolemia. E(2) prevented these changes with the expected exception that the subcutaneous infusion of this high dose of estrogen did not prevent the hypercholesterolemia. 4-OHE(1) prevented the increase in blood cholesterol and the increase in body weight. 4-OHE(1) appeared to have partial estrogen activity in the uterus; uterine weight and epithelial cell height were significantly greater than the OVX rats but significantly less (twofold) than the E(2) animals. Analysis of variance indicated that 4-OHE(1) slightly decreased the periosteal mineral apposition rate (P<0.05) compared with vehicle-treated rats but had no effect on double-labeled perimeter or bone formation rate. Similarly, 4-OHE(1) was a partial estrogen agonist on cancellous bone turnover. The data suggest that the catechol estrogen, 4-OHE(1), unlike 2-OHE(1), has estrogen activity. Furthermore, the profile of activity differs from that of 16 alpha-OHE(1). Our results suggest that estrogen metabolites may selectively influence estrogen-target tissues and, concomitantly, modulate estrogen-associated disease risk.

Animals↗

Radioimmunoassay and metabolic clearance rate of catecholestrogens, 2-hydroxyestrone and 2-hydroxyestradiol in man.

Plasma levels of 2-hydroxyestrone (2-OHE1) and 2-hydroxyestradiol (2-OHE2) were determined by a new radioimmunoassay which employed a short Sephadex LH-20 column chromatography for the purification of samples and the antiserum to 2-hydroxyestrone-17-(O-carboxymethyl)oxime-BSA conjugate for assay. The plasma value was below the detection limit for the assay (approximately 15 pg/ml) in men and non-pregnant women, but rose 20-200 pg/ml during pregnancy in 2-OHE1 and around 15 pg/ml in the 3rd trimester of pregnancy in 2-OHE2. There was no significant difference of plasma 2-OHE1 level between normal pregnancy and toxemic pregnancy with hypertension, in the 3rd trimester. The plasma level was very low in all of three subjects with the placental dysfunction in toxemic pregnancy. The plasma metabolic clearance rate (MRCp) of 2-OHE1 and 2-OHE2 were determined in normal adults by two methods; infusion of unlabeled 2-OHE1 and 2-OHE2 to equilibrium with radioimmunoassay of their plasma levels, and infusion of [3H]-2-OHE1 and [3H]-2-OHE2 to equilibrium with measurement of chromatographically purified their tritium. The MCRs by the former and latter methods was 40-70 X 10(3) and 15-50 X 10(3) in 2-OHE1, and 18-29 X 10(3) and 12-14 X 10(3) l/day in 2-OHE2, respectively. The major plasma metabolite comigrated with 2-methoxy compounds to each catecholestrogen. The t1/2 of disappearance rate by the method of infusion of unlabeled compounds was approx. 45 s in 2-OHE1 and 90 s in 2-OHE2. When [3H]-2-OHE1 and [3H]-2-OHE2 were incubated with blood samples of adults, 2-methoxy compounds also rapidly formed. From these results it is concluded that the extremely high MCRp of 2-OHE1 and 2-OHE2 make it unlikely these compounds circulate peripherally except in pregnancy in levels sufficient to produce the physiological effects on estrogen receptors or catecholamines.

Adult↗

In vitro synthesis of 16 alpha-hydroxyestrone by female rat liver microsomes: its possible role in the etiology of breast cancer.

Liver homogenates from female rat strains (Sprague-Dawley, Wistar and Fisher) were incubated in a NADPH regenerating medium in the presence of labelled and unlabelled estrone. Liver microsomes isolated from male rats and female mice were used as positive controls. Using HPLC and paper chromatography, under the experimental conditions used it was found that liver homogenates from female rats were able to convert estrone to various metabolites such as 16 alpha-hydroxyestrone. In a mutagenicity assay (Ames test), with 16 alpha-hydroxyesterone as test substance, two strains (TA98 and TA1538) of the five strains tested showed a 2-3-fold increase in the number of his+ revertants relative to the control values. Estrone did not cause any mutagens in the test used. It is concluded that female rats are able to synthesize 16 alpha-hydroxyestron in vitro. Whether this compound is risk factor for breast cancer remains unclear.

Animals↗

Low plasma levels of 2-hydroxyestrone are consistent with its rapid metabolic clearance.

Published plasma levels of the catechol estrogen 2-hydroxyestrone (2-OHE1) are comparable to those of estrone and estradiol. In light of the very high (40,000 L/d) metabolic clearance rate of 2-OHE1, these concentrations imply unreasonable production rates. We therefore re-examined plasma 2-OHE1 levels using a modified radioimmunoassay procedure. Plasma samples are extracted with ethyl acetate and passed over a short column of LH-20 Sephadex before equilibration with an antiserum directed against a 2-hydroxyestrone-17-(O-carboxymethyl)oxime-bovine serum albumin conjugate. Plasma 2-OHE1 concentrations are indistinguishable from blank (< 15 pg/ml) in men and non-pregnant women, but rise to approximately 200 pg/ml during pregnancy. These values for 2-OHE1 levels are consistent with the rapid metabolic clearance of this catechol estrogen.

Adolescent↗

Identification of 6 alpha- and 7 alpha-hydroxyestrone as major metabolites of estrone and estradiol in porcine uterus.

Polar metabolites extracted from the effluents of viable porcine uterine strips superfused with either 6,7-3H-estrone or 6,7-3H-estradiol were identified as a 1:1 mixture of 6 alpha-hydroxyestrone and 7 alpha-hydroxyestrone by paper chromatography in various systems, derivatization and crystallizations to a constant specific activity. The hydroxylated compounds are the only derivatives detected after estrone superfusion. The major metabolite of estradiol released in short-time experiments is estrone followed by its 6 alpha- and 7 alpha-hydroxylated derivatives.

Animals↗

Evaluation of an EIA method for measuring serum levels of the estrogen metabolite 2-hydroxyestrone in adults.

Two-hydroxyestrone (2OHE-1) and 16alpha-hydroxyestrone (16OHE-1) are two estrogen metabolites that may play important roles in the development or promotion of breast cancer. Our study assessed the reliability of a newly developed kit procedure for measuring 2OHE-1. Although under certain conditions the assay would not distinguish 2OHE-1 from estriol, or possibly 2-methoxyestrone, steroids such as 17beta-estradiol, estrone and 16OHE-1 should not interfere with the test. Our study evaluated the precision of this enzyme immunoassay (EIA) kit for measuring 2OHE-1 levels in serum obtained from healthy men and women. As a result of several replicate analyses of specimens obtained from 18 men and 20 women, we found that the within-run coefficients of variation (CVs) were approximately 20% and the among run CVs, 30%. Because the SD for the procedure is high, the limit of detection (LOD) was also high (130 ng/l). Nonetheless the assay could distinguish between 2OHE-1 levels in men (128 ng/l) and women (332 ng/l) because we performed a large number of analyses on each specimen. Improving the reproducibility of the assay would reduce the: 1. LOD; number of replicates needed to obtain reliable estimates of 2-OHE-1 levels; amount of time, effort, and cost for each analysis; and greatly improve the reliability of the method. Because the within-run variability is relatively smaller than the total variability (among run + within run), use of the assay for determining differences among groups could be justified only when measurements were made in a single run.

Adult↗

Enzymic and chemical O-methylation of a 4-hydroxyestrone N-acetylcysteine conjugate.

4-Hydroxyestrone N-acetylcysteine conjugate (4-OHE1-2SR) is considered to be an important compound for monitoring the in vivo formation of catechol estrogen quinones, an intermediary in estrogen carcinogenicity. This article describes the selective synthesis of isomeric monomethyl ethers of 4-OHE1-2SR utilizing the formation of a seven-membered ring lactone by dehydration with acetic anhydride. Using these authentic specimens, enzymic and chemical O-methylation were examined. Enzymic O-methylation, using a rat liver cytosolic fraction, of 4-OHE1-2SR gave its 3-methyl ether as the sole product, while preferential O-methylation of 4-hydroxyestrone (4-OHE1) at the C-4 position was confirmed under the same conditions. Methylation of 4-OHE1-2SR with diazomethane gave initially carboxylate methylation, then the corresponding 3-methyl ether almost exclusively, while methylation of 4-OHE1 also gave its 3-methyl ether preferentially. However, much more rapid formation of the 3-methyl ether was observed with 4-OHE1-2SR than with 4-OHE1 itself. These results show that the hydroxy group at the C-3 position of 4-OHE1-2SR is more reactive than that at the C-4 position, both chemically and enzymatically.

Acetylcysteine↗

Absence of measurable 2-hydroxyestrone in the rat brain: evidence for rapid turnover.

The free 2-hydroxyestrone content of female rat brains was measured by two independent methods, including a direct radioimmunoassay and enzymatic conversion to stable O-methylated derivatives followed by a specific radioimmunoassay for the latter. The sensitivities of the two procedures were 10 pg and 5 pg respectively and the recoveries were greater than 85%. Neither assay method was able to detect any measurable endogenous 2-hydroxyestrone in the female rat brain at any stage of the ovulatory cycle. It is suggested that a high turnover rate of 2-hydroxyestrogens in the rat brain precludes the accumulation of detectable quantities of these metabolites in central tissues.

Animals↗

Suppression of prolactin and gonadotropin secretion in post-menopausal women by 2-hydroxyestrone.

An infusion of 2-hydroxyestrone given to estrogen primed post-menopausal women resulted in a rapid and total suppression of serum prolactin. Serum LH responded with an initial rise followed by a 30% decrease below baseline values. Serum FSH exhibited a significant suppression below preinfusion levels. The catechol estrogen had no effect on serum LH, FSH and PRL in post-menopausal women who were not pretreated with estrogens. This impact of 2-hydroxyestrone on pituitary hormone secretion provides for the physiological role of this non-uterotropic estrogen in the neuroendocrine mechanisms of the human.

Estrone↗

Urinary 2/16 alpha-hydroxyestrone ratio: correlation with serum insulin-like growth factor binding protein-3 and a potential biomarker of breast cancer risk.

Metabolism of estradiol occurs via two mutually exclusive hydroxylative pathways, yielding metabolites of divergent biological properties. 2-hydroxyestrone (2OHE1) is anti-estrogenic while 16 alpha-hydroxyestrone (16 alpha OHE1) is a potent estrogen. The ratio of 2OHE1 to 16 alpha OHE1 (2/16 alpha-OHE1 ratio) represents the net in vivo estrogenic activity. In this study, we sought to determine if the urinary 2/16 alpha-OHE1 ratio could be a predictor of breast cancer risk and the factors which influence this ratio. Variables analysed included age at diagnosis, menopausal status, parity, use of oral contraceptives, body mass index, serum levels of insulin-like growth factor-I (IGF-I), IGF binding proteins (BPs) and the presence of breast cancer. Serum and urine were collected from 65 breast cancer patients and 36 controls after an overnight fast. Urinary estrogen metabolites were measured by enzyme immunoassays while serum levels of IGF-I, BP-1 and BP-3 were determined by immunoradiometric assays. 2OHE1 levels and 2/16 alpha-OHE1 ratios were significantly lower (P < 0.05) while 16 alpha OHE1 levels were higher (P < 0.01) in cancer patients. Multiple linear regression analysis showed that levels of urinary metabolites were influenced by parity and breast carcinoma. 2/16 alpha-OHE1 ratio correlated positively with serum BP-3 level (P = 0.03). By multiple logistic regression, 2/16 alpha-OHE1 ratio was the most significant factor predictive of breast cancer. The odds ratio for women with higher 2/16 alpha-OHE1 ratios was 0.10 (0.03-0.38, 95% confidence interval). In conclusion, the profile of urinary estradiol metabolites was distinctly altered in breast cancer patients. In addition, BP-3 may be a potential mechanism by which estradiol metabolites influence breast cancer progression. As 16 alpha OHE1 has been shown to initiate neoplastic transformation of mammary epithelial cells, the 2/16 alpha-OHE1 ratio may serve as a biomarker of increased risk of breast cancer.

Age Factors↗

The excretion of 2-hydroxyestrone during the menstrual cycle.

A double isotope derivative determination technique was developed to investigate the excretion of 2-hydroxyestrone inhuman menstrual cycle. The method is highly specific, accurate and precise within the range of 0.2-20 nmol 2-hydroxyestrone/20ml of urine. The amounts of 2-hydroxyestrone excreted during menstrual cycle varied between 10 (proliferation phase) and 60 mug/24 h urine (ovulatory peak), which is comparable to that of estriol, supposed hitherto to be the main excretion product of estrogen metabolism.

Estrone↗

[Excretion of estriol, estetrol, 16-epi-estriol, 16-keto-estradiol and 16-hydroxyestrone in the 24-hour urine of pregnant women in the last trimester].

In this publication a method is given which allows simultaneous estimation of estriol, estetrol, 16-epiestriol, 16-ketoestradiol and 16-hydroxyestrone in urine of pregnant women. First conjugates are precipitated with ammoniumsulfate and hydrolyzed. Then the steroids are extracted and converted to azodyes by reacting with the diazonium salt dark blue r. After separation by thin layer chromatography the azodyes are measured by remission analysis with a chromatogramm spectrophotometer. From the data obtained from 66 cases norm groups were set up for the excretion of the steroids in the 3rd trimester of pregnancy. In the last month of pregnancy the average excretion, expressed in % of excreted estriol, is as follows: estetrol 5,7%, 16-epiestriol 3,1%, 16-ketoestradiol 7,0%, 16-hydroxyestrone 5,3%.

Adult↗