PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “ESTRADIOL”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

Limited proteolysis of cytoplasmic and nuclear uterine estradiol receptors yields identical estradiol-binding fragments.

Limited tryptic hydrolysis of the estradiol cytoplasmic receptor from calf uterus has been demonstrated to yield in a high-salt buffer a stable estradiol-binding molecule with the following characteristics: sedimentation coefficient 4.0 +/- 0.1 S; Stokes radius 3.5 +/- 0.05 nm; molecular weight 60000 (for an assumed v value of 0.73 ml g-1) and frictional ratio 1.36. Nuclear KCl extracts, prepared from uteri preincubated at 37 degrees C with labeled estradiol, were analysed by Sephadex G-200 chromatography and sucrose density gradient centrifugation. The following molecular parameters were found for the estradiol-receptor complex: sedimentation coefficient 4.4 +/- 0.1 S; Stokes radius 4.12 +/- 0.02 nm; molecular weight 77000 and frictional ratio 1.47 (v = 0.73 ml g-1). Limited tryptic proteolysis of this extract gave an estradiol-binding fragment with molecular characteristics identical to the trypsin-modified cytoplasmic receptor. In addition, mild tryptic digestion of whole labeled nuclei allowed us to solubilize almost quantitatively the nuclear [3H]estradiol in a macromolecular bound form. The molecule thus obtained showed molecular parameters very similar to the 60000-dalton trypsin fragments obtained from high-salt cytoplasmic and nuclear extracts. These molecules were undistinguishable by gel electrophoresis analysis at six different acrylamide concentrations. These results in conjunction with those derived from dissociation kinetics experiments and ligand specificity studies indicate the cytosolic protein is a functional part of the nuclear receptor. Based upon these and other studies we suggest that proteolytic cleavage of the estradiol-receptor complex, which results in the removal of the estradiol-binding sites from the nuclear recognition sites of the molecule, could play a role in the inactivation of the estradiol receptor in vivo.

Animals↗

Differential binding of testosterone and estradiol to isoforms of sex hormone-binding globulin: selective alteration of estradiol binding in cirrhosis.

The MCR of testosterone is decreased but the MCR of estradiol is unchanged in men with cirrhosis and elevated serum sex hormone-binding globulin (SHBG) concentrations. Previous studies indicated that SHBG from cirrhotic men selectively delivers estradiol, but not testosterone, to peripheral tissues of rats in vivo. These results suggest that estradiol and testosterone may bind to different SHBG isoforms in serum and that the estradiol-binding isoforms may be selectively altered in cirrhosis. This hypothesis was tested by polyacrylamide gel isoelectric focusing and fast protein liquid chromatography chromatofocusing. After Concanavalin-A affinity purification of serum glycoproteins from pregnant women, normal men, normal women, and cirrhotic men, the glycoprotein fraction was reconstituted, labeled with [3H]testosterone or [3H]estradiol, and applied to isoelectric focusing gels. Testosterone was bound selectively by the most acidic isoforms of SHBG, pI 4.5-5.4, and there was a significant anodal shift of the estradiol-binding isoforms in serum from cirrhotic men compared to that in serum from normal men. The selective binding of testosterone to the most acidic isoforms of SHBG was confirmed by fast protein liquid chromatography chromatofocusing, wherein the binding reactions were measured at neutral pH after separation of the isoforms. These biochemical studies and previous physiological experiments question the conventional view that testosterone and estradiol bind to a single competitive binding site on SHBG. Rather, testosterone is selectively bound by the most acidic SHBG isoforms. The estradiol-binding isoforms undergo a significant anodal shift in cirrhosis; this abnormality may result in the lack of decrease in estradiol MCR in cirrhosis.

Adult↗

Regulation of the growth of mouse Leydig cells by the inactive stereoisomer, 17alpha-estradiol: Lack of correlation between the elevated expression of ERalpha and difference in sensitivity to estradiol isomers.

We examined the effects of 17alpha-estradiol, the biologically inactive stereoisomer of 17beta-estradiol, on cell growth and cell cycle kinetics using the normalized mouse TM3 Leydig cells. A significant biphasic stimulatory growth response was observed by 17alpha-estradiol exposure with peaks at 1 pg/ml (157.13%) and 100 ng/ml (120.04%) (p<0.05). The growth stimulatory effects of 17alpha-estradiol were inhibited by tamoxifen. A significant decrease in cell cycle time of Leydig cells exposed to 17alpha-estradiol was observed in treated cells (p<0.05). RT-PCR analysis indicated that exposure to Leydig cells to 1 pg/ml and 100 ng/ml 17alpha-estradiol resulted in a 10- and 5-fold increases in the expression of ERalpha, respectively. Similar effects were observed with exposure to equivalent concentrations of 17beta-estradiol. Difference in sensitivity to stereoisomers of estradiol to growth response of Leydig cells did not correlate with the elevated expression of ERalpha. We conclude that the TM3 Leydig cells are sensitive to the non-typical estrogen, 17alpha-estradiol, presumably through the activation of ER-independent signaling transduction pathways.

Animals↗

Effect of human chorionic gonadotropin and estradiol in vivo on estradiol binder and cytochrome P-450 concentrations in rat testis.

The effects of single administration to adult male rats in vivo of various amounts of human chorionic gonadotropin (HCG) and of single or repeated injections of estradiol on testicular cytoplasmic estradiol binder concentrations and on microsomal progesterone-binding cytochrome P-450 were compared. Half-life periods of HCG-induced loss of estradiol binder and cytochrome P-450 concentrations are identical (6 h) whereas a strong dissociation of these half-life periods are evident after chronic estradiol treatment (less than 2 h for the estradiol binder, about 35 h for cytochrome P-450). Depletion of cytoplasmic estradiol binder is not a sufficient condition for mediation of effects on cytochrome P-450 content. Rate of replenishment of microsomal cytochrome P-450 is similar after HCG or estradiol treatment. Both HCG- and estradiol-induced loss of cytochrome P-450 occur not only in Leydig cells but also in microsomes prepared from seminiferous tubules. Additional information is presented contradicting the hypothesis that loss of cytochrome P-450-dependent steroidogenic enzymes caused by HCG could be mediated by estrogens.

Animals↗

Doisynolic-type acids--uterotropically potent estrogens which compete poorly with estradiol for cytosolic estradiol receptors.

Doisynolic acids, a class of seco-steroid acids some of which exhibit greater uterotropic estrogenicity than estradiol-17 beta, are D-ring cleavage products of steroidal estrogens formed by fusion with KOH above 200 degrees C. We have found that electron-transfer reactions between estrone or estradiol and CCl4 or CBrCl3 in KOH-t-BuOH at 25 degrees C rapidly provide 16,16-dichloro- or -dibromodoisynolic acid, respectively, the former approaching estradiol in uterotropic potency. Simple esters from these highly hindered tertiary carboxylic acids, easily prepared via phase-transfer-catalyzed alkylations, also rival estradiol in uterotropic activity. Unlike natural steroidal estrogens or their commonly used artificial equivalents (DES, hexoestrol, ethynylestradiol, etc.) whose uterotropic activity is accompanied by substantial binding affinity for cytosolic estradiol receptors, these highly uterotropic doisynolic-type acids and esters exhibit binding affinities for this receptor of only about 1% that of estradiol-17 beta as determined by the usual competitive binding-inhibition studies with [3H]estradiol. Other highly uterotropic carboxylic acids may exhibit similar characteristics. These unusual results leave open the possibilities that uterotropic seco-steroid and related carboxylic acids undergo some unknown metabolic activation, are exceptionally persistent estrogens, bind to a cytosolic receptor site other than the conventional (type I) estradiol site, or bind directly to type I or type II nuclear receptor sites. At dosages of 1000 times those required for a uterotropic effect, the doisynolic-type acids (24 doses over an 8-week period) were neither toxic nor carcinogenic.

Animals↗

Obesity, non-protein-bound estradiol levels, and distribution of estradiol in the sera of breast cancer patients.

This study attempted to determine the relationship of nutritional status, menopausal status, presence of breast cancer, stage of disease, and tumor estrogen receptor levels to percent non-protein-bound estradiol (%NPBE) and percent distribution of estradiol on sex hormone-binding globulin (SHBG) and albumin in breast cancer patients and control patients. Normal-weight controls had significantly lower %NPBE compared with overweight controls and normal-weight and overweight breast cancer patients. There was a significant shift in the percent distribution of estradiol from SHBG to albumin in breast cancer patients, independent of body weight. Elevated %NPBE and abnormal percent estradiol distribution on albumin persisted after mastectomy and were unrelated to menopausal status, presence and stage of disease, and tumor estrogen receptor levels. These results show that breast cancer patients have increased exposure to unbound circulating estradiol and an increased percentage of estradiol bound to albumin, which may influence the availability of estradiol, considering its low binding affinity to albumin. Because these abnormalities persist after mastectomy, the current results may be important in developing dietary intervention protocols that correct %NPBE and abnormal estradiol distribution on binding proteins.

Adult↗

On the role of 17 alpha-estradiol and 17 beta-estradiol in the proliferation of MCF7 and T47D-A11 human breast tumor cells.

A comparative study of the proliferative effect of 17 beta-estradiol and 17 alpha-estradiol on human estrogen-sensitive cell lines was performed. When using charcoal-dextran stripped human female sera-supplemented media the administration of the hormones, 17 alpha-estradiol at 3 X 10(-10)M, and 17 beta-estradiol at 3 X 10(-11)M, resulted in a ten-fold increase in cell yield when compared with non-estrogen supplemented controls after cells were grown for periods between 10 to 14 days. No significant metabolization of 17 alpha-estradiol into 17 beta-estradiol occurred as measured by the E2 levels in the supernatants of the cell culture flasks. Increased concentrations of 17 beta-estradiol and 17 alpha-estradiol added to the media bathing C7MCF7-173 cells resulted in a triggering of a partially successful shut-off effect; this phenomenon was not observed with T47D-All cells. These results are compatible with predictions stemming from the indirect and direct negative working hypothesis for the regulation of cell proliferation.

Breast Neoplasms↗

17 alpha-allyl estradiol analogues as candidates for development of high-affinity fluorescein-estradiol conjugates.

In order to develop stable, high-affinity fluorescein-estradiol conjugates, the fluorescein moiety must be leashed to the estradiol molecule at a point which interferes least with estradiol's binding to the receptor. Because of the high affinity of 17 alpha-substituted estradiol (e.g. ethynyl estradiol), we investigated a series of 17 alpha-substituted estradiol compounds to determine the optimal properties of a leash at this position. Twelve estradiol derivatives bearing a three-carbon 17 alpha side chain with or without a terminal functional group and with varying degrees of unsaturation were synthesized. Initial comparison of the receptor binding affinities of some of these derivatives suggested that three factors might reduce affinity: internal hydrogen bonding of the 17 beta-hydroxyl proton with an oxygen atom of the 17 alpha side chain; hydrophilicity of the ligand; or steric interference of the side chain with receptor binding. Further comparisons were designed to evaluate the relative contribution of these factors. The results suggest that the relative affinities of these 17 alpha-substituted estradiol derivatives are influenced primarily by the steric interference of the side chains and also by their hydrophilicity. Internal hydrogen bonding involving the 17 beta-hydroxyl proton does not seem to have a profound effect.

Animals↗

High-performance liquid chromatographic determination of 17beta-estradiol and 17beta-estradiol-3-acetate solubilities and diffusion coefficents in silicone elastromeric intravaginal rings.

A rapid, sensitive reversed-phase high-performance liquid chromatographic method has been developed for the determination of in vitro release of 17beta-estradiol and its ester prodrug, 17beta-estradiol-3-acetate, from silicone intravaginal rings. Partial hydrolysis of the acetate under the aqueous conditions provided by the 1% benzalkonium chloride release medium necessitates its conversion to 17beta-estradiol prior to HPLC analysis. Both steroid peaks have been fully resolved from the benzalkonium chloride peaks by the reported chromatographic method, which employs a C18 bonded reversed-phase column, an acetonitrile-water (50:50, v/v) mobile phase and a UV detection wavelength of 281 nm. The peak area versus 17beta-estradiol concentration was found to be linear over the range of 0.0137-1347 microkg ml(-1). The HPLC method has also been used to determine the silicone solubilities and diffusion coefficients of the two related steroids. The almost 100-fold increase in 17beta-estradiol-3-acetate release from the silicone core-type intravaginal rings compared to 17beta-estradiol is shown to be due to a 60-fold increase in silicone solubility and a one and a half-fold increase in diffusitivity. The results demonstrate that an effective estrogen replacement therapy dose of 17beta-estradiol may be administered from a silicone intravaginal reservoir device containing the labile 17beta-estradiol-3-acetate prodrug.

Administration, Intravaginal↗

Tamoxifen, esterified estradiol, and physiologic concentrations of estradiol inhibit oxidation of low-density lipoprotein by endothelial cells.

OBJECTIVE: We investigated the antioxidant effect of tamoxifen, esterified estradiol, and physiologic concentrations of 17beta-estradiol on endothelial cell-mediated oxidation of low-density lipoprotein. STUDY DESIGN: Human umbilical vein endothelial cells were preincubated with nanomolar concentrations of estradiol, estradiol stearate, and tamoxifen. Low-density lipoprotein was isolated and incubated with cells in serum-free medium. Oxidation of low-density lipoprotein was quantified after 8, 16, and 24 hours of incubation as the formation of thiobarbituric acid-reactive substances. RESULTS: Compared with control, preincubation of human umbilical vein endothelial cells with 1- or 10-nmol/L estradiol resulted in a 12% reduction in the formation of thiobarbituric acid-reactive substances at 24 hours. Preincubation of human umbilical vein endothelial cells with either 10-nmol/L estradiol 17-stearate or 10-nmol/L tamoxifen resulted in 26% and 20% decreases, respectively, in formation of thiobarbituric acid-reactive substances at 24 hours. The difference in the reduction in thiobarbituric acid-reactive substances between control and treatment wells became more pronounced over time. CONCLUSION: Under these experimental conditions, tamoxifen, esterified estradiol, and physiologic concentrations of exogenous estradiol inhibit oxidation of low-density lipoprotein by human umbilical vein endothelial cells.

Cells, Cultured↗