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At least 19 recordsLinked to original sources

Promotive effects of diethylstilbestrol, its metabolite (Z,Z-dienestrol) and a stereoisomer of the metabolite (E,E-dienestrol) in tumorigenesis of rat mammary glands pregnancy-dependently initiated with radiation.

Wistar-MS rats received whole body irradiation with 260 cGy gamma-rays at day 20 of pregnancy and then were treated with diethylstilbestrol (DES), E,E-dienestrol (E,E-DIES) or Z,Z-dienestrol (Z,Z-DIES) for 1 year. DES administration caused the highest incidence of mammary tumors with a concomitant reduction of gain in body weight. When E,E-DIES or Z,Z-DIES in pellet form was implanted, the incidence of tumors was significantly lower than that observed in rats treated with DES. To clarify the increased susceptibility to mammary tumorigenesis after DES administration we measured hormone levels in the serum of rats implanted with pellets containing derivatives of the synthetic estrogens. The serum prolactin concentration was significantly increased by DES administration. When E,E-DIES or Z,Z-DIES pellets were implanted the prolactin level was markedly reduced to 4.5% and 0.7% of that observed in DES-treated rats, respectively. In addition, the serum concentrations of estradiol-17 beta and progesterone in rats with Z,Z-DIES pellets were higher than those of rats with DES or E,E-DIES pellets. A large number of DES-induced mammary tumors were positive for both estrogen and progesterone receptors, but no tumors negative for both receptors were obtained. The findings suggest that DES acts directly on radiation-initiated mammary cells via binding with estrogen receptors and/or stimulates the secretion of prolactin from the pituitary glands.

Adenocarcinoma↗

Analysis of dienestrol and its dosage forms by high-performance liquid chromatography.

A high-performance liquid chromatographic (HPLC) analysis is described for dienestrol as a drug substance and in cream, foam, and tablet dosage forms. After incorporation of the drug or dosage form into a solvent mixture containing an internal standard, biphenyl, an aliquot was chromatographed using a reversed-phase medium, followed by UV spectrophotometric detection at 254 nm. The response of the chromatographic system was linear over a concentration range corresponding to 50-200% of the labeled amount of dienestrol. Satisfactory accuracy and precision were confirmed by analyzing cream by the standard addition method. The advantages of the HPLC method are its simplicity, speed, and sensitivity, which permit direct analysis of single-dose quantities of dienestrol.

Chromatography, High Pressure Liquid↗

Analysis of diethylstilbestrol, dienestrol and hexestrol in biological samples by immunoaffinity extraction and gas chromatography-negative-ion chemical ionization mass spectrometry.

A method has been developed for the detection of diethylstilbestrol, together with dienestrol and hexestrol, using extraction with a single immunoaffinity column containing antibodies raised against diethylstilbestrol, followed by gas chromatography-negative-ion chemical ionization mass spectrometry. Immunoaffinity columns were prepared by coupling immunoglobulin G fractions obtained from rabbit antisera with a Sepharose matrix. The immunizing agent was synthesized by introducing a carboxyl group into the diethylstilbestrol molecule and coupling this product to bovine serum albumin. The columns were used for immunoadsorption of diethylstilbestrol and other estrogens, after dilution of samples with phosphate buffer, and were eluted with acetone-water (95:5 v/v). A derivatization method suitable for gas chromatographic-mass spectrometric analysis of diethylstilbestrol and other estrogens was developed using pentafluorobenzyl bromide and ethanolic potassium hydroxide as reagents. The derivatives obtained were detectable at the sub-picogram level using gas chromatography with negative-ion chemical ionization mass spectrometry. Recoveries of cis- and trans-diethylstilbestrol, dienestrol and hexestrol from the immunoaffinity columns, determined after extraction from urine, plasma and buffer, ranged from 28 to 96%. The sensitivity for diethylstilbestrol in urine samples was ca. 10 ppt. The method was applied to the analysis of urine from calves given a single dose of 10 mg of diethylstilbestrol. Free and glucuronic acid conjugated diethylstilbestrol decreased with time, but their ratio was variable.

Animals↗

The effect of methionine, thiouracil, dienestrol diacetate and thyroprotein on the development and prevention of fatty liver in pullets.

The effect of two levels each of methionine (0.0 and 0.07 percent), thiouracil (0.0 and 0.05 percent), dienestrol diacetate (0.0 and 0.007 percent), and thyroactive casein (0.0 and 0.0125 percent) on the performancy, organ changes, and liver composition in 640 pullets of two strains was studied in a 24 factorial arrangement of treatments. Egg production, egg characteristics, feed conversion, organ weights, and liver composition were parameters measured. Supplemental methionine increased the phosphorus content of liver fat in strain A, but other parameters in the two strains were mot affected by the increase in dietary methionine. The thiouracil increased weight grains, gram of fat per total liver, percent of liver fat, thyroid weight, and heart weight but decreased the phosphorus content of liver fat. Nine typical cases of fatty liver syndrome with large liver hematomas occurred in the thiouracil treated birds and one case occurred in an untreated pullet. Dienestrol diacetate did not affect egg production, egg characteristics, organ weights, and liver composition in the two strains. Thyroprotein decreased weight gain, abdominal fat, liver weight. liver fat, thyroid weight, and percent red cells, but decreased percent blood sports in eggs and adjusted weights of the kidney and heart in both strains.

Adipose Tissue↗

Configuration of dienestrol.

Uncertainty concerning the configuration of dienestrol was resolved by a detailed spectrochemical investigation, including single-crystal X-ray diffraction, of the active drug and its stereoisomers. A symmetric structure in which the phenyl and methyl groups are cis about each double bond is unambiguously assigned.

Chemical Phenomena↗

Stable derivatives for the gas chromatographic determination of synthetic anabolic stilbene residues (diethylstilbestrol, dienestrol and hexestrol) in meat and organs of treated cattle in the sub-parts per billion (10(9)) level.

A method for the determination of diethylstilbestrol and the related compounds dienestrol and hexestrol residues in meat and organs of treated cattle is described. After extraction and clean-up, these synthetic estrogens are subjected to reaction with pentafluorobenzoyl chloride, which gives very stable perfluoro esters that are suitable for gas chromatographic determination using an electron-capture detector. With the careful clean-up and the very sensitive response of these derivatives, it is possible to reach a limit of detection in the sub-parts per billion (10(9)) range starting with only 5 g of sample.

Animals↗

Metabolism of diethylstilbestrol: identification of a catechol derived from dienestrol.

The enzymatic oxidation of E-3,4-bis-(p-hydroxyphenyl)-hex-3-ene (diethylstilbestrol) by either mushroom tyrosinase or rat liver microsomes in the presence of NADPH and air yields a catechol. Upon further oxidation of both compounds with periodate and condensation of the resulting o-quinones with o-phenylenediamine, phenazines are produced. The phenazines derived from the products of both the plant and animal enzyme systems are identical to the product obtained by oxidation of diethylstilbestrol with potassium nitrosodisulfonate and condensation of the o-quinone produced with o-phenylenediamine. High and low resolution mass spectra of the phenazine are consistent with its derivation from a catechol having two fewer hydrogens than diethylstilbestrol.

Animals↗