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L Kiesel

Publications and source records attributed to L Kiesel.

96 records · Page 6Linked to original sources

Inhibition of human placental progesterone synthesis by danazol in vivo.

In vivo, a single dose of 1000 mg danazol was given orally to pregnant volunteers (n = 8) prior to a therapeutic abortion (8th-12th week of gestation). Changes in serum progesterone and estradiol were evaluated both by analysis of percentage values related to initial concentrations or statistically by a Kruskal-Wallis test comparing absolute steroid concentrations. Following treatment (n = 8), a significant decrease in mean plasma progesterone of about 20% was observed within 2-4 hours; progesterone levels varied between 80-120% during 24 hours in controls (n = 10); individual serum estradiol decreased up to 30% of control values 2 hours after danazol application. Changes in estradiol in controls versus tests were not statistically significant (p less than 0.05) when absolute estradiol concentrations were compared. Only a slight (10-20%) decrease in mean serum DHAS was found between 2 to 6 hours following danazol treatment. This study demonstrates the inhibitory activity of danazol on the human maternal and fetal steroidogenesis in vivo. The possible sites of action of danazol are discussed.

Abortion, Therapeutic↗

Inhibition of human placental progesterone synthesis and aromatase activity by synthetic steroidogenic inhibitors in vitro.

The inhibitory effect in vitro of four synthetic steroids on enzyme systems of placental progesterone synthesis at term was analyzed. Cholesterol side chain cleavage enzyme (CSCC) was not influenced by azastene, trilostane, and WIN 32,729. A 50% inhibition of CSCC was found by 10 microM cyanoketone. The 3 beta-hydroxysteroid dehydrogenase was dose-dependently inhibited by azastene (I50 = 1 microM, trilostane (I50 = 4 nM), cyanoketone (I50 = 3 nM), and WIN 32,729 (I50 = 5 nM). A competitive inhibition of the 20 alpha-hydroxysteroid dehydrogenase (20 alpha-HSDH) by azastene (I50 = 0.6 microM), trilostane (I50 = 4.1 microM), cyanoketone (I50 = 0.6 microM), and WIN 32,729 (I50 = 1.5 microM) was observed. No difference in the effect of steroids on the 20 alpha-HSDH of early gestational and term placenta was found. The four steroidogenic inhibitors did not affect the activity of placental aromatase in vitro. Our results allow a comparison of inhibitory potencies of four steroidogenic inhibitors on different steroidogenic enzymes in vitro.

20-Hydroxysteroid Dehydrogenases↗

Inhibition of human placental progesterone synthesis by danazol in vitro.

In vitro, danazol showed a slight dose-dependent inhibition of the mitochondrial cholesterol side chain cleavage enzyme isolated from early gestational (8th to 12th week of gestation) placenta. In the presence of 100 microM danazol, the enzyme activity was 65% of controls. Danazol inhibits dose-dependently the mitochondrial 3 beta-hydroxysteroid dehydrogenase (I50 = 3.1 microM; Ki = 1 microM) (noncompetitive inhibition) and the cytoplasmic 20 alpha-hydroxysteroid dehydrogenase (I50 = 1.4 microM; Ki = 2.6 microM) (competitive inhibition). The inhibition of human placental progesterone synthesis by danazol in vitro is a further example for the direct interference of danazol with steroidogenesis.

20-Hydroxysteroid Dehydrogenases↗

Partial characterization of the cytoplasmic 20 alpha-hydroxysteroid dehydrogenase (EC 1.1.1.149) of the human placenta at term.

The 20 alpha-hydroxysteroid dehydrogenase (20 alpha-HSDH) is a key enzyme in human fetal and maternal progesterone metabolism. In this paper, the cytoplasmic 20 alpha-HSDH of human term placenta is partially characterized in vitro. A 14-fold concentration of the 20 alpha-HSDH was prepared by ultracentrifugation and ammonium sulfate precipitation. The apparent Km values for the substrates progesterone (Km: 4.8 x 10(-5) M) and 20 alpha-DHP (Km: 6.2 x 10(-5) M) and for the cofactors NADPH (Km: 1.9 x 10(-4)) and NADH (Km: 2.6 x 10(-4)) were determined. The temperature optimum for the oxidation of 20 alpha-DHP is 40--50 degrees C. The pH optimum for the reduction of progesterone was found to be pH 6.2 and for the oxidation of 20 alpha-DHP pH 6.5. The addition of glycerol (3 M) to the incubation medium inhibited the conversion rate of 20 alpha-HSDH by 70%. No influence of EDTA could be found. Various bivalent metal ions (1--100 mM) showed a dose-dependent inhibition of 20 alpha-HSDH; a complete inhibition was achieved at 100 mM: Cu2+, Zn2+, Cd2+, Fe2+ and Ni2+.

20-Hydroxysteroid Dehydrogenases↗

Endogenous inhibition of the 20 alpha-hydroxysteroid dehydrogenase (EC 1.1.1.149) in the human term placenta in vitro.

Human placental 20 alpha-hydroxysteroid dehydrogenase (20 alpha-HSDH) interconverts progesterone and 20 alpha-dihydroprogesterone (20 alpha-DHP). In this study, an endogenous inhibitor of the cytoplasmic 20 alpha-HSDH isolated from human term placenta is demonstrated. Characterization of the endogenous inhibitor was carried out by adding heat-denatured fractions of the 20 alpha-HSDH enzyme stock solution to the incubations. The aqueous phase of the 20 alpha-HSDH (after diethylether extraction) using 8-fold concentration of the enzyme inhibited the 20 alpha-HSDH activity by 50%. After ultrafiltration of the aqueous phase, this inhibitory effect (50%) was found in the aqueous fraction with a molecular weight above 12,800. No inhibition of the 20 alpha-HSDH was shown using the ether phase or the aqueous ultrafiltrate with a molecular weight below 12,800. The 20 alpha-HSDH was stimulated by human and bovine serum albumins up to 290% and 420% respectively. Bovine serum albumin showed a higher stimulatory effect on the oxidative (420%) than on the reductive (190%) pathway of the 20 alpha-HSDH. Ovalbumin and immunoglobulin G had no effect. The endogenous inhibitor of the cytoplasmic 20 alpha-HSDH isolated from the human term placenta is heat stable (100 degrees C), water soluble, not soluble in diethylether and has a molecular weight above 12,800. The stimulatory effect of serum albumins in 20 alpha-HSDH may be caused by binding and inactivation of the endogenous inhibitor.

20-Hydroxysteroid Dehydrogenases↗

The role of prostaglandins, cyclic nucleotides and tricarboxylic acids in the regulation of the human placental 20 alpha-hydroxysteroid dehydrogenase in vitro.

The in vitro effect of non-steroidal regulators (prostaglandins, cyclic nucleotides and tricarboxylic acids) on the cytoplasmic 20 alpha-hydroxysteroid dehydrogenase (20 alpha-HSDH, EC 1.1.1.149) isolated from human early gestational and term placentas was investigated. When prostaglandins (PG) were tested at 100 microM concentrations, an inhibition of the human placental 20 alpha-HSDH by PGE1 (80% inhibition), PGE2 (70%), PGF1 alpha (40%) PGF2 alpha (30%) and 13,14-dihydro-15-keto-PGF2 (PGFM) (20%) was observed. This effect was shown to be dose-dependent. The I50 (concentration at 50% inhibition) was determined for PGE1 and PGE2 to be 11 microM and 38 microM, respectively. No effect on the activity of the 20 alpha-HSDH could be demonstrated for PGI2 and its stable metabolite 6-keto-PGF1 alpha, for the cyclic nucleotides (dbcAMP, dbcGMP) and for the tricarboxylic acids (citrate, ketoglutarate, lactate, malonate, pyruvate and succinate) when added to the incubation at 100 microM concentration. The 20 alpha-HSDH isolated from early gestational and term placentas did not respond differently to the substances tested. These results suggest that prostaglandins can have a direct, dose-dependent effect on the isolated human placental 20 alpha-HSDH without cyclic nucleotides as intermediates and thereby play a role in the regulation of human progesterone synthesis and metabolism during pregnancy and near term.

20-Hydroxysteroid Dehydrogenases↗