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Biomedical subjects

M Oettel

Publications and source records attributed to M Oettel.

At least 37 records · Page 2Linked to original sources

Continuous-combined treatment of the menopause with combinations of oestradiol valerate and dienogest - a dose-ranging study.

OBJECTIVES: To determine the progestational efficacy of continuous treatment with various doses of dienogest, combined with oestradiol valerate, on the basis of endometrial histology, effect on climacteric symptoms and bleeding profile in postmenopausal women. METHODS: Patients were randomised to one of five fixed-combination treatments, oestradiol valerate 2.0 mg plus dienogest 0.5, 1.0, 2.0, 3.0 or 4.0 mg. Efficacy was assessed by endometrial biopsy, menstrual charts and change in climacteric symptoms. RESULTS: The endometrium was classified as atrophic in 20.0, 31.3, 25.0, 55.6 and 57.1% of patients in the 0.5, 1.0, 2.0, 3.0 and 4.0 mg dienogest groups, respectively. The frequency of uterine bleeding was dose-dependent. The most favourable bleeding profile was seen in the 3.0 mg dienogest group, whereas the lower doses of dienogest had advantages with respect to the efficacy of the combined preparation. CONCLUSIONS: Dienogest 2.0 and 3.0 mg are the optimal doses for combination with 2.0 mg oestradiol valerate for continuous-combined hormone replacement therapy.

Adult↗

Influence of subchronic administration of oestrone-3-O-sulphamate on oestrone sulphatase activity in liver, spleen and white blood cells of ovariectomized rats.

Inhibition of oestrone sulphatase followed by oestrogen removal from tumour cells may be a new form of endocrine therapy of breast cancer in women. We investigated the inhibitory effect of the subchronic administration of oestrone-3-O-sulphamate (EMATE), a steroid sulphatase inhibitor, to ovariectomized rats, to evaluate this method for testing new nonsteroidal inhibitors. EMATE in DMSO was administered both orally and subcutaneously (s.c.) for 7 days at doses of 0.5 and 2.5 mg/kg. In addition the rats were injected s.c. with 0.5 mg oestrone sulphate/kg 26 and 2 h before decapitation under ether anaesthesia. Oestrone sulphatase activity (ESA) was measured radiometrically using [3H]oestrone sulphate as substrate for desulphuration in white blood cells, liver homogenate, microsomes and spleen homogenate. ESA in liver microsomes was found to be nearly 40 times higher than in white blood cells while in spleen ESA was nearly half of that found in liver homogenates and white blood cells. ESA can be inhibited by EMATE down to 50-1.5% of control activity depending on the dose and administration route. The inhibition was in the order, liver homogenate < spleen < liver microsomes < white blood cells, and was more pronounced after s.c. administration of the inhibitor than after oral administration. Ovariectomy was found to be not necessary for oestrone sulphatase-inhibiting studies. Two sequential s.c. injections of oestrone sulphate enhanced the enzyme activities significantly in liver and white blood cells, but not in spleen. In conclusion, white blood cells and liver microsomes of intact female rats can be used for ESA-inhibiting studies. Sulphate-conjugated oestrone can induce oestrone sulphatase in vivo in liver and white blood cells thereby enhancing oestrogen supply in the peripheral organs.

Administration, Oral↗

Effects of two oral contraceptives on plasma levels of insulin-like growth factor I (IGF-I) and growth hormone (hGH).

UNLABELLED: In 18 healthy women, the effect of two oral contraceptives (OCs) on insulin-like growth factor (IGF-I) and its binding protein-3 (IGFBP-3) and growth hormone (hGH) plasma level were studied before and after intake of either of two OC formulations over 21 days, one containing 2 mg dienogest and 0.03 mg ethinylestradiol (group A) and the other 0.125 mg levonorgestrel and 0.03 mg ethinylestradiol (group B). There was a reduction of the mean IGF-I concentration of 30% (p = 0.008) in the women receiving dienogest-containing pills and 12% (p = 0.006) in women taking the levonogestrel-containing preparation. This difference between drug groups was statistically significant (p = 0.002). A correlation between the control values and the basal-treatment difference (r = 0.945; p = 0.000) was observed only in women of group A. Between basal and treatment cycles the mean plasma levels of hGH remained unchanged in both groups tested, but the 23.5-h integrated mean hGH plasma concentrations (AUC(0-23.5h)) were significantly elevated by 36% (p = 0.016) in comparison to basal values before treatment only in women receiving the levonorgestrel-containing pills. Also, in the women who received the dienogest-containing preparation, the changes of integrated mean plasma level were inversely associated with the control values (r = -0.723; p = 0.025). Neither in group A nor in group B was the mean plasma level of IGFB-3 changed. IN CONCLUSION: the results of the present analysis indicate that hormonal contraceptives can modulate the GH and IGF-I-axis in the reproductive age. Probably the androgenic progestogen levonorgestrel (0.125 mg/day) opposes the estrogen-induced action. In the women who took the dienogest-containing formulations (anti-androgenic progestogen-group A), the extent of individual changes (hGh and IGF-I) depends on the basal level prior to pill intake. Further studies, especially of long-term intake of OCs, are necessary to confirm these results and to assess the practical relevance for possible effects on connective tissue and bone.

Contraceptive Agents, Female↗

17 Alpha-oestradiol and 17 beta-oestradiol do not affect basal and follicle-stimulating hormone-stimulated inhibin B secretion by highly purified rat Sertoli cells.

The effects of 17 alpha-oestradiol and 17 beta-oestradiol on basal and follicle-stimulating hormone (FSH)-stimulated inhibin B secretion by rat Sertoli cells were studied. Sertoli cells were isolated and cultivated from testes of 18-day-old Wistar rats in the presence and absence of FSH and different doses of oestrogens. On day 4 of culture, secreted inhibin was measured by enzyme-linked immunosorbent assay. Neither 17 alpha-oestradiol nor 17 beta-oestradiol had any effect on the secreted inhibin level in either the presence or absence of FSH. It is concluded that these oestradiols do not play an essential role in regulatory processes involving inhibin or FSH.

Animals↗

Comparison of the efficacy and endometrial safety of two estradiol valerate/dienogest combinations and Kliogest for continuous combined hormone replacement therapy in postmenopausal women.

OBJECTIVE: To compare the efficacy and endometrial safety of two estradiol valerate/dienogest combinations with Kliogest in the treatment of postmenopausal symptoms. DESIGN: This was a double-blind, randomized, multicenter study. METHODS: Patients were randomized to estradiol valerate 2.0 mg/dienogest 2.0 mg (Climodien), estradiol valerate 2.0 mg/dienogest 3.0 mg (E2Val 2/DNG 3); or estradiol 2.0 mg/estriol 1.0 mg/norethisterone acetate 1.0 mg (Kliogest) once daily for 1 year. The primary efficacy variable was the Kupperman index. Endometrial safety was determined primarily by biopsy. RESULTS AND CONCLUSIONS: Climodien and E2Val 2/DNG 3 were therapeutically equivalent to Kliogest (mean changes in Kupperman index -20.1, -19.0 and -18.3, respectively). No statistically significant differences existed between treatment groups in the severity of postmenopausal symptoms. The incidences of endometrial atrophy were similar in all groups. Climodien appeared to be superior to Kliogest in terms of vaginal bleeding pattern, whereas E2Val 2/DNG 3 was associated with a slightly higher incidence and greater intensity of vaginal bleeding. The incidences of adverse events were similar in all groups. A greater proportion of women in the Kliogest and E2Val 2/DNG 3 groups experienced vaginal bleeding, whereas breast problems were more common with Climodien. Climodien and E2Val 2/DNG 3 induced desirable changes in insulin-like growth factor I (decrease) and sex hormone binding globulin (increase) that were not seen with Kliogest.

Biopsy↗

Dehydroepiandrosterone replacement in women with adrenal insufficiency.

BACKGROUND: The physiologic role of dehydroepiandrosterone in humans is still unclear. Adrenal insufficiency leads to a deficiency of dehydroepiandrosterone; we therefore, investigated the effects of dehydroepiandrosterone replacement, in patients with adrenal insufficiency. METHODS: In a double-blind study, 24 women with adrenal insufficiency received in random order 50 mg of dehydroepiandrosterone orally each morning for four months and placebo daily for four months, with a one-month washout period. We measured serum steroid hormones, insulin-like growth factor I, lipids, and sex hormone-binding globulin, and we evaluated well-being and sexuality with the use of validated psychological questionnaires and visual-analogue scales, respectively. The women were assessed before treatment, after one and four months of treatment with dehydroepiandrosterone, after one and four months of placebo, and one month after the end of the second treatment period. RESULTS: Treatment with dehydroepiandrosterone raised the initially low serum concentrations of dehydroepiandrosterone, dehydroepiandrosterone sulfate, androstenedione, and testosterone into the normal range; serum concentrations of sex hormone-binding globulin, total cholesterol, and high-density lipoprotein cholesterol decreased significantly. Dehydroepiandrosterone significantly improved overall well-being as well as scores for depression and anxiety. For the global severity index, the mean (+/-SD) change from base line was -0.18+/-0.29 after four months of dehydroepiandrosterone therapy, as compared with 0.03+/-0.29 after four months of placebo (P=0.02). As compared with placebo, dehydroepiandrosterone significantly increased the frequency of sexual thoughts (P=0.006), sexual interest (P=0.002), and satisfaction with both mental and physical aspects of sexuality (P=0.009 and P=0.02, respectively). CONCLUSIONS: Dehydroepiandrosterone improves well-being and sexuality in women with adrenal insufficiency.

Adrenal Insufficiency↗

Radical scavenging compound J 811 inhibits hydrogen peroxide-induced death of cerebellar granule cells.

Oxidative stress is considered to be an important pathophysiological condition to promote cell death in a broad variety of disorders, such as cardiovascular and neurodegenerative diseases. Scavestrogens, structurally derived from estradiol, are potent radical scavengers and inhibitors of iron-induced cell damage in vitro. In this study the potential cytoprotective effects of the so-called scavestrogen estra-1,3,5(10),8-tetraene-3,17alpha-diol, J 811, was tested using rat cerebellar granule cells (CGCs) exposed to 25 or 50 microM hydrogen peroxide (H2O2). H2O2-induced apoptotic cell death was detected by the appearance of high molecular weight DNA fragments and nuclear condensation. The addition of J 811 before or shortly after the exposure to H2O2 prevented CGC apoptosis in a dose-dependent manner. The estrogen receptor antagonist ICI 182.780 failed to prevent the protective effect of J 811, suggesting that the latter is not dependent on estrogen receptor activation. The lack of protection against apoptosis caused by colchicine suggests that J 811 is neither interfering with the activation of caspase-3, nor acting downstream of caspase-3. Therefore, the protective effect observed against H2O2 seems to be upstream caspases activation, pointing to a scavenging action of J 811. Thus the scavestrogen J 811 is a powerful antioxidant able to interfere with radical-mediated cell death and is potentially useful in diseases where reactive oxygen species are involved.

Animals↗

Nitrile hydratase from Rhodococcus erythropolis: metabolization of steroidal compounds with a nitrile group.

The progestin dienogest (17alpha-cyanomethyl-17beta-hydroxy-estra-4,9-dien-3-one) was metabolized by the nitrile hydratase-containing microorganism Rhodococcus erythropolis. An enzymatic hydrolysis of the nitrile group at the 17alpha-side chain was intended to obtain novel derivatives and to test them for progesterone receptor affinity. In contrast to the rapid enzymatic hydrolysis of nonsteroidal nitriles, the nitrile group of dienogest was cleaved very slowly. The dominant reaction was an aromatization of ring A. After prolonged fermentation, the 17alpha-acetamido derivatives of estradiol and of 9(11)-dehydroestradiol were formed. Three of the metabolites were also prepared synthetically. They were tested for hormonal activity by assessing their binding to progesterone and estrogen receptors in vitro. Neither the aromatized 17alpha-acetamido derivatives nor the dienogest derivative 17alpha-acetamido-17beta-hydroxy-estra-4,9-dien-3-one, which was prepared synthetically only, exhibited affinity for the progesterone receptor.

Animals↗

Biotransformation of oral dehydroepiandrosterone in elderly men: significant increase in circulating estrogens.

The most abundant human steroids, dehydroepiandrosterone (DHEA) and its sulfate ester DHEAS, may have a multitude of beneficial effects, but decline with age. DHEA possibly prevents immunosenescence, and as a neuroactive steroid it may influence processes of cognition and memory. Epidemiological studies revealed an inverse correlation between DHEAS levels and the incidence of cardiovascular disease in men, but not in women. To define a suitable dose for DHEA substitution in elderly men we studied pharmacokinetics and biotransformation of orally administered DHEA in 14 healthy male volunteers (mean age, 58.8 +/- 5.1 yr; mean body mass index, 25.5 +/- 1.5 kg/m2) with serum DHEAS concentrations below 4.1 micromol/L (1500 ng/mL). Diurnal blood sampling was performed on 3 occasions in a single dose, randomized, cross-over design (oral administration of placebo, 50 mg DHEA, or 100 mg DHEA). The intake of 50 mg DHEA led to an increase in serum DHEAS to mean levels of young adult men, whereas 100 mg DHEA induced supraphysiological concentrations [placebo vs. 50 mg DHEA vs. 100 mg DHEA; area under the curve (AUC) 0-12 h (mean +/- SD) for DHEA, 108 +/- 22 vs. 252 +/- 45 vs. 349 +/- 72 nmol/L x h; AUC 0-12 h for DHEAS, 33 +/- 9 vs. 114 +/- 19 vs. 164 +/- 36 micromol/L x h]. Serum testosterone and dihydrotestosterone remained unchanged after DHEA administration. In contrast, 17beta-estradiol and estrone significantly increased in a dose-dependent manner to concentrations still within the upper normal range for men [placebo vs. 50 mg DHEA vs. 100 mg DHEA; AUC 0-12 h for 17beta-estradiol, 510 +/- 198 vs. 635 +/- 156 vs. 700 +/- 209 pmol/L x h (P < 0.0001); AUC 0-12 h for estrone, 1443 +/- 269 vs. 2537 +/- 434 vs. 3254 +/- 671 pmol/L x h (P < 0.0001)]. In conclusion, 50 mg DHEA seems to be a suitable substitution dose in elderly men, as it leads to serum DHEAS concentrations usually measured in young healthy adults. The DHEA-induced increase in circulating estrogens may contribute to beneficial effects of DHEA in men.

Aged↗

Intramuscular injection of testosterone undecanoate for the treatment of male hypogonadism: phase I studies.

OBJECTIVE: In the search for long-acting testosterone preparations suited for substitution therapy of hypogonadal men, testosterone undecanoate (TU) dissolved in either tea seed oil or castor oil was investigated. DESIGN: In study I, 1000 mg TU in tea seed oil (125 mg/ml) were injected in equal parts into the gluteal muscles of seven hypogonadal men. In study II, 1000 mg TU in castor oil (250 mg/ml) were injected into one gluteal muscle of 14 patients. RESULTS: In comparison with published data on testosterone enanthate, most widely used for i.m. injections, the kinetic profiles of both TU preparations showed extended half-lives and serum levels not exceeding the upper limit of normal. The castor oil preparation had a longer half-life than TU in tea seed oil (33.9+/-4.9 vs 20.9+/-6.0 days (mean pm S.E.M.)). CONCLUSION: The longer half-life and the smaller injection volume make TU in castor oil a strong candidate for further applications in substitution therapy and in trials for male contraception.

Adult↗

Calcium antagonistic effect of 17 alpha-estradiol derivatives: in vitro examinations.

The calcium antagonistic effect of 17 alpha-estradiol derivatives was investigated in vitro in human aortic smooth muscle cells. The substances tested were 17 alpha-estradiol, 17 alpha-ethinylestradiol, the scavestrogens J811 and J861, and 17 beta-estradiol. Examinations were carried out by measuring 45Ca influx into the cells. All compounds showed a significant inhibition of calcium influx at the concentration of 10(-6) M. The strongest effect could be registered for the scavestrogens. Since these substances are virtually devoid of estrogenic activity, they may offer advantages over 17 beta-estradiol in the therapy and prevention of cardiovascular disease.

Antioxidants↗

Scavestrogens protect IMR 32 cells from oxidative stress-induced cell death.

Oxidative stress is considered an important pathophysiological mechanism contributing to promote cell death in a broad variety of diseases including cardiovascular and neurodegenerative disorders. The so-called scavestrogens J811 and J861, structurally derived from 17alpha-estradiol, are potent radical scavengers and inhibitors of iron-induced cell damage in vitro. In this study the potential cytoprotective effects of the scavestrogens J811 and J861 against Fenton reagent-induced cell damage (50 microM FeSO4 plus 200 microM H2O2) were compared with those of 17alpha- and 17beta-estradiol. Cell viability studies using Trypan blue staining showed that estradiols and scavestrogens at concentrations ranging from 0.1 to 10 microM are able to protect IMR 32 neuroblastoma cells from Fenton-mediated death. In addition, these compounds decreased lipid peroxidation measured as thiobarbituric acid reactive substances and renormalize oxidative stress-increased intracellular glutathione levels. When given 6 h after the toxic stimulus, J811 and J861 rescued 60% of cells, whereas 17alpha- and 17beta-estradiol were ineffective. These results suggest that the scavestrogens J811 and J861 are powerful antioxidants capable of interfering with radical-mediated cell death in diseases known to be aggravated by reactive oxygen species. Such compounds may be useful in the development of novel treatments for stroke or neurodegenerative disorders.

Antioxidants↗

Influence of hormonal contraceptives on microbial flora of gingival sulcus.

To determine a possible influence of two different hormonal contraceptives on bacterial microflora of gingival sulcus, subgingival plaque samples of 29 healthy women aged between 20 and 32 years were investigated bacteriologically before subjects took a contraceptive and 10 and 20 days after subjects started the medication. In 14 women, and oral contraceptive containing 0.02 mg ethinyl estradiol and 0.15 mg desogestrel (preparation A) was used, and 15 women took a contraceptive containing 0.03 mg ethinyl estradiol and 2.00 mg dienogest (preparation B) daily over 21 days. There were no changes in clinical parameters of the teeth investigated during 3 weeks of the study. The periodontopathogenic bacteria Porphyromonas gingivalis and Actinobacillus actinomycetemcomitans were never detected throughout the study. On the other hand, the periodontopathogenic species Prevotella intermedia was found in plaque samples of 22 women. The content of this microorganism showed only a little change between the pretreatment period and plaque sampling after 10 days of contraceptive treatment, but a striking increase occurred after 20 days of contraceptive treatment, especially in the preparation A group. In this respect, there was a significant difference between preparations A and B.

Adult↗

Approaches to the replacement of ethinylestradiol by natural 17beta-estradiol in combined oral contraceptives.

The strong hepatic estrogenic actions of ethinylestradiol (EE) are very likely to be the cause of the cardiovascular morbidity related to the use of combined oral contraceptives (COCs). This survey presents results of EE replacement in COCs with natural 17beta-estradiol (E2) in the following stages: reduction of EE to daily doses of 0.01 mg and concomitant replacement with E2 (as valerate, EV), complete replacement of EE with E2 using a novel multiphasic combination containing EV and the progestin dienogest (DNG), and the use of natural E2 to develop estrogen sulfamates (J 995) showing sufficient dissociation of uterine from liver estrogenicity. Recent data from preclinical and clinical studies show that these approaches seem to be promising.

Animals↗

Oral dehydroepiandrosterone for adrenal androgen replacement: pharmacokinetics and peripheral conversion to androgens and estrogens in young healthy females after dexamethasone suppression.

Women with adrenal insufficiency suffer from chronic dehydroepiandrosterone (sulfate) [DHEA(S)] deficiency. To define a suitable dose for DHEA replacement, we studied the pharmacokinetics and biotransformation of orally administered DHEA in nine healthy female volunteers (mean age 23.3 +/- 4.1 yr, mean body mass index 22.5 +/- 1.8 kg/m2) with transient suppression of adrenal androgen secretion because of dexamethasone (dex) administration (4 x 0.5 mg/day for 4 days). Diurnal blood sampling was performed during the early follicular phase of four subsequent menstrual cycles (study period 1: baseline; study periods 2-4: dex + placebo, dex + 50 mg DHEA or dex + 100 mg DHEA in a randomized cross-over design). Dex induced not only a significant suppression of serum cortisol (to 8% of baseline) but also of DHEA (18%), DHEA(S) (16%), and androstenedione (26%), as well as of testosterone (28%), dihydrotestosterone (43%), and estrone (54%). Oral administration of 50 mg DHEA led to restoration of DHEA(S) baseline levels, whereas 100 mg induced supraphysiological concentrations [baseline vs. 50 mg DHEA vs. 100 mg DHEA: area under the concentration-time curve (AUC) 0-12 h DHEA: 280 +/- 85 vs. 241 +/- 73 vs. 383 +/- 106 nmol/L x h; AUC 0-12 h DHEA(S): 89.1 +/- 48.4 vs. 139.6 +/- 43.5 vs. 213.3 +/- 21.6 mumol/L x h). Serum concentrations of dihydrotestosterone and estrone were restored to baseline after 50 mg DHEA, whereas baseline testosterone and androstenedione levels were only achieved by administration of 100 mg DHEA. In conclusion, 50 mg DHEA seems to be a suitable replacement dose in females with adrenal insufficiency. Furthermore, the rapid and lasting conversion to potent androgens demonstrates a potential role of DHEA for androgen replacement in females in general.

Administration, Oral↗

Scavestrogen sulfamates: correlation between estrone sulfatase inhibiting and antioxidant effects.

In the present study estrone sulfatase (steryl-sulfatase; EC 3.1.6.2) and phenylsulfatase (arylsulfatase B; EC 3.1.6.1) inhibiting as well as antioxidant effects exerted by ring B,C unsaturated sulfamates of estrone (J 1025), 17 beta-estradiol (J 1054, J 1059, J 1067), and 17 alpha-estradiol (J 1051, J 1064, J 1065) were examined as compared with their parent compounds, J 994, J 995, and J 1050, using six different in vitro models: (i) estrone sulfatase activity in human placental microsomes, (ii) phenylsulfatase activity isolated from Helix pomatia, (iii) Fenton reaction driven lipid peroxidation in rat synaptosomes, (iv) Fe(II)-chelating activities, (v) formation of superoxide anion radicals, and (vi) total antioxidative activities. Ring B,C unsaturated estrogen (so-called scavestrogen) sulfamates were found to act as potent inhibitors of the following enzyme activities and generated radicals: estrone sulfatase, phenylsulfatase, lipid peroxyl, and superoxide anion. In addition, scavestrogen sulfamates were able to influence the iron redox chemistry and total antioxidative activities. These findings indicate that relatively minor modifications in the chemical structure of classical steroid sulfamates can preserve or enhance their estrone sulfatase inhibiting properties and, simultaneously, amplify their antioxidant capacity to a great extent. Taken together, our data suggest that scavestrogen sulfamates such as J 1025, J 1051, or J 1054 (17 beta-dihydroequilenin sulfamate) may serve as a very promising basis for the development of steroid-derived estrone sulfate-sulfatase inhibitors characterized by promising estrone sulfatase inhibiting activities in combination with a "good" antioxidant potency.

Adult↗

Evaluation of an oral pulsatile delivery system for melatonin in humans.

Using melatonin (MT) as a circadian synchroniser in humans to treat a variety of rhythm disorders, it is desirable to develop controlled-release dosage forms that deliver MT in accordance with its endogenous secretory pattern as well as preparations that release MT in a pulsatile way. In this paper we describe two oral pulsatile dosage forms containing 10 mg MT each (capsules B and C) and a fast-release form containing 5 mg MT (capsule A) studied in a randomised single-dose, threefold cross-over study in 15 healthy male volunteers. The concentrations of both MT in serum and its main metabolite 6-sulfatoxymelatonin (aMT6s) in urine were analysed by means of specific radioimmunoassays up to 10 h p.a. of the MT preparations. Mean peak concentrations of MT in serum were reached between 0.5 h and 0.75 h (Cmax[1] pmol/ml): 20.7 (A), 16.4 (B), 9.7 (C). The capsules B and C released a second MT pulse after about 3.5 h with Cmax[2] of 13.0 and 17.5 pmol/ml, respectively. Dose proportionality for the MT preparations studied was calculated by determining the AUC0-infinity (pmol/ml.h): 18.4 (A), 36.1 (B), 42.4 (C). The terminal serum half-lives of MT ranged between 0.64 and 0.84 h. The time course of the renally excreted aMT6s correlated with that of changes in MT serum concentrations.

Adult↗

Mechanisms of relaxation of rat aorta in response to progesterone and synthetic progestins.

OBJECTIVE: To compare the acute effects of progesterone, chlormadinone acetate (CMA), norethisterone acetate (NETA) and dienogest (DNG) with those of 17 beta-estradiol (17 beta-E2) on the vascular reactivity of male rat thoracic aorta. METHODS: Aortic rings with or without endothelium were placed in an organ bath for isometric tension recording. The integrity of the endothelium was assessed by the relaxant response of precontracted rings to acetylcholine (1 and 10 microM), which was diminished after mechanical removal of the endothelium. The concentrations of the steroid hormones were 0.01-10 microM. RESULTS: In vessels precontracted with phenylephrine (1 microM), CaCl2 (3 mM) or KCl (30 mM), progesterone, CMA and NETA (10 microM each) an endothelium-independent relaxation of 20-35% resulted, with a maximum response after 20-30 min, while DNG had a negligible effect in all experiments. The same concentration of 17 beta-E2 was twice as potent as the progestins. Indomethacin, the cyclooxygenase inhibitor and glibenclamide, an inhibitor of the ATP-sensitive potassium channels, did not affect the relaxant responses. The antagonists of progesterone receptors J 867 (1 microM) as well as of estrogen receptors ICI 182780 (1 microM) did not counteract the relaxation induced by progesterone and 17 beta-E2, respectively. Progesterone (10 microM) did not interfere with endothelium-dependent acetylcholine-induced relaxation of precontracted aortic rings. Pretreatment of the vessels with the hormones attenuated the maximal contractile response to phenylephrine. In the presence of verapamil (1 microM) or progesterone (10 microM) or 17 beta-E2 (1 and 10 microM) the concentration-response curves for calcium-induced contractions in K(+)-depolarized vessels were shifted to the right, with suppression of the maximum response. CONCLUSIONS: These studies suggest that in addition to 17 beta-E2 the progestins, progesterone, CMA and NETA caused a reduction of vascular tone, probably due to blockade of voltage-dependent and/or receptor-operated calcium channels.

Animals↗