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Glucocorticoid receptor antagonism by cyproterone acetate and RU486.

The steroid compound cyproterone acetate was identified in a high-throughput screen for glucocorticoid receptor (GR) binding compounds. Cyproterone (Schering AG) is clinically used as an antiandrogen for inoperable prostate cancer, virilizing syndromes in women, and the inhibition of sex drive in men. Despite its progestin properties, cyproterone shares a similar pharmacological profile with the antiprogestin mifepristone (RU486; Roussel Uclaf SA). The binding affinities of cyproterone and RU486 for the GR and progesterone receptor were similar (K(d), 15-70 nM). Both compounds were characterized as competitive antagonists of dexamethasone without intrinsic transactivating properties in rat hepatocytes (K(i), 10-30 nM). In osteosarcoma cells, RU486 revealed a higher potency than cyproterone acetate to prevent responses to dexamethasone-induced GR transactivation and NF kappa B transrepression. Upon administration to Sprague-Dawley rats, both compounds were found to be orally bioavailable and to inhibit transactivation of liver GR. Molecular docking of cyproterone acetate and RU486 into the homology model for the GR ligand binding domain illustrated overlapping steroid scaffolds in the binding pocket. However, in contrast to RU486, cyproterone lacks a bulky side chain at position C11 beta that has been proposed to trigger active antagonism of nuclear receptors by displacing the C-terminal helix of the ligand-binding domain, thereby affecting activation function 2. Cyproterone may therefore inhibit transactivation of the GR by a molecular mechanism recently described as passive antagonism. New therapeutic profiles may result from compounds designed to selectively stabilize the inactive and active conformations of certain nuclear receptors.

Androgen Antagonists↗

Cyproterone-mediated stimulation of delta-aminolevulinic acid synthetase in chick embryo liver cells.

In cultured chick embryo liver cells, cyproterone and cyproterone acetate, synthetic anti-androgenic steroids, were found to be potent inducers of mitochondrial delta-aminolevulinic acid (ALA) synthetase, the rate-limiting enzyme in the heme biosynthetic pathway. Both steroids produced a detectable increase in enzyme activity at 5 muM and a maximal stimulation, 36-fold for cyproterone and 29-fold for cyproterone acetate, at 55 muM. The dose-response curves of the steroids differed, however, in that cyproterone acetate produced a greater mean stimulation of the enzyme at concentrations less than approximately 25 muM, whereas, at higher concentrations, cyproterone was the more effective inducer. Increased activity of ALA synthetase was not apparent until about 12 hours after the addition of cyproterone, and maximal activity was not achieved until 20-24 hours. The induction of ALA synthetase by these anti-androgens was prevented by actinomycin D, cordycepin, anisomycin, cycloheximide, and puromycin. These results suggest that new RNA and protein synthesis are necessary for enzyme induction. The cyproterone-mediated induction of the enzyme was inhibited 50% by 2 muM heme, the putative physiological inhibitor of ALA synthetase. These antiandrogens, unlike other potent steroid inducers of this enzyme in chick embryo liver, do not possess either a 5beta-pregnane or 5beta-androstane nucleus. The stimulation of hepatic ALA synthetase represents the first example of a direct effect of these steroids on enzyme induction.

5-Aminolevulinate Synthetase↗

[Therapy of hirsutism in females with adrenal enzyme defects of steroid hormone biosynthesis: comparison of dexamethasone with cyproterone acetate].

In patients with adrenal hirsutism or enzyme deficiencies in steroidogenesis, elevated adrenal androgens could be normalized by dexamethasone. We were interested to see if dexamethasone would be as effective as cyproterone acetate in treating hirsutism in selected patients with adrenal pathogenesis. Therefore 28 patients with hirsutism of adrenal origin or enzyme deficiency were treated cyclically either with cyproterone acetate and ethinylestradiol (2 mg cyproterone acetate + 0.035 mg ethinyl-estradiol days 1-21, +10 mg cyproterone acetate days 1-15) (n = 15) or with 0.25-0.5 mg dexamethasone daily at 10 pm (n = 13). In the dexamethasone group there was a significant drop in dehydroepiandrosterone and dehydroepiandrosterone sulfate levels within 9 months, but there was a diminution in hirsutism in only four women (31%); in four out of seven menstrual irregularities decreased. In the cyproterone acetate group hirsutism diminished significantly in 66% (n = 10) without suppression of adrenal androgens. Weight gain occurred in a few cases in both groups; other side effects developed in 33% in the cyproterone acetate group. Preselection of patients with hirsutism is useful with respect to diagnosis; adrenal pathogenesis should not generally indicate dexamethasone treatment of hirsutism unless there is a desire for pregnancy, because cyproterone acetate is a more powerful agent in reducing hair growth.

3-Hydroxysteroid Dehydrogenases↗

Comparison of the antiandrogenic/androgenic activities of flutamide, cyproterone acetate and megestrol acetate.

Flutamide is approximately 2-fold more potent than cyproterone acetate in reversing the stimulatory effect of dihydrotestosterone (DHT) on ventral prostate weight. Even at the highest dose of cyproterone acetate, prostate weight remains 40% above control while flutamide completely reverses the stimulatory action of DHT, thus suggesting some partial androgenic activity of cyproterone acetate. Megestrol acetate, on the other hand, is devoid of any antiandrogenic activity and it even increases the stimulatory effect of DHT on prostate weight. While flutamide completely reverses the inhibitory effect of DHT on plasma LH levels in castrated animals, cyproterone acetate reverses the value of this parameter by only 30% while megestrol acetate further inhibits plasma LH levels at all the doses used. Both cyproterone acetate and megestrol acetate inhibit adrenal weight to approximately 25% of control, thus indicating their glucocorticoid activity. As direct measure of androgenic activity, cyproterone acetate and megestrol acetate increased prostate weight in castrated animals by 60 and 100%, respectively (P less than 0.01) while flutamide had no effect. The present data show that cyproterone acetate and megestrol acetate, in addition to their well-known progestational and glucocorticoid action, have intrinsic androgenic activity. Since it is the only compound having pure antiandrogenic activity, flutamide provides the best scientific arguments for its successful use for the treatment of androgen-sensitive diseases.

Adrenal Glands↗

[Preliminary pilot study of cyproterone acetate for the treatment of aggressive behavior associated with severe dementia].

INTRODUCTION: Behavioral symptoms are common in dementia, and seem to be more frequent in men than in women. Agitation is frequently responsible for caregiver burn-out and leads to institutionalization. The dramatic increase in the prevalence of Alzheimer's disease and related disorders requires better management of behavior symptoms. Although environmental adaptation has been proposed recently, for many years, psychoactive medications and physical restraints were the primary approach. However, in severely demented patients, both pharmacologic and non-pharmacologic treatments are inoperative. In this situation, alternative pharmacologic approach should be tested. Cyproterone acetate, an antiandrogen and progestative steroid has never been proposed to prevent aggressive behavior in dementia, but its favorable effect is well described in rat and monkey aggressivity. PATIENTS AND METHODS: Cyproterone acetate was proposed for 19 demented patients who developed severe aggressive behaviors or an agitation unresponsive to psychoactive drugs (even in association) or to environmental adaptation. Clinical and behavioral analysis was carried out using the Cohen-Mansfield agitation inventory associated with an assessment of dependency in daily life activities, before and during treatment with cyproterone acetate. The behavioral status was stable, with permanent or repetitive agitation. Seven patients had vascular dementia, 7 had Alzheimer's disease, 2 had fronto-temporal degeneration, 2 had Huntington's disease and 1 a probable diffuse Lewy bodies disease. Fifteen patients had prominent aggressive behavior and 4 had predominant aberrant motor behavior with aggressive behavior. RESULTS: Cyproterone (50 to 100mg - mean: 92.5mg daily) improved significantly aggressive and impulsive behavior related to Alzheimer's disease or vascular dementia but had no effect on aberrant motor behavior. When cyproterone was stopped, aggressive behaviors reappeared more rapidly in vascular dementia. CONCLUSION: Cyproterone acetate is then an interesting choice when aggressive behavior is not improved with psychotropic drugs. A detailed clinical analysis is required to avoid the use of cyproterone in non-aggressive and non-impulsive patients. The results of this preliminary study suggest a randomized double-blind study should be carried out in the near future. The behavior improvement could be related to the blockage of androgen receptors, and simultaneously to the sedative effect of progestative drugs.

Aged↗

Effects of minoxidil 2% vs. cyproterone acetate treatment on female androgenetic alopecia: a controlled, 12-month randomized trial.

BACKGROUND: Hormone studies have demonstrated the androgen-dependent character of female androgenetic alopecia, but there have been few controlled studies of therapies for alopecia in women. OBJECTIVES: To compare topical minoxidil 2% and cyproterone acetate in the treatment of female alopecia. METHODS: Sixty-six women with female-pattern alopecia were randomly assigned for 12 cycles into two groups, 33 received two local applications (2 mL day-1) of topical minoxidil 2% plus combined oral contraceptive and 33 received cyproterone acetate 52 mg day-1 plus ethinyl oestradiol 35 microg for 20 of every 28 days. RESULTS: A mean reduction of 2.4 +/- 6.2 per 0.36 cm2 in hairs of diameter > 40 microm was observed in the cyproterone acetate group (P = 0.05) and a mean increase of 6.5 +/- 9 per 0.36 cm2 in the minoxidil group (P < 0.001). Comparison of the total number of hairs at 12 months and the body mass index (BMI) revealed a borderline positive correlation in the cyproterone acetate group (r = 0.39, P = 0.06) and a negative correlation in the minoxidil group (r = -0.42, P < 0.05). No significant difference was observed in the total number of hairs among cyproterone acetate patients according to the presence or absence of other symptoms of hyperandrogenism, whereas in the minoxidil group, the total number of new hairs was higher in patients with isolated alopecia (Delta = 8.1; P < 0.05). Variations in scalp seborrhoea were significant in both groups, but the result was better (for acne and hirsutism as well) in the cyproterone acetate group than in the minoxidil group (P < 0.001). CONCLUSIONS: Minoxidil treatment was more effective in the absence of other signs of hyperandrogenism, hyperseborrhoea, and menstrual cycle modifications when the BMI was low, and when nothing argued in favour of biochemical hyperandrogenism. Cyproterone acetate treatment was more effective when other signs were present and when the BMI was elevated, factors that favoured a diagnosis of biochemical hyperandrogenism.

Administration, Topical↗

Cyproterone. A review of its pharmacology and therapeutic efficacy in prostate cancer.

Cyproterone (cyproterone acetate) is a steroidal antiandrogenic agent that inhibits the action of adrenal and testicular androgens on prostatic cells. Additionally, its progestogenic activity causes a centrally mediated reduction in testicular secretion of androgens. Studies have demonstrated the effectiveness of cyproterone monotherapy in patients with prostate cancer, and for those in whom orchiectomy is not an acceptable option cyproterone may be a useful alternative. In addition, the drug may be administered in combination with surgical or gonadotrophin-releasing hormone (GnRH) agonist-mediated castration to ensure ablation of adrenal androgens. However, the effectiveness of cyproterone in combination with these forms of testicular androgen deprivation remains to be fully established. Trials to date have not demonstrated prolonged survival in patients receiving the combination therapy. Importantly, however, cyproterone does prevent acute exacerbation of disease during initial treatment with a GnRH agonist. Furthermore, combination therapy tends to be associated with a lower incidence of hot flushes than GnRH agonist-mediated or surgical castration alone. Thus, cyproterone 200 mg/day has proven efficacy in preventing acute flare of disease and reducing the incidence of hot flushes associated with GnRH agonist therapy or orchiectomy. It may also facilitate maximal androgen deprivation in patients receiving GnRH agonist therapy. If this drug is used as monotherapy, dosages of 250 mg/day or greater will probably be required.

Cyproterone↗

Comparison of norgestrel- versus cyproterone acetate-containing hormone replacement therapy on lipid-lipoprotein metabolism.

To compare the effects on the lipid profile of estradiol valerate with norgestrel to a regimen of estradiol valerate with cyproterone acetate. Sixty-four healthy women in their perimenopause or early postmenopause, aged between 40-55 years, were randomized to one of the two 21-day sequential regimens: estradiol valerate 2 mg/day for 21 days and combined with either norgestrel 0.5 mg/day or cyproterone acetate 1 mg/day from day 12 to 21, with 7 days of drug-free interval, for 12 cycles. Lipid profiles were followed at baseline, 6 and 12 cycles. Sixty-one subjects completed the study, 30 in the norgestrel group and 31 in the cyproterone group. During 12 cycles of study, serum HDL cholesterol levels decreased significantly in the norgestrel group (p < 0.01) and were unchanged in the cyproterone group. The levels were significantly lower in the norgestrel group than in the cyproterone group (p < 0.05). No differences were found between groups as regards LDL cholesterol and total cholesterol levels. Triglyceride levels decreased significantly in the norgestrel group (p < 0.01), remained unchanged in the cyproterone group and the levels were significantly different between groups (p < 0.01). In conclusion, the study demonstrated that sequential regimen of estradiol valerate with norgestrel produced less favorable HDL cholesterol but more favorable triglyceride levels than the regimen of estradiol valerate with cyproterone acetate.

Adult↗

Effects of cyproterone on the steroid biosynthesis in the human ovary in vitro.

To examine the direct effects of cyproterone on the ovarian biosynthesis of steroids, tissue slices obtained from two cyclically functional human ovaries were incubated with [4-14C]pregnenolone as precursor. The steroid production was determined by measuring the concentration of eleven 14C-labelled steroids in the medium at the end of a 3-h incubation. Under control conditions, the in vitro-synthesis of 17 alpha-hydroxypregnenolone, dehydroepiandrosterone, androstenediol (5-ene-3 beta-hydroxy-steroids) and androstenedione represents the characteristic profile of steroids of the ovary from the follicular phase. The addition of cyproterone to the incubation medium inhibited the biosynthesis of androstenedione, whereas 17 alpha-hydroxypregnenolone and dehydroepiandrosterone increased. The in vitro-synthesis of progesterone, 17 alpha-hydroxyprogesterone, oestrone and oestradiol-17 beta represents the characteristic profile of steroids of the luteal ovary. The biosynthesis of progesterone, 17 alpha-hydroxyprogesterone and oestradiol-17 beta is inhibited by cyproterone. The principal manifestation of the effects of cyproterone on the two different profiles of steroids is an apparent inhibition of the 3 beta-hydroxysteroiddehydrogenase-delta 5-4-isomerase activity. It is noteworthy, that the effects of the "pure antiandrogen" cyproterone are similar to those effects previously published for progestagens (chlormadinone acetate, norethisterone acetate and D-norgestrel). A simplified concept of the direct effects of cyproterone and progestagens on the steroidogenesis in the human ovary is proposed. The results indicate, that cyproterone, in addition to its well-known androgen receptor blocking effect, act directly on the steroid biosynthesis in the human ovary in vitro.

Androgens↗

The effects of cyproterone acetate on the elements in the intraluminal fluids of the testis and epididymis of the rat.

Spermatozoal maturation and the integrity of the epididymis are dependent on the action of androgen. Micropuncture techniques and electron probe microanalysis were used to investigate the effect of cyproterone acetate on the concentrations of seven elements in intraluminal fluids of the testis, rete testis, and epididymis. After 4 weeks of treatment with cyproterone acetate, the sodium concentration rose in the corpus epididymidis (74.4 +/- 5.4 to 102 +/- 6 mmol/L, p less than 0.01). The concentration of potassium rose in seminiferous tubular fluid (33.9 +/- 2.7 to 49.4 +/- 4.4 mmol/L, p less than 0.01) and caput epididymidal fluid (15.9 +/- 1.4 to 25.7 +/- 0.9 mmol/L, p less than 0.01) after 8 weeks of cyproterone acetate treatment. The chloride concentration rose in the caput (23.7 +/- 0.8 to 65.4 +/- 12.5 mmol/L, p less than 0.01) and distal cauda (39.4 +/- 4.6 to 74.7 +/- 10.8 mmol/L, p less than 0.01) epididymidis after 8 weeks of treatment. Cyproterone acetate had no effect on the concentrations of phosphorus, calcium, and magnesium. The sulfur concentration rose in seminiferous tubular fluid (4.3 +/- 0.3 to 7.3 +/- 0.3 mmol/L, p less than 0.01) and distal cauda fluid (5.3 +/- 0.5 to 14.0 +/- 1.6 mmol/L, p less than 0.01) after 8 weeks of treatment with cyproterone acetate. Four weeks of treatment also increased the sulfur concentration in the distal cauda (6.8 +/- 1.6 to 13.4 +/- 1.5 mmol/L, p less than 0.01). Cyproterone acetate treatment did not affect the concentration of any element in rete testis fluid or serum.

Animals↗

Changes in expression of CCAAT/enhancer binding protein alpha (C/EBP alpha) and C/EBP beta in rat liver after partial hepatectomy but not after treatment with cyproterone acetate.

BACKGROUND/AIMS: The proliferation rate of adult rat liver is normally very low. It is markedly enhanced during compensatory regeneration, e.g. after partial hepatectomy, or after administration of certain growth promoters, e.g. cyproterone acetate. These two types of liver cell proliferation appear to differ, since the expression of immediate early genes is induced during compensatory regeneration but not after cyproterone acetate treatment. The transcription factor C/EBP alpha, which has been associated with hepatocyte differentiation and growth arrest, is suppressed during compensatory regeneration. In contrast, C/EBP beta, associated with acute phase reaction, is increased during regeneration. We have investigated the effects of the liver growth promoter cyproterone acetate on the hepatic expression of C/EBP alpha and C/EBP beta. METHODS: Adult male rats received either cyproterone acetate treatment or were subjected to partial hepatectomy. Livers were obtained at different time intervals for measurement of C/EBP alpha and C/EBP beta mRNA with solution hybridization/RNAse protection assay, and C/EBP alpha and C/EBP beta content with immunoblotting. RESULTS: The levels of both C/EBP alpha and C/EBP beta mRNA and the corresponding immunoreactivities were unchanged 2-48 h after injection of cyproterone acetate. The levels of C/EBP alpha mRNA and immunoreactivity were significantly suppressed 10-18 h and 18-26 h after partial hepatectomy, respectively. The levels of C/EBP beta mRNA and immunoreactivity were enhanced during compensatory regeneration 2 h after partial hepatectomy. CONCLUSIONS: Liver cell proliferation during regeneration, but not in response to cyproterone acetate treatment, is associated with changes in C/EBP alpha and C/EBP beta expression. This further supports the notion that changes in expression of transcription factors during liver growth in vivo are dependent on the growth inducer.

Animals↗

Effect of estradiol valerate alone or in association with cyproterone acetate upon vascular function of postmenopausal women at increased risk for cardiovascular disease.

OBJECTIVES: a large body of evidence has been accumulated suggesting that impairment of vascular endothelial function is an initial step in the development of atherosclerosis. Recent studies have shown that estrogen replacement therapy in postmenopausal women (PMW) improves endothelium-dependent, flow-mediated dilatation (FMD) while the cyclical adjunct of a progestin may reverse this effect. METHODS: the purpose of this study was to evaluate endothelium-dependent, FMD in the brachial artery and the plasma levels of Endothelin-1 in menopausal females treated with estradiol valerate with and without cyclical cyproterone acetate in 20 PMW (mean age 64+/-6 years) with more than one risk factor for coronary artery disease. After a baseline evaluation, PMW entered a double-blinded, placebo controlled single cross-over study and were randomized to receive either estradiol valerate (2 mg) for 21 days or estradiol valerate (2 mg) for 11 days and estradiol valerate (2 mg) and cyproterone acetate (1 mg) for 10 days. Patients were crossed-over the complementary treatment 7 days after completing the first treatment phase. The study of forearm blood flow was repeated at the end of each treatment period. RESULTS: estradiol valerate significantly increased FMD as compared with baseline (12+/-3 vs. 7+/-4%, P<0.01) the adjunct of cyproterone acetate did not affect the effect of estradiol valerate upon FMD (12+/-3 vs. 11+/-4%, P=NS). Similarly reactive hyperemic flow increased after estradiol valerate alone (24%) or in association with cyproterone acetate (24%) compared with baseline. Plasma levels of Endothelin-1 were significantly reduced by estradiol valerate alone or in association with cyproterone acetate. CONCLUSIONS: in conclusion hormone replacement therapy with estradiol valerate and cyproterone acetate improves endothelial function and reduces plasma levels of Endothelin-1 in PMW at risk of coronary artery disease. These effects may be relevant for cardioprotection.

Brachial Artery↗

Formation of DNA adducts by cyproterone acetate and some structural analogues in primary cultures of human hepatocytes.

Recently, we have shown that the therapeutically-used progestin and antiandrogen cyproterone acetate (CPA) causes the formation of high levels of DNA adducts in rat hepatocytes and rat liver [J. Topinka, U. Andrae, L.R. Schwarz, T. Wolff, Cyproterone acetate generates DNA adducts in rat liver and in primary rat hepatocyte cultures, Carcinogenesis 14 (1993) 423-427: J. Topinka, B. Binkova, L.R. Schwarz, T. Wolff, Cyproterone acetate is an integral part of hepatic DNA adducts induced by this steroidal drug, Carcinogenesis 17 (1996) 167-169; S. Werner, J. Topinka, T. Wolff, L.R. Schwarz, Accumulation and persistence of DNA adducts of the synthetic steroid cyproterone acetate in rat liver, Carcinogenesis 16 (1995) 2369-2372; J. Topinka, B. Binkova, H.K. Zhu, U. Andrae, I. Neumann, L.R. Schwarz, S. Werner, T. Wolff, DNA damaging activity of the cyproterone acetate analogues chlormadinone acetate and megestrol acetate in rat liver, Carcinogenesis 16 (1995) 1483-1487]. Its structural analogues, chlormadinone acetate (CMA) and megestrol acetate (MGA) were much less active in this respect [J. Topinka, B. Binkova, H.K. Zhu, U. Andrae, I. Neumann, L.R. Schwarz, S. Werner, T. Wolff, DNA damaging activity of the cyproterone acetate analogues chlormadinone acetate and megestrol acetate in rat liver, Carcinogenesis 16 (1995) 1483-1487]. In the present study we addressed the question whether these compounds and two further analogues, medroxyprogesterone acetate (MPA) and progesterone, induce the formation of DNA adducts in primary cultures of human hepatocytes. Incubation of CPA with human hepatocytes from two male and four female donors induced the formation of significant levels of CPA-DNA adducts detectable by 32P-postlabeling. The by far most prevalent DNA adduct is most likely identical with adduct A formed in CPA-treated rats. DNA binding was found even at 0.03 microM CPA, the lowest concentration used. The maximum effect occurred at about 10 microM in 5 of the 6 cell preparations. At this concentration 480 and 2690 adducts x 10(-9) nucleotides were detected in hepatocytes of the two male donors and 1072, 816, 613 and 659 adducts x 10(-9) nucleotides in the hepatocytes of the four female donors after an exposure of 6 h with CPA. Extending the incubation time to 20 h resulted in a roughly three-fold higher binding. CMA and MGA were assayed in two of the liver cell preparations from the female donors. At a concentration of 20 microM and an incubation time of 6 h, DNA adduct levels for CMA were 21 and 43% and for MGA 31 and 65% of the levels observed with 20 microM CPA. In contrast, DNA binding of MPA amounted to less than 1% of that observed with CPA and DNA binding of the natural occurring progestin progesterone was below the level of detection. The results point to a genotoxic risk associated with the therapeutic use of CPA and possibly of CMA and MGA. Furthermore, the findings suggest that the significant genotoxicity observed with CPA, MGA and CMA is associated with the presence of the double bond in position 6-7 of the steroid, which is absent in MPA and progesterone.

Adult↗

Lipoprotein levels following treatment with cyproterone acetate or LHRH analogues.

Fasting serum lipoproteins were measured in patients with carcinoma of the prostate. Twelve patients were on no hormonal treatment (Group 1). Fifteen were on cyproterone acetate (Group 3), 17 were on the long-acting LHRH analogue Zoladex (Group 4) and 11 on a combination of cyproterone acetate and Zoladex (group 5). In addition, 27 patients with benign urological disease were taken as controls (Group 2). In both groups in which cyproterone acetate was part of the treatment the total high density lipoprotein cholesterol levels were significantly lower than in the other groups. Patients on cyproterone acetate alone had significantly higher levels of very low density lipoprotein (VLDL) triglyceride levels than those not on cyproterone acetate. These results confirm changes in serum lipoprotein levels in patients taking cyproterone acetate and these changes may have potential adverse effects if the treatment is prolonged.

Cholesterol↗

Simultaneous determination of cyproterone acetate and ethinylestradiol in tablets by derivative spectrophotometry.

Derivative spectrophotometry offers a useful approach for the analysis of drugs in multi-component mixtures. In this study a third-derivative spectrophotometric method was used for simultaneous determination of cyproterone acetate and ethinylestradiol using the zero-crossing technique. The measurements were carried out at wavelengths of 316 and 226 nm for cyproterone acetate and ethinylestradiol respectively. The method was found to be linear (r2>0.999) in the range of 0.5-6 mg/100 ml for cyproterone acetate in the presence of 35 microg/100 ml ethinylestsradiol at 316 nm. The same linear correlation (r2>0.999) was obtained in the range of 10-80 microg/100 ml of ethinylestradiol in the presence of 2 mg/100 ml of cyproterone acetate at 226 nm. The limit of determination was 0.5 mg/100 ml and 10 microg/100 ml for cyproterone acetate and ethinylestradiol respectively. The method was successfully applied for simultaneous determination of cyproterone acetate and ethinylestradiol in pharmaceutical preparations without any interferences from excipients.

Calibration↗

Effect of cyproterone acetate on alpha1-adrenoceptor subtypes in rat vas deferens.

Gonadal hormones regulate the expression of alpha1-adrenoceptor subtypes in several tissues. The present study was carried out to determine whether or not cyproterone acetate, an anti-androgenic agent, regulates the alpha1-adrenoceptor subtypes that mediate contractions of the rat vas deferens in response to noradrenaline. The actions of subtype selective alpha1-antagonists were investigated in vas deferens from control and cyproterone acetate-treated rats (10 mg/day, sc, for 7 days). Prazosin (pA2 approximately 9.5), phentolamine (pA2 approximately 8.3) and yohimbine (pA2 approximately 6.7) presented competitive antagonism consistent with activation of alpha1-adrenoceptors in vas deferens from both control and treated rats. The pA2 values estimated for WB 4101 ( approximately 9.5), benoxathian ( approximately 9.7), 5-methylurapidil (approximately 8.5), indoramin ( approximately 8.7) and BMY 7378 ( approximately 6.8) indicate that alpha1A-adrenoceptors are involved in the contractions of the vas deferens from control and cyproterone acetate-treated rats. Treatment of the vas deferens from control rats with the alpha1B/alpha1D-adrenoceptor alkylating agent chloroethylclonidine had no effect on noradrenaline contractions, supporting the involvement of the alpha1A-subtype. However, this agent partially inhibited the contractions of vas deferens from cyproterone acetate-treated rats, suggesting involvement of multiple receptor subtypes. To further investigate this, the actions of WB 4101 and chloroethylclonidine were reevaluated in the vas deferens from rats treated with cyproterone acetate for 14 days. In these organs WB 4101 presented complex antagonism characterized by a Schild plot with a slope different from unity (0.65 0.05). After treatment with chloroethylclonidine, the complex antagonism presented by WB 4101 was converted into classical competitive antagonism, consistent with participation of alpha1A-adrenoceptors as well as alpha1B-adrenoceptors. These results suggest that cyproterone acetate induces plasticity in the alpha1-adrenoceptor subtypes involved in the contractions of the vas deferens.

Adrenergic alpha-1 Receptor Antagonists↗

[Bioavailability and pharmacokinetics of 14C-cyproterone acetate after administration as a 50-mg tablet (author's transl)].

Four male volunteers were each given a 50 mg oral dose of methylene-14C-labelled cyproterone acetate in a formulation largely identical to the commercial preparation Androcur Tablets. A further 3 volunteers were each given 10 mg of the 14C-labelled compound by intramuscular injection. Plasma samples were obtained and urine and faeces collected quantitatively from each volunteer up to 10 days post administration. 1. Absorption of the 50 mg of cyproterone acetate administered in the form of Androcur Tablets was largely complete. 2. The maximal plasma level of 400 +/- 40 ng cyproterone acetate equivalents/ml of plasma, calculated from the 14C activity, was found 3,8 +/- 0,5 hours after oral administration. By 10 hours post administration the plasma level had declined with a half-life of 7,9 +/- 2,5 hours (distribution and elimination). The fictitious distribution volume assignable to this process amounted to 140 +/- 40% of body weight. Plasma 14C-activity then decreased with a half-life of 1,8 +/- 0,2 days, which was consistent with elimination. 3. The labelled substance was almost completely extractable from plasma and could be separated by chromatography into 2 fractions of about equal size: cyproterone acetate and one metabolite. 4. Orally administered cyproterone acetate was eliminated with a half-life of 1,6 +/- 0,1 days. By 10 days post administration 33 +/- 6% of the dose had been detected in urine and 60 +/- 8% in faeces. Up to this time total elimination amounted to 93 +/- 5% of the dose. 5. After intramuscular injection of 10 mg of cyproterone acetate the half-life for absorption from the muscular depot was 7,0 +/- 0,2 hours. Between 2 and 10 days post administration there was a uniform decrease in plasma level and urinary elimination with half-life of 2,3 +/- 0,1 days and 2,1 +/- 0,2 days respectively. By the end of the trial 34 +/- 5% of the dose had been eliminated with urine and 57 +/- 6% with faeces.

Administration, Oral↗

Metabolism and mode of action of androgens in target tissues of male rats. V. Uptake and metabolism of cyproterone acetate and its influence on the uptake and metabolism of testosterone and 5alpha-dihydrotestosterone in target organs and peripheral tissues.

In order to get more information on the mode of action of anti-androgens, two series with low but biologically active doses of cyproterone acetate were started. In the first experiments 12 mug of [3H]cyproterone acetate was injected intravenously into adult rats castrated 3 days before treatment. Thirty min after injection the radioactivity uptake in the target organs and other tissues was measured. The metabolites were separated by thin layer chromatography. A large pool of radioactivity could be shown in the liver. Thin layer chromatography revealed that in this pool cyproterone acetate had been converted by more than 80% to one metabolite. In blood plasma, too, the metabolite accounted for the major part of radioactivity. When compared to skeletal muscle, the prostate, seminal vesicles, and m. bulbocavernosus and m. levator ani accumulated more radioactivity. Within 30 min unchanged cyproterone acetate was retained selectively thus showing its relative high affinity to target organs. In a second experimental series, adult castrated male rats were given 10 mug of cyproterone acetate intravenously 30 min before the injection of [3H]testosterone or [3H]5alpha-dihydrotestosterone. Under this condition androgen uptake in target tissues was reduced to about 70% of the control values. The data parallel the results of in vivo studies on cytosol receptor displacement of androgens by cyproterone acetate. In agreement with previous investigators no significant influence of the anti-androgen on androgen metabolism was observed. The importance of the findings concerning the mode of anti-androgen action is discussed.

Adipose Tissue↗