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Pharmacokinetics of chlormadinone acetate following single and multiple oral dosing of chlormadinone acetate (2 mg) and ethinylestradiol (0.03 mg) and elimination and clearance of a single dose of radiolabeled chlormadinone acetate.

BACKGROUND: Published data on pharmacokinetic parameters for chlormadinone acetate (CMA) are in part contradictory, especially with regard to terminal half-life (t(1/2,z)). MATERIALS AND METHODS: Single and multiple doses of CMA (2 mg) and ethinylestradiol (EE; 0.03 mg) were administered to healthy female volunteers for six menstrual cycles. Plasma concentrations of CMA and EE were determined by gas chromatography-mass spectrometry. Single-dose and steady-state pharmacokinetic parameters were calculated. In a separate study, healthy female volunteers were given a single 2-mg dose of radiolabeled CMA. Concentrations of radioactivity in fecal and urine samples were determined via liquid scintillation. Excretion of total radioactivity was calculated as percentage of administered dose. RESULTS: Eighteen women completed the repeated-dose study. Peak plasma concentrations for CMA and EE were reached within 1 and 2 h after taking the study drug. Peak plasma concentrations of CMA were approximately 1600 pg/mL after single-dose administration and 2000 pg/mL after multiple dosing. CMA and EE showed linear pharmacokinetics throughout six cycles, with constant trough values of approximately 400-500 pg/mL for CMA and 20-40 pg/mL for EE. Mass balance factors were 1.2-1.4 for CMA and 1.6-1.7 for EE, and accumulation factors were 1.7-2 for CMA and 1.7-1.8 for EE. Mean t(1/2,z) of CMA was approximately 25 h after single dosing and 36-39 h at steady state. In the excretion balance study, mean dose of CMA recovered was 87.3+/-6.4%, with urinary and fecal excretion accounting for 45% and 42%, respectively. CONCLUSIONS: The pharmacokinetics of CMA and EE is linear after multiple dosing and remains stable during long-term administration, once steady state is reached. The t(1/2,z) of CMA was 36-39 h after multiple dosing, which is considerably shorter than the 80 h often quoted in the literature.

Adolescent↗

[The in vivo metabolism of chlormadinone acetate in guinea pig and the uptake of testosterone-3 H and chlormadinone acetate-3 H in prostate of castrated male rat (author's transl)].

The metabolic fate and distribution of the anti-androgenic agent, 17 alpha-acetoxy-6-chloropregna-4, 6-diene-3, 20-dione (chlormadinone acetate, CMA), was investigated using guinea-pigs and rats. In order to elucidate the metabolic outcome, chlormadinone acetate was labelled with 3H at position C-1 and with deuterium at methyl moiety of the 17alpha-acetate. Guineapigs were maintained for 7 days on a diet containing 1% chlormadinone acetate having a ratio of d2/d0=1 and then for 1 day on a diet containing 1% chlormadinone acetate having radioactivity. The isolation and purification of the urinary and fecal metabolites were usually carried out in the manner shown in Fig. 1 and 2. The metabolites identified were as follows: the parent drug, monohydroxychlormadinone acetate having the additional hydroxy function in the steroid skeleton, 15 beta-hydroxy, 2 alpha-, 2 beta-hydroxy and unknown position, dihydroxy chlormadinone acetate, 2 alpha-, 3 beta-dihydroxy, 2 alpha-, 3 alpha-dihydroxychlormadinone acetate. Further, three dechlornated and reduced metabolites were also isolated from urine and feces. These were 17 a-acetoxy-5a-pregnane-3 beta-ol-20-one and its isomer, and 17-acetoxy-5 beta-pregnane-2 beta, 3 beta, 15a-triol-20-one. But 3 beta-hydroxychlormadinone acetate possessd with anti-androgenic activity, one of the main metabolites in humans and rats, was not found in the excreta of the guinea-pigs. However, the main metabolite on the prostate of the guinea-pigs and rats and 3 beta-hydroxychlormadinone acetate. Chlormadinone acetate causes regression of the seminal vesicle and prostate in oral administration to a mammalian. It was therefore hypothesized that chlormadinone acetate might inhibit the uptake and retention of testosterone in these tissues. To elucidate this hypothesis, the accumulation of testosterone-3H and chlormadinone acetate-3H in several organs was determined on castrated rats and normal rats, respectively. When 1.0 muM of testosterone-3H was given to the castrated rats, a maximal accumulation of radioactivity resulted in seminal vesicle and prostate at 15 approximately 120 min. While the treatment of chlormadinone acetate significantly prevented the accumulation of testosterone-3H in the seminal vesicle and prostate, but levels in fat and muscle were not evident. In addition, to prove the accumulation of chlormadinone acetate in androgen target tissues, 3 muM of chlormadinone acetate-3H was similarly administered to castrated rats. The uptake of chlormadinone acetate on the target organs was higher than that in normal rats at 5 approximately 30 min.

Animals↗

[Estrus synchronization in cattle using chlormadinone acetate ("Bovisynchron" Jenapharm) in the tropics. 1. On the effect of blocking the cycle using chlormadinone acetate and on the introduction of this biotechnical method in the Republic of Mali].

The oestrus synchronization in cattle is being tested as a biotechnical method supporting the implementation of the crossing programme in the Republic of Mali Using the latest results of sexual physiology, the effect is described of Bovisynchron Jenapharm (chlormadinonacetate). Bovisynchron is characterised by a high certainty of synchronization and a good toleration. It leads to a highly fertile oestrus of all animals and to a high rate of conception. An analysis of the situation in the Republic of Mali is used to discuss the advantages of this method.

Animals↗

Comparison of histological compositions and apoptosis in canine spontaneous benign prostatic hyperplasia treated with androgen suppressive agents chlormadinone acetate and finasteride.

PURPOSE: Chlormadinone acetate and finasteride are androgen suppressive agents clinically used for benign prostatic hyperplasia but their mechanism for inducing prostatic atrophy differs. We investigated the effect of these androgen suppressive agents on prostatic histology and apoptosis using the spontaneous canine benign prostatic hyperplasia model. MATERIALS AND METHODS: Animals were treated with oral chlormadinone acetate or finasteride for 25 weeks. The prostatic volumes were analyzed every 5 weeks. Prostatic androgen and estrogen concentrations, histological composition and apoptosis were determined at the end of treatment. Apoptosis was measured by in situ labeling of 3' hydroxy ends of the DNA breaks using the terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end-labeling method. RESULTS: There was a similar volume reduction effect with 0.3 mg./kg. chlormadinone acetate daily and 1 mg./kg. finasteride daily. Chlormadinone acetate decreased testosterone and dihydrotestosterone but finasteride decreased only dihydrotestosterone in the prostate gland. The concentration ratio of estradiol-to-total androgen in the prostate was significantly increased in finasteride treated canines. Chlormadinone acetate and finasteride decreased the epithelial and stromal components. The extent of apoptosis observed in the prostate was significantly higher in the chlormadinone acetate group compared to that of the control and finasteride groups. CONCLUSIONS: Although a similar effect of chlormadinone acetate and finasteride was observed in the induction of prostatic regression and composition of the histological components, the sustained increase in apoptosis was observed only in chlormadinone acetate treated canines. We suggest that different intraprostatic endocrine environments created by chlormadinone acetate or finasteride, which have different intraprostatic testosterone levels and estradiol-to-androgen ratios, may be responsible for the different outcomes in the extent of apoptosis.

Androgen Antagonists↗

Tamsulosin and chlormadinone for the treatment of benign prostatic hyperplasia. The Kobe University YM617 Study Group.

The recent introduction of selective alpha-adrenoceptor blockers adds a further therapeutic option for the treatment of benign prostatic hyperplasia (BPH). Tamsulosin, a selective alpha 1-blocker, has proved effective in relieving irritative and obstructive symptoms caused by BPH. To investigate whether the combination of tamsulosin with the anti-androgenic drug chlormadinone is of further therapeutic benefit, 80 patients randomly received tamsulosin 0.2 mg daily, chlormadinone 50 mg daily or a combination of tamsulosin 0.2 mg and chlormadinone 50 mg daily for 16 weeks. Greater improvement in subjective symptoms of BPH was obtained with either tamsulosin alone or in combination with chlormadinone than with chlormadinone alone. However, the greatest improvement in objective uroflowmetric data was obtained with chlormadinone in combination with tamsulosin. Thus, the combination of tamsulosin with chlormadinone appears to be more beneficial than either of these agents used as monotherapy. Further investigation is required to fully evaluate the therapeutic effects of this combination. After the trial period one-third of the chlormadinone and tamsulosin/chlormadinone-treated patients needed no further treatment due to the satisfactory relief of symptoms. At 12 months follow-up, however, one-fourth of the patients had undergone transurethral resection of the prostate (TUR-P) regardless of medication. This suggests a limitation of the medical treatment of BPH.

Adrenergic alpha-Antagonists↗

The site of action of 'chlormadinone acetate' (6-chloro-delta 6-dehydro-17 alpha-acetoxyprogesterone) in blocking ovulation in the mated rabbit.

1. In a study of the site of action of a steroid in current use for contraceptive purposes (6-chloro-Delta(6)-dehydro-17alpha-acetoxyprogesterone; ;chlormadinone acetate'), the ovarian responses [secretion rate of 20alpha-hydroxypregn-4-en-3-one (20 alpha-OH), and the occurrence of ovulation] were observed in control oestrous rabbits and in rabbits following mating, injection of luteinizing hormone, and after electrical stimulation of the median eminence.2. Chlormadinone acetate pretreatment (0.5 mg I.V.) did not lower significantly the secretion of 20 alpha-OH in otherwise untreated oestrous rabbits.3. Chlormadinone acetate, given 24 hr before mating, prevented the rise in 20alpha-OH that would otherwise have occurred, and also blocked the ovulation response following mating.4. Chlormadinone acetate pretreatment did not prevent the ovarian responses to administration of luteinizing hormone.5. Chlormadinone acetate pretreatment did not prevent the ovarian responses to electrical stimulation of the median eminence of the tuber cinereum of the hypothalamus.6. The conclusion is drawn that the chlormadinone acetate block of the ovarian responses following mating is at a site in the central nervous system located above the median eminence.

Anesthesia↗

The action of chlormadinone acetate (6-chloro-delta6-dehydro-17alpha-acetoxyprogesterone) upon experimentally induced ovulation in the rabbit.

1. The ovulation response to electrical stimulation of the median eminence, or to the intrapituitary infusion of median eminence extract, was observed in control rabbits and animals pre-treated with chlormadinone acetate.2. Chlormadinone acetate pre-treatment did not significantly reduce the proportion of rabbits ovulating in response to electrical stimulation. However, there was a significant reduction in the average number of ruptured follicles when compared with the animals in the control group.3. Chlormadinone acetate pre-treatment significantly reduced the proportion of animals ovulating in response to the intrapituitary infusion of median eminence extract as compared with the control series. However, there was no significant reduction in the average number of ruptured follicles (in those rabbits that ovulated) when compared with the control groups.4. Chlormadinone acetate pre-treatment produced no significant effect upon either the proportion of animals ovulating, or the average number of ruptured follicles, following I.V. injection of 50 mug LH.5. The conclusion drawn is that chlormadinone acetate blocks copulattion-induced ovulation in the rabbit by action at a site in the central nervous system located above the median eminence. The possible effects of chlormadinone acetate upon the secretion of FSH, the pituitary sensitivity to releasing factors and the ovarian sensitivity to LH are discussed.

Animals↗

Combined oral contraceptives containing chlormadinone acetate and breast cancer: results of a case-control study.

The main subject of this hospital-based case-control study was the possible relationship between use of combined oral contraceptives (OCs) containing chlormadinone acetate and breast cancer. Analyses were based on data from 490 cases with newly diagnosed breast cancer and 1,223 controls and were separately performed for combined OCs with and without chlormadinone. For either of the combined OCs, risk was not elevated in ever users, did not increase with duration of use and did not change with time since initial exposure or with time since most recent use. However, the relative risk was increased in current users: RR = 1.72 (0.88, 3.36) for combined OCs with chlormadinone and RR = 1.42 (1.01, 2.00) for combined OCs without chlormadinone, which is, however, explained as a screening effect. These results show that chlormadinone as a constituent of combined OCs does not influence breast cancer risk.

Adult↗

Development of a new sensitive and specific time-resolved fluoroimmunoassay (TR-FIA) of chlormadinone acetate in the serum of treated menopausal women.

We describe the development of a serum chlormadinone acetate (CMA) time-resolved fluoroimmunoassay (TR-FIA). We prepared haptens (3-CMO-chlormadinone acetate and 6-chloropregna-4,6-dien-17,20-diol-3-one-20-hemisuccinate), biotinylated tracers (3(biotinylaminopropylamido) 3-CMO-chlormadinone acetate and 3-(6-chloropregna-4,6-dien-17,20-diol-3-one-20-hemisuccinylamino)1-biotinylaminopropane), and immunogens necessary for eliciting two antibodies (anti-chlormadinone acetate 3-CMO/BSA and anti-chlormadinone 20-hemisuccinate/BSA). The specificity of the assay was rigorously studied to eliminate possible interference by polar metabolites of CMA, particularly 17 alpha-acetoxy-6-chloro-3beta-hydroxypregna-4,6-diene-20-one (3beta-hydroxy metabolite), employing an easy-to-use ethylene glycol chromatographic step prior to immunoassay, so as to separate the polar metabolites, in particular the 3beta-hydroxy-CMA metabolite, from the intact CMA. The choice of the anti-CMA antibody was guided by the high assay sensitivity obtained with the anti-CMA 3-CMO/BSA antibody. The detection limit was 51pg/ml. Interassay reproducibility CVs were between 2.6 and 4.5%. This TR-FIA thus appeared to be a sensitive, specific, precise, and consequently well-suited method for measurement of serum CMA during a pharmacokinetic study in women.

Chlormadinone Acetate↗

Binding of chlormadinone acetate to cytosol from human benign prostatic hypertrophy.

Chlormadinone acetate was bound to cytosol from the human benign prostatic hypertrophy in a high affinity fashion. The kd and number of maximum binding site of the binding were 5.4 +/- 0.7 X 10(-9) M and 67.9 +/- 5.8 fmol/mg protein, respectively. When compared with the binding to dihydrotestosterone, the Kd for chlormadinone acetate was greater. The number of maximum binding site for chlormadinone acetate was observed to be smaller than that for dihydrotestosterone, but these two values were not different statistically. The binding of chlormadinone acetate was inhibited significantly by the addition of R 1881 or cyproterone acetate. However, dihydrotestosterone revealed itself to be a weak inhibitor of the binding. The cytosol prelabelled with chlormadinone acetate was not bound to the nuclei of the human prostate.

Androgen Antagonists↗

[The metabolism of 4-14C-pregnenolone in tissue sections of human ovaries and their modification by chlormadinone acetate].

In vitro incubations with slices of two normal human ovaries and 4-14C-pregnenolone as precursor were carried out to study the possibility of a direct influence of chlormadinone acetate on the metabolism of pregnenolone. In agreement with our previous studies the incubations of the ovary from the follicle phase of the cycle yields a profile of steroids different from that of the ovary from the corpus luteum phase of the cycle. Under the experimental condition chosen, the presence of enzymes of the steroidogenic pathway responsible for the synthesis of 17alpha-hydroxy-pregnenolone, DHA, androstenediol (basic metabolites) and androstenedione represents a characteristic profile of steroids of the ovaries from the follicle phase. After the addition of chlormadinone acetate to the incubation medium, the formation of androstenedione was inhibited, whereas the basic metabolites increased. The biosynthesis of progesterone, 17alpha-hydroxyprogesterone, estrone and estradiol represents a characteristic profile of steroids of the ovaries from the corpus luteum phase. After a addition of chlormadinone acetate to the incubation medium, the formation of this characteristic profile of steroids was inhibited. The influence of chlormadinone acetate on the two different profiles of steroids indicated, that chlormadinone acetate exerts an inhibitory effect on the 3beta-hydroxysteroid-dehydrogenase-delta5-4-isome

Aromatase↗

Serum prolactin concentrations in women treated with chlormadinone acetate.

Serum prolactin concentrations were measured serially in eight normal women who used continuous chlormadinone acetate treatment (500 mug per day) for six months as part of an investigational new drug contraceptive study. Circulating prolactin was also measured in women using several additional oral contraceptive steroid preparations including a sequential mestranol-mestranol + chlormadinone acetate regimen. No increase in basal serum prolactin concentration was produced by chlormadinone acetate treatment, either alone or when added to estrogen therapy. These results suggest that chlormadinone acetate may not alter human mammary tissue through a prolactin mechanism.

Breast↗

The relation of the gonadotrophin response to chlormadinone according to body weight in patients with amenorrhea due to polycystic ovarian syndrome.

OBJECTIVE: To analyze the influence of weight on gonadotrophin response after chlormadinone (hydroxyprogesterone derivative) induced uterine bleeding in women with amenorrhea due to polycystic ovarian syndrome (PCOS). DESIGN: A comparative study. METHODS: Thirty-six patients with PCOS were classified according to body mass index into three weight groups, normal, overweight and obese. Luteinizing hormone (LH) and follicle stimulating hormone (FSH) levels were measured during amenorrhea and between days 3-5 after a chlormadinone (2 mg/day for 5 days) induced uterine bleed. Statistical analysis was performed with Wilcox-on test for paired groups and Mann-Whitney U-test for independent groups. RESULTS: Overall LH, FSH levels and the LH/FSH ratio fell significantly (P < 0.001, P < 0.01 and P < 0.001, respectively) after chlormadinone administration. The LH levels decreased in all three weight groups, the LH/FSH ratio only fell in those normal and overweight subjects, and FSH did not change in any group. When comparing the group with normal weight and those with overweight and obesity no hormonal differences were found. CONCLUSION: These results show that chlormadinone has an inhibitory effect predominantly over LH secretion which reduces the LH/FSH ratio, but this is independent of body weight.

Adolescent↗

A five-day gradual reduction regimen of chlormadinone reduces premenstrual anxiety and depression: a pilot study.

BACKGROUND: Anxiety and depression commonly occur in premenstrual dysphoric disorder (PMDD). The PMDD symptomatology disappears once the menstrual cycle reinitiates, resembling a withdrawal syndrome. METHODS: The present study is a pilot, controlled, double-blind study exploring the effectiveness of a premenstrual 5-day gradual reduction regimen of chlormadinone acetate on PMDD. Volunteers received an initial dose of 10 mg (five 2-mg tablets) on the 24(th) day of the menstrual cycle and one-fifth of the dose less (one tablet) each day until a dose of 2 mg (one 2-mg tablet) was reached on the 28(th) day of the menstrual cycle. The control group received placebo with a similar regimen. RESULTS: The 5-day gradual reduction regimen of chlormadinone significantly improved (F(3.76) = 3.29, p <0.02) the daily symptoms report (DSR) scores by the third month of treatment. The resulting relative risk was 4.09 (confidence interval: 1.15-14.57, p <0.005, 95% CI). Compared to placebo, chlormadinone clinically and statistically reduced the severity of depression, anxiety, food cravings, mood swings and cramps. A statistical reduction of symptoms such as poor coordination, irritability, feeling out of control, hopelessness, decreased interest and headache was detected but was not clinically relevant. No changes occurred in concentration difficulties, tiredness, insomnia, swelling, breast tenderness and aches. As side effects, 30% of the volunteers showed changes in the length of the menstrual cycle, and 15% experienced dyspepsia. CONCLUSIONS: A 5-day gradual reduction regimen of chlormadinone improves some of the discomforting ailments associated with PMDD, namely, depression and anxiety.

Adolescent↗

Evaluation of genotoxic potential of synthetic progestin chlormadinone acetate.

The genotoxicity study of a synthetic progestin chlormadinone acetate, was carried out on mouse bone marrow cells using sister chromatid exchanges (SCEs) and chromosomal aberrations (CAs) as parameter, chlormadinone acetate was studied at three different doses, i.e. 5.62, 11.25 and 22.50 mg/kg body weight and was found to be non-genotoxic at 5.62 mg/kg body weight. But at 11.25 and 22.50 mg/kg of body weight chlormadinone acetate increases SCE (P < 0.001) and CA (P < 0.01) at significant level compared to normal control. The results suggests a genotoxic and cytotoxic effect of chlormadinone acetate in mouse bone marrow cells.

Animals↗

[Chlormadinone Acetate Reference Standard (Control 961) of National Institute of Health Sciences].

The raw material for chlormadinone acetate was tested for preparation of the "Chlormadinone Acetate Reference Standard (Control 961)" of National Institute of Health Sciences. Analytical data obtained were as follows: melting point, 215. 3 degrees C; UV spectrum, lambda max = 283.5 nm; IR spectrum, the same as that of JP Chlormadinone Acetate Reference Standard (Control 885); optical rotation, [alpha]20D = -13.0 degrees; thin-layer chromatography, one impurity was detected; high-performance liquid chromatography, two impurities were detected; loss on drying, 0.01%; assay, 99.4% by spectrophotometry and 99.5% by HPLC. Based on the above results, the raw material was authorized as the Chlormadinone Acetate Reference Standard (Control 961) of National Institute of Health Sciences (Japanese Pharmacopoeia).

Chlormadinone Acetate↗