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Oral contraceptive (OCP) use increases proliferation and decreases oestrogen receptor content of epithelial cells in the normal human breast.

The effect of ingestion of oral contraceptives (OCP) on cell proliferation and oestrogen (ER) and progesterone receptor (PR) expression of the epithelial cells of the normal human breast was compared with findings in controls not taking OCPs. Histologically normal breast tissue was removed during operation for fibroadenoma or reduction mammoplasty in 216 women whose mean age was 28.1 +/- 8.5 years (+/- SD range 14-53 years). During natural cycles the mean proportion of cells expressing ER was 3.94 +/- 3.71 (% mean +/- SD, range 0-20.8, n = 51), while of those expressing PR it was 12.1 +/- 7.1% (range 3.0-36.1, n = 47). There was a significant decline in ER during the menstrual cycle [p = 0.001 by multiple linear regression (MLR)], but there was no significant change in the proportion which expressed PR. The mean proportion of proliferating cells (LI) was 2.50 +/- 2.42 (range 0-11.5, n = 147). There was a significant increase of LI during the cycle (p = less than 0.001, MLR) and a significant inverse relationship between LI and ER (r = -0.29, p less than 0.01). Use of the OCP significantly reduced the number of cells which expressed ER and increased the LI earlier in the cycle. No effect of OCP use on the number of PR+ cells was detectable. We conclude that significant changes in the proportions of ER+ and proliferating cells occur during natural menstrual cycles. These changes are perturbed by ingestion of OCPs, so that there is greater suppression of ER and a longer period of high proliferation during the menstrual cycle. These results may explain the relationship between OCP use and the possible risk of breast cancer.

Adolescent↗

Interactions with oral contraceptives.

The interaction of a range of different factors with the pharmacologic activity of oral contraceptives is reviewed. Pharmacokinetic interactions with oral contraceptives may occur (1) during absorption and extrahepatic circulation, (2) by interfering with protein binding, and (3) during hepatic metabolism. The hepatic mixed function oxidase system, which is mainly responsible for the metabolism of oral contraceptives, is affected by several different factors and is easily induced. Nutrition affects the activity of many drugs, but information regarding oral contraceptives is meager. Both pharmacokinetic and pharmacodynamic interactions, which may be synergistic or antagonistic, between the estrogen and gestagen components of oral contraceptives, are important, but there is no correlation between the rate of metabolism of the two components. Evidence suggests that some anticonvulsant, antibiotic, and antibacterial drugs may reduce the efficacy of oral contraceptives. Instances of interactions of other therapeutic agents are reported infrequently. The incidence of serious interactions is low and does not appear to have been reduced with low-dose oral contraceptives, probably because of large intersubject variability in the pharmacokinetics of oral contraceptives.

Blood Proteins↗

Gastrointestinal disease and oral contraception.

Oral contraceptive steroids play a major role in modern family planning. With the present tendency to decrease the doses of both estrogens and progestogens, any factor that reduces the bioavailability of the lower-dose preparations may have an impact on contraceptive protection. Although ethinyl estradiol, the most commonly used oral estrogen, is liable to an enterohepatic circulation as unchanged drug, the commonly used progestogens are not. At present, no convincing evidence exists in the human subject that disruption of the enterohepatic circulation by antibiotics or antacids does reduce contraceptive efficacy of the pill. Oral contraceptive steroids are mainly absorbed from the small bowel, and contraceptive efficacy depends on its absorptive capacity. Enhanced passage of gastrointestinal contents or impaired absorption may thus contribute to contraceptive failures in patients who have chronic inflammatory disease, diarrhea, ileostomy, or jejunoileal bypass.

Antacids↗

Influence of oral contraceptives on drug therapy.

Interferences between drugs and oral contraceptives are considered to alter pharmacokinetics and thus the efficacy of steroidal hormones. It should be noted, however, that steroids can also modify the metabolism and pharmacodynamic effects of various substances. To the present knowledge, phase I (i.e., oxidation, demethylation) and phase II reactions (conjugation) are concerned. Drugs sharing those enzymatic systems with oral contraceptives experience either an increase in bioavailability by inhibition of oxidative metabolism or undergo accelerated elimination by induced conjugation. Such interaction may be of practical interest in subjects who take oral contraceptives and are simultaneously treated with antidepressants, antihypertensives, insulin, synthetic glucocorticoids, theophylline, and caffeine.

Biological Availability↗

An epidemiologic survey of cardiovascular disease in women taking oral contraceptives.

Earlier epidemiologic studies have indicated an increase in mortality from certain cardiovascular diseases in young women associated with the use of oral contraceptives. However, since these studies were conducted, newer oral contraceptives containing less estrogen and progestogen have been widely adopted. In addition, an increasing majority of oral contraceptive use is by women under the age of 30 years. Early results from a new case-control study suggest the possibility that the risk of myocardial infarction associated with oral contraceptive use is now lower than in the past, although the previously observed small increase in the risk of subarachnoid hemorrhage appears to be unchanged.

Adolescent↗

Clinical aspects of the relationship between oral contraceptives and abnormalities of the hemostatic system: relation to the development of cardiovascular disease.

Epidemiologic evidence has established that oral contraceptives increase the risk of both arterial and venous thromboembolic disease. This is dose related in the case of the estrogen component for both arterial and venous events and in the case of progestogens for arterial events. It is probable that the increased rate of thromboembolic events caused by estrogen is related to hypercoagulability. Plasma levels of several clotting factors have been shown to be elevated in oral contraceptive users, and this increase is graduated according to the dose of estrogen. In pregnancy, factor VIIc is increased after cold activation of plasma at 4 degrees C overnight. Likewise, in users of oral contraceptives, both factors VIIc and XIIc are increased, which suggests a direct effect of factor XIIc on the extrinsic system. In men, the risk of ischemic heart disease is strongly and independently related to factor VIIc and fibrinogen levels; thus it is possible that in women taking oral contraceptives, the mechanism of risk is similarly mediated. There is a good case for factor VIIc as the index of flux in the coagulation system and hence of a hypercoagulable state, and indeed it may directly contribute to the generation of thrombin. This article examines the available evidence on clotting factor activity in the risk of cardiovascular disease in oral contraceptive users.

Blood Coagulation Factors↗

The effect of oral contraceptive use and pregnancy on the daily rhythm of cortisol and cortisone.

The effect of oral contraceptives and of pregnancy on the daily rhythm of cortisol, and its metabolite cortisone in plasma and saliva has been investigated. In both conditions the total plasma cortisol levels were raised to the same extent, the mean values in saliva in the oral contraceptive users being intermediate between those in pregnancy and in the controls, particularly in the morning. Salivary cortisone levels were more related to salivary cortisol than to total plasma cortisone which exhibited a rather flat daily rhythm. There was a shift in peak values for salivary cortisol and cortisone towards late morning: this may be due to a delay in the daily activation of the hypothalamic-pituitary-adrenal axis in these patients.

Adult↗

Subdermal norethindrone pellets -- a method for contraception?

The mode of action of compressed pellets containing 85 per cent norethindrone (NET) and 15 per cent cholesterol was studied. Four pellets were inserted subcutaneously, in each of five healthy volunteers and left in place for 200--229 days. The NET content of the pellets varied between 23.9 mg and 25.6 mg; and the cholesterol content between 4.2 mg and 4.5 mg. Plasma levels of NET, estradiol and progesterone were determined by radioimmunoassays. Plasma levels of NET varied mostly between 1--2 ng/ml the first month after insertion. After two months plasma levels of NET ranged between 0.5 ng/ml and 1 ng/ml in all volunteers and there was a gradual decrease of the plasma NET levels throughout treatment. Pronounced day-to-day variations in plasma NET levels were recorded. The release rates of NET was calculated to be between 187 micrograms/day and 243 micrograms/day among the five volunteers. Ovulations occurred in four out of five subjects during treatment. This study indicates that the release of gestagen from four NET pellets was only initially high enough to completely inhibit ovulation and that to accomplish full contraceptive efficacy, a higher dose, i.e. more pellets, would have to be inserted.

Adult↗

Pituitary and ovarian function in women receiving hormonal contraception.

A study was performed to further evaluate pituitary-ovarian function in women receiving an oral contraceptive preparation. Basal hormone levels (follicle stimulating hormone, luteinizing hormone, estradiol and prolactin) and gonadotropic response to gonadotropic releasing hormone were studied in 12 healthy, regularly ovulating women in the early follicular and mid-luteal phases of their menstrual cycle (non-treatment control period). These same women were then given NORDETTE (ethinyl estradiol 30 microgram +d-Norgestrel 150 microgram) cyclically for 3 months. In the third month of treatment, the tests were repeated on day 21, i.e. after 21 active pills, and on day 28, i.e. after 21 active and 7 inactive tablets. On active preparation, basal luteinizing hormone, follicle stimulating hormone and estradiol and gonadotropin response to gonadotropin releasing hormone were significantly suppressed. However, by day 28 (after completion of the inactive tablets), basal gonadotropin and estradiol concentrations and the gonadotropic response to gonadotropic releasing hormone were not significantly different to their pretreatment levels. No consistent change in prolactin concentration occurred as a result of oral contraceptive therapy. These results indicate that the 'active' component of even a relatively low-dose pill causes considerable suppression of pituitary-ovarian function but that after 7 days of placebo, pituitary function and basal estradiol secretion have virtually returned to normal.

Adolescent↗

The lack of effect of sodium valproate on the pharmacokinetics of oral contraceptive steroids.

Patients taking anticonvulsants such as phenobarbitone, phenytoin and carbamazepine together with their oral contraceptive steroid may suffer contraceptive failure because of the enzyme-inducing properties of these anticonvulsants. We have examined, in six women, the effect of sodium valproate, an effective broad spectrum anticonvulsant, on the area under the plasma concentration versus time profile (AUC) of ethinyloestradiol (EE2) and levonorgestrel (Ng). Prior to sodium valproate therapy the mean AUC for EE2 was 880 +/- 109 pg/ml X h (+/- S.E.) and for levonorgestrel it was 29.1 +/- 2.9 ng/ml X h (n = 4). Between two and four months after sodium valproate therapy the mean AUC figures had not changed significantly, the figure for EE2 being 977 +/- 130 pg/ml X h and for levonorgestrel 29.2 +/- 1.9 ng/ml X h (p greater than or equal to 0.1 in each case). We conclude that sodium valproate in the dose used (200 mg b.d.) does not interact with oral contraceptive steroids.

Adolescent↗

The relative bioavailability of levonorgestrel and ethinyl estradiol administered as a low-dose combination oral contraceptive.

The relative bioavailability of levonorgestrel (LNG) and ethinyl estradiol (EE) administered concomitantly both as an oral tablet and as a solution was assessed in a randomized two-period crossover study in 24 healthy women. Serum concentrations were monitored for 96 h after each administration. The relative bioavailability (Fr) of LNG in the tablet with respect to the solution was 107%; thus the two formulations were bioequivalent with respect to LNG. The relative bioavailability of EE, however, was significantly lower for the tablet (Fr 83%) compared to the solution. This difference may have been due to either decreased absorption or enhanced presystemic elimination of EE from the tablet formulation.

Adult↗

Pharmacokinetics of oral contraceptive steroids in Egyptian women: studies with Ovral, Nordette and Norminest.

Plasma concentration profiles and pharmacokinetic parameters have been obtained following single dose administration of three commonly used oral contraceptive steroid preparations, Ovral, Nordette and Norminest to Egyptian women. The constituents of the preparations are as follows: Ovral (50 micrograms ethinyloestradiol, EE2 and 500 micrograms levonorgestrel, LNG); Nordette (30 micrograms EE2 and 150 micrograms LNG); and Norminest (35 micrograms EE2 and 500 micrograms norethisterone, NOR). Peak plasma concentrations of EE2 ranged between 116-160 pg ml-1 for Ovral, 55-78 pg ml-1 for Norminest and 30-70 pg ml-1 for Nordette. There was no significant difference in half-life (t1/2), oral clearance (CL) or apparent volume of distribution (Vd). The relative values of the area under the plasma concentration-time curve (AUC) reflected well the different amounts of oestrogen in each preparation. There was no significant difference in t1/2, CL or Vd for LNG in the 2 preparations containing this progestogen. The mean AUC following Nordette (150 micrograms LNG) was 40% of that following Ovral (500 micrograms LNG; p less than 0.001). Comparing pharmacokinetic parameters for the same dose of LNG (Ovral) and NOR (Norminest) showed the AUC to be decreased and CL and Vd increased in the latter group. The study indicates that the kinetic profile of the OCS in healthy Egyptian women are similar to other ethnic populations.

Adult↗

Bioequivalence of two oral contraceptive drugs containing norethindrone and ethinyl estradiol.

Two oral contraceptive drugs, Formulation A and Formulation B, both of similar hormonal content, were compared with each other to determine if they were bioequivalent. Both drugs contain 1 mg of norethindrone (NET) and 0.035 mg of ethinyl estradiol (EE). Application of an interval test for the ratio of the computed parameter means demonstrated equivalence for the two formulations with respect to the 0-24 hour area under the plasma level versus time curve (AUC24), the total area under the curve (AUCtot) and for the maximum plasma concentration (Cmax) for both ethinyl estradiol and norethindrone. The data support the hypothesis for bioequivalence of the two formulations with respect to total absorption.

Adult↗

A pharmacodynamic and pharmacokinetic study of the Chinese No. 1 pill.

A pharmacodynamic and pharmacokinetic study of the Chinese No. 1 pill, a combined oral contraceptive containing 35 micrograms ethynyloestradiol (EE) and 600 micrograms norethisterone (NET), was performed in 29 women over a period of six months. Blood samples for analysis were taken during a pretreatment cycle, the first and 6th treatment cycles and post-treatment. Minor changes in carbohydrate metabolism occurred and these were particularly noticeable when the incremental areas under the serum concentration-time curves for both glucose and insulin in response to a glucose tolerance test were calculated. No changes occurred in the serum glycosylated haemoglobin levels. The serum concentrations of all the lipids measured (total cholesterol, triglycerides, LDL-C, HDL-C and apolipoproteins AI, AII and B) were significantly increased on treatment as were levels of Factor X, SHBG and caeruloplasmin whereas antithrombin III decreased. In 38 of the 40 treatment cycles, ovulation was suppressed. In one cycle serum oestradiol and progesterone levels showed a typical ovulatory pattern and in another there was evidence of follicular activity without ovulation. Serum EE concentrations showed a similar pattern in both treatment cycles showing that co-administration of NET did not affect EE metabolism. Serum NET levels were higher in the 6th than in the first treatment cycles. On comparing pharmacodynamic and pharmacokinetic parameters, the only statistically significant correlations were between the percentage change in triglycerides and SHBG and serum NET, but not EE concentrations, and between apolipoproteins AI and serum EE.

Adult↗

Characteristics of the new progestogens in combination oral contraceptives.

This review details the characteristic features of three new progestogens which soon will be available in low-dose combination oral contraceptive agents in the United States. Available data suggest that desogestrel, gestodene, and norgestimate are extremely potent progestogens with few androgenic side effects. The smaller changes in lipids induced by these progestogens seem to confer some advantage to the use of preparations containing one of these agents. Whether this advantage is also present clinically remains to be determined.

Blood Coagulation↗

Effects of low and high dose oral contraceptives on blood coagulation and thrombogenesis induced by vascular subendothelium exposed to flowing human blood.

We investigated the effect of oral contraceptives with low and high estrogen concentration on blood coagulation and thrombogenesis, induced by vascular subendothelium of rabbit aorta exposed to flowing human blood. Twenty healthy women intending to take oral contraceptives were studied [1] before drug ingestion (control), and subsequently during the intake of oral contraceptives with [2] low estrogen content (20 micrograms ethinyl estradiol and 150 micrograms desogestrel per day) and [3] high estrogen content (50 micrograms ethinyl estradiol and 125 micrograms desogestrel per day). All experiments were performed between day 17 and 21 of the menstrual cycle and drug effects were studied during the third tablet cycle. Deposition of fibrin, platelets and platelet thrombi on vascular subendothelium was tested at a defined blood flow and wall shear rate (10 ml/min, 650 s-1) and was quantified by morphometrical techniques. Treatment with the low and high dose contraceptive increased the plasma levels of ethinyl estradiol (728 +/- 139 and 1438 +/- 212 vs. 0 fmol/l [low and high dose vs. control], means +/- SEM, P less than 0.001) and fibrinogen (2.3 +/- 0.1 and 2.6 +/- 0.1 vs. 2.0 +/- 0.1 g/l, P less than 0.05); and decreased antithrombin III activity (95 +/- 3 and 92 +/- 3 vs. 101 +/- 3 %, P less than 0.05). Fibrin deposition on vascular subendothelium was enhanced by the high dose contraceptive only (47 +/- 4 vs. 35 +/- 4 % coverage of the subendothelial surface with fibrin, high dose vs. control, P less than 0.05). The subendothelial deposition of platelets and platelet thrombi was not changed by contraceptive treatment. These results indicate that treatment with high dose contraceptives leads to an increase of fibrin-subendothelial interactions, whereas low dose contraceptives do not significantly alter the blood-subendothelium interactions. observed in this ex vivo model of thrombogenesis.

Adolescent↗

A cross-over study of three oral contraceptives containing ethinyloestradiol and either desogestrel or levonorgestrel.

A randomised cross-over trial was performed to compare the pharmacodynamic actions of three low-dose oral contraceptives (OCs): Marvelon (150 micrograms desogestrel (DSG)+ 30 micrograms ethinyloestradiol (EE)), Mercilon (150 micrograms DSG + 20 micrograms EE) and Microgynon (150 micrograms levonorgestrel (LNG) + 30 micrograms EE). None of the OCs produced any significant changes in serum cholesterol, LDL-C and apoprotein B. Triglycerides were increased by the desogestrel OCs but not by Microgynon. The latter however increased the glucose and insulin responses to a glucose tolerance test whereas Marvelon and Mercilon had no effect. HDL-C increased with Marvelon, was unchanged with Mercilon and was decreased with Microgynon. Apoprotein AII was increased by all three OCs but only the DSG OCs increased apoprotein AI. All OCs produced similar increases in caeruloplasmin but the increase in SHBG was much greater with Marvelon and Mercilon than with Microgynon. Testosterone was reduced more with Microgynon than with the DSG OCs. Many of the changes reflect the strong anti-oestrogenic action of LNG on metabolic parameters compared to DSG. Except for the effect on HDL-C, there was little difference between Marvelon and Mercilon on metabolic parameters and this complements the findings from large-scale clinical trials of the two OCs. Mercilon, therefore provides a very satisfactory alternative to Marvelon.

Adult↗