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Future developments in hormonal contraception.

The range of contraception options has recently increased to include long-term, reversible, and highly effective methods. Several new oral contraceptive (OC) formulations are now available in the United States, where OCs are the most popular reversible method. Long-term contraceptive systems that deliver hormones via subdermal implants, vaginal ring, intrauterine system, and transdermal patch afford convenient and effective alternatives to OCs. Contraceptives using hormone combinations appear to be especially effective with safety profiles comparable to OCs. All recently approved in the United States, the transdermal contraceptive patch offers once-weekly dosing with an improved compliance profile, the monthly vaginal ring has the convenient advantage of being user-controlled; a monthly combination injectable provides good pregnancy protection and improved bleeding control compared with the progestin-only formulatin; and the 5-year the levonorgestrel-releasing intrauterine system significantly diminishes menstrual blood loss. A single subdermal implant has been approved for use in Europe. With 60% of all unintended pregnancies occurring in women using birth control, it is anticipated that this increasing range of options will enhance compliance and provide more effective contraception suitable for the individual user.

Contraceptive Agents, Female↗

Body composition, visceral fat distribution and fat oxidation in postmenopausal women using oral or transdermal oestrogen.

OBJECTIVES: The aim of this study was to observe hysterectomized postmenopausal women (without progestogen, which could interfere in the results), using oral-conjugated oestrogen 0.625 mg daily (n=13) or 17beta-estradiol transdermal patches delivering 50 microg daily (n=10) during 12 months, and to evaluate the treatment effects on body composition, visceral fat distribution, energy expenditure and substrate oxidation. METHODS: We studied 23 postmenopausal women using oral-conjugated oestrogen (Premarin) 0.625 mg daily (n=13) or transdermal oestrogen patches (Systen TTS) 50 microg daily (n=10). Body composition was measured by DEXA, visceral adipose tissue areas were measured by abdominal computed tomography, and energy expenditure, fat oxidation and carbohydrate oxidation were measured by indirect calorimetry (Deltatrac Metabolic Monitor). RESULTS: There were: (1) a decrease in IGF-I and an increase in GH levels in the oral group and no change in the transdermal group; (2) a increase in lean body mass in the transdermal group and a decrease in the oral group; (3) a increase in total body fat mass in the oral group and no change in the transdermal group; (4) an increases in total bone mass and in total bone mineral density in the transdermal group and no change in the oral group; (5) an increase in lipid oxidation in the transdermal group and a decrease in the oral group, and (6) no significantly change about weight, visceral adipose tissue areas and energy expenditure in both groups. CONCLUSIONS: The administration route of oestrogen replacement therapy in postmenopausal women confers distinct and divergent effects on body composition and substrate oxidation during 12-months treatment.

Absorptiometry, Photon↗

Optimising delivery systems for HRT.

INTRODUCTION: HRT has been used to alleviate vasomotor symptoms for more than 50 years, and since its introduction, ways have been sought to improve delivery methods, patient acceptability and tolerability. This paper reviews the benefits and disadvantages of some of the main HRT delivery systems currently available. RESULTS: Oral methods of administration use high doses of estrogen because they are subject to metabolism in the intestine and liver. This results in systemic and physiological changes which can result in unwanted effects. Transdermal methods administer lower doses of estrogen to achieve the same therapeutic effect as oral methods. However, problems of adhesion and skin tolerability with conventional transdermal patches can lead to poor compliance with this method. Local administration by percutaneous gel or subcutaneous implant can use physiological doses of estrogen, but can be difficult to titrate, and may not offer the long term benefits associated with some oral and transdermal systems. Newer transdermal matrix systems are now available which offer improved skin tolerability and adhesion properties compared to some conventional transdermal systems. CONCLUSIONS: There are a wide variety of delivery systems currently available and the choice of therapy must be made in consultation with women to aid compliance. Whilst oral administration has been a traditional first-line choice, it is not suitable for certain women. Newer generation transdermal matrix patches are usually suitable as a first line treatment in most women and can offer optimum profiles in terms of adhesion, tolerability and comfort, essential for good compliance and long-term treatment.

Administration, Cutaneous↗

Nicotine alters some of cocaine's subjective effects in the absence of physiological or pharmacokinetic changes.

Tobacco smoking and cocaine use often co-occurs and the frequency of smoking has been positively correlated with the likelihood of cocaine use. In addition, nicotine pretreatment has been shown to increase the rate of cocaine self-administration in rats and to enhance cue-induced cocaine craving in humans. The present study was conducted to investigate whether nicotine pretreatment via a transdermal patch alters the behavioral, physiological, and pharmacokinetic effects of an acute dose of cocaine in nondependent human volunteers. Seven male tobacco smokers who used cocaine occasionally provided informed consent and participated in this placebo-controlled, four-visit study. Following pretreatment with a transdermal nicotine patch (placebo, 14 mg), subjects were challenged with an acute dose of intranasal cocaine (placebo, 0.9 mg/kg). Nicotine pretreatment attenuated cocaine-induced increases in reports of "high" and "stimulated" and increased the latency to detect cocaine effects and cocaine-induced euphoria. Nicotine did not alter cocaine's effects on heart rate, skin temperature, and blood pressure or plasma cocaine, benzoylecgonine (BE), or ecgonine methylester (EME) concentrations. Our findings indicate that nicotine pretreatment alters some of the positive subjective effects of cocaine in humans without affecting cocaine's effects on physiologic responses or pharmacokinetic profiles.

Administration, Cutaneous↗

Transdermal delivery of insulin from a novel biphasic lipid system in diabetic rats.

Noninvasive transdermal insulin delivery could provide diabetic patients with sustained physiological levels of basal insulin in a pain-free manner. We have developed a novel transdermal lipid-based system (Biphasix) suitable for macromolecule delivery across the skin. The objective of this study was to evaluate the pharmacological effects of the Biphasix-insulin delivery system in a diabetic rat model. Transdermal patches (one per animal) containing Biphasix-insulin formulation (10 mg of recombinant human insulin dose) were applied to the shaved abdominal skin of streptozotocin-induced diabetic rats for 48 h. Blood glucose was monitored every 2-4 h using a Lifescan glucose meter. Serum insulin levels were analysed by enzyme-linked immunosorbent assay. A decrease in blood glucose of 43.7 +/- 3.8% (mean +/- SEM, n = 25) was observed compared with initial blood glucose levels. The duration of the response was 51.5 +/- 3.7 h (mean +/- SEM, n = 25). Serum insulin after application of the transdermal Biphasix-insulin patch was 20.08 +/- 5.44 micro IU/mL (mean +/- SEM, n = 13) during the steady state, which was not statistically different from the insulin levels obtained 2 h after subcutaneous injection of 1 mg of recombinant human insulin solution. Insulin bioavailability from the transdermal Biphasix-insulin patches was 21.5 +/- 6.9% (mean +/- SEM, n = 13) based on serum insulin and 39.5 +/- 8.5% (mean +/- SEM, n = 25) based on the pharmacodynamic blood glucose-lowering effects. The Biphasix system successfully delivered insulin transdermally, as evidenced by a significant sustained decrease in blood glucose in diabetic rats, with a corresponding increase in serum insulin. These results support the feasibility of developing a transdermal insulin patch for human applications.

Administration, Cutaneous↗

Pharmacokinetic profile of a new matrix-type transdermal delivery system: diclofenac diethyl ammonium patch.

A transdermal delivery system containing the anti-inflammatory analgesic diclofenac diethyl ammonium in an ethyl hexyl acrylate and vinyl acetate pressure-sensitive adhesive system was developed for percutaneous absorption. These patches were subjected to in vitro permeation and permeation enhancement studies through rat skin using a specially designed diffusion cell. Further, the work deals with percutaneous absorption studies carried out on both animals and human volunteers. The pharmacokinetic parameters calculated from the blood levels of the drug reveal a profile typical of a sustained-release formulation, with the ability to maintain adequate plasma levels for 24 hr (i.e., up to the next application). (Area under the curve [AUC]: 4.356 +/- 1.3 mcg/ml.hr in animals and 0.442 +/- 0.053 mcg/ml.hr in humans; Tmax was 8 hr in both the cases, whereas Cmax was 0.288 +/- 0.088 mcg/ml in animals and 0.034 +/- .008 mcg/ml in human volunteers.) The amount of the drug bioavailable for targeting the sites of action is lower than via the oral route, but the absorbed dose appears to be adequate for therapeutic use, particularly because of the absence of side effects.

Administration, Cutaneous↗

Nitrate therapy in patients with coronary artery disease--preparations and doses with and without development of tolerance.

Rapid tolerance development with respect to hemodynamic, anti-anginal and anti-ischemic effects is a relevant clinical problem associated with any longterm treatment with nitroglycerin, isosorbide dinitrate or isosorbide 5-mononitrate. Tolerance occurs with any dosing regimen that results in nitrate accumulation in the plasma or nearly-constant plasma concentrations, as is the case with multiple daily doses of oral nitrates or continuous application of transdermal patch systems. Nitrate tolerance can be prevented by the interval treatment. This encompasses incorporation of an application-free interval which prevents meaningful nitrate accumulation such that, from a low baseline level, renewed drug administration leads to an increase in the nitrate plasma concentration greater than 2.5-fold. From controlled studies, dosing regimens for interval treatment proven to be effective have been designated for isosorbide dinitrate and isosorbide 5-mononitrate, as well as for transdermal nitroglycerin patch systems. The early attenuation of nitroglycerin, seen within the first 12 h of its use, according to the results of a recently completed study, can be counteracted through continuously increasing plasma concentrations during this period. Interval treatment does not enable 24-h therapeutic protection. Studies with ST-Holter monitoring, however, have shown that adequate coverage can be provided for the period during which the vast majority of ischemic episodes occur. Clinically-relevant rebound phenomena do not occur during interval treatment. Pharmacological approaches to prevent nitrate tolerance, on the basis of the limited and, in part, conflicting data available, do not provide an alternative to interval treatment.

Administration, Cutaneous↗

Fatal fentanyl intoxication following excessive transdermal application.

The case history and toxicological findings of a fatal fentanyl intoxication due to the application of multiple transdermal patches are presented. An 83 year-old white female with terminal cancer was found dead with three 100 mg/h fentanyl patches on her chest. The autopsy and subsequent histological studies revealed extensive areas of gastric carcinoma, a large atrial tumor, ulceration of esophagus, metastasis of peripancreatic lymph nodes and a recent surgical removal of part of the lower lobe of the left lung. Toxicological analysis by GC/MS yielded fentanyl concentrations of blood, 25 ng/mL; brain, 54 ng/g; heart 94 ng/g; kidney 69 ng/g; and liver 104 ng/g. The cause of death was determined to be fentanyl overdose and the manner of death was ruled undetermined as the investigation was unable to conclusively establish whether this was an accidental overdose, a suicide, an assisted suicide, or possible a homicide. This case demonstrates the need for caution in self-administration of transdermal fentanyl patches, in particular, the dangers inherent in the application of multiple patches which can result in the release of potentially toxic or lethal doses.

Administration, Cutaneous↗

Comparative clinical trial of the tolerability, patient acceptability and efficacy of two transdermal glyceryl trinitrate patches ('Deponit' 5 and 'Transiderm-Nitro' 5) in patients with angina pectoris.

A randomized two-period crossover trial was carried out to compare the efficacy, tolerability and patient acceptability of two transdermal ('patch') formulations of glyceryl trinitrate. 'Deponit' 5 and 'Transiderm-Nitro' 5, both designed to deliver 5 mg glyceryl trinitrate in 24 hours. All patients were treated for 4 weeks with each of the formulations, changed once per day. Forty-seven patients entered the trial and all completed both phases of treatment. Both drugs resulted in highly significant mean reductions in angina attack frequency, the reduction being significantly greater with 'Deponit'. Similarly, mean sublingual glyceryl trinitrate consumption was also reduced; again, the greater reduction with 'Deponit' was significant. In terms of effectiveness, 'Deponit' was preferred to 'Transiderm-Nitro' by 19 patients, whilst only 5 patients preferred 'Transiderm-Nitro' (p less than 0.01). In terms of ease of application, comfort, appearance and adhesion (assessed in relation to daytime, night-time, washing, bathing and exercising), there were no appreciable or significant differences between patients' assessments of the two forms. Neither treatment had any appreciable effect on heart rate or blood pressure. Both formulations were very well tolerated, with very few reported side-effects.

Administration, Cutaneous↗

In vitro release studies on matrix type transdermal drug delivery systems of naltrexone and its acetyl prodrug.

Matrix type acrylic adhesive transdermal patches of naltrexone (NTX) and its 3-O-acetyl ester prodrug were prepared and evaluated for drug content, thickness, and in vitro release characteristics. Among the four DURO-TAK adhesive polymers (87-2516, 87-2054, 87-2501, and 87-2582) tested, 87-2516 proved to be the most suitable and compatible polymer for the transdermal delivery of NTX from NTX and prodrug patches. A linear relationship was observed for release flux (F) and cumulative amount (Mt) values versus 1%, 2%, and 3% drug loading at equimolar levels. The release of NTX from the patches showed a good correlation (R2>0.99) for Mt vs. square root t profiles, indicating that a Higuchian matrix diffusion mechanism of drug release from the transdermal adhesive patches was obtained. Overall, the amounts of NTX released from the prodrug patches were significantly higher than from the NTX patches, at all three drug loading levels.

Acetylation↗

[Transdermal drug delivery systems].

Transdermal drug delivery systems are pharmaceutical preparations, intended to be applied to the unbroken skin in order to deliver the active ingredient(s) to the systemic circulation after passing through the skin barrier. Transdermal patches are formulated in different ways, but normally they consist of release liner, adhesive layer and backing layer. Active ingredient(s) can be incorporated in reservoir, matrix, adhesive, membrane-matrix and microreservoir. The releasing rate of active substances from patches is controlled by membrane, matrix and adhesive. Only several transdermal systems are available on the market today, because for the penetration of most substances skin represents a strong barrier. With transdermal systems it is possible to obtain a controllable and sustained plasma levels, to minimaze the risk of undesirable side effects and to avoid the hepatic first- pass metabolism. These devices are easy to apply and also to remove from the skin. Of a great pharmaceutical interest are also socalled cosmetic patches. They are applied with aim of cleaning and protecting the skin.

Administration, Cutaneous↗

Efficacy of transdermal estradiol.

Several side effects and risks associated with estrogen replacement therapy are known to stem from the hormone's impact on the liver. With oral administration, the enhanced action at hepatic, as compared with nonhepatic, sites is presumably related to the so-called first-pass effect. Attempts have been made to avoid this action by administering estrogen nonorally, but heightened hepatic effects (comparable with those of other preparations) have nonetheless been seen with both ethinyl estradiol and conjugated equine estrogens given vaginally. We conducted a series of investigations aimed at evaluating the effects of estradiol delivered via a transdermal patch. In a 50-patient study of transcutaneous estradiol (25, 50, 100, or 200 micrograms/day) versus placebo, a dose-dependent beneficial effect on objectively measured hot flashes was demonstrated. A second study was designed to compare the effects of these doses with those of 0.625 and 1.25 mg conjugated equine estrogen administered orally. Effects on nonhepatic markers were similar for the 50 micrograms patch and 0.625 mg tablet, as well as for the 100 micrograms patch and 1.25 mg tablet. None of the doses of transdermal estradiol exerted any measurable action on hepatic markers of estrogen action, whereas both doses of conjugated equine estrogen demonstrated actions on both hepatic protein and lipid synthesis. Our data clearly show that the transdermal administration of estradiol circumvents the enhanced hepatic actions of the hormone. Possible explanations for these results are presented.

Administration, Cutaneous↗

Androgen replacement therapy: present and future.

The major goal of androgen substitution is to replace testosterone at levels as close to physiological levels as is possible. For some androgen-dependent functions testosterone is a pro-hormone, peripherally converted to 5alpha-dihydrotestosterone (DHT) and 17beta-estradiol (E2), of which the levels preferably should be within normal physiological ranges. Furthermore, androgens should have a good safety profile without adverse effects on the prostate, serum lipids, liver or respiratory function, and they must be convenient to use and patient-friendly, with a relative independence from medical services. Natural testosterone is viewed as the best androgen for substitution in hypogonadal men. The reason behind the selection is that testosterone can be converted to DHT and E2, thus developing the full spectrum of testosterone activities in long-term substitution. The mainstays of testosterone substitution are parenteral testosterone esters (testosterone enantate and testosterone cipionate) administered every 2-3 weeks. A major disadvantage is the strongly fluctuating levels of plasma testosterone, which are not in the physiological range at least 50% of the time. Also, the generated plasma E2 is usually supraphysiological. A major improvement is parenteral testosterone undecanoate producing normal plasma levels of testosterone for 12 weeks, with normal plasma levels of DHT and E2 also. Subcutaneous testosterone implants provide the patient, depending on the dose of implants, with normal plasma testosterone for 3-6 months. However, their use is not widespread. Oral testosterone undecanoate dissolved in castor oil bypasses the liver via its lymphatic absorption. At a dosage of 80 mg twice daily, plasma testosterone levels are largely in the normal range, but plasma DHT tends to be elevated. For two decades transdermal testosterone preparations have been available and have an attractive pharmacokinetic profile. Scrotal testosterone patches generate supraphysiological plasma DHT levels, which is not the case with the nonscrotal testosterone patches. Transdermal testosterone gel produces fewer skin irritations than the patches and offers greater flexibility in dosage. Oromucosal testosterone preparations have recently become available. Testosterone replacement is usually of long duration and so patient compliance is of utmost importance. Therefore, the patient must be involved in the selection of type of testosterone preparation. Administration of testosterone to young individuals has almost no adverse effects. With increasing age the risk of adverse effects on the prostate, the cardiovascular system and erythropoiesis increases. Consequently, short-acting testosterone preparations are better suited for aging androgen-deficient men.

Animals↗

Adhesion-to-skin performance of a new transdermal nitroglycerin adhesive patch.

Six men and six women participated in a study designed to compare adhesion-to-skin measurements of three transdermal nitroglycerin patch formulations (Minitran, Transderm-Nitro 5, and Nitro-Dur II) with an occlusive surgical tape control. After 24 hours of wear, Minitran was found to be superior to the other three products in skin adhesion. The force required to remove Minitran was significantly higher than that required to remove the other products. Maintaining good skin contact over the entire application period is essential for consistent drug delivery. Improved skin contact can increase transdermal drug delivery. This increase in delivery of nitroglycerin may result in the development of smaller patches rated to deliver the same quantity of nitroglycerin over a 24-hour period.

Adhesiveness↗

Therapeutic adherence in the elderly: transdermal clonidine compared to oral verapamil for hypertension.

This double-blind, double-dummy, randomized clinical trial, conducted in elderly patients with mild hypertension, compared adherence to treatment, efficacy, side effects, and quality of life during treatment with transdermal clonidine versus oral sustained-release verapamil (verapamil-SR). Blood pressure declined significantly--from 148/95 mm Hg at baseline to 139/84 after titration and 135/86 after maintenance--with transdermal clonidine (n = 29), and from 156/96 to 144/85 and 148/88, respectively, with verapamil-SR (n = 29). Adverse event rates and quality-of-life questionnaire responses were similar in the two treatment groups. Transdermal clonidine was worn as directed during more than 96% of patient-weeks of treatment. Compliance with the oral verapamil regimen was less consistent: Verapamil-SR was taken as directed during approximately 50% of patient-weeks of therapy, and individual compliance, assessed by tablet counts, varied from 50-120%. In all, 86% of subjects were satisfied or highly satisfied with the convenience of transdermal therapy; 87% reported that side effects were slightly or not bothersome; 65% indicated that transdermal patches were more convenient than oral therapy; and almost 60% preferred transdermal to oral therapy. In this study transdermal clonidine and oral verapamil were equally safe and effective. A substantial majority of patients preferred transdermal to oral therapy, and adherence to treatment was greater with transdermal therapy.

Administration, Cutaneous↗

Rotigotine: a novel dopamine agonist for the transdermal treatment of Parkinson's disease.

Rotigotine is a D3/D2/D1 dopamine agonist delivered through a silicone-based transdermal patch that is administered once daily. Pharmacokinetic data in humans have shown that steady-state plasma levels of rotigotine can be reached between 8 and 12 hours, and a stable drug release is maintained throughout the 24-hour patch application. Results of several clinical trials demonstrated that the rotigotine transdermal system is safe, well tolerated and effective monotherapy for patients in the early stages of Parkinson's disease. Rotigotine transdermal application also demonstrated the possibility of decreasing levodopa dosage in order to decrease its toxic effects in advanced Parkinson's disease. In addition, rotigotine has shown efficacy in the treatment of restless legs syndrome. Clinical studies on rotigotine, the first transdermally delivered dopamine agonist, are now in progress, and regulatory approval is expected in the near future.

Administration, Cutaneous↗

Efficacy of continuous sequential transdermal estradiol and norethindrone acetate in relieving vasomotor symptoms associated with menopause.

OBJECTIVE: This study was undertaken to evaluate the efficacy and tolerability of a combination estradiol plus norethindrone acetate transdermal delivery system given in a continuous sequential regimen with transdermal estradiol versus placebo in the treatment of vasomotor symptoms of menopause. STUDY DESIGN: This was a 12-week double-blind trial of 220 healthy postmenopausal women with > or = 8 moderate to severe hot flushes and sweating episodes per day. Women were randomly assigned to wear transdermal placebo patches or a transdermal patch releasing 50 microg/d 17beta-estradiol alone (Vivelle) for days 1 to 14 of each cycle and a combination patch releasing 50 microg/d 17beta-estradiol plus 1 of 3 dosage levels (140, 250, or 400 microg/d) of norethindrone acetate (CombiPatch) for days 15 through 28. RESULTS: There was a significant (P <.001) reduction by the second week in the mean number of daily hot flushes from baseline to end point with all 3 doses of estradiol plus norethindrone acetate compared with placebo. Significant (P <.001) reductions in the mean intensity of hot flushes and sweating were also noted with estradiol plus norethindrone acetate compared with placebo. The incidences of adverse events with all 3 doses of estradiol plus norethindrone acetate and with placebo were comparable. CONCLUSION: An estradiol plus norethindrone acetate transdermal delivery system administered in a continuous sequential regimen with transdermal estradiol was well tolerated and effective for the treatment of moderate to severe vasomotor symptoms in postmenopausal women.

Administration, Cutaneous↗

Modeling transdermal drug release.

The stratum corneum forms the outermost layer of the skin and is essentially a multilamellar lipid milieu punctuated by protein-filled corneocytes that augment membrane integrity and significantly increase membrane tortuosity. The lipophilic character of the stratum corneum, coupled with its intrinsic tortuosity, ensure that it almost always provides the principal barrier to the entry of drug molecules into the organism; the only exceptions being highly lipophilic species which might encounter problems at the stratum corneum-viable epidermis interface where they must partition into a predominantly aqueous environment. Drugs can be administered either as suspensions or as solutions and the formulation can range in complexity from a gel or an ointment to a multilayer transdermal patch. In this review we describe the theoretical principles used to describe transdermal release and we show that relatively simple membrane transport models based on the appropriate solution to Fick's second law of diffusion can be used to explain drug release kinetics into this complex biological membrane.

Administration, Cutaneous↗