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The penetration of 0.005% fluticasone propionate ointment in eyelid skin.

BACKGROUND: The use of corticosteroids to treat periorbital dermatoses carries significant risk of serious side effects such as glaucoma, cataracts, and blindness. Studies to assess levels of corticosteroid penetration in the eyelid are lacking. OBJECTIVE: We assessed corticosteroid penetration in eyelid skin in vitro to obtain information leading to the establishment of safer dosing regimens. METHODS: Fluticasone propionate ointment, 0.005%, was applied (approximately 2-5 mg/cm(2)) to samples of human eyelid skin, and penetration was assessed by using modified Franz diffusion cells. Drug concentration was determined at 12, 24, 36, and 48 hours after application by liquid chromatography tandem mass spectrometry. RESULTS: Only very small amounts of fluticasone propionate penetrated the skin (range, 0.618% +/- 0.339% to 1.467% +/- 0.695%). CONCLUSION: Further studies are warranted to examine the safety and efficacy of 0.005% fluticasone propionate ointment for the treatment of eyelid dermatoses.

Administration, Topical↗

Safety of fluticasone propionate cream 0.05% for the treatment of severe and extensive atopic dermatitis in children as young as 3 months.

BACKGROUND: Topical corticosteroids are useful for the treatment of pediatric dermatoses. However, concerns regarding possible systemic and topical toxicities have limited the use of moderate-potency corticosteroids in children. OBJECTIVE: Our purpose was to characterize the safety of fluticasone propionate cream in children. METHODS: Children between 3 months and 5 years 11 months (n = 32) and 3 up to 6 years of age (n = 19) with moderate to severe atopic dermatitis (> or =35% body surface area; mean body surface area treated, 64%) were treated with fluticasone propionate cream, 0.05% twice daily for 3 to 4 weeks. Serum cortisol response, fluticasone levels, skin changes, and adverse events were analyzed. RESULTS: Mean cortisol levels were similar at baseline (13.76 +/- 6.94 microg/dL prestimulation and 30.53 +/- 7.23 microg/dL poststimulation) and at end of treatment (12.32 +/- 6.92 microg/dL prestimulation and 28.84 +/- 7.16 microg/dL poststimulation). Only 2 of 43 children had end-treatment poststimulation values less than 18.0 microg/dL. No significant adverse cutaneous effects were noted. CONCLUSION: Fluticasone propionate cream 0.05% appears to be safe for the treatment of severe eczema for up to 4 weeks in children 3 months of age and older.

Administration, Topical↗

Clobetasol propionate 0.05% under occlusion in the treatment of alopecia totalis/universalis.

BACKGROUND: Efficacy of topical steroids in alopecia areata is still discussed. OBJECTIVE: The purpose of this study was to evaluate the efficacy of clobetasol propionate 0.05% ointment under occlusion in 28 patients with alopecia areata totalis (AT) or AT/alopecia universalis. METHODS: A total of 28 patients were instructed to apply 2.5 g of clobetasol propionate to the right side of the scalp every night under occlusion with a plastic film. Treatment was performed 6 days a week for 6 months. When regrowth of terminal hair occurred, treatment was extended over the entire scalp. All patients were followed up for another 6 months. RESULTS: Of the 28 patients included in the study, 8 were treated successfully (28.5%). Regrowth of terminal hair began on the treated side 6 to 14 weeks after the start of treatment. Of these 8 patients, 3 had a relapse and were not able to maintain hair regrowth. CONCLUSION: Our study shows that clobetasol propionate 0.05% under occlusion is effective in inducing hair regrowth in patients with AT or AT/alopecia universalis. Occurrence of hair regrowth only on the treated half of the scalp clearly shows that efficacy of treatment is a result of a local and not systemic effect of the drug. Although only 17.8% of patients had long-term benefit by treatment, our results were obtained in a population of patients with severe and refractory forms of the disease.

Administration, Topical↗

Treatment of severe erosive gingival lesions by topical application of clobetasol propionate in custom trays.

OBJECTIVE: We sought to describe the response of patients with severe erosive gingival lesions to treatment with clobetasol propionate in Orabase paste administered in trays. The adverse effects were also recorded. STUDY DESIGN: A descriptive pretest/posttest clinical study with no control group (33 patients total) was developed. All patients received repeated applications of 0.05% clobetasol propionate plus 100,000 IU/cc of nystatin in Orabase paste. Over the 48-week period, the pain levels, ulcerations, presence of atrophy, and the patients' daily activities were recorded, and Likert scales were used to classify each outcome as either a complete recovery, excellent, good, poor, or failed. The presence of any adverse effect was also noted. RESULTS: At the end of the study period, the pain and ulceration had disappeared (complete response) in 100% of the sample (33/33; 95% confidence interval = 89.4%-100%), and there was a complete recovery of daily activities and remission of atrophy in 93.9% (31/33; 95% confidence interval = 79.8%-99.3%) and 21.2% (7/33; 95% confidence interval = 9.0%-38.9%) of the patients, respectively. No adverse effects related to the treatment were observed. CONCLUSIONS: The application of an Orabase paste of 0.05% clobetasol 17-propionate plus 100,000 IU/cc of nystatin by means of a tray appears to be an efficacious treatment for severe erosive gingival lesions.

Activities of Daily Living↗

Sources of propionate for the biogenesis of ethyl-branched insect juvenile hormones: Role of isoleucine and valine.

Corpora allata from adult female Manduca sexta biosynthesize the sesquiterpenoid juvenile hormone (JH) III and the unusual ethyl-branched homologue JH II in vitro. We maintained corpora allata in medium 199 using [methyl-(3)H]methionine as the source of the JH methyl ester moiety and as a mass marker. This allowed measurement of the relative contributions of (14)C-labeled precursors to the biogenesis of JH II and III carbon skeletons. We showed efficient incorporation of a propionate equivalent, from isoleucine or valine catabolism, into the ethyl-branched portion of JH II, using double-label liquid scintillation counting of isolated JHs and gas chromatography/mass spectrometry with selected ion monitoring of JH deuteromethoxyhydrin derivatives. Methionine was a poor source of propionate for JH II biosynthesis, while glucose, succinate, threonine, and beta-alanine did not contribute propionate at all. Leucine, isoleucine, and glucose incorporated into JH III and the acetate-derived portion of JH II.

Journal Article↗

Fluticasone propionate HFA-134a pressurized metered-dose inhaler in adolescents and adults with moderate to severe asthma.

In this randomized, double-blind, placebo-controlled trial, 397 patients with moderate to severe asthma, previously treated with bronchodilators alone, received fluticasone propionate 88, 220, or 440 microg twice daily, or placebo via metered dose inhaler (MDI) for 12 weeks. Mean change from baseline to endpoint in pre-dose percent predicted forced expiratory volume in one second (FEV1) was greater (p < 0.001) in each fluticasone propionate group (9.0%, 88 microg bid; 9.8%, 220 microg bid; 11.2%, 440 microg bid) versus placebo (3.4%). Morning and evening peak expiratory flow (PEF), asthma symptoms, and supplemental albuterol use also improved in all fluticasone propionate groups versus placebo. The incidence of adverse events and 24-hour urine cortisol excretion rates were similar between active treatments and placebo.

Administration, Inhalation↗

Improvement in health care utilization and pulmonary function with fluticasone propionate in patients with steroid-dependent asthma at a National Asthma Referral Center.

The impact of switching from other inhaled corticosteroids to fluticasone propionate was studied in patients with severe oral-steroid-dependent asthma over a 1-year period. In this open-label prospective study, patients on maintenance doses of oral and inhaled steroids were referred to a national asthma treatment center and were switchedfrom their previous inhaled corticosteroid to fluticasone propionate 880 microg BID. Compared with data collected from the year prior to enrollment, treatment with fluticasone propionate resulted in significant improvements in pulmonary function, oral steroid requirements, and health resource utilization. In addition, five patients were completely weaned off oral steroids.

Administration, Inhalation↗

Temporal effects of testosterone propionate injections on serum lipoprotein concentrations in rats.

UNLABELLED: The chronic abuse of androgenic anabolic steroids, a group of synthetic derivatives of testosterone, to improve athletic performance have demonstrated compromised serum lipoprotein concentrations reflecting an elevated risk for cardiovascular disease. While the detrimental alterations in the lipoprotein profile have been reported consistently for orally administered androgenic anabolic steroids, the reports examining the effects of parenteral administration of testosterone upon the lipid profile remain equivocal. PURPOSE: The purpose of this study was to determine whether compromised serum lipoprotein concentrations would be manifest in rats receiving testosterone injections (twice per week) over the time course of 7 wk. METHODS: Male rats were randomly assigned to either an experimental group (dose per injection, 3 mg x kg(-1) testosterone propionate solubilized in 1 mL of safflower oil) or a control group (injected with an isovolumic amount of safflower oil alone). The effects of the steroid regimen on the serum lipoprotein profiles were followed after 1, 3, 5, and 7 wk of injections. To assess the relative effects of testosterone propionate, testicular mass was determined at the time of sacrifice. RESULTS: Testicular mass (mean +/- SE) was significantly lower (P<0.01) in the experimental group, 3.08+/-0.03 g, compared with that in controls, 3.82+/-0.05 g, by week 3 and continued to decline for the remainder of the steroid regimen, reaching a nadir of 2.70+/-0.01 g at week 5. No significant differences were observed between groups for total serum cholesterol, serum triacylglycerols, or serum low density lipoprotein (LDL)-C at any time point. However, at week 7, serum high density lipoprotein (HDL)-C (mean +/- SE) was significantly lower (P<0.02) in the testosterone treated animals, 32+/-2 mg x dL(-1), compared with that in controls, 47+/-2 mg x dL(-1). As a result, the ratio of total cholesterol to HDL-C (mean +/- SE) significantly increased (P<0.02) by the seventh week in the testosterone treated group, 3.5+/-0.2, versus controls, 2.5+/-0.2. CONCLUSIONS: The results suggest that while testosterone propionate injections elicit a reduction in testicular mass within 3 wk, the lipoprotein profile is not altered until week 7. Further, the only compromised parameter under the conditions of this study is the decrease in serum HDL-C.

Analysis of Variance↗

Estrogen dissociates Tau and alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid receptor subunit in postischemic hippocampus.

During cerebral ischemia, part of the damage associated with the hyperactivation of glutamate receptors results from the hyperphosphorylation of the microtubule-associated protein Tau. Previous studies have shown that estradiol treatment reduces neural damage after cerebral ischemia. Here, we show that transient occlusion of the middle cerebral artery results in the hyperphosphorylation of Tau and in a significant increase in the association of Tau with glycogen synthase kinase-3beta and alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid type glutamate receptor subunits 2/3 in the hippocampus. Estradiol treatment decreased hippocampal injury, inhibited glycogen synthase kinase-3beta and decreased the hyperphosphorylation of Tau and the interaction of Tau with glycogen synthase kinase-3beta and alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid receptor. These findings suggest that ischemia produces a strong association between Tau and alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid receptor, and estradiol can exert at least part of its neuroprotective activity through inhibition of glycogen synthase kinase-3beta.

Animals↗

The response of psoriasis to betamethasone valerate and clobetasol propionate. A 6-month controlled study.

Twelve patients with symmetrical psoriasis were studied for a period of 6 months. Clobetasol propionate 0-05% ointment was applied to the lesions on one side and betamethasone valerate 0-1% ointment to those on the other side as a double-blind controlled trial of these two treatments. All the patients showed a relative improvement on the side treated with clobetasol propionate. Clobetasol propionate-treated lesions tended to clear for longer than the corresponding betamethasone valerate treated lesions. The condition of five of the patients was better at the end of the study period than at the beginning.

Adult↗

A study of the comparative efficacy of diflucortolone valerate 0.3% ointment and clobetasol propionate 0.05% ointment.

Three hundred and fifty-four patients with symmetrical dermatoses took part in a multicentre, doubleblind, half-side study in order to compare the efficacy of a new topical steroid, diflucortolone valerate 0.3% (Nerisone Forte) against that of an established, potent topical steroid, clobetasol propionate 0.05% (Dermovate). The assessment of overall response, as judged by the physicians' preference for one side or another, showed no difference between the two compounds. However, when the results were examined by separate diagnostic category, the number of preferences was greater for diflucortolone valerate 0.3% in eczema, and for clobetasol propionate 0.05% in psoriasis, although neither of these differences reached levels of statistical significance. The graded assessments of response indicated that both compounds were highly effective, potent, topical steroids. Eighty-one percent of all patients showed marked improvement or healing with diflucortolone valerate 0.3%, and 84% showed marked improvement or healing with clobetasol propionate 0.05%. This difference was not statistically significant. Analysis of response, either by diagnosis or grade of severity, showed no statistically significant differences between the two compounds. No significant differences in the incidence of severity of side-effects were observed. It was concluded that the two compounds were of equal clinical efficacy.

Adrenal Cortex Hormones↗

A new delivery system of clobetasol-17-propionate (lipid-loaded microspheres 0.025%) compared with a conventional formulation (lipophilic ointment in a hydrophilic phase 0.025%) in topical treatment of atrophic/erosive oral lichen planus. A Phase IV, randomized, observer-blinded, parallel group clinical trial.

BACKGROUND: Topical application of clobetasol-17-propionate has been diffusely reported as an efficacious therapy in atrophic/erosive oral lichen planus (OLP), without exposing the patient to systemic side-effects. However, prolonged contact and respective topical effects on the oral mucosa should be avoided. OBJECTIVES: The aim of the present study was to evaluate efficacy and compliance of new lipid microspheres loaded with 0.025% of clobetasol propionate (formulation A) compared with a commonly used formulation (a sort of dispersion of a lipophilic ointment in a hydrophilic phase) with the same amount of drug (formulation B) in the topical treatment of OLP. PATIENTS AND METHODS: Fifty patients with symptomatic OLP were enrolled in a controlled single-blind phase IV clinical trial. After a dropout of five patients, a total of 45 patients [12 males and 33 females; mean age 61.1 years (+/- 12.3 SD; range 25-82)] were treated (17 with formulation A and 28 with formulation B, matched for gender and age; P > 0.2) with the same dosage regimen. At times T0, T1 and T2 we evaluated the following parameters: (i) pain score (by linear visual analogue scale; 0-100); (ii) clinical score; (iii) clinical resolution; and (iv) patient compliance. Statistical analysis was calculated using S-Plus 4.0 and SPSS 9.0 (Student's t-test, chi(2), Kolmogorov-Smirnow, Friedman, Student-Newman-Keuls, Mann-Whitney U-test and Spearman tests). RESULTS: Both formulations were found to be similar for parameters ii, iii and iv, although with a better general trend for formulation A; a significant difference was registered for formulation A in terms of a reduction in painful symptoms (parameter i) at time T2 (P = 0.02). CONCLUSIONS: Our results suggest that the new topical drug delivery system (formulation A) may enhance, at least in terms of symptom remission and compliance, the effectiveness of clobetasol propionate at a dose of 0.025% in OLP therapy.

Administration, Topical↗

Efficacy and safety of salmeterol/fluticasone propionate delivered via a hydrofluoroalkane metered dose inhaler in Chinese patients with moderate asthma poorly controlled with inhaled corticosteroids.

A randomised, open-label, multicentre study compared the efficacy and tolerability of salmeterol 25 microg/fluticasone propionate 125 microg (two puffs, twice daily) delivered via a hydrofluoroalkane metered-dose inhaler (HFA-MDI) and salmeterol 50microg/fluticasone propionate 250 microg (one puff, twice daily) delivered via a Diskus inhaler in Chinese patients with moderate asthma uncontrolled with inhaled corticosteroids (ICSs). Morning peak expiratory flow (PEF) was the primary efficacy endpoint. Secondary endpoints included evening PEF, forced expiratory volume in 1 s, day and night symptom scores, rescue medication and patient self-evaluation of efficacy. Safety was assessed according to adverse events recorded. Both treatments were equipotent and significantly improved morning PEF (HFA-MDI 40 l/min; Diskus 42 l/min; p < 0.05) and all secondary endpoints (p < 0.05) from baseline, over 1-4 weeks. Similarly, both treatments were well tolerated. Salmeterol/fluticasone propionate delivered via an HFA-MDI or Diskus inhaler provides a choice of efficacious delivery systems in Chinese patients whose asthma is poorly controlled on ICSs alone.

Administration, Inhalation↗

Pharmaceutical properties of fluticasone propionate nasal drops: a new formulation.

A variety of corticosteroid delivery systems have been considered for the treatment of nasal polyposis. Safety considerations favour local delivery of the drug to the nasal cavity. No topical delivery system is entirely without problems, however, and formulations must address issues of microbiological quality, drug stability, reproducible drug delivery and adequate drug distribution at site, while also offering environmental and patient acceptability. Fluticasone propionate has been formulated in a new nasal drop preparation. As a highly water-insoluble compound, the active fluticasone propionate requires micronization to an optimal particle size and subsequent dispersion with a surface-active wetting agent. The product is presented in a unit dose low-density polyethylene container, manufactured by a blow-fill-seal process and stored in an aluminium foil overwrap. Micronized active has been used to promote optimal local drug delivery, and excipients have been selected for low irritancy potential and high formulation stability. There is no microbiological risk with fluticasone propionate unit dose nasal drops 400 microg and therefore no need to include a preservative in the preparation. They provide a convenient and effective treatment option for patients with nasal polyposis.

Administration, Intranasal↗

Intranasal and inhaled fluticasone propionate for pollen-induced rhinitis and asthma.

BACKGROUND: Studies suggest that nasal treatment might influence lower airway symptoms and function in patients with comorbid rhinitis and asthma. We investigated the effect of intranasal, inhaled corticosteroid or the combination of both in patients with both pollen-induced rhinitis and asthma. METHODS: A total of 262 patients were randomized to 6 weeks' treatment with intranasal fluticasone propionate (INFP) 200 microg o.d., inhaled fluticasone propionate (IHFP) 250 microg b.i.d., their combination, or intranasal or inhaled placebo, in a multicentre, double-blind, parallel-group study. Treatment was started 2 weeks prior to the pollen season and patients recorded their nasal and bronchial symptoms twice daily. Before and after 4 and 6 weeks' treatment, the patients were assessed for lung function, methacholine responsiveness, and induced sputum cell counts. RESULTS: Intranasal fluticasone propionate significantly increased the percentages of patients reporting no nasal blockage, sneezing, or rhinorrhoea during the pollen season, compared with IHFP or intranasal or inhaled placebo. In contrast, only IHFP significantly improved morning peak-flow, forced expiratory volume in 1 second (FEV1) and methacholine PD20, and the seasonal increase in the sputum eosinophils and methacholine responsiveness. CONCLUSIONS: In patients with pollen-induced rhinitis and asthma, the combination of intranasal and IHFP is needed to control the seasonal increase in nasal and asthmatic symptoms.

Administration, Inhalation↗

Effect of dexamethasone and testosterone propionate on LH response to gonadoliberin (LRH) in young post-pubertal bulls.

LH and testosterone responses to gonadoliberin (LRH) were studied after previous dexamethasone and testosterone propionate combined treatment (treated group) compared with a single dexamethasone previous treatment (control group) in 12 Montbéliarde bulls aged 15 months. This experiment was performed on two occaisions 6 months apart according to the same schedule. They included each time 6 bulls, treated with intramuscular injections of 400 mg testosterone propionate and 6 hours later 0.25 mg gonadoliberin together with the other 3 bulls. Testosterone propionate did not influence the mean LH response to gonadoliberin although mean testosterone levels before gonadoliberin injection was very low in the controls. These data suggest that (1) the previously reported depressing effect of dexamethasone on LH is not mediated by the low peripheral testosterone level and (2) under the conditions of this study, there is no short term effect of testosterone at the pituitary level.

Animals↗

Propionic acidemia: a rare cause of cardiomyopathy.

The symptoms of propionic acidemia, an autosomal recessive disorder involving deficiency of the enzyme propionyl-coenzyme A carboxylase, are highly varied and may present at any time in the patient's life. Cardiomyopathy, a rare complication of this disorder, has been reported in only a small number of pediatric patients. The authors describe a case of adult-onset cardiomyopathy in a 23-year-old female with propionic acidemia diagnosed in early childhood and associated with multiple long-standing comorbidities. The possible mechanisms of propionic acidemia-associated cardiomyopathy, and the importance of early recognition and appropriate management, are discussed. (c)2001 CHF, Inc.

Journal Article↗

Efficacy of topical mesalazine compared with clobetasol propionate in treatment of symptomatic oral lichen planus.

OBJECTIVE: To compare topically applied mesalazine (5-aminosalicylic acid) to topically applied clobetasol propionate in the treatment of patients suffering from symptomatic oral lichen planus. DESIGN: Randomized controlled longitudinal investigation. PATIENTS AND METHODS: Twenty-five out-patients suffering from oral lichen planus and referred to the Department of Oral Pathology and Oral Medicine of the University of Milan, Italy, during the period January to August 1997. Patients were randomly allocated (Group A and Group B) to treatment with mesalazine 5% or clobetasol propionate 0.05%. The drugs were topically applied twice daily for 4 weeks. Discomfort and pain were evaluated by the patient before and after treatment using a Visual Analogue Scale from zero (no pain) to 10 (extreme pain). Results were statistically evaluated by a Mann-Whitney U test. RESULTS: The two pharmacological regimens obtained partial and complete absence of symptoms. In particular, the mesalazine tested group disclosed 57% complete absence of symptoms, 21.3% partial response and 9% no response. No statistically relevant difference has been detected between the two regimens. CONCLUSIONS: The results of this preliminary study, if confirmed by further investigations, suggest that mesalazine might be considered an alternative to clobetasol propionate for treatment of symptomatic oral lichen planus.

Administration, Topical↗