PubMed Health⌕ Search

Biomedical subjects

B E Elewski

Publications and source records attributed to B E Elewski.

At least 19 recordsLinked to original sources

Tinea capitis: a current perspective.

UNLABELLED: During the past 50 years, the predominant etiologic agent of tinea capitis in the United States and in Western Europe has changed from Microsporum audouinii to Trichophyton tonsurans. This is thought to be due in part to the sensitivity of M audouinii to griseofulvin treatment and, in part, due to the importing of T tonsurans by people emigrating from geographic areas where that vector had been the prominent cause of tinea capitis. With these changes, prospects for newer therapies with the novel antimycotic agents itraconazole, fluconazole, and terbinafine are reviewed. (J Am Acad Dermatol 2000;42:1-20.) LEARNING OBJECTIVE: At the conclusion of this learning activity, participants should be familiar with the history, epidemiology, and current knowledge of tinea capitis, as well as the newer antifungal agents (ie, itraconazole, fluconazole, and terbinafine) to treat this infection.

Antifungal Agents↗

Optimal growth conditions for the determination of the antifungal susceptibility of three species of dermatophytes with the use of a microdilution method.

As a prerequisite to standardization of dermatophyte susceptibility testing, conditions that support optimal growth of different dermatophyte species must be established. Eighteen isolates of Trichophyton spp. (T rubrum, T mentagrophytes, T tonsurans) were grown in 4 different media: RPMI 1640 with L-glutamine, without sodium bicarbonate and buffered at pH = 7.0; antibiotic medium #3 (Penassay); yeast nitrogen base with 0.5% dextrose buffered at pH = 7.0; and Sabouraud dextrose broth. Incubation for 6 days at 35 degrees C produced the following results: RPMI and Sabouraud dextrose supported equally sufficient growth for all strains tested; Penassay supported growth of only 33% of the isolates tested, and buffered yeast nitrogen base did not support growth of any isolates. RPMI was selected as the optimal medium, and organisms were tested at both 30 degrees C and 35 degrees C with a standardized inoculum density of 10(3) conidia/mL. No temperature differences were noted in the amount of growth of the dermatophytes tested. With RPMI at an incubation temperature of 35 degrees C, 3 inoculum sizes (10(3), 10(4), and 10(5) conidia/mL) were tested against 4 antifungal agents: griseofulvin, itraconazole, terbinafine, and fluconazole. Inoculum size did not affect minimum inhibitory concentration (MIC) results for itraconazole or terbinafine, but a larger inoculum produced a slightly higher MIC for griseofulvin and a noticeably higher MIC for fluconazole. Our data support the use of RPMI 1640, 35 degrees C, and 4 days as an incubation temperature and time, respectively, and an inoculum of 10(3) conidia/mL as optimal conditions for the determination of the antifungal susceptibility of dermatophytes.

Antifungal Agents↗

Treatment of tinea capitis: beyond griseofulvin.

Tinea capitis is a common pediatric scalp infection caused by dermatophytes. Topical therapy alone is ineffective, so oral griseofulvin has traditionally been the standard treatment. The new antimycotic agents itraconazole, terbinafine, and fluconazole represent effective treatment alternatives that have fewer problems with tolerability and adverse effects. More comparative studies are needed to determine the optimal treatment with these agents and adjuvant therapies such as antifungal shampoos, topical antimycotic agents, and corticosteroids.

Administration, Oral↗

Asthma induced by allergy to Trichophyton rubrum.

The worldwide incidence of asthma and of allergic respiratory diseases is increasing (Akiyama K. 'Environmental allergens and allergic diseases.' Rinsho Byori 1997;45(1):13. D'Amato G, Liccardi G, D'Amato M. Environment and development of respiratory allergy. II. Indoors. Monaldi Arch Chest Dis 1994;49(5):412. Weeke AR. Epidemiology of allergic diseases in children. Rhinol Suppl 1992;13:5. Ulrik CS, Backer V, Hesse B, Dirksen A. Risk factors for development of asthma in children and adolescents: findings from a longitudinal population study. Respir Med 1996;90(10):623.) This has been attributed to several factors, including lifestyle changes and an expanding variety of potential causative allergens. Management of asthma entails preventive and acute medications, immunologic therapies, and removal of the identified allergen(s) from the patient's environment. Without the latter, patients may not experience full symptomatic relief. This case report describes a patient who developed bronchial asthma subsequent to an infection of tinea pedis and pedal onychomycosis; antifungal management resulted in full resolution of his tinea pedis, onychomycosis and asthma.

Asthma↗

Safety of itraconazole pulse therapy for onychomycosis. An update.

After experience with more than 34 million patients over 10 years, the safety of itraconazole and its potential drug-drug interactions are well known. In clinical trials, the average incidence of adverse events with a 1-week pulse regimen was 18% in pooled safety data (n = 2,867); only 2.2% of patients dropped out. In direct comparative trials, the incidence of mild and reversible adverse effects was comparable for itraconazole and terbinafine (31% and 28%, respectively) during treatment. The rate of permanent withdrawal because of adverse events was 3.6% for itraconazole and 7.5% for terbinafine (P < .05). Itraconazole was significantly better tolerated as evaluated by the investigator and patients. The analysis of the elderly subpopulation showed that patients 65 and older tolerated itraconazole pulse well, with only 20% experiencing mild and reversible side effects (total group). In direct comparative trials, itraconazole also produced fewer adverse effects than terbinafine (13% vs 32%, respectively). As newer oral antifungal agents gain widespread use, clinicians need to be aware of their potential drug-drug interactions and their possibly serious adverse events. However, pooled data from the 1-week itraconazole pulse regimen indicated a favorable safety profile, and a dose increase to 400 mg had no impact on safety.

Aged↗

Antifungal susceptibilities and genetic relatedness of serial Trichophyton rubrum isolates from patients with onychomycosis of the toenail.

Onychomycosis is a common fungal disease infecting up to 20% of the population over age 40. The major causative agent of onychomycosis is Trichophyton rubrum. Uncontrolled infection may eventually lead to penetration of the newly forming nail plate. In spite of the encouraging cure rate with recent antifungal agents such as the allylamines (terbinafine) and azoles (itraconazole and fluconazole) some patients inevitably fail therapy. In this investigation, a group of patients from a multi-center study designed to assess the efficacy of terbinafine with known cases of onychomycosis were selected for evaluation. Nail samples from this patient group were colonized with T. rubrum throughout the terbinafine therapy. Antifungal susceptibility testing was performed on these T. rubrum isolates to detect change in MIC values. Strain relatedness was examined using random amplified polymorphic DNA (RAPD) technique. Our results revealed failure of patients to clear T. rubrum is not related to the development of resistance to the drug. While species determination was possible, we were not able to identify differences that would indicate reinfection with a new strain. Analysis of patient demographic data revealed that 70% of patients were over 45 years old, 56.6% were previously treated with antifungals, 60% came from family history with onychomycosis and 13% were diabetic. In conclusion, our data indicate that patients' failure to clear onychomycosis was not associated with resistant development. Failure of terbinafine therapy may be dependent on host-related factors.

Adult↗

Once-weekly fluconazole (150, 300, or 450 mg) in the treatment of distal subungual onychomycosis of the toenail.

BACKGROUND: Onychomycosis is a prevalent infection of the nail caused primarily by dermatophytes. Fluconazole is active in vitro against the most common pathogens of onychomycosis, penetrates into the nail bed, and is clinically effective in the treatment of a wide variety of superficial fungal infections. OBJECTIVE: The purpose of this study was to compare the efficacy and safety of three different doses of fluconazole (150, 300, and 450 mg) given orally once weekly to that of placebo in the treatment of distal subungual onychomycosis of the toenail caused by dermatophytes. METHODS: In this multicenter, double-blind study, 362 patients with mycologically confirmed onychomycosis were randomized to treatment with fluconazole, 150, 300, or 450 mg once weekly, or placebo once weekly for a maximum of 12 months. To enter the study, patients were required to have at least 25% involvement of the target nail with at least 2 mm of healthy nail from the nail fold to the proximal onychomycotic border. Patients who were clinically cured or improved at the end of treatment were further evaluated over a 6 month follow-up period. At both the end of therapy and the end of follow-up, clinical success of the target nail was defined as reduction of the affected area to less than 25% or cure. RESULTS: At the end of therapy, 86% to 89% of patients in the fluconazole treatment groups were judged clinical successes as defined above compared with 8% of placebo-treated patients. Clinical cure (completely healthy nail) was achieved in 28% to 36% of fluconazole-treated patients compared with 3% of placebo-treated patients. Fluconazole demonstrated mycologic eradication rates of 47% to 62% at the end of therapy compared with 14% for placebo. The rates at the end of follow-up were very similar, indicating that eradication of the dermatophyte was maintained over the 6-month period. All efficacy measures for the fluconazole groups were significantly superior to placebo (p=0.0001); there were no significant differences between the fluconazole groups on these efficacy measures. The clinical relapse rate among cured patients over 6 months of follow-up was low at 4%. Fluconazole was well tolerated at all doses over the 12-month treatment period, with the incidence and severity of adverse events being similar between the fluconazole and placebo treatment groups. Mean time to clinical success in the fluconazole treatment groups was 6 to 7 months. This time frame may be used as a guideline for fluconazole treatment duration. CONCLUSION: The results of this study support the use of fluconazole in the treatment of distal subungual onychomycosis of the toenail caused by dermatophytes. Doses between 150 to 450 mg weekly for 6 months were clinically and mycologically effective as well as safe and well tolerated.

Adolescent↗

Once-weekly fluconazole (150, 300, or 450 mg) in the treatment of distal subungual onychomycosis of the fingernail.

BACKGROUND: Onychomycosis is a prevalent infection of the nail caused primarily by dermatophytes. Fluconazole is active in vitro against the most common pathogens, penetrates into the nail bed, and is clinically effective in the treatment of a wide variety of fungal infections. OBJECTIVE: The purpose of this study was to assess the safety and efficacy of oral fluconazole 150, 300, and 450 mg administered once weekly compared with placebo in the treatment of distal subungual onychomycosis of the fingernail caused by dermatophytes. METHODS: This was a multicenter, randomized, double-blind, placebo-controlled study enrolling 349 patients with onychomycosis of the fingernails. Clinical and mycologic efficacy as well as measures of safety were assessed monthly for a maximum of 9 months of treatment, with additional safety visits occurring at weeks 2 and 6. For inclusion, patients were required to have clinically and mycologically documented onychomycosis of the fingernail caused by dermatophytes with at least 25% involvement of the target fingernail. After end of therapy, patients with improved or cured fingernails entered a blinded 6-month follow-up without drug treatment during which efficacy was assessed every 2 months. Efficacy was assessed by clinical (visual) and mycologic (microscopic and culture) measures. Clinical measures included assessments of the percentage of target nail involvement, measurement of the distance from the nail fold to the proximal onychomycotic border, and signs and symptoms of onychomycosis. RESULTS: Fluconazole was significantly superior to placebo in eradicating clinical and mycologic symptoms of onychomycosis, both at the end of active treatment and at 6 months after treatment (p=0.0001 for all efficacy measures). At the end of therapy, 91% to 100% of patients in the fluconazole groups were judged clinical successes, defined as reduction of the affected area of the target nail to less than 25% or cure, compared with 8% for placebo. Clinical cure rates at end of therapy were 76%, 85%, and 90% for fluconazole 150, 300, and 450 mg, respectively, compared with 3% for placebo. These clinical success and cure rates were largely maintained or improved during follow-up. Clinical relapse in cured patients during the follow-up period was very low (1.5% to 3.3%). Fluconazole demonstrated mycologic eradication rates of 89% to 100% at the end of treatment and 90% to 99% at the end of follow-up; for placebo the rates were 8% and 12%, respectively. CONCLUSION: Fluconazole administered once weekly is safe and effective in eradicating distal subungual onychomycosis of the fingernail caused by dermatophytes.

Adolescent↗

Pharmacokinetics of three doses of once-weekly fluconazole (150, 300, and 450 mg) in distal subungual onychomycosis of the toenail.

BACKGROUND: Preliminary clinical data suggest that fluconazole is effective in the treatment of patients with onychomycosis. To design optimum dosage regimens, a better understanding of fluconazole's distribution into and elimination from nails is needed. OBJECTIVE: The purpose of this study was to determine plasma and toenail concentrations of fluconazole. METHODS: In this multicenter, randomized, double-blind investigation, fluconazole (150 mg, 300 mg, or 450 mg) or matching placebo was administered once a week for a maximum of 12 months to patients with onychomycosis of the toenail. A total of 151 subjects participated in the pharmacokinetic assessment. Blood samples and distal toenail clippings from both affected and healthy nails were obtained for fluconazole concentration determinations at baseline, at the 2-week visit, at each monthly visit until the end of treatment, and then at 2, 4, and 6 months (nail samples only at the latter two) after fluconazole was discontinued. RESULTS: Fluconazole was detected in healthy and affected nails at the 2-week assessment in nearly all subjects. The median time to reach steady-state fluconazole concentrations in healthy nails was 4 to 5 months in the three fluconazole dose groups. In affected nails, steady-state fluconazole concentrations were achieved more slowly, with a median time of 6 to 7 months. At the 8-month assessment, affected toenail fluconazole concentrations were higher than corresponding plasma fluconazole concentrations, with ratios of 1.31 to 1.50 in the three active treatment groups. Toenail concentrations of fluconazole declined slowly after treatment was discontinued, with elimination half-lives of 2.5, 2.4, and 3.7 months for the 150, 300, and 450 mg doses, respectively. Measurable fluconazole concentrations were still present in toenails at 6 months after treatment in most subjects. CONCLUSION: Fluconazole penetrates healthy and diseased nails rapidly, yielding detectable concentrations after two weekly doses. Once it penetrates nail, fluconazole persists for up to 6 months or longer after therapy is stopped. These favorable pharmacokinetic characteristics support a once-weekly fluconazole dosage regimen for the treatment of patients with onychomycosis.

Antifungal Agents↗

Pharmacokinetics of three once-weekly dosages of fluconazole (150, 300, or 450 mg) in distal subungual onychomycosis of the fingernail.

BACKGROUND: Fluconazole has proven to be safe and effective for a variety of superficial and systemic fungal infections. Preliminary analysis of extensive Phase III studies suggests that it is very effective for the treatment of onychomycosis. Its pharmacokinetic properties, including low molecular weight and high water-solubility, suggest a unique ability to penetrate the nail. This feature is likely to account in part for fluconazole's effectiveness in the treatment of onychomycosis. OBJECTIVE: Determinations of plasma and fingernail concentrations of fluconazole were performed as part of a larger study comparing the safety and efficacy of once-weekly fluconazole (150, 300, and 450 mg) to placebo in the treatment of distal subungual onychomycosis of the fingernails caused by dermatophytes. The relationship between fluconazole concentrations and efficacy was also examined. METHODS: Pharmacokinetic studies were performed by means of plasma and fingernail samples from 133 patients, a subset of 349 patients participating in a double-blind, placebo-controlled clinical trial of fluconazole administered in once-weekly doses of 150, 300, or 450 mg until cure of onychomycosis or for a maximum of 9 months. Blood and fingernail samples for pharmacokinetic analysis were taken at baseline, at week 2, and at monthly intervals during the treatment phase of the study. Patients considered clinically cured or improved also participated in a 6-month follow-up study. During this phase, patients were monitored and samples taken every 2 months. RESULTS: Significant amounts of fluconazole were detected in the earliest fingernail samples taken (after 2 weeks of treatment). After two weekly doses, 30% to 33% of steady-state concentrations had been achieved in healthy nails and 22% to 29% in affected nails. Steady state was achieved in 3 to 5 months. Fluconazole concentration in nails as well as plasma followed dose-proportional pharmacokinetics. Nail:plasma ratios in affected nails were 0.4 to 0.6 at 2 weeks and 1.7 to 1.8 at 6 months. Fluconazole concentrations fell slowly after drug discontinuation and were still detectable 4 months after end of treatment. A statistically significant correlation was found between steady-state concentration and clinical and global outcomes. CONCLUSION: Fluconazole rapidly penetrates the fingernail, where it is retained at detectable levels for at least 4 months after drug discontinuation. A significant correlation exists between fluconazole concentration in the fingernails and clinical and global outcomes.

Adult↗

Onychomycosis: pathogenesis, diagnosis, and management.

Although not life-threatening, onychomycosis (a fungal infection of the nail, usually caused by a dermatophyte) constitutes an important public health problem because of its high prevalence (about 10% of the U.S. population) and associated morbidity. The disease can have certain negative consequences for patients, such as pain, and can potentially undermine work and social lives. This review discusses the etiology, classification, diagnosis, and treatment of onychomycosis. Four types of onychomycosis are recognized based on the site and pattern of fungal invasion. Dermatophyte fungi are the predominant pathogens, but yeasts (especially Candida albicans) and nondermatophyte molds may also be implicated. Accurate diagnosis requires direct microscopy and fungal culture. The differential diagnosis includes psoriasis, lichen planus, onychogryphosis, and nail trauma. Onychomycosis is more difficult to treat than most dermatophytoses because of the inherent slow growth of the nail. Older antifungal agents (ketoconazole and griseofulvin) are unsuitable for onychomycosis because of their relatively poor efficacy and potential adverse effects. Three recently developed antimycotic agents (fluconazole, itraconazole, and terbinafine) offer high cure rates and good safety profiles. In addition, the short treatment times (< 3 months) and intermittent dosing schedules are likely to enhance compliance and reduce the costs of therapy.

Adult↗