[Familial psoriasis pustulosa simulating impetigo herpetiformis; casuistics on the identity of psoriasis pustulosa & impetigo herpetiformis].
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BACKGROUND: Impetigo is one of the commonest childhood skin infections. Insect bites are commonly implicated in the development of impetigo. There are, however, very few data available to describe the seasonal incidences and association between the two conditions. OBJECTIVES: To describe the seasonal incidence of impetigo in England and Wales and to investigate the reported association with insect bites. METHODS: Clinical diagnoses of impetigo and insect bites were recorded from a sentinel GP network over the years 1999-2003. RESULTS: The highest mean weekly rates of impetigo were in children aged 0-4 years (84 per 100 000) and in those aged 5-14 years (54 per 100 000). In contrast, the incidence of insect bite only varied between 3 and 5 per 100 000 for males and between 5 and 9 per 100 000 for females. The relative risk (RR) for females consulting over males with impetigo was similar in children [RR 0.99 (95% CI 0.96-1.02)] and adults [RR 1.20 (1.16-1.25)]; the RR of insect bite was similar in children [RR 1.21 (1.09-1.34)] but almost twice as likely in adults [RR 2.13 (2.02-2.25)]. Insect bite peaked almost coincidentally with temperature whereas there was a lag of one-to-two 4-week periods between impetigo and temperature. CONCLUSION: There is suggestion of some degree of association between impetigo and insect bites. The improved management of patients consulting with insect bites and better use of antiseptic treatments might provide the basis for reducing the incidence of impetigo in the community.
This article reviews in detail the pathogenesis, clinical characteristics and management of impetigo in children. Impetigo is the most common bacterial skin infection of children. Most cases of nonbullous impetigo and all cases of bullous impetigo are caused by Staphylococcus aureus. The remainder of cases of nonbullous impetigo are due to group A beta hemolytic streptococci (GABHS). GABHS colonize the skin directly by binding to sites on fibronectin that are exposed by trauma. In contrast, S. aureus colonizes the nasal epithelium first; from this reservoir, colonization of the skin occurs. Patients with recurrent impetigo should be evaluated for carriage of S. aureus. Superficial, localized impetigo may be treated successfully in more than 90% of cases with topical application of mupirocin ointment. Impetigo that is widespread or involves deeper tissues should be treated with a beta-lactamase-resistant oral antibiotic. The choice of antibiotics is affected by the local prevalence of resistance to erythromycin among strains of S. aureus, antibiotic cost and availability, and issues of compliance.
Nonbullous impetigo is a common skin infection in children and is frequently caused by Staphylococcus aureus. Staphylococcal toxins and especially exfoliative toxin A are known mediators of bullous impetigo in children. It is not known whether this is also true for nonbullous impetigo. We set out to analyze clonality among clinical isolates of S. aureus from children with nonbullous impetigo living in a restricted geographical area in The Netherlands. We investigated whether staphylococcal nasal carriage and the nature of the staphylococcal strains were associated with the severity and course of impetigo. Bacterial isolates were obtained from the noses and wounds of children suffering from impetigo. Strains were genetically characterized by pulsed-field gel electrophoresis-mediated typing and binary typing, which was also used to assess toxin gene content. In addition, a detailed clinical questionnaire was filled in by each of the participating patients. Staphylococcal nasal carriage seems to predispose the patients to the development of impetigo, and 34% of infections diagnosed in the Rotterdam area are caused by one clonal type of S. aureus. The S. aureus strains harbor the exfoliative toxin B (ETB) gene as a specific virulence factor. In particular, the numbers (P = 0.002) and sizes (P < 0.001) of the lesions were increased in patients infected with an ETB-positive strain. Additional predictors of disease severity and development could be identified. The presence of a staphylococcal plasmid encoding multiple antibiotic resistance traits, as detected by binary typing, was associated with a reduction in the cure rate. Our results recognize that a combination of staphylococcal virulence and resistance genes rather than a single gene determines the development and course of nonbullous impetigo. The identification of these microbial genetic markers, which are predictive of the severity and the course of the disease, will facilitate guided individualized antimicrobial therapy in the future.
OBJECTIVE: We evaluated pertinent features of impetigo in French Guyana due to the increasing number of therapeutic failures with macrolides and fusidic acid. PATIENTS AND METHODS: A prospective study study was conducted over a 14-month period in the dermatology unit of the Cayenne hospital. Two groups of patients were identified: group 1 included patients with impetigo and group 2 patients with infected skin reactions. Epidemiological, bacteriological, toxinological (exofoliatines, leukocidine) and antibiotic data were recorded. RESULTS: Forty-one patients with impetigo and 31 patients with infected skin reactions were included. Staphylococcus infection alone was identified in most patients (68 p. 100) in the impetigo group. Exfoliatine-producing strains were strongly associated with Staphylococcus-induced bullous and non-bullous impetigo (93 p. 100) compared with other origins (impetigo with streptococcal infection or infected skin reactions). Resistance to macrolides was high (erythromycin 41 p. 100, fusidic acid 42 p. 100) for all isolated strains of Staphylococcus aureus. CONCLUSION: A sub-group of patients with impetigo was identified. These patients had pure staphylococcal infections characterized by strong association with exfoliatine production. The rate of resistance to macrolides was particularly high in this sub-group. Resistance to fusidic acid was high for all Staphylococcus strains isolated.
BACKGROUND: Impetigo is a common superficial bacterial skin infection, most frequently encountered in children. There is no standard therapy and guidelines for treatment differ widely. Treatment options include many different oral and topical antibiotics as well as disinfectants. OBJECTIVES: To assess the effects of treatments for impetigo, including waiting for natural resolution. SEARCH STRATEGY: We searched the Skin Group Specialised Trials Register (March 2002), Cochrane Central Register of Controlled Trials (CENTRAL, Issue 1 2002), the National Research Register (2002), MEDLINE (from 1966 to January 2003), EMBASE (from 1980 to March 2000) and LILACS (November 2001). We handsearched the Yearbook of Dermatology (1938-1966), the Yearbook of Drug Therapy (1949-1966), used reference lists of articles and contacted pharmaceutical companies. SELECTION CRITERIA: Randomised controlled trials of treatments for non-bullous and bullous, primary and secondary impetigo. DATA COLLECTION AND ANALYSIS: All steps in data collection were done by two independent reviewers. We performed quality assessments and data collection in two separate stages. MAIN RESULTS: We included 57 trials including 3533 participants in total which studied 20 different oral and 18 different topical treatments. CURE OR IMPROVEMENT: Topical antibiotics showed better cure rates than placebo (pooled odds ratio (OR) 6.49, 95% confidence interval (CI) 3.93 to 10.73), and no topical antibiotic was superior (pooled OR of mupirocin versus fusidic acid 1.76, 95% CI 0.69 to 2.16). Topical mupirocin was superior to oral erythromycin (pooled OR 1.22, 95% CI 1.05 to 2.97). In most other comparisons, topical and oral antibiotics did not show significantly different cure rates, nor did most trials comparing oral antibiotics. Penicillin was inferior to erythromycin and cloxacillin and there is little evidence that using disinfectant solutions improves impetigo. SIDE EFFECTS: The reported number of side effects was low. Oral antibiotic treatment caused more side effects, especially gastrointestinal ones, than topical treatment. REVIEWERS' CONCLUSIONS: Data on the natural course of impetigo are lacking. Placebo controlled trials are scarce. There is little evidence about the value of disinfecting measures. There is good evidence that topical mupirocin and topical fusidic acid are equally, or more effective than oral treatment for people with limited disease. It is unclear if oral antibiotics are superior to topical antibiotics for people with extensive impetigo. Fusidic acid and mupirocin are of similar efficacy. Penicillin was not as effective as most other antibiotics. Resistance patterns against antibiotics change and should be taken into account in the choice of therapy.
BACKGROUND: Impetigo is a common skin infection in children. The epidemiology is relatively unknown, and the choice of treatment is subject to debate. OBJECTIVE: The objective of our study was to determine the incidence and treatment of impetigo in Dutch general practice, and to assess trends between 1987 and 2001. METHODS: We used data from the first (1987) and second (2001) Dutch national surveys of general practice. All diagnoses, prescriptions and referrals were registered by the participating general practitioners (GPs), 161 and 195, respectively. RESULTS: The incidence rate of impetigo increased from 16.5 (1987) to 20.6 (2001) per 1000 person years under 18 years old (P < 0.01). In both years, the incidence was significantly higher in summer, in rural areas and in the southern region of the Netherlands, compared with winter, urban areas and northern region, respectively. Socioeconomic status was not associated with the incidence rate. From 1987 to 2001, there was a trend towards treatment with a topical antibiotic (from 43% to 64%), especially fusidic acid cream and mupirocin cream. Treatment with oral antibiotics (from 31% to 14%) and antiseptics (from 11% to 3%) was prescribed less often. CONCLUSIONS: We have shown an increased incidence of impetigo in the past decade, which may be the result of an increased tendency to seek help, or increased antibiotic resistance and virulence of Staphylococcus aureus. Further microbiological research on the marked regional difference in incidence may contribute to understanding the factors that determine the spread of impetigo. Trends in prescribing for impetigo generally follow evidence-based knowledge on the effectiveness of different therapies, rather than the national practice guideline.
OBJECTIVE: To determine the incidence of bullous impetigo in a group of homosexual men at high risk of HIV-1 infection. DESIGN: A longitudinal descriptive study (1984-9). SETTING: A private primary care and STD clinic in Sydney, Australia. SUBJECTS: 88 homosexual men documented to seroconvert to HIV-1, and 37 homosexual controls who had practised unprotected anal intercourse with another man known to be HIV-1 positive but who remained HIV-1 negative. MAIN OUTCOME MEASURE: Incidence of bullous impetigo. RESULTS: The crude annual incidence of bullous impetigo was 0.015 in subjects while they remained HIV-1 negative (10 cases) and 0.045 in early HIV-1 positive subjects (2 cases). Overall, 9% of the HIV-1 seroconverters and 9% of the HIV-1 negative controls were documented as suffering bullous impetigo over a mean of 29.2 and 39.3 months, respectively. CONCLUSIONS: Bullous impetigo in an adult could prove to be a clinical indication that a person is either infected with HIV-1 or is in close (possibly sexual) contact with a person with HIV-1 infection. If true, the recognition of bullous impetigo could provide an opportunity for behavioural intervention to limit the spread of HIV-1.
BACKGROUND: Impetigo is a common clinical problem seen in general practice. Uncertainty exists as to the most effective treatment, or indeed if treatment is necessary. AIM: To determine the most effective treatment for impetigo in a systemically well patient. DESIGN OF STUDY: Systematic review and meta-analysis. METHOD: Databases were searched for relevant studies. The Cochrane highly sensitive randomised controlled trial (RCT) search string was employed and combined with the word 'impetigo' as the MeSH term and keyword. The bibliographies of relevant articles were searched for additional references. RCTs that were either double- or observer-blind, and involved systemically well patients of any age in either primary or secondary care settings, were included. Studies that selected patients on the basis of skin swab results were excluded, as were studies that were not in English. Cure or improvement of impetigo reported at seven to 14 days from start of treatment was the primary outcome measure. Meta-analysis was performed on homogeneous studies. RESULTS: Three hundred and fifty-nine studies were identified, of which 16 met the inclusion criteria. Meta-analysis demonstrated that topical antibiotics are more effective than placebo (odds ratio [OR] = 2.69, 95% confidence interval [CI] = 1.49 to 4.86). There is weak evidence for the superiority of topical antibiotics over some oral antibiotics, such as erythromycin (OR = 0.48, 95% CI = 0.23 to 1.00). There is no significant difference between the effects of mupirocin and fusidic acid (OR = 1.76, 95% CI = 0.77 to 4.03). CONCLUSION: This review found limited high-quality evidence to inform the treatment of impetigo. From that which is available, we would recommend the use of a topical antibiotic for a period of seven days in a systemically well patient with limited disease. Further research is needed on the role of flucloxacillin and non-antibiotic treatments for impetigo.
Impetigo is a contagious superficial pyogenic infection of the skin caused by Staphylococcus aureus and/or by group A Streptococcus. Two main clinical forms are recognized: bullous impetigo and non-bullous impetigo. We present an unusual case of pustular impetigo in a 35-year-old man. The pustules were localized symmetrically in the groin and the patient was successfully treated with clarithromycin. In bullous impetigo, exfoliative toxins produced by Staphylococcus aureus are accepted as the basis for the bulla formation just below the stratum granulosum. Although clarithromycin is considered to be a second-choice therapy for bullous impetigo, it was highly effective in our case.
Streptococcal impetigo associated with atopic dermatitis has dramatically increased from 1989 to 1994 in outpatients visiting our hospital, totalling 174 cases. The most frequent causative agents were group A streptococci (Streptococcus pyogenes, 70.7%) followed by group G (19.5%) and group B (9.8%). Streptococcus was isolated singly in 28.2% of cases and in concomitant with Staphylococcus aureus (S. aureus) in 71.8%. Major clinical features of streptococcal impetigo, especially caused by group A streptococci, were non-bullous pustules with thick crusted ceiling. Impetigo caused by group G or B streptococci generally formed smaller sized pustules of fewer numbers. Impetigo was usually present, associated with severe eczematous lesions. Various degrees of fever were noticed in 32.8% (group A, 39.8%; group G, 17.6%; group B, 11.8%) during active stages. The lesions on the face often resembled Kaposi's varicelliform eruption in any group. Systemic antimicrobial agents were administered in 71.3% of cases and the remainder were treated with topical antibiotics (oxytetracycline hydrochloride) or disinfectants (povidone-iodine). Recurrence occurred within a month in 38.0% of cases treated with topical agents only and in 17.7% treated with systemic antimicrobial agents. Antimicrobial susceptibility tests and the results of treatment seem to indicate that cephems, as well as penicillins, are the first choice of treatment for streptococcal impetigo.
A total number of 104 patients with impetigo contagiosa was included in this study. They were 47 females (45.2%) and 57 males (54.8%). Their ages ranged from one month to 40 years with a median of 4 years. This study was divided into two parts: PART I (in vitro): Thirty-five patients were swabbed to determine the microbiology of impetigo contagiosa which included 33 isolates of pure S. aureus (94.3%) and 2 of a combination of S. aureus and Streptococcus pyogenes (5.7%). The antibacterial effect of tea liquor (lotion) against S. aureus proved very effective. Antibiotic sensitivity was done for all bacterial isolates of S. aureus. PART II (in vivo): The antibacterial effects of tea liquor and ointment were tested by treating 64 patients with impetigo contagiosa. Tea ointment was very effective with a cure rate of 81.3%. Forty patients were taken as controls and divided into two groups. The first one was given an ointment containing Framycetin and gramicidin (soframycin) with a cure rate of 72.2%; the other group was given oral cephalexin with a cure rate of 78.6%. To the best of our knowledge, this study was the first one which demonstrated the anti-bacterial action of crude tea in vivo, against impetigo contagiosa. Clinical data about impetigo are also included in this study.
Impetigo contagiosa in Cairo affected young children of both sexes, the face being the main site. Post-impetigo nephritis, confirmed by a low serum C3 level and by urinalysis, occurred in only 11% of cases. Streptococcus pyogenes strains were recovered from 84% of the skin lesions. Sixteen types were identified according to their T-protein, and most infections were associated with T3/B3264, T13/B3264, T5, T11, T12, T8/25/Imp 19 and T14/49; the majority of these types were also recovered from houseflies. The types isolated from cases of post-impetigo nephritis were T4 (M 60), T14/49 (M49), T8/25/Imp 19 (mostly M 55) and T11. Seventy percent of the patients infected with T4 (M 60) and 40% of those infected with T14/49 (M 49) developed nephritis. Strains isolated from the skin bore a closer resemblance to those isolated from the nose than to those found in the throat. The ASO response was poor in uncomplicated impetigo but the titre rose more aften in post-impetigo nephritis.
Impetigo, a common skin infection, has shown seasonal variation in African, Australian and Indian studies. We investigated seasonal variation of impetigo in a UK paediatric population. A total of 1552 children with impetigo were seen in the Accident and Emergency (A&E) department between 1996 and 2003. The number of impetigo cases was always higher in late summer than in winter, and furthermore, increased year on year. These changes could not be accounted for by variation in total patient numbers seen in A&E, and suggest a correlation between impetigo frequency and climatic temperature. Possible reasons for these findings include exposed skin due to loose clothing in the summer leading to more skin-to-skin contact and minor trauma.
The susceptibilities to antimicrobial agents of and distributions of antiseptic resistance genes in methicillin-resistant Staphylococcus aureus (MRSA) strains isolated between 1999 and 2004 in Japan were examined. The data of MRSA strains that are causative agents of impetigo and staphylococcal scalded skin syndrome (SSSS) were compared with those of MRSA strains isolated from patients with other diseases. The susceptibilities to antiseptic agents in MRSA isolates from patients with impetigo and SSSS were higher than those in MRSA isolates from patients with other diseases. The distribution of the qacA/B genes in MRSA strains isolated from patients with impetigo and SSSS (1.3%, 1/76) was remarkably lower than that in MRSA strains isolated from patients with other diseases (45.9%, 95/207). Epidemiologic typings of staphylococcal cassette chromosome mec (SCCmec) and pulsed-field gel electrophoresis (PFGE) showed that MRSA strains isolated from patients with impetigo and SSSS had type IV SCCmec (75/76), except for one strain, and 64.5% (49/76) of the strains had different PFGE types. In addition, the patterns of restriction digestion of all tested qacA/B plasmid in MRSA isolates having different PFGE types were identical. The results showed that a specific MRSA clone carrying qacA/B was not prevalent, but qacA/B was spread among health care-associated MRSA strains. Therefore, it was concluded that the lower distribution rate of qacA/B resulted in higher susceptibilities to cationic antiseptic agents in MRSA isolated from patients with impetigo and SSSS.