Invasive group A streptococcal disease in children.
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Biomedical subjects
Publications and source records attributed to F W Denny.
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During 1994 and 1995, an increase in the number and severity of group A streptococcal (GAS) infections was noted in North Carolina. Ninety-six patients had GAS recovered from blood and other sterile body fluids, abscesses, and soft tissue. The overall case fatality rate was 11% but was much higher in patients with toxic shock syndrome (55%) and necrotizing fasciitis (58%). Recent invasive GAS isolates were compared with pre-1994 invasive isolates and temporally related pharyngeal isolates by M protein serotyping, pulsed field gel electrophoresis (PFGE), and polymerase chain reaction amplification of the streptococcal pyrogenic exotoxin A gene. Serotypes M1 and M3 accounted for 50% of recent invasive isolates (1994-1995) and 58% of pharyngeal isolates (1994). The latter isolates demonstrated PFGE patterns that were identical to invasive M1 and M3 strains, suggesting that pharyngeal infections may have served as a reservoir for virulent GAS clones.
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OBJECTIVE: To evaluate a computer-assisted instruction unit covering the basic concepts of streptococcal pharyngitis for effectiveness as a learning tool. DESIGN: Randomized control trial. SETTING: A medical school associated with a tertiary care hospital. PARTICIPANTS: Third-year medical students on a pediatric clerkship from December 1, 1992, to October 31, 1993. INTERVENTION: Students were randomized into a study or a control group and given a pretest on streptococcal pharyngitis. The study group then completed the computer-assisted instruction unit. No attempt was made to distinguish among the clinical experiences of the two groups during the next 4 weeks, after which a second test on streptococcal pharyngitis was given to both groups. MAIN OUTCOME MEASURES: Outcome was measured by scores (percentage correct) from tests given at day 1 and week 4 of the clerkship. RESULTS: The posttest scores of the study group increased by an average of 12.1 above the pretest scores, but the scores of the control group were only 3.4 points higher. The difference between these increases is statistically significant (P < .01, Student's t test). CONCLUSION: Short, well-designed computer-assisted instruction units can be effective tools in medical education.
The group A streptococcus may cause pharyngitis, rheumatic fever, streptococcal toxic shock syndrome, and serious skin and soft-tissue infections. More than 50 nosocomial outbreaks have been reported since 1966. For this reason, healthcare facilities should develop policies for the diagnosis and treatment of symptomatic hospital employees, and for the recognition and management of potential outbreaks. The clinical diagnosis of streptococcal pharyngitis is unreliable. Rapid streptococcal tests may be used for initial screening, but a negative rapid test should be confirmed with a properly obtained culture. Penicillin remains the treatment of choice, but new alternatives now include a 5-day course of either azithromycin or cefpodoxime.
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Acute respiratory infections are the most frequent illnesses of the human host. Most infections are caused by viruses and bacteria; the proportion caused by viruses is much greater. The viruses most frequently involved are adenoviruses, influenza viruses, parainfluenza viruses, respiratory syncytial viruses, and rhinoviruses. Acute respiratory infections are more common in young children, have rather specific seasonal occurrences, and some agents are associated with specific respiratory syndromes. Risk factors associated with increased incidence or severity of respiratory infections are occurrence in the very young or the elderly; crowding; being male; inhaled pollutants; anatomic, metabolic, genetic or immunologic disorders; and malnutrition, including vitamin or micronutrient deficiency. Respiratory infections are a much greater problem in developing countries than in developed countries and are the leading causes of death in children under 5 yr of age. The same agents cause infections, and the incidence of total respiratory infections is the same as in the developed countries. The precise causes of increased morbidity and mortality in the developing world are unclear, but crowding, inhaled pollutants, and malnutrition are likely candidates. The interactive role of viruses and bacteria is not clear but may play a role in increased severity of respiratory infections.
We conducted a randomized controlled trial to determine whether a home-based intervention program could reduce infant passive smoking and lower respiratory illness. The intervention consisted of four nurse home visits during the first 6 months of life, designed to assist families to reduce the infant's exposure to tobacco smoke. Among the 121 infants of smoking mothers who completed the study, there was a significant difference in trend over the year between the intervention and the control groups in the amount of exposure to tobacco smoke; infants in the intervention group were exposed to 5.9 fewer cigarettes per day at 12 months. There was no group difference in infant urine cotinine excretion. The prevalence of persistent lower respiratory symptoms was lower among intervention-group infants of smoking mothers whose head of household had no education beyond high school: intervention group, 14.6%; and controls, 34.0%.
Rheumatic fever has been considered a major problem among civilians in the United States and elsewhere for 100 years but was not recognized as a concern among the U.S. military until World War II. At that time the only available control measure was antimicrobial prophylaxis of recurrent rheumatic fever. Subsequent studies, conducted primarily by the Streptococcal Diseases Laboratory of the Armed Forces Epidemiological Board, demonstrated that rheumatic fever could be prevented by the treatment of patients with streptococcal pharyngitis and by the administration of penicillin for the prophylaxis of streptococcal infections in large groups. With the use of available preventive measures, rheumatic fever virtually disappeared by the 1970s. In 1985, however, rheumatic fever and severe streptococcal infections reappeared, first in the Rocky Mountain area. It is speculated that this reappearance was due to special strains of group A streptococci and--in severe cases--the production of pyrogenic exotoxins. At present, cases continue to occur but not at the level seen in the late 1980s.
OBJECTIVES: Infants from families of low socioeconomic status are said to suffer higher rates of lower respiratory illness, but this assertion has not been carefully examined. METHODS: We studied the frequency and determinants of lower respiratory illness in infants of different socioeconomic status (n = 393) by analyzing data from a community-based cohort study of respiratory illness during the first year of life in central North Carolina. RESULTS: The incidence of lower respiratory illness was 1.41 in the low socioeconomic group, 1.26 in the middle group, and 0.67 in the high group. The prevalence of persistent respiratory symptoms was 39% in infants in the low socioeconomic group, 24% in infants in the middle group, and 14% in infants in the high group. The odds of persistent respiratory symptoms in infants of low and middle socioeconomic status were reduced after controlling for environmental risk factors for lower respiratory illness. Enrollment in day care was associated with an increased risk of persistent symptoms among infants of high but not low socioeconomic status. CONCLUSIONS: Infants of low socioeconomic status are at increased risk of persistent respiratory symptoms. This risk can be partly attributed to environmental exposures, most of which could be changed.
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Between 1984 and 1987 reported pertussis cases in North Carolina increased threefold. Pertussis immunization rates were examined for those years in three one-year cohorts drawn from a random selection of North Carolina birth records. The percentage of children immunized with three DTPs at eight months of age was 58.1, 58.6, and 56.7 for the three cohorts. Only 20.5 percent of 117 reported pertussis cases in children 9-36 months of age during the last 10 years were adequately immunized. The low pertussis immunization rate may have contributed to the recent increase in pertussis cases in North Carolina.
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