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Updated: Mar 31, 2026

Experimental Human Pneumococcal Carriage
Published on: February 15, 2013
Group A beta-hemolytic streptococcal pharyngitis and carriage rate among Egyptian children: a case-control study
Shereen Mohamed Abd El-Ghany1, Abeer Ahmed Abdelmaksoud, Sally Mohamed Saber
1Dr. Shereen Mohamed Abd El-Ghany, Pediatrics Department,, Faculty of Medicine,, Ain Shams University,, Abbassia, Cairo 11566,, Egypt, shereen22eg@yahoo.com.
Insights
Antibiotic resistance in group A streptococci (GAS) is a growing concern in Egypt. This study found high resistance rates to macrolides and an alarming increase in penicillin MIC90 among children with acute pharyngitis.
Area of Science:
- Pediatric Infectious Diseases
- Microbiology
- Antimicrobial Resistance
Background:
- Improper antibiotic prescription for acute pharyngitis contributes to group A streptococci (GAS) carrier states and antibiotic resistance.
- Understanding GAS antimicrobial susceptibility is crucial for effective treatment and public health in Egypt.
Purpose of the Study:
- To determine the frequency and antimicrobial susceptibility patterns of GAS in Egyptian children with acute pharyngitis.
- To compare GAS prevalence and resistance in symptomatic children versus asymptomatic carriers.
Main Methods:
- A case-control study was conducted involving children with acute pharyngitis and asymptomatic controls.
- Throat swabs were cultured for GAS, and antimicrobial susceptibility testing was performed using the disc diffusion method.
- McIsaac scores and rapid antigen detection tests (RADT) were evaluated for diagnostic accuracy.
Main Results:
- GAS pharyngitis was diagnosed in 42.2% of cases, and 16% of controls were carriers.
- All GAS isolates from cases were sensitive to penicillin, but with a high MIC90 (0.12 µg/mL).
- High macrolide resistance (70%) was observed in cases, with 65.1% exhibiting the cMLSB phenotype. Control isolates showed 12.5% macrolide resistance and 37.5% tetracycline resistance.
Conclusions:
- An elevated MIC90 for penicillin against GAS is a significant concern.
- High-level macrolide resistance in GAS isolates necessitates careful antibiotic selection for pharyngitis treatment.
Background:
Improper prescription of antibiotics for treatment of acute pharyngitis predisposes to emergence of a carrier state and antibiotic-resistant strains of group A streptococci (GAS). We sought to identify the frequency and antimicrobial susceptibility patterns of group A streptococci among Egyptian children with acute pharyngitis compared with asymptomatic children.
Design And Setting:
Case-control study conducted from September 2013 to August 2014 at a pediatric outpatient clinic in Egypt.
Patients And Methods:
Throat swabs were collected from children with acute pharyngitis and from asymptomatic children. We evaluated the accuracy of McIsaac scores and the rapid antigen detection test (RADT) for diagnosis of GAS pharyngitis with throat culture as a reference test. Antimicrobial susceptibility testing of GAS isolates was done by the disc diffusion method.
Results:
Of 142 children with acute pharyngitis (cases) and 300 asymptomatic children (controls) (age range, 4-16 years), GAS pharyngitis was diagnosed in 60/142 children (42.2%); 48/300 (16%) were found to be carriers. All GAS isolates in the case group were sensitive to penicillin; however, an MIC90 (0.12 micro g/mL) for penicillin is high and an alarming sign. The resistance rate to macrolides was 70% with the cMLSB phenotype in 65.1%. The sensitivities and specificities were 78.3% and 73.2% for McIsaac score of >=4 and 81.1% and 93.9% for RADT, respectively. GAS isolates in the control group were 100% sensitive to penicillin, while 12.5% and 37.5% were resistant to macrolides and tetracycline, respectively.
Conclusion:
An increased MIC90 for GAS isolates to penicillin is an alarming sign. A high frequency of resistance to macrolides was also observed.
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