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Published on: January 17, 2014
Characterization of Streptococcus pneumoniae Macrolide Resistance and Its Mechanism in Northeast China over a 20-Year
Xiuzhen Zhou1, Jianhua Liu1, Zhijie Zhang1
1Department of Laboratory Medicine, Shengjing Hospital of China Medical University, Liaoning Clinical Research Center for Laboratory Medicine, Shenyang, China.
Abstract:
Due to the resistance of Streptococcus pneumoniae to β-lactams, macrolides, and tetracyclines, treatment alternatives have become increasingly limited worldwide. We aim to describe the characterization of erythromycin-resistant S. pneumoniae (ERSP) strains in northeastern China over a period of 20 years. A total of 1,240 ERSP strains were collected and classified into five groups based on the ages of the patients. Etest strips and Kirby-Bauer disk diffusion were performed for drug susceptibility testing. The capsule swelling test was used for capsule typing. The phenotype of drug resistance was detected by the erythromycin and clindamycin double-disk method. The ermB, ermTR, mefA, and tetM genes were detected by PCR. Among the 1,240 ERSP strains, 510 were invasive isolates, and 730 were noninvasive isolates. The results of drug susceptibility testing showed that the rates of resistance to penicillin, amoxicillin, cefotaxime, ceftriaxone, meropenem, tetracycline, trimethoprim-sulfamethoxazole, and chloramphenicol varied among the different age groups. 19F, 19A, 23F, 14, and 6B were the serotypes that were commonly found among ERSP strains. Among all strains, 99.03% (1,228/1,240) exhibited an MLSB (macrolide-lincosamide-streptogramin B) resistance phenotype, of which 1,221 strains displayed a constitutive MLSB (cMLSB) phenotype and 7 strains showed an inducible MLSB (iMLSB) phenotype. All of these strains carried the ermB gene. In contrast, only 0.97% of strains of M phenotypes were found to carry the mefA gene. Both the ermB and mefA genes were detected in 704 strains that exhibited multidrug resistance, whereas the ermTR gene was not detected. Furthermore, 1,185 tetracycline-resistant strains were found to carry the tetM gene. Macrolide antimicrobial drugs should be used cautiously for the empirical treatment of S. pneumoniae infections. IMPORTANCE This study presents a retrospective analysis using 1,240 clinical erythromycin-resistant Streptococcus pneumoniae (ERSP) isolates collected in northeastern China between January 2000 and December 2019. The serotype distribution, corresponding vaccine coverage, as well as resistance phenotypes, genes, and mechanisms to macrolide and tetracycline of these isolates were systematically described, analyzed, and discussed. We hope that this study will inform clinicians in their respective regions when selecting antimicrobial agents. We also hope that this study is useful for researchers in related fields. Finally, we emphasize in this study that vaccination is the best preventive measure for S. pneumoniae infection considering its resistance to commonly used antibiotics. The determination of the S. pneumoniae serotype distribution also provides valuable empirical evidence for local health authorities when introducing appropriate vaccines in a specific area.
Insights
Erythromycin-resistant Streptococcus pneumoniae (ERSP) strains in China show high resistance to macrolides, primarily due to the ermB gene. Vaccination remains the best preventive measure against S. pneumoniae infections.
Area of Science:
- Microbiology
- Antimicrobial Resistance
- Epidemiology
Background:
- Streptococcus pneumoniae resistance to common antibiotics like macrolides and tetracyclines is a growing global concern.
- Treatment options for S. pneumoniae infections are becoming increasingly limited worldwide.
- Characterizing erythromycin-resistant S. pneumoniae (ERSP) strains is crucial for understanding resistance patterns and guiding treatment strategies.
Purpose of the Study:
- To characterize erythromycin-resistant Streptococcus pneumoniae (ERSP) strains in northeastern China over a 20-year period.
- To analyze serotype distribution, drug resistance phenotypes, and resistance genes in ERSP isolates.
- To provide data to inform clinicians and public health officials on antimicrobial use and vaccination strategies.
Main Methods:
- Retrospective analysis of 1,240 ERSP strains collected between 2000 and 2019.
- Drug susceptibility testing using Etest strips and Kirby-Bauer disk diffusion.
- Capsule typing via capsule swelling test, and detection of resistance genes (ermB, ermTR, mefA, tetM) using PCR.
Main Results:
- The majority of ERSP strains (99.03%) exhibited an MLSB resistance phenotype, predominantly linked to the ermB gene.
- The M phenotype, associated with the mefA gene, was found in only 0.97% of strains.
- Common serotypes included 19F, 19A, 23F, 14, and 6B, with widespread resistance to other antibiotics like penicillin and tetracycline (tetM gene).
Conclusions:
- The ermB gene is the primary mechanism for macrolide resistance in ERSP strains in northeastern China.
- Clinicians should exercise caution when using macrolides for empirical treatment of S. pneumoniae infections.
- Vaccination is emphasized as the most effective preventive measure against S. pneumoniae, and serotype data can guide local vaccine policies.

