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Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
Phenotypic antimicrobial susceptibility testing of Chlamydia trachomatis isolates from patients with persistent or
Rachel Pitt1,2, Sarah Alexander2, Catherine Ison2
1Antimicrobial Resistance and Healthcare Associated Infections (AMRHAI) Reference Unit, National Infection Service, Public Health England, London, UK.
Objectives:
Antimicrobial susceptibility data for Chlamydia trachomatis are lacking. Methodologies for susceptibility testing in C. trachomatis are not well-defined, standardized or performed routinely owing to its intracellular growth requirements. We sought to develop an assay for the in vitro susceptibility testing of C. trachomatis isolates from two patient cohorts with different clinical outcomes.
Methods:
Twenty-four clinical isolates (11 from persistently infected and 13 from successfully treated patients) were overlaid with media containing two-fold serial dilutions of azithromycin or doxycycline. After incubation, aliquots were removed from the stock inoculum (SI) and each antimicrobial concentration for total RNA extraction, complementary DNA generation and real-time PCR. The MIC was defined as the lowest antimicrobial concentration where a 95% reduction in transcription was evident in comparison with the SI for each isolate.
Results:
MICs of azithromycin were comparable for isolates from the two patient groups (82% ≤ 0.25 mg/L for persistently infected and 100% ≤ 0.25 mg/L for successfully treated patients). Doxycycline MICs were at least two-fold lower for isolates from the successfully treated patients (53.9% ≤ 0.064 mg/L) than for the persistently infected patients (100% ≥ 0.125 mg/L) (P = 0.006, Fisher's exact test). Overall, 96% of isolates gave reproducible MICs when re-tested.
Conclusions:
A reproducible assay was developed for antimicrobial susceptibility testing of C. trachomatis. MICs of azithromycin were generally comparable for the two different patient groups. MICs of doxycycline were significantly higher in the persistently infected patients. However, interpretation of elevated MICs in C. trachomatis is extremely challenging in the absence of breakpoints, or wild-type and treatment failure MIC distribution data.
Insights
A new assay allows antimicrobial susceptibility testing for Chlamydia trachomatis. Doxycycline showed higher minimum inhibitory concentrations in persistently infected patients, unlike azithromycin.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Antimicrobial susceptibility data for Chlamydia trachomatis are limited due to its intracellular growth.
- Standardized testing methods for C. trachomatis are not routinely performed.
Purpose of the Study:
- To develop a reproducible in vitro assay for antimicrobial susceptibility testing of Chlamydia trachomatis.
- To compare susceptibility profiles of C. trachomatis isolates from patients with different clinical outcomes.
Main Methods:
- Developed a novel assay using real-time PCR to determine minimum inhibitory concentrations (MICs).
- Tested 24 clinical isolates of C. trachomatis against azithromycin and doxycycline.
- Defined MIC as the lowest concentration causing a 95% reduction in transcription compared to the stock inoculum.
Main Results:
- The assay demonstrated reproducible MICs for 96% of isolates.
- Azithromycin MICs were comparable between isolates from persistently infected and successfully treated patients.
- Doxycycline MICs were significantly higher (P=0.006) in isolates from persistently infected patients compared to successfully treated patients.
Conclusions:
- A reproducible assay for C. trachomatis antimicrobial susceptibility testing was successfully developed.
- Azithromycin susceptibility was consistent across patient groups, but doxycycline showed higher MICs in persistently infected individuals.
- Interpreting elevated MICs for C. trachomatis remains challenging due to the lack of established breakpoints and reference data.
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