Molecular mechanisms of Chlamydia trachomatis resistance to antimicrobial drugs

被引:35
作者
Mestrovic, Tomislav [1 ,2 ]
Ljubin-Sternak, Suncanica [3 ,4 ]
机构
[1] Polyclin Dr Zora Profozic, Clin Microbiol & Parasitol Unit, Bosutska 19, Zagreb 10000, Croatia
[2] Univ North, Univ Ctr Varazdin, Dept Biomed Sci, 104 Brigade 3, Varazhdin 42000, Croatia
[3] Teaching Inst Publ Hlth Dr Andrija Stamper, Clin Microbiol Dept, Mirogojska Cesta 16, Zagreb 10000, Croatia
[4] Univ Zagreb, Sch Med, Med Microbiol Dept, Salata 3, Zagreb 10000, Croatia
来源
FRONTIERS IN BIOSCIENCE-LANDMARK | 2018年 / 23卷
关键词
Chlamydia trachomatis; Antibiotics; Antimicrobial resistance; Genetics; Mutations; Review; IN-VITRO SELECTION; ANTIBIOTIC-RESISTANCE; TETRACYCLINE RESISTANCE; HAEMOPHILUS-INFLUENZAE; INTRACELLULAR PATHOGEN; RIBOSOMAL MUTATIONS; GENE-TRANSFER; RPOB GENE; SUSCEPTIBILITY; AZITHROMYCIN;
D O I
10.2741/4611
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chlamydia trachomatis (C. trachomatis) is a leading cause of bacterial sexually transmitted infections in developed and undeveloped countries, and therefore a global public health issue. In an era of increasing bacterial resistance to antibiotics, resistance has been an exceedingly rare phenomenon in C. trachomatis; however, clinical treatment failures attributed to multidrug-resistant C. trachomatis strains have been described on several occasions. Cell culture systems using McCoy cells and subsequent immunofluorescent staining are still the most common methodology used for antimicrobial susceptibility testing, but the presence of resistance markers should be appraised by further genetic analysis. Azithromycin resistance of C. trachomatis is often a result of the mutations in the peptidyl transferase region of 23S rRNA genes, tetracycline resistance is usually linked to the presence of foreign genomic islands integrated in chlamydial chromosome, whereas a predominant mechanism of fluoroquinolone resistance is a point mutation in the gyrA quinolone-resistance-determining region. A nucleotide substitution in rpoB gene is responsible for rifampin resistance, and different mechanisms have been involved in the development of resistance to aminoglycosides, lincomycin and sulphonamide/ trimethoprim combinations.
引用
收藏
页码:656 / 670
页数:15
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