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1.
Nat Commun ; 13(1): 6523, 2022 11 22.
Article in English | MEDLINE | ID: mdl-36414617

ABSTRACT

Bacteria have the potential to translocate between sites in the human body, but the dynamics and consequences of within-host bacterial migration remain poorly understood. Here we investigate the link between gut and lung Pseudomonas aeruginosa populations in an intensively sampled ICU patient using a combination of genomics, isolate phenotyping, host immunity profiling, and clinical data. Crucially, we show that lung colonization in the ICU was driven by the translocation of P. aeruginosa from the gut. Meropenem treatment for a suspected urinary tract infection selected for elevated resistance in both the gut and lung. However, resistance was driven by parallel evolution in the gut and lung coupled with organ specific selective pressures, and translocation had only a minor impact on AMR. These findings suggest that reducing intestinal colonization of Pseudomonas may be an effective way to prevent lung infections in critically ill patients.


Subject(s)
Anti-Bacterial Agents , Pseudomonas aeruginosa , Humans , Pseudomonas aeruginosa/genetics , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Meropenem/pharmacology , Lung , Bacteria , Intensive Care Units
2.
Int J Antimicrob Agents ; 55(4): 105911, 2020 Apr.
Article in English | MEDLINE | ID: mdl-31991219

ABSTRACT

Mycoplasma genitalium is a sexually transmitted urogenital pathogen, and infection can result in serious symptoms. As M. genitalium is rather difficult to culture, infections are usually detected by molecular methods. Unfortunately, there has recently been a significant increase in resistance to azithromycin and moxifloxacin used for the treatment of M. genitalium infections. The increased resistance to (often empirically prescribed) M. genitalium treatments has resulted in frequent therapy failures and stresses the need for routine detection of antimicrobial resistance. In M. genitalium, antimicrobial resistance is almost always the result of DNA mutations and thus can easily be detected by molecular techniques. Regrettably, many microbiology laboratories do not use molecular techniques for the detection of bacterial antimicrobial resistance. As molecular tests are becoming available for M. genitalium, both for the establishment of infection and the detection of antimicrobial resistance, it is now more important to ensure that knowledge on the resistance mechanisms is transferred from the laboratory to the clinician. This review will provide a brief summary of the current status of antimicrobial resistance, its molecular mechanisms and the impact on the current status of M. genitalium treatment.


Subject(s)
Anti-Bacterial Agents/pharmacology , Drug Resistance, Bacterial/genetics , Mycoplasma Infections/drug therapy , Mycoplasma genitalium/drug effects , Mycoplasma genitalium/genetics , Azithromycin/therapeutic use , Doxycycline/therapeutic use , Female , Female Urogenital Diseases/drug therapy , Female Urogenital Diseases/microbiology , Humans , Male , Male Urogenital Diseases/drug therapy , Male Urogenital Diseases/microbiology , Microbial Sensitivity Tests , Moxifloxacin/therapeutic use , Mycoplasma Infections/microbiology , Polymorphism, Single Nucleotide/genetics , Sexually Transmitted Diseases, Bacterial/drug therapy
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