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1.
Clin Transl Sci ; 17(7): e13870, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38952168

ABSTRACT

The AIDA randomized clinical trial found no significant difference in clinical failure or survival between colistin monotherapy and colistin-meropenem combination therapy in carbapenem-resistant Gram-negative infections. The aim of this reverse translational study was to integrate all individual preclinical and clinical pharmacokinetic-pharmacodynamic (PKPD) data from the AIDA trial in a pharmacometric framework to explore whether individualized predictions of bacterial burden were associated with the trial outcomes. The compiled dataset included for each of the 207 patients was (i) information on the infecting Acinetobacter baumannii isolate (minimum inhibitory concentration, checkerboard assay data, and fitness in a murine model), (ii) colistin plasma concentrations and colistin and meropenem dosing history, and (iii) disease scores and demographics. The individual information was integrated into PKPD models, and the predicted change in bacterial count at 24 h for each patient, as well as patient characteristics, was correlated with clinical outcomes using logistic regression. The in vivo fitness was the most important factor for change in bacterial count. A model-predicted growth at 24 h of ≥2-log10 (164/207) correlated positively with clinical failure (adjusted odds ratio, aOR = 2.01). The aOR for one unit increase of other significant predictors were 1.24 for SOFA score, 1.19 for Charlson comorbidity index, and 1.01 for age. This study exemplifies how preclinical and clinical anti-infective PKPD data can be integrated through pharmacodynamic modeling and identify patient- and pathogen-specific factors related to clinical outcomes - an approach that may improve understanding of study outcomes.


Subject(s)
Acinetobacter baumannii , Anti-Bacterial Agents , Meropenem , Microbial Sensitivity Tests , Humans , Acinetobacter baumannii/drug effects , Acinetobacter baumannii/isolation & purification , Meropenem/pharmacokinetics , Meropenem/administration & dosage , Meropenem/pharmacology , Middle Aged , Female , Male , Anti-Bacterial Agents/pharmacokinetics , Anti-Bacterial Agents/administration & dosage , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Colistin/pharmacokinetics , Colistin/administration & dosage , Adult , Aged , Animals , Treatment Outcome , Mice , Acinetobacter Infections/drug therapy , Acinetobacter Infections/microbiology , Translational Research, Biomedical , Drug Therapy, Combination/methods , Models, Biological
2.
J Korean Med Sci ; 39(25): e208, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38952349

ABSTRACT

A 30-year-old Korean man with myelodysplastic syndrome admitted hospital due to undifferentiated fever and recurrent skin lesions. He received combination therapy with high doses of meropenem, tigecycline and amikacin, yielding carbapenem resistant Klebsiella pneumoniae (CRKP) harboring K. pneumoniae carbapenemase (KPC)-2 from blood cultures on hospital day (HD) 23. Ceftazidime/avibactam was started at HD 37 and CRKP was eradicated from blood cultures after 5 days. However, ceftazidime/avibactam-resistant CRKP carrying KPC-44 emerged after 26 days of ceftazidime/avibactam treatment and then ceftazidime/avibactam-resistant, carbapenem-susceptible K. pneumoniae carrying KPC-135 was isolated on HD 65. The 3-D homology of KPC protein showed that hot spot changes in the omega loop could be attributed to ceftazidime/avibactam resistance and loss of carbapenem resistance. Whole genome sequencing of serial isolates supported that phenotypic variation was due to clonal evolution than clonal replacement. The treatment regimen was changed from CAZ/AVI to meropenem-based therapy (meropenem 1 g iv q 8 hours and amikacin 600 mg iv per day) starting with HD 72. CAZ/AVI-susceptible CRKP was presented again from blood cultures on HD 84, and the patient expired on HD 85. This is the first Korean report on the acquisition of ceftazidime/avibactam resistance through the emergence of blaKPC variants.


Subject(s)
Anti-Bacterial Agents , Azabicyclo Compounds , Bacteremia , Ceftazidime , Drug Combinations , Klebsiella Infections , Klebsiella pneumoniae , Microbial Sensitivity Tests , beta-Lactamases , Humans , Ceftazidime/therapeutic use , Ceftazidime/pharmacology , Klebsiella pneumoniae/isolation & purification , Klebsiella pneumoniae/genetics , Klebsiella pneumoniae/drug effects , Male , Azabicyclo Compounds/therapeutic use , Adult , Anti-Bacterial Agents/therapeutic use , Anti-Bacterial Agents/pharmacology , beta-Lactamases/genetics , beta-Lactamases/metabolism , Klebsiella Infections/drug therapy , Klebsiella Infections/microbiology , Bacteremia/drug therapy , Bacteremia/microbiology , Carbapenems/therapeutic use , Carbapenems/pharmacology , Whole Genome Sequencing , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Meropenem/therapeutic use , Meropenem/pharmacology , Drug Resistance, Multiple, Bacterial/genetics
3.
Arch Virol ; 169(8): 156, 2024 Jul 05.
Article in English | MEDLINE | ID: mdl-38967872

ABSTRACT

Infections caused by multidrug-resistant (MDR) bacteria are a growing global concern. Enterobacter cloacae complex (ECC) species are particularly adept at developing antibiotic resistance. Phage therapy is proposed as an alternative treatment for pathogens that no longer respond to antibiotics. Unfortunately, ECC phages are understudied when compared to phages of many other bacterial species. In this Ghanaian-Finnish study, we isolated two ECC strains from ready-to-eat food samples and three novel phages from natural waters against these strains. We sequenced the genomic DNA of the novel Enterobacter phages, fGh-Ecl01, fGh-Ecl02, and fGh-Ecl04, and assessed their therapeutic potential. All of the phages were found to be lytic, easy to propagate, and lacking any toxic, integrase, or antibiotic resistance genes and were thus considered suitable for therapy purposes. They all were found to be related to T4-type viruses: fGh-Ecl01 and fGh-Ecl04 to karamviruses and fGh-Ecl02 to agtreviruses. Testing of Finnish clinical ECC strains showed promising susceptibility to these novel phages. As many as 61.1% of the strains were susceptible to fGh-Ecl01 and fGh-Ecl04, and 7.4% were susceptible to fGh-Ecl02. Finally, we investigated the susceptibility of the newly isolated ECC strains to three antibiotics - meropenem, ciprofloxacin, and cefepime - in combination with the novel phages. The use of phages and antibiotics together had synergistic effects. When using an antibiotic-phage combination, even low concentrations of antibiotics fully inhibited the growth of bacteria.


Subject(s)
Anti-Bacterial Agents , Bacteriophages , Enterobacter cloacae , Enterobacter cloacae/virology , Enterobacter cloacae/drug effects , Ghana , Bacteriophages/genetics , Bacteriophages/isolation & purification , Bacteriophages/physiology , Bacteriophages/classification , Anti-Bacterial Agents/pharmacology , Phage Therapy/methods , Genome, Viral , Enterobacteriaceae Infections/therapy , Enterobacteriaceae Infections/microbiology , Drug Resistance, Multiple, Bacterial , Finland , Humans , Microbial Sensitivity Tests , Ciprofloxacin/pharmacology , Meropenem/pharmacology
4.
BMC Infect Dis ; 24(1): 631, 2024 Jun 24.
Article in English | MEDLINE | ID: mdl-38914964

ABSTRACT

BACKGROUND: Acinetobacter baumannii is a health threat due to its antibiotic resistance. Herein, antibiotic susceptibility and its association with the Toxin-antitoxin (TA) system genes in A. baumannii clinical isolates from Iran were investigated. Next, we prepared meropenem-loaded chitosan nanoparticles (MP-CS) and investigated their antibacterial effects against meropenem-susceptible bacterial isolates. METHODS: Out of 240 clinical specimens, 60 A. baumannii isolates were assessed. Antibiotic resistance of the isolates against conventional antibiotics was determined alongside investigating the presence of three TA system genes (mazEF, relBE, and higBA). Chitosan nanoparticles were characterized in terms of size, zeta potential, encapsulation efficiency, and meropenem release activity. Their antibacterial effects were assessed using the well diffusion method, minimum inhibitory concentration (MIC), and colony-forming unit (CFU) counting. Their cytotoxic effects and biocompatibility index were determined via the MTT, LDH, and ROS formation assays. RESULTS: Ampicillin, ceftazidime, and colistin were the least effective, and amikacin and tobramycin were the most effective antibiotics. Out of the 60 isolates, 10 (16.7%), 5 (8.3%), and 45 (75%) were multidrug-resistant (MDR), extensively drug-resistant (XDR), and pandrug-resistant (PDR), respectively. TA system genes had no significant effect on antibiotic resistance. MP-CS nanoparticles demonstrated an average size of 191.5 and zeta potential of 27.3 mV alongside a maximum encapsulation efficiency of 88.32% and release rate of 69.57%. MP-CS nanoparticles mediated similar antibacterial effects, as compared with free meropenem, against the A. baumannii isolates with significantly lower levels of meropenem. MP-CS nanoparticles remarkably prevented A549 and NCI-H292 cell infection by the A. baumannii isolates alongside demonstrating a favorable biocompatibility index. CONCLUSION: Antibiotic-loaded nanoparticles should be further designed and investigated to increase their antibacterial effect against A. baumannii and assess their safety and applicability in vivo settings.


Subject(s)
Acinetobacter Infections , Acinetobacter baumannii , Anti-Bacterial Agents , Chitosan , Meropenem , Microbial Sensitivity Tests , Nanoparticles , Acinetobacter baumannii/drug effects , Meropenem/pharmacology , Chitosan/pharmacology , Chitosan/chemistry , Chitosan/analogs & derivatives , Anti-Bacterial Agents/pharmacology , Humans , Nanoparticles/chemistry , Acinetobacter Infections/microbiology , Acinetobacter Infections/drug therapy , Iran , Polyphosphates/pharmacology , Polyphosphates/chemistry
5.
Eur J Med Res ; 29(1): 331, 2024 Jun 16.
Article in English | MEDLINE | ID: mdl-38880888

ABSTRACT

BACKGROUND: Carbapenem-resistant Acinetobacter baumannii (CRAB) infections are one of the most common causes of nosocomial infections and have high mortality rates due to difficulties in treatment. In this study, the in vitro synergistic interactions of the colistin (CT)-meropenem (MEM) combination and patient clinical outcomes were compared in CRAB-infected patients that receive CT-MEM antimicrobial combination therapy. In addition, in vitro synergistic interactions of MEM-ertapenem (ETP), MEM-fosfomycin (FF) and CT-FF antimicrobial combinations were investigated. Finally, the epsilometer (E) test and checkerboard test results were compared and the compatibility of these two tests was evaluated. METHODS: Twenty-one patients were included in the study. Bacterial identification was performed with MALDI-TOF, and antimicrobial susceptibility was assessed with an automated system. Synergy studies were performed using the E test and checkerboard method. RESULTS: For the checkerboard method, the synergy rates for CT-MEM, MEM-FF, MEM-ETP and CT-FF were 100%, 52.3%, 23.8% and 28.5%, respectively. In the E test synergy tests, synergistic effects were detected for two isolates each in the CT-MEM and CT-FF combinations. Microbial eradication was achieved in nine (52.9%) of the 17 patients that received CT-MEM combination therapy. The agreement between the E test and the checkerboard test was 6.5%. CONCLUSIONS: A synergistic effect was found with the checkerboard method for the CT-MEM combination in all isolates in our study, and approximately 70% of the patients benefited from treatment with this combination. In addition, more than half of the isolates showed a synergistic effect for the MEM-FF combination. Combinations of CT-MEM and MEM-FF may be options for the treatment of CRAB infections. However, a comprehensive understanding of the potential of the microorganism to develop resistant mutants under applied exposures, as well as factors that directly affect antimicrobial activity, such as pharmacokinetics/pharmacodynamics, is essential for providing treatment advice. We found a low rate of agreement between the E test method and the checkerboard test method in our study, in contrast to the literature. Comprehensive studies that compare clinical results with methods are needed to determine the ideal synergy test and interpretation method.


Subject(s)
Acinetobacter Infections , Acinetobacter baumannii , Anti-Bacterial Agents , Carbapenems , Colistin , Microbial Sensitivity Tests , Acinetobacter baumannii/drug effects , Humans , Colistin/pharmacology , Carbapenems/pharmacology , Male , Female , Middle Aged , Microbial Sensitivity Tests/methods , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/administration & dosage , Aged , Acinetobacter Infections/drug therapy , Acinetobacter Infections/microbiology , Adult , Drug Synergism , Aged, 80 and over , Drug Therapy, Combination/methods , Meropenem/pharmacology , Meropenem/administration & dosage
6.
Microbiol Res ; 285: 127769, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38797112

ABSTRACT

Carbapenem-resistant Klebsiella pneumoniae (CRKP) has emerged as a global threat due to its high mortality in clinical patients. However, the specific mechanisms underlying this increased mortality remain unclear. The objective of this study is to investigate how the development of a resistance phenotype contributes to the significantly higher mortality associated with this pathogen. To achieve this, a collection of isogeneic strains was generated. The clinical carbapenem-susceptible K. pneumoniae (CSKP) strain HKU3 served as the control isolate, while HKU3-KPC was created through conjugation with a blaKPC-2-bearing plasmid and served as clinical CRKP strain. Using a sepsis model, it was demonstrated that both HKU3 and HKU3-KPC exhibited similar levels of virulence. Flow cytometry, RNA-seq, and ELISA analysis were employed to assess immune cell response, M1 macrophage polarization, and cytokine storm induction, revealing that both strains elicited comparable types and levels of these immune responses. Subsequently, meropenem was utilized to treat K. pneumoniae infection, and it was found that meropenem effectively reduced bacterial load, inhibited M1 macrophage polarization, and suppressed serum cytokine production during HKU3 (CSKP) infection. However, these effects were not observed in the case of HKU3-KPC (CRKP) infection. These findings provide evidence that the high mortality associated with CRKP is attributed to its enhanced survival within the host during antibiotic treatment, resulting in a cytokine storm and subsequent host death. The development of an effective therapy for CRKP infections could significantly reduce the mortality caused by this pathogen.


Subject(s)
Anti-Bacterial Agents , Carbapenem-Resistant Enterobacteriaceae , Carbapenems , Klebsiella Infections , Klebsiella pneumoniae , Meropenem , Klebsiella pneumoniae/drug effects , Klebsiella pneumoniae/pathogenicity , Klebsiella pneumoniae/genetics , Klebsiella Infections/microbiology , Klebsiella Infections/mortality , Klebsiella Infections/drug therapy , Virulence , Anti-Bacterial Agents/pharmacology , Meropenem/pharmacology , Carbapenems/pharmacology , Animals , Mice , Carbapenem-Resistant Enterobacteriaceae/drug effects , Carbapenem-Resistant Enterobacteriaceae/genetics , Humans , Macrophages/microbiology , Macrophages/immunology , beta-Lactamases/genetics , beta-Lactamases/metabolism , Sepsis/microbiology , Sepsis/mortality , Sepsis/drug therapy , Cytokines/metabolism , Microbial Sensitivity Tests , Bacterial Proteins/genetics , Disease Models, Animal , Bacterial Load
7.
Microbiology (Reading) ; 170(5)2024 May.
Article in English | MEDLINE | ID: mdl-38739119

ABSTRACT

Introduction. Bacterial keratitis, particularly caused by Pseudomonas aeruginosa, is challenging to treat because of multi-drug tolerance, often associated with the formation of biofilms. Antibiotics in development are typically evaluated against planktonic bacteria in a culture medium, which may not accurately represent the complexity of infections in vivo.Hypothesis/Gap Statement. Developing a reliable, economic ex vivo keratitis model that replicates some complexity of tissue infections could facilitate a deeper understanding of antibiotic efficacy, thus aiding in the optimization of treatment strategies for bacterial keratitis.Methodology. Here we investigated the efficacy of three commonly used antibiotics (gentamicin, ciprofloxacin and meropenem) against Pseudomonas aeruginosa cytotoxic strain PA14 and invasive strain PA01 using an ex vivo porcine keratitis model.Results. Both strains of P. aeruginosa were susceptible to the MIC of the three tested antibiotics. However, significantly higher concentrations were necessary to inhibit bacterial growth in the minimum biofilm eradication concentration (MBEC) assay, with both strains tolerating concentrations greater than 512 mg l-1 of meropenem. When MIC and higher concentrations than MBEC (1024 mg l-1) of antibiotics were applied, ciprofloxacin exhibited the highest potency against both P. aeruginosa strains, followed by meropenem, while gentamicin showed the least potency. Despite this, none of the antibiotic concentrations used effectively cleared the infection, even after 18 h of continuous exposure.Conclusions. Further exploration of antibiotic concentrations and aligning dosing with clinical studies to validate the model is needed. Nonetheless, our ex vivo porcine keratitis model could be a valuable tool for assessing antibiotic efficacy.


Subject(s)
Anti-Bacterial Agents , Biofilms , Ciprofloxacin , Disease Models, Animal , Keratitis , Microbial Sensitivity Tests , Pseudomonas Infections , Pseudomonas aeruginosa , Animals , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/growth & development , Anti-Bacterial Agents/pharmacology , Swine , Pseudomonas Infections/drug therapy , Pseudomonas Infections/microbiology , Biofilms/drug effects , Keratitis/microbiology , Keratitis/drug therapy , Ciprofloxacin/pharmacology , Gentamicins/pharmacology , Meropenem/pharmacology
8.
Med ; 5(5): 380-382, 2024 May 10.
Article in English | MEDLINE | ID: mdl-38733970

ABSTRACT

Wagenlehner and colleagues1 demonstrated non-inferiority and superiority with respect to a primary endpoint of composite success (microbiological plus clinical) of cefepime/taniborbactam vs. meropenem in treating complicated urinary tract infections and acute pyelonephritis caused by carbapenem-susceptible gram-negative bacteria in adults. A major area of interest in real-world application of cefepime/taniborbactam is its potential role in treating carbapenem-resistant infections, which deserves further investigation.


Subject(s)
Anti-Bacterial Agents , Carbapenems , Cefepime , Urinary Tract Infections , Cefepime/therapeutic use , Cefepime/pharmacology , Humans , Anti-Bacterial Agents/therapeutic use , Anti-Bacterial Agents/pharmacology , Carbapenems/therapeutic use , Carbapenems/pharmacology , Urinary Tract Infections/drug therapy , Urinary Tract Infections/microbiology , Cephalosporins/therapeutic use , Cephalosporins/pharmacology , Pyelonephritis/drug therapy , Pyelonephritis/microbiology , Drug Combinations , Gram-Negative Bacterial Infections/drug therapy , Meropenem/therapeutic use , Meropenem/pharmacology , Borinic Acids , Carboxylic Acids
9.
Environ Int ; 187: 108729, 2024 May.
Article in English | MEDLINE | ID: mdl-38735077

ABSTRACT

Due to the specific action on bacterial cell wall, ß-lactam antibiotics have gained widespread usage as they exhibit a high degree of specificity in targeting bacteria, but causing minimal toxicity to host cells. Under antibiotic pressure, bacteria may opt to shed their cell walls and transform into L-form state as a means to evade the antibiotic effects. In this study, we explored and identified diverse optimal conditions for both Gram-negative bacteria (E. coli DH5α (CTX)) and Gram-positive bacteria (B. subtilis ATCC6633), which were induced to L-form bacteria using lysozyme (0.5 ppm) and meropenem (64 ppm). Notably, when bacteria transformed into L-form state, both bacterial strains showed varying degrees of increased resistance to antibiotics polymyxin E, meropenem, rifampicin, and tetracycline. E. coli DH5α (CTX) exhibited the most significant enhancement in resistance to tetracycline, with a 128-fold increase, while B. subtilis ATCC6633 showed a 32-fold increase in resistance to tetracycline and polymyxin E. Furthermore, L-form bacteria maintained their normal metabolic activity, combined with enhanced oxidative stress, served as an adaptive strategy promoting the sustained survival of L-form bacteria. This study provided a theoretical basis for comprehending antibiotic resistance mechanisms, developing innovative treatment strategies, and confronting global antibiotic resistance challenges.


Subject(s)
Anti-Bacterial Agents , Bacillus subtilis , Escherichia coli , Oxidative Stress , Anti-Bacterial Agents/pharmacology , Oxidative Stress/drug effects , Escherichia coli/drug effects , Bacillus subtilis/drug effects , Drug Resistance, Bacterial , Microbial Sensitivity Tests , Tetracycline/pharmacology , Meropenem/pharmacology
10.
Emerg Microbes Infect ; 13(1): 2352432, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38712634

ABSTRACT

This study investigated resistance evolution mechanisms of conjugated plasmids and bacterial hosts under different concentrations of antibiotic pressure. Ancestral strain ECNX52 was constructed by introducing the blaNDM-5-carrying IncX3 plasmid into E. coli C600, and was subjected to laboratory evolution under different concentrations of meropenem pressure. Minimal inhibitory concentrations and conjugation frequency were determined. Fitness of these strains was assessed. Whole genome sequencing and transcriptional changes were performed. Ancestral host or plasmids were recombined with evolved hosts or plasmids to verify plasmid or host factors in resistance evolution. Role of the repA mutation on plasmid copy number was determined. Two out of the four clones (EM2N1 and EM2N3) exhibited four-fold increase in MIC when exposed to a continuous pressure of 2 µg/mL MEM (1/32 MIC), by down regulating expression of outer membrane protein ompF. Besides, all four clones displayed four-fold increase in MIC and higher conjugation frequency when subjected to a continuous pressure of 4 µg/mL MEM (1/16 MIC), attributing to increasing plasmid copy number generated by repA D140Y (GAT→TAT) mutation. Bacterial hosts and conjugative plasmids can undergo resistance evolution under certain concentrations of antimicrobial pressure by reducing the expression of outer membrane proteins or increasing plasmid copy numbers.


Subject(s)
Anti-Bacterial Agents , Escherichia coli Proteins , Escherichia coli , Microbial Sensitivity Tests , Plasmids , Porins , Escherichia coli/genetics , Escherichia coli/drug effects , Plasmids/genetics , Anti-Bacterial Agents/pharmacology , Porins/genetics , Porins/metabolism , Escherichia coli Proteins/genetics , Escherichia coli Proteins/metabolism , Carbapenems/pharmacology , Meropenem/pharmacology , Mutation , Evolution, Molecular , Conjugation, Genetic , Carbapenem-Resistant Enterobacteriaceae/genetics , Carbapenem-Resistant Enterobacteriaceae/drug effects , Whole Genome Sequencing , Gene Dosage , beta-Lactamases/genetics
11.
BMC Microbiol ; 24(1): 149, 2024 Apr 27.
Article in English | MEDLINE | ID: mdl-38678219

ABSTRACT

BACKGROUND: Recognition of seasonal trends in bacterial infection and drug resistance rates may enhance diagnosis, direct therapeutic strategies, and inform preventive measures. Limited data exist on the seasonal variability of Acinetobacter baumannii. We investigated the seasonality of A. baumannii, the correlation between temperature and meropenem resistance, and the impact of temperature on this bacterium. RESULTS: Meropenem resistance rates increased with lower temperatures, peaking in winter/colder months. Nonresistant strain detection exhibited temperature-dependent seasonality, rising in summer/warmer months and declining in winter/colder months. In contrast, resistant strains showed no seasonality. Variations in meropenem-resistant and nonresistant bacterial resilience to temperature changes were observed. Nonresistant strains displayed growth advantages at temperatures ≥ 25 °C, whereas meropenem-resistant A. baumannii with ß-lactamase OXA-23 exhibited greater resistance to low-temperature (4 °C) stress. Furthermore, at 4 °C, A. baumannii upregulated carbapenem resistance-related genes (adeJ, oxa-51, and oxa-23) and increased meropenem stress tolerance. CONCLUSIONS: Meropenem resistance rates in A. baumannii display seasonality and are negatively correlated with local temperature, with rates peaking in winter, possibly linked to the differential adaptation of resistant and nonresistant isolates to temperature fluctuations. Furthermore, due to significant resistance rate variations between quarters, compiling monthly or quarterly reports might enhance comprehension of antibiotic resistance trends. Consequently, this could assist in formulating strategies to control and prevent resistance within healthcare facilities.


Subject(s)
Acinetobacter baumannii , Anti-Bacterial Agents , Meropenem , Microbial Sensitivity Tests , Seasons , Temperature , beta-Lactamases , Acinetobacter baumannii/drug effects , Acinetobacter baumannii/genetics , Meropenem/pharmacology , Anti-Bacterial Agents/pharmacology , beta-Lactamases/genetics , Adaptation, Physiological/genetics , Drug Resistance, Bacterial/genetics , Humans , Acinetobacter Infections/microbiology , Bacterial Proteins/genetics
12.
J Antimicrob Chemother ; 79(5): 1176-1181, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38562061

ABSTRACT

BACKGROUND: Patients infected with difficult-to-treat Pseudomonas aeruginosa are likely to receive meropenem (MEM) empirically before escalation to ceftolozane/tazobactam (C/T). We assessed whether pre-exposure to MEM affected C/T resistance development on C/T exposure. MATERIALS AND METHODS: Nine clinical P. aeruginosa isolates were exposed to MEM 16 mg/L for 72 h. Then, isolates were serially passaged in the presence of C/T (concentration of 10 mg/L) for 72 h as two groups: an MEM-exposed group inoculated with MEM pre-exposed isolates and a non-MEM control group. At 24 h intervals, samples were plated on drug-free and drug-containing agar (C/T concentration 16/8 mg/L) and incubated to quantify bacterial densities (log10 cfu/mL). Growth on C/T agar indicated resistance development, and resistant population was calculated by dividing the cfu/mL on C/T plates by the cfu/mL on drug-free agar. RESULTS: At 72 h, resistant populations were detected in 6/9 isolates. In five isolates, MEM exposure significantly increased the prevalence of ceftolozane/tazobactam-resistance development; the percentages of resistance population were 100%, 100%, 53.5%, 31% and 3% for the MEM-exposed versus 0%, 0%, 2%, 0.35% and ≤0.0003% in the unexposed groups. One isolate had a similar resistant population at 72 h between the two groups. The remaining isolates showed no development of resistance, regardless of previous MEM exposure. CONCLUSIONS: MEM exposure may pre-dispose to C/T resistance development and thus limit the therapeutic utility of this ß-lactam/ß-lactamase inhibitor. Resistance may be a result of stress exposure or molecular-level mutations conferring cross-resistance. Further in vivo studies are needed to assess clinical implications of these findings.


Subject(s)
Anti-Bacterial Agents , Cephalosporins , Meropenem , Pseudomonas Infections , Pseudomonas aeruginosa , Tazobactam , Pseudomonas aeruginosa/drug effects , Cephalosporins/pharmacology , Meropenem/pharmacology , Tazobactam/pharmacology , Anti-Bacterial Agents/pharmacology , Humans , Pseudomonas Infections/microbiology , Pseudomonas Infections/drug therapy , Microbial Sensitivity Tests , Serial Passage
13.
Mikrobiyol Bul ; 58(2): 135-147, 2024 Apr.
Article in Turkish | MEDLINE | ID: mdl-38676582

ABSTRACT

Pseudomonas aeruginosa is a non-fermentative gram-negative bacillus. Many virulence factors play a role in the pathogenesis of P.aeruginosa. The aim of this study was to early detection of ST111, ST175, ST235, ST253, ST395 which are named high-risk clones with increased epidemic potential due to multidrug resistance in P.aeruginosa isolates by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) method and to evaluate the relationship between high-risk clones and the presence of P.aeruginosa virulence factors and carbapenemase production genes.P.aeruginosa isolates (n= 100) found to be resistant to at least imipenem or meropenem antibiotics isolated from the various clinical samples in the medical microbiology laboratory between 01.01.2021 and 07.06.2022 were included in the study. For the detection of virulence genes uniplex polymerase chain reaction (PCR) for toxA and multiplex PCR for algD, plcN, lasB, plcH were performed in P.aeruginosa isolates. In the detection of carbapenemase genes, two separate multiplex PCRs used for blaKPC , blaNDM , blaVIM , blaOXA-48 and for blaIMP , blaSPM , blaSIM , blaGIM , blaGES . Investigation of the peaks specific to high-risk clones was performed by using VITEK®-MS (bioMérieux, France) system. P.aeruginosa isolates were mostly isolated from intensive care units (45%) and respiratory tract samples (46%). The antibiotic to which the isolates were found to be most susceptible was amikacin, while highest resistance was detected for piperacillin. In PCR results, toxA, lasB, plcH, plcN and algD were detected as 89%, 99%, 98%, 100%, 100%, respectively. When the presence of characteristic peaks belonging to high-risk clones was evaluated with MALDI-TOF MS, ST253 (7%) and ST175 (2%) were detected. The peaks specific to ST235 and ST395 clones were not detected in our study. blaVIM was detected in two isolates and blaGES-5 carbapenemase was detected in two isolates. Virulence factors were detected at high rates in both high-risk clones and other strains and no significant relationship was found between high-risk clones and virulence factors. Early detection of high-risk clones, identification of antimicrobial resistance mechanisms will help to develop strategic treatment options and prevent their worldwide spread.


Subject(s)
Polymerase Chain Reaction , Pseudomonas aeruginosa , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Virulence Factors , beta-Lactamases , Pseudomonas aeruginosa/genetics , Pseudomonas aeruginosa/isolation & purification , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/pathogenicity , Humans , beta-Lactamases/genetics , Virulence Factors/genetics , Bacterial Proteins/genetics , Pseudomonas Infections/microbiology , Anti-Bacterial Agents/pharmacology , Drug Resistance, Multiple, Bacterial/genetics , Imipenem/pharmacology , Meropenem/pharmacology , Virulence/genetics
14.
BMC Microbiol ; 24(1): 144, 2024 Apr 25.
Article in English | MEDLINE | ID: mdl-38664608

ABSTRACT

BACKGROUND: Klebsiella pneumoniae infections have become a major cause of hospital acquired infection worldwide with the increased rate of acquisition of resistance to antibiotics. Carbapenem resistance mainly among Gram negative is an ongoing problem which causes serious outbreaks dramatically limiting treatment options. This prospective cross-sectional study was designed to detect blaKPC gene from carbapenem resistant K. pneumoniae. MATERIALS AND METHODS: A totally of 1118 different clinical specimens were screened and confirmed for KPC producing K. pneumoniae phenotypically using Meropenem (10 µg) disc. The blaKPC gene was amplified from the isolates of K. pneumoniae to detect the presence of this gene. RESULT: Of the total samples processed, 18.6% (n = 36) were K. pneumoniae and among 36 K. pneumoniae, 61.1% (n = 22/36) were meropenem resistant. This study demonstrated the higher level of MDR 91.7% (n = 33) and KPC production 47.2% (n = 17) among K. pneumoniae isolates. The blaKPC gene was detected in 8.3% (n = 3) of meropenem resistant isolates. CONCLUSION: Since the study demonstrates the higher level of MDR and KPC producing K. pneumoniae isolates that has challenged the use of antimicrobial agents, continuous microbiology, and molecular surveillance to assist early detection and minimize the further dissemination of blaKPC should be initiated. We anticipate that the findings of this study will be useful in understanding the prevalence of KPC-producing K. pneumoniae in Nepal.


Subject(s)
Anti-Bacterial Agents , Bacterial Proteins , Klebsiella Infections , Klebsiella pneumoniae , Meropenem , Microbial Sensitivity Tests , Tertiary Care Centers , beta-Lactamases , Klebsiella pneumoniae/genetics , Klebsiella pneumoniae/drug effects , Klebsiella pneumoniae/isolation & purification , Klebsiella pneumoniae/enzymology , beta-Lactamases/genetics , Humans , Nepal/epidemiology , Klebsiella Infections/microbiology , Klebsiella Infections/epidemiology , Tertiary Care Centers/statistics & numerical data , Bacterial Proteins/genetics , Cross-Sectional Studies , Prospective Studies , Anti-Bacterial Agents/pharmacology , Meropenem/pharmacology , Male , Drug Resistance, Multiple, Bacterial/genetics , Female , Adult , Middle Aged , Young Adult , Aged , Adolescent
15.
Antimicrob Agents Chemother ; 68(5): e0017424, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38557171

ABSTRACT

Mycobacterium abscessus (MAB) infections pose a growing public health threat. Here, we assessed the in vitro activity of the boronic acid-based ß-lactamase inhibitor, vaborbactam, with different ß-lactams against 100 clinical MAB isolates. Enhanced activity was observed with meropenem and ceftaroline with vaborbactam (1- and >4-fold MIC50/90 reduction). CRISPRi-mediated blaMAB gene knockdown showed a fourfold MIC reduction to ceftaroline but not the other ß-lactams. Our findings demonstrate vaborbactam's potential in combination therapy against MAB infections.


Subject(s)
Anti-Bacterial Agents , Boronic Acids , Cefoxitin , Ceftaroline , Cephalosporins , Imipenem , Meropenem , Microbial Sensitivity Tests , Mycobacterium abscessus , Mycobacterium abscessus/drug effects , Meropenem/pharmacology , Boronic Acids/pharmacology , Anti-Bacterial Agents/pharmacology , Cephalosporins/pharmacology , Imipenem/pharmacology , Cefoxitin/pharmacology , Humans , Mycobacterium Infections, Nontuberculous/drug therapy , Mycobacterium Infections, Nontuberculous/microbiology , beta-Lactamase Inhibitors/pharmacology
16.
Antimicrob Agents Chemother ; 68(5): e0166923, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38564665

ABSTRACT

Japan is a country with an approximate 10% prevalence rate of carbapenem-resistant Pseudomonas aeruginosa (CRPA). Currently, a comprehensive overview of the genotype and phenotype patterns of CRPA in Japan is lacking. Herein, we conducted genome sequencing and quantitative antimicrobial susceptibility testing for 382 meropenem-resistant CRPA isolates that were collected from 78 hospitals across Japan from 2019 to 2020. CRPA exhibited susceptibility rates of 52.9%, 26.4%, and 88.0% against piperacillin-tazobactam, ciprofloxacin, and amikacin, respectively, whereas 27.7% of CRPA isolates was classified as difficult-to-treat resistance P. aeruginosa. Of the 148 sequence types detected, ST274 (9.7%) was predominant, followed by ST235 (7.6%). The proportion of urine isolates in ST235 was higher than that in other STs (P = 0.0056, χ2 test). Only 4.1% of CRPA isolates carried the carbapenemase genes: blaGES (2) and blaIMP (13). One ST235 isolate carried the novel blaIMP variant blaIMP-98 in the chromosome. Regarding chromosomal mutations, 87.1% of CRPA isolates possessed inactivating or other resistance mutations in oprD, and 28.8% showed mutations in the regulatory genes (mexR, nalC, and nalD) for the MexAB-OprM efflux pump. Additionally, 4.7% of CRPA isolates carried a resistance mutation in the PBP3-encoding gene ftsI. The findings from this study and other surveillance studies collectively demonstrate that CRPA exhibits marked genetic diversity and that its multidrug resistance in Japan is less prevailed than in other regions. This study contributes a valuable data set that addresses a gap in genotype/phenotype information regarding CRPA in the Asia-Pacific region, where the epidemiological background markedly differs between regions.


Subject(s)
Anti-Bacterial Agents , Bacterial Proteins , Carbapenems , Microbial Sensitivity Tests , Pseudomonas Infections , Pseudomonas aeruginosa , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/genetics , Pseudomonas aeruginosa/isolation & purification , Japan/epidemiology , Carbapenems/pharmacology , Anti-Bacterial Agents/pharmacology , Humans , Bacterial Proteins/genetics , Pseudomonas Infections/microbiology , Pseudomonas Infections/epidemiology , Pseudomonas Infections/drug therapy , beta-Lactamases/genetics , Genome, Bacterial/genetics , Piperacillin, Tazobactam Drug Combination/therapeutic use , Piperacillin, Tazobactam Drug Combination/pharmacology , Whole Genome Sequencing , Meropenem/pharmacology , Drug Resistance, Multiple, Bacterial/genetics , Amikacin/pharmacology
18.
BMC Microbiol ; 24(1): 126, 2024 Apr 15.
Article in English | MEDLINE | ID: mdl-38622558

ABSTRACT

This study aimed to explore the role of the two-component system Bae SR in the mechanism of drug resistance in carbapenem-resistant A. baumannii (CRAB) using molecular docking and real-time polymerase chain reaction (PCR). The two-component system Bae SR of Acinetobacter baumannii was subjected to molecular docking with imipenem, meropenem, and levofloxacin. Antibacterial assays and fluorescence quantitative PCR were used to explore protein-ligand interactions and molecular biological resistance mechanisms related to CRAB. The analysis of the two-component system in A. baumannii revealed that imipenem exhibited the highest docking energy in Bae S at - 5.81 kcal/mol, while the docking energy for meropenem was - 4.92 kcal/mol. For Bae R, imipenem had a maximum docking energy of - 4.28 kcal/mol, compared with - 4.60 kcal/mol for meropenem. The highest binding energies for Bae S-levofloxacin and Bae R-levofloxacin were - 3.60 and - 3.65 kcal/mol, respectively. All imipenem-resistant strains had minimum inhibitory concentration (MIC) values of 16 µg/mL, whereas levofloxacin-resistant strains had MIC values of 8 µg/mL. The time-sterilization curve showed a significant decrease in bacterial colony numbers at 2 h under the action of 8 µg/mL imipenem, indicating antibacterial effects. In contrast, levofloxacin did not exhibit any antibacterial activity. Fluorescence quantitative PCR results revealed significantly increased relative expression levels of bae S and bae R genes in the CRAB group, which were 2 and 1.5 times higher than those in the CSAB group, respectively, with statistically significant differences. Molecular docking in this study found that the combination of Bae SR and carbapenem antibiotics (imipenem, meropenem) exhibited stronger affinity and stability compared with levofloxacin. Moreover, the overexpression of the two-component system genes in carbapenem-resistant A. baumannii enhanced its resistance to carbapenem, providing theoretical and practical insights into carbapenem resistance in respiratory tract infections caused by A. baumannii.


Subject(s)
Acinetobacter baumannii , Carbapenems , Carbapenems/pharmacology , Meropenem/pharmacology , Molecular Docking Simulation , Real-Time Polymerase Chain Reaction , Levofloxacin/pharmacology , Anti-Bacterial Agents/pharmacology , Imipenem/pharmacology , Drug Resistance , Microbial Sensitivity Tests , beta-Lactamases/genetics
19.
BMC Microbiol ; 24(1): 122, 2024 Apr 10.
Article in English | MEDLINE | ID: mdl-38600509

ABSTRACT

BACKGROUND: Escherichia coli (E. coli) is a multidrug resistant opportunistic pathogen that can cause secondary bacterial infections in patients with COVID-19. This study aimed to determine the antimicrobial resistance profile of E. coli as a secondary bacterial infection in patients with COVID-19 and to assess the prevalence and characterization of genes related to efflux pumps and porin. METHODS: A total of 50 nonduplicate E. coli isolates were collected as secondary bacterial infections in COVID-19 patients. The isolates were cultured from sputum samples. Confirmation and antibiotic susceptibility testing were conducted by Vitek 2. PCR was used to assess the prevalence of the efflux pump and porin-related genes in the isolates. The phenotypic and genotypic evolution of antibiotic resistance genes related to the efflux pump was evaluated. RESULTS: The E. coli isolates demonstrated high resistance to ampicillin (100%), cefixime (62%), cefepime (62%), amoxicillin-clavulanic acid (60%), cefuroxime (60%), and ceftriaxone (58%). The susceptibility of E. coli to ertapenem was greatest (92%), followed by imipenem (88%), meropenem (86%), tigecycline (80%), and levofloxacin (76%). Regarding efflux pump gene combinations, there was a significant association between the acrA gene and increased resistance to levofloxacin, between the acrB gene and decreased resistance to meropenem and increased resistance to levofloxacin, and between the ompF and ompC genes and increased resistance to gentamicin. CONCLUSIONS: The antibiotics ertapenem, imipenem, meropenem, tigecycline, and levofloxacin were effective against E. coli in patients with COVID-19. Genes encoding efflux pumps and porins, such as acrA, acrB, and outer membrane porins, were highly distributed among all the isolates. Efflux pump inhibitors could be alternative antibiotics for restoring tetracycline activity in E. coli isolates.


Subject(s)
COVID-19 , Coinfection , Escherichia coli Infections , Humans , Escherichia coli , Ertapenem/pharmacology , Levofloxacin/pharmacology , Meropenem/pharmacology , Tigecycline/pharmacology , Anti-Bacterial Agents/pharmacology , Escherichia coli Infections/microbiology , Imipenem/pharmacology , Porins/genetics , Porins/pharmacology , Microbial Sensitivity Tests
20.
Antimicrob Resist Infect Control ; 13(1): 37, 2024 Apr 10.
Article in English | MEDLINE | ID: mdl-38600535

ABSTRACT

INTRODUCTION: Antimicrobial resistance (AMR) is a pressing global health concern, particularly pronounced in low-resource settings. In Ethiopia, the escalating prevalence of carbapenem-resistant Pseudomonas aeruginosa (P. aeruginosa) poses a substantial threat to public health. METHODS: A comprehensive search of databases, including PubMed, Scopus, Embase, Hinari, and Google Scholar, identified relevant studies. Inclusion criteria encompassed observational studies reporting the prevalence of meropenem-resistant P. aeruginosa in Ethiopia. Quality assessment utilized JBI checklists. A random-effects meta-analysis pooled data on study characteristics and prevalence estimates, with subsequent subgroup and sensitivity analyses. Publication bias was assessed graphically and statistically. RESULTS: Out of 433 studies, nineteen, comprising a total sample of 11,131, met inclusion criteria. The pooled prevalence of meropenem-resistant P. aeruginosa was 15% (95% CI: 10-21%). Significant heterogeneity (I2 = 83.6%) was observed, with the number of P. aeruginosa isolates identified as the primary source of heterogeneity (p = 0.127). Subgroup analysis by infection source revealed a higher prevalence in hospital-acquired infections (28%, 95% CI: 10, 46) compared to community settings (6%, 95% CI: 2, 11). Geographic based subgroup analysis indicated the highest prevalence in the Amhara region (23%, 95% CI: 8, 38), followed by Addis Ababa (21%, 95% CI: 11, 32), and lower prevalence in the Oromia region (7%, 95% CI: 4, 19). Wound samples exhibited the highest resistance (25%, 95% CI: 25, 78), while sputum samples showed the lowest prevalence. Publication bias, identified through funnel plot examination and Egger's regression test (p < 0.001), execution of trim and fill analysis resulted in an adjusted pooled prevalence of (3.7%, 95% CI: 2.3, 9.6). CONCLUSION: The noteworthy prevalence of meropenem resistance among P. aeruginosa isolates in Ethiopia, particularly in healthcare settings, underscores the urgency of implementing strict infection control practices and antibiotic stewardship. Further research is imperative to address and mitigate the challenges posed by antimicrobial resistance in the country.


Subject(s)
Anti-Infective Agents , Pseudomonas Infections , Humans , Ethiopia/epidemiology , Meropenem/pharmacology , Prevalence , Pseudomonas aeruginosa , Pseudomonas Infections/epidemiology , Drug Resistance, Bacterial
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