Unexpected reservoir of Klebsiella pneumoniae strains with transferable multiple drug resistance causing clinical sepsis in newborns.
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Biomedical subjects
Publications and source records attributed to V Krcméry.
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The aim of the study was to monitor the prevalence of pathogens and development of resistance in bacteria isolated from bacteremic patients. Five University Clinics and/or Regional Hospitals in the Slovak Republic participated in the study and a total of 421 isolates were collected in the second half of the year 2002. The most prevalent organisms were coagulase-negative staphylococci (CONS) (19%), Staphylococcus aureus (18.3%), among Gram-negative bacteria Escherichia coli (13.3%), Klebsiella pneumoniae (11.4%) and Pseudomonas aeruginosa (7.8%) followed by enterococci, Acinetobacter baumannii and Enterobacter sp. All CONS and S. aureus were susceptible to vancomycin; resistance to oxacillin was observed for 55% of the CONS and only for 4% of S. aureus isolates. A higher prevalence of resistance to erythromycin, clindamycin, gentamicin and ofloxacin was found in CONS in comparison to S. aureus. Enterococcus sp. isolates were fully susceptible to vancomycin and teicoplanin. Gentamicin, amoxicillin/clavulanate, third generation cephalosporins and ciprofloxacin showed good activity against E. coli. Although 17% of K. pneumoniae isolates were resistant to ciprofloxacin, it was the most effective drug against K. pneumoniae; the prevalence of resistance to other antibiotics was rather higher. Gentamicin and ciprofloxacin were the most active against Enterobacter sp. isolates and ceftazidime and meropenem against P. aeruginosa.
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This study prospectively investigated all 157 cases of Acinetobacter baumannii bacteremia occurring in major university hospitals or tertiary care institutions in Slovakia during 1999 in order to determine the antimicrobial susceptibility, risk factors and outcome. Resistance to meropenem was 7.4, gentamicin 35.6, amikacin 26.5, cefepime 20.4 and ciprofloxacin 32.7%, but was only 17.3% to cefoperazone/sulbactam or ampicillin/sulbactam. Antimicrobial susceptibility of A. baumanii was lowest among isolates from cancer patients (ceftazidime 58%, piperacillin/tazobactam 52% and azthreonam 48%; p < or = 0.01-0.001). In univariate analysis, several risk factors, such as wound infection (p < or = 0.01) and ventilatory support (p < or = 0.0001), were significantly related to A. baumannii bacteremia in surgical patients. Neutropenia (p < or = 0.0001), antineoplastic chemotherapy (p < or = 0.0001) and prior antibiotic therapy (p < or = 0.0006) were significant risk factors for A. baumannii bacteremia in cancer patients. In addition, ventilatory support and surgery (p < or = 0.0001) and prior antibiotic therapy (p < or = 0.01) were significantly related to A. baumannii bacteremia in children. Colonization at other body sites (p < or = 0.05), diabetes mellitus (p < or = 0.04) and decubital ulcers/burns (p < or = 0.002) as underlying disease were significantly related to death due to A. baumannii bacteremia. In a multiple logistic regression model, decubital ulcers/burns as underlying disease (p < or = 0.0006; relative risk 5.08) and nosocomial pneumonia (p < or = 0.045; relative risk 5.08) were independent predictors of mortality. Mortality was similar between cancer and surgical patients but significantly lower in children vs. adults (p < or = 0.009).
The objective of this study was to assess risk factors and the outcome of breakthrough fungaemias (BFs) occurring during fluconazole (FLU) therapy in non-cancer and non-HIV individuals. Thirty-three fungaemias occurring during therapy with FLU among a total of 310 fungaemias observed within a 10-y national survey were analysed. The agar disk diffusion method was used for antifungal susceptibility testing and the Vitek system for species identification. Univariate and multivariate analysis was performed to determine risk factors for BF. All BFs were due to species known to be susceptible to FLU: Candida albicans (25/33), C. parapsilosis (6/33) and C. guillermondii (2/33). The mean number of positive blood cultures per episode was 2.4. The MIC of Candida spp. to FLU was 0.5-8 mg/ml (all strains were susceptible in vitro). Neonatal age (< 4 weeks), very low birth weight, prior surgery, central venous catheter placement, artificial ventilation, total parenteral nutrition and C. parapsilosis were significantly related to BF in univariate analysis, but only central venous catheter placement was significantly related in multivariate analysis. However, the outcome of BFs and non-BFs was similar. All BFs occurred in non-HIV patients who were not previously treated with azoles, and were caused by in vitro FLU-susceptible species (C. albicans and C. tropicalis). Thus factors other than in vitro susceptibility play a role in BFs.
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The consumption of antimicrobial agents in a Slovakian national cancer institute from 1989-1996 was compared with resistance rates in clinically significant blood culture isolates. We observed an increase in resistance of viridans streptococci to penicillin and of enterococci to ampicillin. Resistance to vancomycin and teicoplanin was stable over the entire period despite a 20-fold increase in vancomycin consumption. Nor did we observe increased resistance to ofloxacin despite a 10-fold increase in consumption. Consumption of aminoglycosides and resistance levels were both stable. A different situation was observed with third-generation cephalosporins, where resistance of Pseudomonas aeruginosa, Stenotrophomonas maltophilia and Acinetobacter spp. to ceftazidime and cefotaxime increased with increasing consumption. Resistance of Enterobacteriaceae to cefotaxime and ceftazidime was stable. Resistance to imipenem did not change significantly. However, the number of Stenotrophomonas maltophilia bacteremias increased significantly after imipenem was introduced in 1991. Because of improved outcome in bacteremia, an increased incidence of both gram-negative and gram-positive bacteremia led to only a slight increase in associated mortality.
Sixty-seven multiresistant nosocomial Acinetobacter baumannii isolates from patients hospitalized mostly in intensive care units of seven clinics in Slovak and Czech Republic were tested to determine their ability to transfer antibiotic resistance. All isolates were resistant to kanamycin, ticarcillin, cephalothin, cefotaxime, ceftazidime, aztreonam and susceptible to carbapenems, sulbactam and ampicillin/sulbactam. Sixty-five out of 67 strains transferred resistance determinants to Escherichia coli K-12 and Proteus mirabilis P-38 recipients. Analysis of selected transconjugants by an indirect selection method showed a more variable pattern of transferred resistance determinants. The clonal spread of strains transferring resistance seems to be an additional risk for occurrence of strains resistant to ceftazidime and aztreonam.
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The aim of this multicenter survey was to assess risk factors and mortality in patients with persistent fungemia (PF). Cases of persistent fungemia, defined as positive blood culture for at least 3 causative days of antifungal therapy were selected. Forty cases of persistent fungemia (lasting more than 3 days) were compared with 270 non-persistent fungemias appearing within the same period, and analyzed by univariate and multivariate analysis for risk factors and outcome. The median number of days of positive culture was 4.4 (3 - 20): 22 episodes were due to Candida albicans, 1 due to non-albicans Candida spp., 6 episodes due to non-Candida spp. Yeasts: 15 were catheter related, 16 patients had yeast-infected surgical wounds, 12 were neutropenic, 4 cases were caused by species resistant in vitro, 2 to amphotericin B (Trichosporon spp.) and 2 to fluconazole (C. laurentii, C. glabrata). Fifteen patients (37.5%) died, 7 of whom due to fungemia. Nineteen cases had one known risk factor (10 had infected wound, 4 infected vascular catheter, 3 were neutropenic and 2 had inappropriate therapy). Fourteen cases had two known risk factors (4 had wound and infected catheter, 4 neutropenia and infected catheter, 2 neutropenia and resistant organism, 4 other combinations. Two cases had 3 known risk factors and one had 4 risk factors for persistent fungemia. Artificial ventilation, C. glabrata etiology, non-Candida spp. yeasts such as Trichosporon spp. and Cryptococcus spp. and prior surgery were significantly associated with persistent fungemia in univariate, whereas only C. glabrata etiology in multivariate analysis. Breakthrough fungemia during empiric therapy with fluconazole was also observed more frequently in patients with persistent fungemia. However, there was no difference in both attributable and overall mortality between both groups.
We investigated transfer of antibiotic resistance from 51 multiply resistant strains of Pseudomonas aeruginosa isolated from seriously ill patients in the Frankfurt University Clinics. Nine isolates directly transferred resistance to three recipient strains used. Ticarcillin and cephalothin resistance determinants were accepted from eight isolates, and in one case a kanamycin resistance determinant was transferred. The total spectrum of resistance transferred demonstrated that several donor strains transferred a different set of resistance determinants to all three recipient strains. Two P. aeruginosa isolates transferred spectrum of seven resistance determinants including ceftazidime, cefepime and aztreonam, three isolates transferred five determinants and four isolates transferred four resistance determinants. The fact that identical spectra of multiple drug resistance were transferred to recipient strains belonging to three different species (Escherichia coli, Proteus mirabilis and P. aeruginosa), indicates a broad host range in all three transferable genetic elements not observed in previous transfers from P. aeruginosa strains.
New phenomena of the antibiotic resistance in bacteria have recently appeared. The may hold present explosive development of resistance and prevent its transferability from multiple drug resistant bacteria to still sensitive ones. They may prevent the production of so-called extended-spectrum beta-lactamases (ESBLs) among Enterobacteriaceae producing resistance virtually to all penicillins and cephalosporins with exception of those antibiotics potentiated by clavulanic acid or sulbactam, the resistance to vancomycin in enterococci and staphylococce, and the resistance of Stenotrophomonas maltophilia. Factors participating on the development of resistance include: a) transferability of resistance genes among bacteria which explosively change susceptible strains to resistant ones, b) dosage and types of antibiotics which cause the selection pressure to certain species of bacteria, c) level of organization and strict adherence to hygienic and anti-epidemic regimen starting with the entry of patients into the hospital. Analyses are necessary to check whether the patient brings resistant bacteria with a transferable resistance (with ESBLs) into the hospital. Preventive measures would be strictly applied to stop the clonal spread of resistant strains among the patients and/or hospital environment, which occurs if these strains have such opportunity. Last, but not least to be considered is the dosage, composition and rationality of administration of antibacterials, mainly in post-operative prophylaxis in intensive care units, in so-called empirical usage, etc. At the same time, it would be highly unethical to hesitate with application of antibacterials to patients when it is justified, necessary and rational. Hospital antibiotics policy should rationally decide between these alternatives in each application of antibiotics or their combinations.
More then 50 years of antibiotic era has brought to clinical use many antibiotics with, specific and also with broad spectrum activity. Excessive use of antibiotics brought and brings serious problems--the resistance of many important bacteria and so the loss of effectivity of these scarce substances. Significant negative role in this process has the transferability of the resistance genes between bacteria. Bacterial strains are able to accept block of genes for multiresistance, exchange them inter species and spread to susceptible ones. There is an important task for the 3rd millennium to reduce the prevalence of the antibiotic resistance. Changes of the empiric treatment regiments (reduction in antibiotic use, antibiotic rotation, infection control, monitoring of resistance) and the strict hospital hygiene could help to solve the problems of antibiotic resistance in the future.
A 10-year prospective survey of fungaemia in the Slovak Republic, involving 31 microbiology laboratories and 71 hospitals, was conducted from 1989-1998 (10 years): 310 fungaemias were analyzed for etiology, clinical characteristics, therapy, and outcome. C. albicans was responsible for 191 (61.6%) fungaemias, non-albicans Candida spp. (NAC) for 97 (31.3%), non-Candida yeasts for 18 (5.8%) and moulds (Fulsarium spp.) for four fungaemias. The most frequent NAC isolated from blood cultures were C. parapsilosis--30 (9.7%), C. krusei--18 (5.8%), C. tropicalis--14 (4.5%), and C. glabrata--10 (3.2%). Secular trends in etiology showed a sustaining decrease of C. albicans (from 100% in 1989 to 50.7% in 1998) and increase of NAC (from 0% in 1989-1990 to 46.3% in 1998). Non-Candida yeasts and moulds showed a stable proportion during the investigated period. There were statistically significant differences in etiology of fungaemia various subgroups of patients: non-albicans Candida spp. was significantly more frequent observed among subgroups of patients with pancreatitis and coma (53.3% vs. 31.3%, p < or = 0.02) and less frequently in the subgroup of neonates (15.0% vs. 31.3%, p < or = 0.006). Vice versa, C. albicans appeared more frequently in neonates (85%).
One hundred and eight cases of human protothecosis occurring over 25 years are reviewed. The most common species isolated was Prototheca wickerhamii, The algae have been isolated from a large number of sites but seem to have low virulence. In the majority of systemic infections there have been few symptoms. Cutaneous manifestations may vary from patient to patient but infections of immunosuppressed patients tend to be more florid. Most cases have been successfully treated by excising the lesion or with antifungals. Most strains are sensitive to 5-fluorocytosine, amphotericin B and the azoles but resistance does occur.