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Biomedical subjects

G A Noskin

Publications and source records attributed to G A Noskin.

At least 19 recordsLinked to original sources

Treatment of 21 cases of invasive mucormycosis with amphotericin B colloidal dispersion.

The aim of this study was to review the characteristics and outcome of 21 patients with invasive mucormycosis treated with amphotericin B colloidal dispersion (ABCD) in five phase I and phase II studies. Mucormycosis is an increasing concern in immunocompromised patients, in whom mortality exceeds 60%. The standard treatment has been amphotericin B combined with surgical debridement. Twenty-one patients with invasive mucormycosis treated with ABCD, a lipid complex of amphotericin B and cholesteryl sulfate, were identified. Patients were given ABCD on the basis of pre-existing renal insufficiency, development of nephrotoxicity during amphotericin B therapy, or fungal infection that failed to respond to amphotericin B. Response could be evaluated in 20 patients, all of whom had bone marrow or organ transplantation, haematologic malignancies, or diabetes. Infection was disseminated in six patients and localised to the sinuses, lower respiratory tract, or skin in the other patients. ABCD was given at a mean dose of 4.8 mg/kg per infusion for a mean duration of 37 days. Twelve of 20 patients responded to ABCD therapy. Response rates were similar when patients were treated with ABCD alone (4/7) and ABCD combined with surgery (8/13), with more complete response obtained in the latter group. No difference in response rate was observed in leukaemic patients (3/5) or transplant recipients (6/10) compared to diabetics (3/5). No renal or hepatic toxicity was observed. These results compare favourably with the results of standard treatment and suggest that ABCD combined with surgery may be a useful therapy in patients with mucormycosis.

Adolescent↗

Paenibacillus macerans pseudobacteremia resulting from contaminated blood culture bottles in a neonatal intensive care unit.

Paenibacillus species are gram-positive, rod-shaped, spore-forming aerobes that are abundant in nature and closely related to Bacillus. Between June 24 and June 30, 1999, 8 neonates in our neonatal intensive care unit had positive blood cultures for Paenibacillus macerans. This cluster of positive blood cultures with an unusual pathogen suggested a pseudoepidemic. Investigation revealed that the most likely etiology of the pseudobacteremia was environmental contamination of the rubber stoppers in blood culture bottles. This was confirmed by environmental sampling and simulated inoculation studies. This pseudobacteremia outbreak highlights the importance of adhering to well-established methods for blood culture collection and ongoing infection control surveillance.

Bacillaceae Infections↗

Resistance to linezolid: characterization of mutations in rRNA and comparison of their occurrences in vancomycin-resistant enterococci.

To assess the potential for emergence of resistance during the use of linezolid, we tested 10 clinical isolates of vancomycin-resistant enterococci (VRE) (four Enterococcus faecalis, five Enterococcus faecium, and one Enterococcus gallinarum) as well as a vancomycin-susceptible control (ATCC 29212) strain of E. faecalis. The enterococci were exposed to doubling dilutions of linezolid for 12 passes. After the final passage, the linezolid plate growing VRE contained a higher drug concentration with E. faecalis than with E. faecium. DNA sequencing of the 23S rRNA genes revealed that linezolid resistance in three E. faecalis isolates was associated with a guanine to uracil transversion at bp 2576, while the one E. faecium isolate for which the MIC was 16 microg/ml contained a guanine to adenine transition at bp 2505.

Acetamides↗

Contamination of the clinical microbiology laboratory with vancomycin-resistant enterococci and multidrug- resistant Enterobacteriaceae: implications for hospital and laboratory workers.

We surveyed environmental surfaces in our clinical microbiology laboratory to determine the prevalence of vancomycin-resistant enterococci (VRE) and multidrug-resistant Enterobacteriaceae (MDRE) during a routine working day. From a total of 193 surfaces, VRE were present on 20 (10%) and MDRE were present on 4 (2%) of the surfaces tested. In a subsequent survey after routine cleaning, all of the 24 prior positive surfaces were found to be negative. Thus, those in the laboratory should recognize that many surfaces may be contaminated by resistant organisms during routine processing of patient specimens.

Colony Count, Microbial↗

Yield of vancomycin-resistant enterococci and multidrug-resistant Enterobacteriaceae from stools submitted for Clostridium difficile testing compared to results from a focused surveillance program.

It has been suggested that a method of performing surveillance for vancomycin-resistant enterococci (VRE) is to screen specimens submitted for Clostridium difficile testing. We compared this approach to our focused surveillance program of high-risk units during October 1997 to compare the yield of VRE and multidrug-resistant Enterobacteriaceae (MDRE) with both methods. Of the stools submitted for C. difficile testing, 14% were positive for VRE or MDRE, whereas rectal swabs from routine surveillance yielded 11% VRE- or MDRE-positive results. Although stools submitted for C. difficile testing resulted in a higher percentage of positive cultures, 14 VRE- and 2 MDRE-positive patients from our high-risk population were missed because many patients had no stool submitted for C. difficile testing. Therefore, while screening stools submitted for C. difficile testing cannot replace our focused surveillance program, it appears advantageous to assess these stools at various intervals to detect new patient reservoirs of drug-resistant organisms that may benefit from routine surveillance cultures.

Clostridioides difficile↗

Fluoroquinolone resistance is a poor surrogate marker for type II topoisomerase mutations in clinical isolates of Streptococcus pneumoniae.

The association between fluoroquinolone susceptibility and DNA mutations coding for amino acid substitutions in the quinolone resistance-determining region was assessed with 44 clinical isolates of Streptococcus pneumoniae. Twenty-three strains bore at least one amino acid substitution. Only seven strains with mutations were suggested by diminished susceptibility to ciprofloxacin (MIC, > or =2 microg/ml).

Amino Acid Substitution↗

Methicillin-resistant Staphylococcus aureus and vancomycin-resistant enterococci: emerging problems and new prospects for management.

INTRODUCTION: Infections due to multidrug-resistant Gram-positive bacteria are a growing worldwide problem, particularly among seriously ill patients. A number of studies have demonstrated that patients infected with either methicillin-resistant Staphylococcus aureus (MRSA) or vancomycin-resistant enterococci (VRE) are at higher risk for mortality and medical resource expenditures. METHODS: A non-systematic evidence-based review of linezolid, the first commercially available oxazolidinone, and quinupristin/dalfopristin, the first injectable streptogramin, for management of these multidrug-resistant infections was conducted. RESULTS: As infections due to VRE increase and vancomycin-insensitive MRSA emerge, vancomycin is becoming less effective for managing Gram-positive infections. Preclinical comparative studies demonstrated that linezolid and quinupristin/dalfopristin are highly effective in eradicating both susceptible and resistant staphylococci, streptococci, and enterococci. Clinical experience, including phase III and compassionate-use data, with these newer agents in the treatment of MRSA and VRE infections are discussed. CONCLUSIONS: The clinical experiences thus far with linezolid and quinupristin/dalfopristin for MRSA and VRE infections have demonstrated efficacy, making these agents important additions to the limited number of therapeutic alternatives for Gram-positive infections.

Acetamides↗

The incidence of antimicrobial allergies in hospitalized patients: implications regarding prescribing patterns and emerging bacterial resistance.

BACKGROUND: The development of antimicrobial guidelines is one way in which institutions attempt to control emerging resistance, but the real challenge falls on promoting and ensuring adherence to these guidelines. Investigating reasons for the prescribing of alternative antimicrobial agents outside of these guidelines is crucial for modifying practices that may adversely impact institutional antimicrobial goals. METHODS: Retrospective cross-referencing of computerized pharmacy printouts and concurrent manual medical record review. RESULTS: Approximately 25% (470/1893) of the patients requiring antimicrobial therapy reported an allergy to at least 1 antimicrobial agent. The most commonly reported antimicrobial allergy was penicillin (295/1893 [15.6%]). Eighty-five patients (18.1%) reported having an allergy to 2 or more antimicrobial agents. Only 4% (27/601) of the reported antimicrobial allergies contained documentation as to the nature of the specific allergic reactions, while a manual medical record review revealed that 32% (23/73) of the antimicrobial allergies contained documentation of the specific allergic reaction. Ninety-eight (39. 7%) of 247 patients reporting an allergy only to penicillin and/or cephalosporin received vancomycin in comparison with 247 (17.4%) of 1423 patients without any antimicrobial allergies (P<.001). Similarly, 53 (21.5%) of 247 patients with reported penicillin and/or cephalosporin allergies received levofloxacin compared with 114 (8.0%) of 1423 patients without any antimicrobial allergy (P<. 001). CONCLUSION: The incidence of penicillin allergy at our institution exceeds population averages. This finding, in combination with limited documentation of drug allergies, appears to lead to the prescribing of alternative antimicrobial agents that do not fit into institutional antimicrobial guidelines and, in some instances, may put the patient at risk for infection and/or colonization with resistant organisms. Use of these alternative agents may adversely impact the ability to manage emerging antimicrobial resistance.

Anti-Bacterial Agents↗

Activity of voriconazole against Candida albicans and Candida krusei isolated since 1984.

With the recent dramatic rise in fluconazole use, there has been an increase in Candida species resistant to that agent. This has led to the clinical development of newer triazoles such as voriconazole that have greater potency and a broader spectrum of activity. We therefore hypothesized that fluconazole-resistant Candida albicans and Candida krusei would be susceptible to voriconazole. Susceptibility testing was performed on 205 isolates of C. albicans collected from 1984 to 1995, and on C. albicans and C. krusei that were identified as fluconazole resistant since 1995. The anti fungal agents used were amphotericin B, 5-flucytosine, itraconazole, ketoconazole, fluconazole and voriconazole. Three C. albicans and 26 C. krusei isolates had a minimum inhibitory concentration (MIC) >/=20 mg/l and were defined as fluconazole resistant. Of these, 28 isolates were susceptible to </=2.5 mg/l voriconazole, with a mean MIC of 0.78 mg/l. The mean amphotericin B MIC for these same strains was 0.98 mg/l. Only one isolate of C. krusei was relatively resistant to voriconazole with a MIC of 5 mg/l. Of these 29 isolates, there were ten amphotericin-resistant strains of C. krusei (MIC>2 mg/l) but all were susceptible to </=2.5 mg/l voriconazole. The higher potency of voriconazole may be useful in the treatment of fluconazole- and amphotericin-resistant C. albicans and C. krusei.

Antifungal Agents↗

Persistent contamination of fabric-covered furniture by vancomycin-resistant enterococci: implications for upholstery selection in hospitals.

Vancomycin-resistant enterococci (VRE) have emerged as important nosocomial pathogens in hospitals throughout the United States. An increasing concern with respect to VRE dissemination is survival on, and potential transmission from, environmental surfaces within health care institutions. Therefore, we assessed survival of VRE on fabric chairs in an attempt to determine the optimal upholstery for the health care setting. VRE was identified on 3 of 10 seat cushions sampled, including 2 chairs in a room of a patient with known VRE. After performing simulated contamination experiments, all samples were positive at 72 hours and 1 week after inoculation. Contamination of the upholstery could be prevented by placing a sheet folded 4 times or a bath blanket folded in half on the seat cushion. In conclusion, VRE are capable of prolonged survival on fabric seat cushions and can be transferred to hands. Environmental surfaces such as chairs may serve as a potential reservoir for nosocomial transmission of VRE, and an easily cleanable, nonporous material is the preferred upholstery in hospitals.

Chicago↗

Intracellular targets of moxifloxacin: a comparison with other fluoroquinolones.

The in vitro activity of the novel 8-methoxyquinolone, moxifloxacin, against Streptococcus pneumoniae was evaluated, and the intracellular targets of this agent were studied. Analysis of mutant strains selected with moxifloxacin demonstrated that first-step mutants bore amino acid substitutions at position 81 in the GyrA subunit of DNA gyrase. This suggests that, unlike older fluoroquinolone agents such as ciprofloxacin and levofloxacin, but similar to other C-8 substituted quinolones like sparfloxacin and gatifloxacin, moxifloxacin targets the GyrA subunit of DNA gyrase as an initial lethal event. Such a mechanism results in high activity against increasingly common S. pneumoniae strains bearing substitutions in DNA topoisomerase IV. Moxifloxacin was active with an MIC of </= 0.25 mg/L against S. pneumoniae clinical isolates, and against mutants, selected in the laboratory with ciprofloxacin or levofloxacin, that bore a Ser-79-->Phe/Tyr substitution in ParC. The moxifloxacin MIC for strains with mutations in the structural genes for both DNA gyrase subunit GyrA and DNA topoisomerase IV subunit ParC did not exceed 2 mg/L, a level within clinically achievable serum concentrations for this agent. We also found that moxifloxacin is a poor substrate for active efflux in S. pneumoniae. Therefore, the high activity of moxifloxacin against S. pneumoniae appears to be a result of both enhanced activity against DNA gyrase and topoisomerase IV, and reduced efflux from the bacterial cell.

Anti-Infective Agents↗

A convenient assay for estimating the possible involvement of efflux of fluoroquinolones by Streptococcus pneumoniae and Staphylococcus aureus: evidence for diminished moxifloxacin, sparfloxacin, and trovafloxacin efflux.

We developed a simplified assay for estimating efflux by measuring the effect of reserpine on the growth of Streptococcus pneumoniae and Staphylococcus aureus over 7 h. Reserpine enhanced ciprofloxacin and levofloxacin 17 to 68%. The hydrophobic drug trovafloxacin and the drug moxifloxacin, with a bulky C-7 substituent but hydrophilicity similar to that of levofloxacin, showed little (0 to 11%) reserpine-enhancing effect. The ease of resistant mutant strain selection correlated with efflux susceptibility.

Anti-Infective Agents↗

Comparison of the Rodac imprint method to selective enrichment broth for recovery of vancomycin-resistant enterococci and drug-resistant Enterobacteriaceae from environmental surfaces.

We compared the Rodac imprint technique to selective enrichment broth for detecting vancomycin-resistant enterococci (VRE) and multidrug-resistant Enterobacteriaceae (MDRE) on surfaces. Rodac plates contained tryptic soy agar with 5% sheep blood, vancomycin (6 microg/ml), ceftazidime (2 microg/ml), amphotericin B (2 microg/ml), and clindamycin (1 microg/ml). Two types of broth were used: brain heart infusion (BHI) and BHI plus vancomycin (6 microg/ml) and ceftazidime (2 microg/ml) (BHIVC). Of the 46 surfaces cultured for VRE, 12 (26%) were positive. Of the 12 VRE-positive surfaces, 11 (92%) grew from Rodac, 8 (67%) grew from BHIVC, and 7 (58%) grew from BHI. A larger study is needed for MDRE, as only 4 of 43 surfaces were MDRE positive. The Rodac imprint technique successfully recovered VRE from environmental surfaces.

Culture Media↗

Changing patterns of infections and antimicrobial susceptibilities.

Nosocomial bloodstream infections across the United States and in Europe are increasingly attributable to gram-positive species--a trend that represents a reversal of the gram-negative predominance of the previous decades. Data from Memorial Sloan-Kettering Cancer Center and elsewhere show that patients with hematologic malignancies or patients who are immunocompromised because of anticancer treatments are experiencing this shift in microbial spectrum. Most common among gram-positive species are coagulase-negative Staphylococci. Antimicrobial resistance continues to increase, which makes treatment more difficult for infections caused by some species, especially vancomycin-resistant enterococcal species. The underlying causes of changes in microbial spectrum and drug-resistance patterns are incompletely understood, but it is clear that antibiotic exposure exerts a significant selective pressure on pathogens, resulting in partial or complete resistance. New drugs or drug combinations will be necessary to treat drug-resistant infections in cancer patients.

Adult↗

Synergistic effect of gentamicin plus ampicillin on enterococci with differing sensitivity to gentamicin: a phenotypic assessment of NCCLS guidelines.

Between December 1, 1993, and December 1, 1996, we tested 4,411 isolates of Enterococcus sp. at gentamicin concentrations of 500 micrograms/mL and 2000 micrograms/mL using agar dilution to phenotypically categorize them into 3 groups: those with a MIC < or = 500 micrograms/mL (n = 3,132; 71%); a MIC > 500, but < or = 2000 micrograms/mL (n = 441; 10%); and those with a MIC > 2000 micrograms/mL (n = 838; 19%). Ten unique strains of each phenotype were tested to determine which gentamicin concentration was the best in vitro predictor of synergy with ampicillin. Testing was done by a time-kill method using clinically achievable levels of ampicillin and gentamicin. We found that for the gentamicin MIC < or = 500 micrograms/mL group, 7 of 10 isolates demonstrated synergy with ampicillin as manifested by a > or = 2 log10 increase in killing versus the effect of ampicillin alone (at 1/2 the MIC for ampicillin). In the group sensitive to a gentamicin MIC range between > 500 and < or = 2,000 micrograms/mL, none of the 10 isolates demonstrated synergy. Absence of synergy was also found in the group resistant to 2,000 micrograms/mL of gentamicin. Assessment of eight additional enterococcal isolates with reduced sensitivity to ampicillin (MIC from 32-256 micrograms/mL) found no correlation between gentamicin sensitivity at 500 micrograms/mL and any in vitro test for synergy, nor with clinical therapeutic outcome. Gentamicin at 2 micrograms/mL combined with ampicillin was as effective in enhancing killing as a higher level of 4 micrograms/mL. These findings validate the current NCCLS guideline for predicting synergistic activity against enterococci in strains with usual susceptibility to ampicillin, and suggest that a therapeutic level less than maximal recommended dosing is sufficient when using gentamicin in this setting.

Ampicillin↗

Molecular epidemiology of vancomycin-resistant enterococci: a 2-year perspective.

OBJECTIVE: To determine the molecular epidemiology of vancomycin-resistant enterococci (VRE) at our medical center in order to identify the extent of strain clonality and possible transmission patterns of this pathogen. DESIGN: An important facet of our infection control program includes molecular typing of all clinical and surveillance isolates of VRE to determine transmission patterns in the hospital. Molecular strain typing is performed by restriction endonuclease analysis (REA) of genomic DNA. REA patterns are visually compared to categorize VRE strains into type and subtype designations. SETTING: A 588-bed, university-affiliated, tertiary-care hospital and a neighboring 155-bed rehabilitation facility. RESULTS: From January 1995 through December 1996, 379 VRE isolates were collected from 197 patients. Thirty-three genotypes were determined by REA typing; 15 genotypes were implicated in 29 instances of potential nosocomial transmission. Three major clusters of VRE involving patients on multiple nursing units and two adjacent hospitals were identified. The remaining instances of nosocomial transmission occurred in small patient clusters. CONCLUSIONS: In conclusion, the VRE epidemic at this medical center is polyclonal. VRE transmission patterns are complex, and, while large clusters do occur, the usual pattern of nosocomial acquisition of this pathogen occurs in the setting of "mini-clusters".

Bacterial Typing Techniques↗