PubMed Health⌕ Search

Biomedical subjects

M E Erwin

Publications and source records attributed to M E Erwin.

At least 37 records · Page 2Linked to original sources

In vitro antimicrobial activity of RU-59863, a C-7 catechol substituted cephalosporin.

The in vitro activity of RU-59863, a so-called "fifth generation" catechol cephalosporin, was evaluated against 606 bacterial isolates and compared with the activities of cefotaxime, ceftazidime, cefepime, and cefpirome. RU-59863 demonstrated a broad spectrum of inhibition and superior overall activity than comparators when tested against Enterobacteriaciae (MIC90s, 0.015 to 2 micrograms/ml), Pseudomonas aeruginosa (MIC90, 0.5 microgram/ml), Stenotrophomonas maltophilia (MIC90, 0.25 microgram/ml), Acinetobacter ssp. (MIC90, 4 micrograms/ml), and oxacillin-susceptible Staphylococcus ssp. (MIC90s, 0.5 to 8 micrograms/ml). Potent RU-59863 activity was also observed against beta-haemolytic and viridans gr. streptococci (MIC90s, 0.12-0.5 microgram/ml), Streptococcus pneumoniae (MIC90s, 0.03 to 0.5 microgram/ml), Haemophilus influenzae (MIC90, 0.06 microgram/ml), and Neisseria gonorrhoeae (MIC90, 0.06 micrograms/ml). RU-59863 demonstrated marginal potency against Enterococcus faecalis (MICs 2 to 16 micrograms/ml) and was inactive against Enterococcus faecium (MIC90, > 128 micrograms/ml). Oxacillin-resistant staphylococci were not inhibited by RU-59863 (MIC90s, 32 to 128 micrograms/ml). Among the cephalosporins tested, RU-59863 performed best versus ceftazidime-resistant Bush group 1 isolates and strains producing extended spectrum beta-lactamases. RU-59863 was also effective against many fluoroquinolone-, aminoglycoside-, and imipenem-resistant isolates. RU-59863 seems to be a significant advance in cephalosporin chemistry and activity, especially against Gram-negative pathogens resistant to current beta-lactam therapeutic agents. Further studies of human pharmacokinetics and against clinical infections are encouraged.

Bacteria↗

Nosocomial enterococcal blood stream infections in the SCOPE Program: antimicrobial resistance, species occurrence, molecular testing results, and laboratory testing accuracy. SCOPE Hospital Study Group.

Characteristics of nosocomial enterococcal blood stream infection (NEBSI) isolates obtained from patients at 41 U.S. hospitals participating in the SCOPE Program were studied. Isolates from 480 episodes of NEBSI were characterized according to species and antimicrobial susceptibility profile. Selected isolates were also identified to species and vancomycin resistance genotype using polymerase chain reaction based methods. Polymerase chain reaction genotyping and ribotyping were used as genetic markers for molecular epidemiologic typing. Enterococci were the third most common cause of nosocomial blood stream infection in this study, accounting for 11.7% of all isolates reported. Enterococcus faecalis was the most common species (59.6%), followed by E. faecium (19.4%). Species identification errors involving E. faecium, E. durans, E. avium, and E. raffinosus were observed. Vancomycin resistance was observed in 36.4% of all participating medical centers and varied from 11.1% of medical centers in the Northwest to 60.9% of medical centers in the Southwest. Vancomycin-resistant enterococci accounted for 20.6% of NEBSI in the Northeast, 11.4% in the Southeast, 11.1% in the Southwest, and 9.5% in the Northwest regions. VanA genotypes predominated in the Northeast and Southwest, whereas vanA and vanB genotypes were equally prevalent in the Northwest and Southeast. Molecular typing studies identified strains that were unique to individual hospitals as well as strains that were prevalent in several different hospitals. NEBSI with vancomycin-resistant enterococci continues to escalate among hospitalized patients in all geographic areas of the USA.

Anti-Bacterial Agents↗

Avoparcin, a glycopeptide used in animal foods: antimicrobial spectrum and potency tested against human isolates from the United States.

Avoparcin is a glycopeptide antimicrobial that is widely used as a growth promoter in animal feeds in portions of Western Europe. Recently, concern has emerged about the possible contribution of avoparcin use to the emergence of glycopeptide resistance in enterococci. Relatively little information exists on the spectrum of activity and potency of avoparcin. We studied the activity of avoparcin compared to vancomycin, teicoplanin, and 3 other antimicrobials against 814 recent human clinical isolates, including Staphylococcus spp. (240 strains), Streptococcus spp. (90 strains), and Enterococcus spp. (60 strains), using reference susceptibility test methods. Our results indicate that avoparcin was less potent than either vancomycin or teichoplanin against staphylococci (MIC50, 4 micrograms/ mL). There was a good correlation of avoparcin MICs with the MICs for vancomycin and teichoplanin for most species; however, the avoparcin MICs for Enterococcus spp. of the vanB phenotype were quite variable (MIC range, 2 to > 16 micrograms/mL). For Staphylococcus haemolyticus, high avoparcin MICs (> or = 16 micrograms/mL) were associated with oxacillin resistance. These results are relevant to the debate concerning the appropriateness of continued use of avoparcin as a growth promoter in animal husbandry. In particular, avoparcin as a glycopeptide with limited potency against some staphylococci seems to represent a theoretically greater risk for selecting glycopeptide resistance among staphylococci, but may not represent any greater threat for the selection of resistance in enterococci.

Animal Feed↗

In vitro activity and spectrum of LY333328, a novel glycopeptide derivative.

Reference methods were used to determine the potency of LY333328, a semisynthetic glycopeptide derivative with a key N-alkylation substitution, against 833 strains (393 gram-positive strains and representative gram-negative bacilli) with various defined resistance mechanisms. The MICs at which 90% of the isolates are inhibited (MIC90S) (in micrograms per milliliter) of LY333328 and the percentages of strains at < or = 8 micrograms/ml were as follows: for oxacillin-susceptible Staphylococcus aureus, 2 and 100%, and for oxacillin-resistant Staphylococcus aureus, 4 and 100%; for oxacillin-susceptible Staphylococcus epidermis, 4 and 100%, and for oxacillin-resistant Staphylococcus aureus, 8 and 96%; for Streptococcus serogroups A, B, C, and G, 0.25 to 1 and 100%; for Streptococcus pneumoniae < or = 0.015 to 0.06 and 100%; for Enterococcus faecalis, 2 and 100%; and for vancomycin-susceptible Enterococcus faecium, 0.25 and 100%, and for vancomycin-resistant Enterococcus faecium, 4 and 100%. LY333328 was not active (MIC50, > or = 16 micrograms/ml) against more than 400 representative strains of Enterobacteriaceae, pseudomonads, Acinetobacter spp., Stenotrophomonas maltophilia, Haemophilus influenzae, Moraxella catarrhalis, pathogenic Neisseria spp., and anaerobic gram-negative bacilli. Gram-positive anaerobes were LY333328 susceptible (MICs, < or = 2 micrograms/ml). Test methods and conditions may have affected MICs of LY333328, with most (species variation) agar dilution MICs being greater than the broth microdilution MICs.

Anti-Bacterial Agents↗

Quality control guidelines for amoxicillin, amoxicillin-clavulanate, azithromycin, piperacillin-tazobactam, roxithromycin, ticarcillin, ticarcillin-clavulanate, trovafloxacin (CP 99,219), U-100592, and U-100766 for various National Committee for Clinical Laboratory Standards susceptibility testing methods. Results from multicenter trials.

Quality control guidelines for standardized antimicrobial susceptibility test methods are critical to the continuing accuracy of the tests. In this report, quality control limits were proposed for 22 organism-antimicrobial combinations with minimum inhibitory concentration (MIC) ranges of three or four log2 dilution steps. Disk diffusion zone diameter ranges were proposed for azithromycin compared with Neisseria gonorrhoeae ATCC 49226 and ticarcillin with and without clavulanic acid tested against Staphylococcus aureus ATCC 25923. The data from five or six participating laboratories produced > or = 94.7% of results within proposed MIC limits, and 94.3%-99.0% of zones were found within suggested zone guidelines. These proposed quality control ranges should be validated by in-use results from clinical laboratories.

Acetamides↗

Susceptibility testing interpretive criteria for levofloxacin when testing respiratory pathogens, Haemophilus influenzae and Moraxella catarrhalis.

The more active L-isomer, levofloxacin, of the racemic ofloxacin mixture has been under development for therapeutic use. In this study, we evaluated the activity of ofloxacin, levofloxacin, and D-ofloxacin against the fastidious respiratory tract pathogens Haemophilus influenzae and Moraxella catarrhalis. Levofloxacin was two-fold more active than ofloxacin against H. influenzae (MIC90, 0.015 microgram/ml), and D-ofloxacin was least active (MIC90, 1 microgram/ml). For M. catarrhalis the MIC90 values were 0.03 microgram/ml, 0.06 microgram/ml, and 2 micrograms/ml for levofloxacin, ofloxacin, and D-ofloxacin, respectively. For disk diffusion susceptibility testing, Chocolate Mueller-Hinton agar (CMH) was considered preferable to Haemophilus test medium (HTM) because it supported the growth of all of 105 H. influenzae strains whereas five strains failed to grow on HTM. In addition, the margins of the zones of inhibition were more distinct on CMH and the Haemophilus species strains with elevated fluoroquinolone MICs were readily distinguished. The superior growth on CMH was reflected in a reduction of inhibition zone diameters of 2-3 mm relative to the inhibition zone diameters on HTM. The previously proposed interpretive criteria for the 5 microgram disk diffusion susceptibility test (susceptible at > or = 17 mm) results in complete categorical agreement with the reference microdilution broth method for M. catarrhalis on Mueller Hinton agar and for H. influenzae on HTM and CMH. However, the minimum diameter of the zone of inhibition recorded for a member of the dominant population of either species was considerably greater (25 mm) than 17 mm on any of the media tested.

Culture Media↗

Critical appraisal of E test for the detection of fluoroquinolone resistance.

The ability of E test to accurately detect fluoroquinolone resistance was compared with an agar dilution reference method. Nearly 300 isolates belonging to 26 different species (62.5% with documented ciprofloxacin resistance) were tested with ciprofloxacin, fleroxacin, levofloxacin, norfloxacin, ofloxacin, and sparfloxacin. In contrast to earlier reports, E test MIC values for pneumococci and all rapid growing aerobes were routinely higher (approximately 0.5 log2 dilution step) than agar dilution results. The E test stable-gradient method also efficiently identified fluoroquinolone-resistant subpopulations which were not detected by the reference procedure with the standard inoculum. Categorical agreement for 1710 test comparisons was approximately 90% with no very major, false-susceptible errors. We found the E test to be a valid, reproducible method for fluoroquinolone susceptibility testing that provided quantitative results and produced a conservative (1.6% false-resistant results) assessment of susceptibility of bacteria including isolates of Streptococcus pneumoniae and Pseudomonas aeruginosa to compounds in this antimicrobial class.

Anti-Infective Agents↗

In vitro antimicrobial activities and spectra of U-100592 and U-100766, two novel fluorinated oxazolidinones.

Two new fluorinated oxazolidinones, U-100592 and U-100766, were evaluated against more than 659 gram-positive and -negative organisms and compared with glycopeptides, erythromycin, clindamycin, clinafloxacin, and chloramphenicol. U-100592 and U-100766 were usually equally potent, but the MICs at which 90% of the isolates are inhibited (MIC90s) of U-100592 for some staphylococci and enterococci were slightly lower than those of U-100766 (1 versus 2 micrograms/ml). The MIC90 of U-100592 and U-100766 for oxacillin-resistant Staphylococcus aureus was 2 micrograms/ml, the same as observed for oxacillin-susceptible strains. The oxazolidinone MICs for other Staphylococcus spp. were < or = 2 micrograms/ml (MIC50, 0.5 to 1 microgram/ml). All enterococci were inhibited by < or = 4 and < or = 2 micrograms of U-100592 and U-100766 per ml, respectively. Against 152 vancomycin-resistant enterococci (five species), both compounds had a narrow range of MICs (0.25 to 2 micrograms/ml) and a MIC90 of 1 microgram/ml. Corynebacterium jeikeium, Bacillus spp., and all tested streptococci were inhibited (< or = 4 micrograms/ml). Members of the family Enterobacteriaceae and other gram-negative bacilli were not susceptible (MIC50, > 64 micrograms/ml) to either oxazolidinone. Three potencies of U-100592 and U-100766 disks were tested (5, 15, and 30 micrograms), and acceptable correlations (r = 0.81 to 0.90) with the measured MICs were observed. Best discrimination of the tentatively susceptible organisms (MICs, < or = 4 micrograms/ml) was demonstrated with the 30-micrograms disk concentration. The oxazolidinones demonstrated a dominant bacteristatic action. These oxazolidinones (U-100592 and U-100766) appear promising for treatment of gram-positive organisms that demonstrate resistance to contemporary therapeutic agents.

Acetamides↗

Interlaboratory evaluation of Etest method for testing antifungal susceptibilities of pathogenic yeasts to five antifungal agents by using Casitone agar and solidified RPMI 1640 medium with 2% glucose.

An interlaboratory evaluation (two centers) of the Etest method was conducted for testing the antifungal susceptibilities of yeasts. The MICs of amphotericin B, fluconazole, flucytosine, itraconazole, and ketoconazole were determined for 83 isolates of Candida spp., Cryptococcus neoformans, and Torulopsis glabrata. Two buffered (phosphate buffer) culture media were evaluated: solidified RPMI 1640 medium with 2% glucose and Casitone agar. MIC endpoints were determined after both 24 and 48 h of incubation at 35 degrees C. Analysis of 3,420 MICs demonstrated higher interlaboratory agreement (percentage of MIC pairs within a 2-dilution range) with Casitone medium than with RPMI 1640 medium when testing amphotericin B (84 to 90% versus 1 to 4%), itraconazole (87% versus 63 to 74%), and ketoconazole (94 to 96% versus 88 to 90%). In contrast, better interlaboratory reproducibility was determined between fluconazole MIC pairs when RPMI 1640 medium rather than Casitone medium was used (96 to 98% versus 77 to 90%). Comparison of the flucytosine MICs obtained with RPMI 1640 medium revealed greater than 80% reproducibility. The study suggests the potential value of the Etest as a convenient alternative method for testing the susceptibilities of yeasts. It also indicates the need for further optimization of medium formulations and MIC endpoint criteria to improve interlaboratory agreement.

Agar↗

Emerging multiply resistant enterococci among clinical isolates. II. Validation of the etest to recognize glycopeptide-resistant strains.

Accurate, quantitative susceptibility testing of the enterococci for glycopeptide (vancomycin and teicoplanin) activity has become very important to guide chemotherapy as a result of emerging resistance. Reference dilution tests using broth and agar are generally difficult to perform, or in some commercial forms have demonstrated interpretive error. An alternative method, the Etest has promise as a system with qualitative and quantitative accuracy. Nearly 2000 enterococci from 97 laboratories in the United States were tested using broth microdilution, disk diffusion, and Etest methods. The Etest quantitative accuracy (+/- 1 log2 dilution) compared to the broth microdilution minimum inhibitory concentration was 90.1% (teicoplanin) to 94.1% (vancomycin). The qualitative interpretive accuracy of the Etest ranged from 98.7% for vancomycin to 99.9% for teicoplanin (no false-susceptible errors). All three tests were in remarkable agreement, with < or = 0.8% maximal discord by interpretive category. The Etest appears to be an excellent alternative to reference and standardized methods for producing quantitative activity measurements of glycopeptide susceptibility or resistance.

Bacterial Typing Techniques↗

Emerging multiply resistant enterococci among clinical isolates. I. Prevalence data from 97 medical center surveillance study in the United States. Enterococcus Study Group.

To assess the evolving problem of therapeutic drug resistances among enterococci, we organized a comprehensive national (United States) surveillance trial using 99 recruited microbiology laboratories in 48 of the 49 contiguous states or districts. All but two sites completed the protocol that generated information from nearly 2000 enterococci, usually isolated from blood cultures. All strains were speciated by the same method (API 20S) and were susceptibility tested by three methods (broth microdilution, disk diffusion, and Etest) against ampicillin, penicillin, vancomycin, teicoplanin, gentamicin, and streptomycin. Strains resistant to a glycopeptide or penicillin, or possessing high-level aminoglycoside resistance were referred to the monitor's laboratory for validation and additional susceptibility testing against other alternative antimicrobial agents. The most common species were Enterococcus faecalis and Enterococcus faecium. However, antimicrobial resistance occurred most often among the E. faecium isolates. Twenty-three percent of participant centers (22 sites) reported 87 vancomycin-resistant isolates, which accounts for 4.4% of the isolates evaluated. A recent audit (March 1994) of the laboratories not reporting vancomycin resistance during the study interval (October-December 1992) revealed that 61% of sites have now recognized these strains, a threefold increase in 12-15 months. Teicoplanin remained active against 28% (Van B phenotype) of vancomycin-resistant enterococci (10 E. faecalis, 13 E. faecium, and one Enterococcus spp.). Ampicillin-resistant beta-lactamase-positive strains were found only at one medical center (two strains, 0.2% of referred or validated strains); however, ampicillin-resistant strains represented 12% of all enterococcal, but nearly 60% of E. faecium strains.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Bacterial Agents↗

Antimicrobial activity of 11 newer and investigational drugs tested against aerobic isolates from spontaneous bacterial peritonitis.

The in vitro susceptibility of 124 aerobic bacterial pathogens isolated from patients with spontaneous bacterial peritonitis (SBP) were tested against 11 antimicrobial agents, including parenteral or oral cephalosporins and fluoroquinolones. Most SBP isolates were Gram-negative organisms, and Escherichia coli and Klebsiella pneumoniae were responsible for 63% of the episodes evaluated. The fluoroquinolones (ciprofloxacin and ofloxacin) and the "fourth-generation" cephalosporin cefpirome were the most active agents against the Gram-negative bacteria. Commonly used cefotaxime and cefotaxime-desacetylcefotaxime (DES-CTX) combinations were also very active against Gram-negative bacteria with only few Enterobacter cloacae isolates being resistant (minimum inhibitory concentrations > 32 micrograms/ml). All streptococci were susceptible to cefotaxime, cefpirome, and cefdaloxime and to the cefotaxime-DES-CTX combinations, whereas only ofloxacin demonstrated acceptable activity against the enterococci. The widest spectrum of activity versus SBP isolates was found for ofloxacin (98% susceptibility) among the fluoroquinolones. For the beta-lactams, the widest spectrum of activity was demonstrated by cefpirome and the 2:1 cefotaxime-DES-CTX combination (93% susceptibility). These results indicate that the role of ofloxacin and newer parenteral or orally administered cephalosporins in the treatment of prophylaxis of SBP should be further evaluated.

Anti-Bacterial Agents↗

Multicenter clinical laboratory evaluation of a beta-lactamase disk assay employing a novel chromogenic cephalosporin, S1.

S1, a new chromogenic cephalosporin (International BioClinical, Inc., Portland, Oreg.), was used to detect beta-lactamase production among a variety of commonly encountered bacteria in a four-center collaborative study. Results of an S1 disk assay were compared with those obtained by a nitrocefin-based disk procedure (Cefinase; Becton-Dickinson Microbiology Systems, Cockeysville, Md.), with repetitive testing of five quality control organisms and with individual tests of recent clinical isolates of Neisseria gonorrhoeae (162 strains), Haemophilus influenzae (162 strains), Moraxella catarrhalis (155 strains), Staphylococcus aureus (161 strains), and Bacteroides fragilis (164 strains). The performances of the two beta-lactamase disk assays were comparable for the first three species cited above. However, the S1 assay appeared to be a more sensitive procedure than the Cefinase assay when applied to S. aureus and B. fragilis, with respect to both total numbers of positive results and length of time to a definitive positive endpoint.

Bacteria↗

Evaluation of the Etest for antimicrobial spectrum and potency determinations of anaerobes associated with bacterial vaginosis and peritonitis.

One hundred ninety-seven anaerobic organisms (24 Gardnerella vaginalis, 16 Mobiluncus spp., 19 Peptostreptococcus spp., 20 Lactobacillus spp., 20 Prevotella bivia/disiens, 81 Bacteroides fragilis group, 12 Clostridium spp., and five Fusobacterium spp.) were processed by the Etest (AB Biodisk, Solna, Sweden) and a reference (Brucella blood agar) method against 10 antimicrobial agents. For the bacterial vaginosis-associated pathogens, the Etest was more reproducible and correlated acceptably with the reference agar test: within +/- 1 log2 dilution for 74.4% of Mobiluncus spp. to 96.0% for Peptostreptococcus spp. (all organisms, 83.4%). The quantitative correlation +/- 2 log2 dilution steps between test results was 94.3%. Results with B. fragilis group strains demonstrated 97.3% correlation (+/- 2 log2 dilution) with a trend toward slightly lower Etest minimum inhibitory concentrations for ampicillin-sulbactam, cefotaxime, imipenem, and clindamycin. The absolute qualitative interpretive agreement between Etest and the reference agar dilution method results was 94.4%, with only a 0.4% false-susceptible error rate. The Etest appears to be a very practical, quantitatively accurate, alternative procedure for clinical microbiology laboratories routinely testing the susceptibilities of anaerobes and, by these presented data, organisms associated with female tract infections.

Anti-Bacterial Agents↗

Cefquinome (HR 111V). In vitro evaluation of a broad-spectrum cephalosporin indicated for infections in animals.

Cefquinome (formerly HR 111V), an aminothiazolyl cephalosporin, was compared with cefepime, cefpirome, cefotaxime, and ceftazidime against 681 clinical cultures and a challenge set of bacteria with well-characterized resistance mechanisms. Cefquinome minimum inhibitory concentrations (MIC90) for the enterobacteriaceae ranged from < or = 0.12-2 micrograms/ml with the highest MIC (4 micrograms/ml) obtained among Citrobacter freundii, Enterobacter cloacae, and Providencia stuartii strains. A total of 90% of the Pseudomonas aeruginosa were inhibited by cefquinome at < or = 8 micrograms/ml. Cefquinome activity of particular note for Gram-positive isolates included Corynebacterium jeikeium (MIC90, 8 micrograms/ml) and enterococci (MIC50, 4-8 micrograms/ml). Oxacillin-resistant Staphylococcus aureus was 32-fold less susceptible (MIC90, 16 micrograms/ml) to cefquinome than oxacillin-susceptible (MIC90, 0.5 micrograms/ml) strains. Cefquinome was very potent against fastidious isolates such as Moraxella catarrhalis (MIC90, 0.25-2 micrograms/ml); Haemophilus influenzae (MIC90, 0.06-1 micrograms/ml), Neisseria gonorrhoeae (MIC90, 0.06-0.5 micrograms/ml), and Streptococcus species (MIC90, < or = 0.03-006 micrograms/ml). When tested against organisms possessing Bush group 2 enzymes (including extended spectrum beta-lactamases), cefquinome remained active (MIC, < or = 8 micrograms/ml) against the majority of strains. This compound should be very active against pathogens generally found in animal infections and possesses a potency and spectrum comparable to the "fourth-generation" cephalosporins (cefepime and cefpirome) being investigated for human infectious diseases.

Animals↗