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Ronald N Jones

Publications and source records attributed to Ronald N Jones.

At least 19 recordsLinked to original sources

Activity of dalbavancin tested against Staphylococcus spp. and beta-hemolytic Streptococcus spp. isolated from 52 geographically diverse medical centers in the United States.

Dalbavancin is a lipoglycopeptide antimicrobial agent with a potency significantly better than that of vancomycin when tested against staphylococci and streptococci. These two pathogens are common causes of skin and skin structure infections (SSSIs), and dalbavancin has been approved for the treatment of moderate to severe SSSIs. This study generated susceptibility data for staphylococci and beta-hemolytic streptococci from 52 U.S. medical centers that locally tested dalbavancin, vancomycin, and other antimicrobial class representatives to assess the potency of dalbavancin and the overall contemporary activities of commonly prescribed agents. Locally generated data showed that oxacillin-resistant staphylococci (57.0% overall) had slightly higher dalbavancin MIC(90) values (0.19 microg/ml) than oxacillin-susceptible strains (0.125 microg/ml). This potency was 8- to 16-fold greater than that for vancomycin. beta-Hemolytic streptococci had MIC(90) values ranging between 98% against staphylococci. Erythromycin resistance was high for staphylococci (30.6 to 94.1%) with inducible clindamycin resistance rates of 26.0% and 55.0% for oxacillin-susceptible and -resistant Staphylococcus aureus, respectively. Beta-hemolytic streptococci had a 20.2% erythromycin resistance rate and a 60% inducible clindamycin resistance rate but were highly susceptible to other tested agents. Etest reading errors were apparent and skewed results towards slightly higher dalbavancin MICs, requiring further education on how to interpret Etest method results for this compound. Current disk diffusion breakpoint criteria for oxacillin susceptibility for S. aureus showed a very-major-error rate of 2.3% and only a 0.9% minor-error rate when cefoxitin was used to predict oxacillin susceptibility. Dalbavancin demonstrated excellent potency and activity (100% susceptibility at proposed breakpoints) against common causes of SSSI pathogens in this U.S. multicenter study sample.

Anti-Bacterial Agents↗

Activity of linezolid against 3,251 strains of uncommonly isolated gram-positive organisms: report from the SENTRY Antimicrobial Surveillance Program.

Linezolid was tested against 32 species of uncommonly isolated gram-positive organisms (3,251 strains) by reference MIC methods and found to be highly active (MIC50 range, 0.25 to 2 microg/ml; MIC90 range, 0.25 to 2 microg/ml). Only one isolate (viridans group streptococcus; 0.03% of tested strains) was resistant to linezolid.

Acetamides↗

Comparative activities of cefepime and piperacillin/tazobactam tested against a global collection of Escherichia coli and Klebsiella spp. with an ESBL phenotype.

Cefepime exhibits more stability to hydrolysis by extended-spectrum beta-lactamases (ESBLs) compared with other cephalosporins, and piperacillin/tazobactam may be active against these pathogens because of the enzyme inhibitory activity of tazobactam. Thus, we evaluated the in vitro activity of these 2 antimicrobials against a large collection of isolates with an ESBL phenotype. A total of 50,637 clinical isolates (34,367 Escherichia coli and 16,270 Klebsiella spp.) collected from more than 80 medical centers (1998-2004) were tested by reference broth microdilution methods, and isolates with an ESBL phenotype (MIC, > or = 2 microg/mL for aztreonam or ceftazidime or ceftriaxone) were submitted to a clavulanate inhibition test (confirmation of ESBL production). Among isolates from North America, 3.9% of E. coli and 8.6% of Klebsiella spp. showed an ESBL phenotype, whereas among isolates from the rest of the world (ROW) (Europe, Latin America, and Asia), 7.7% of E. coli and 28.3% of Klebsiella spp. exhibited this pattern. Confirmation rates varied from 21.6% of E. coli in North America to 52.8% of Klebsiella spp. in the row Among E. coli from North America, cefepime (90.3% susceptibility) was generally more active than piperacillin/tazobactam (82.7%), especially among ESBL-not-confirmed (97.0% versus 85.5%). Cefepime also showed reasonable activity against Klebsiella spp. from North America (89.4% susceptibility). In general, isolates from North America exhibited higher susceptibility rates to both beta-lactams compared with isolates from the ROW, and ESBL-not-confirmed strains showed generally higher susceptibility rates than ESBL-confirmed organisms.

Anti-Bacterial Agents↗

Bactericidal activity of cefepime and ceftriaxone tested against Streptococcus pneumoniae.

The bactericidal activities of cefepime and ceftriaxone were assessed by testing a contemporary collection of 50 Streptococcus pneumoniae strains. Minimum inhibitory and bactericidal concentrations (MIC and MBC, respectively) of cefepime and ceftriaxone were determined, and time-kill studies were performed on 14 selected strains (10 penicillin-resistant, 2-intermediate, and 2-susceptible). Cefepime and ceftriaxone showed essentially identical potency (MIC50, 1 microg/mL and MIC90, 2 microg/mL, for both compounds) and MBC values (MBC50, 1 microg/mL for both). MBC/MIC ratios were < or = 4 for cefepime and < or = 8 for ceftriaxone on 48 (96.0%) strains, and 2 strains (4.0%) displayed MBC/MIC ratios > or = 32 (tolerance) to the 2 cephalosporins. Time-kill curves corroborated the MBC/MIC studies. Cefepime and ceftriaxone bactericidal activity (> or = 3 log10 CFU/mL reduction in inoculum) was demonstrable after 24 h of exposure to 8x MIC for 13 (92.9%) of 14 strains, whereas 1 strain showed approximately 2 log10 CFU/mL reduction. In conclusion, our results indicate that cefepime and ceftriaxone exhibit comparable potency and bactericidal activities when tested against contemporary pneumococcal strains with varying penicillin susceptibility patterns. Both parenteral cephems offer alternative therapeutic choices for the treatment of invasive pneumococcal infections.

Anti-Bacterial Agents↗

Occurrence of plasmidic AmpC type beta-lactamase-mediated resistance in Escherichia coli: report from the SENTRY Antimicrobial Surveillance Program (North America, 2004).

Among 1429 Escherichia coli isolates collected as part of the SENTRY Antimicrobial Surveillance Program (2004) from 30 North American medical centres, 65 (4.5%) were screen-positive for an extended-spectrum beta-lactamase (ESBL). Among the strains with a negative ESBL confirmatory test (n=26; clavulanic acid inhibition), a CMY-2 enzyme was detected in 13 isolates (50.0%), FOX-5 in 3 isolates (11.5%) and DHA-1 in 1 isolate (3.8%). These AmpC-producing E. coli were cephamycin (cefoxitin)-resistant but susceptible to cefepime (minimum inhibitory concentration (MIC) < OR =0.12-4 mg/L). Clearly, the ESBL tests recommended by the Clinical and Laboratory Standards Institute identify only a fraction of E. coli with elevated beta-lactam MIC values as ESBL-producing strains; the majority of the remaining strains would be potentially responsive to some other beta-lactams, directed by accurately performed and interpreted susceptibility methods.

Academic Medical Centers↗

Multicenter studies of tigecycline disk diffusion susceptibility results for Acinetobacter spp.

Acinetobacter sp. isolates having multidrug resistance (MDR) patterns have become common in many medical centers worldwide, limiting therapeutic options. A five-center study tested 103 contemporary clinical Acinetobacter spp., including MDR strains, by reference broth microdilution and disk diffusion (15-mug disk content) methods against tigecycline. Applying U.S. Food and Drug Administration tigecycline breakpoint criteria for Enterobacteriaceae (susceptibility at < or =2 microg/ml [< or =1 microg/ml by the European Committee on Antimicrobial Susceptibility Testing]; disk diffusion breakpoints at > or =19 mm and < or =14 mm) to Acinetobacter spp. led to an unacceptable error rate (23.3%). However, an adjustment of tigecycline disk diffusion breakpoints (susceptible/resistant) to > or =16/ < or =12 mm reduced intermethod errors to an acceptable level (only 9.7%, all minor).

Acinetobacter↗

Contemporary causes of skin and soft tissue infections in North America, Latin America, and Europe: report from the SENTRY Antimicrobial Surveillance Program (1998-2004).

The morbidity and cost for cure associated with skin and soft tissue infections (SSTIs) have recently become more complicated because of the increasing prevalence of multidrug-resistant pathogens associated with this healthcare problem. The SENTRY Antimicrobial Surveillance Program has been monitoring SSTI since 1997, and now presents data from 3 continents over a 7-year period (1998-2004). Isolates were tested by reference broth microdilution methods at a central laboratory using the Clinical and Laboratory Standards Institute (formerly the National Committee for Clinical Laboratory Standards) methods and interpretative criteria. The predominant pathogens included Staphylococcus aureus (ranked 1st in all geographic regions), Pseudomonas aeruginosa, Escherichia coli, and Enterococcus spp. A considerable variation in the methicillin (oxacillin)-resistant S. aureus rate was noted between countries and continents, with the overall rate highest in North America (35.9%) compared with Latin America (29.4%) and Europe (22.8%). Vancomycin-resistant Enterococcus spp. increased in Europe (4.1%) and North America (6.2%) during the period, but remained low and relatively unchanged in Latin America. Among the P. aeruginosa isolates tested, susceptibility to imipenem was much lower in Latin America (65.3%) compared with the other regions (80.7-88.7%), and resistance being associated with an increase in metallo-beta-lactamase-producing strains in Latin America and in some European countries. Multidrug-resistant strains of P. aeruginosa were also more of a concern in Latin America (24.7%) compared with Europe (10.8%) or North America (3.2%). Latin America also had the highest occurrence of extended-spectrum beta-lactamase-producing isolates among E. coli (15.1%) and Klebsiella spp. (48.0%) when compared with other regions. Continued surveillance of pathogen prevalence and antimicrobial resistance patterns should provide information that is important to improve empiric care particularly in the hospital environment.

Anti-Bacterial Agents↗

Activity of DX-619 compared to other agents against viridans group streptococci, Streptococcus bovis, and Cardiobacterium hominis.

Against 198 viridans group streptococci, 25 Streptococcus bovis strains, and 5 Cardiobacterium hominis strains, MICs of DX-619, a des-F(6)-quinolone, were between 0.004 and 0.25 microg/ml. These MICs were lower than those of other quinolones (< or = 0.008 to > 32 microg/ml). Beta-lactam MICs were between < or = 0.008 and 16 microg/ml. Azithromycin resistance was found in most species, while most were telithromycin susceptible. Glycopeptides and linezolid were active against viridans group strains but inactive against C. hominis.

Acetamides↗

Emergence of serine carbapenemases (KPC and SME) among clinical strains of Enterobacteriaceae isolated in the United States Medical Centers: report from the MYSTIC Program (1999-2005).

Among 8885 Enterobacteriaceae tested in the 1999 to 2005 period as part of the USA Meropenem Yearly Susceptibility Test Information Collection (MYSTIC) Program, 51 strains with increased imipenem and meropenem MIC values (> or =2 microg/mL) were detected. bla(KPC) was identified from 28 Klebsiella pneumoniae from 3 medical centers in the New York City area (8 ribotypes), 2 Klebsiella oxytoca from Arkansas (same ribotype), 7 Citrobacter freundii (6 from New York [5 ribotypes] and 1 from Delaware), 4 Enterobacter spp. from New York (2 species, different ribotypes), 3 Escherichia coli (2 from New York and 1 from Ohio, same ribotype), and 1 Serratia marcescens (New York). Sequencing confirmed KPC-2 or -3 in all of the strains. S. marcescens strains harboring SME-1 (2 isolates, same ribotype) and SME-2 (1 isolate) were identified from medical centers in Illinois and Washington state, respectively. Our results indicate that bla(KPC-2/3) has emerged widely (New York City area, Arkansas, Delaware, and Ohio) among Enterobacteriaceae isolated in the MYSTIC Program participant sites (2000-2005) and continues to be isolated from multiple species, as a result of clonal expansion and horizontal gene transfer. The escalating occurrence (0.35%) of serine carbapenemases could compromise the role of carbapenems and other beta-lactams in USA clinical practice although observed in only a few locations to date.

Academic Medical Centers↗

Tigecycline (GAR-936) activity against Streptococcus gallolyticus (bovis) and viridans group streptococci.

Viridans group streptococci including Streptococcus gallolyticus (formerly S. bovis) represent serious invasive pathogens often associated with endocarditis or sepsis among immunocompromised or cancer patients. Tigecycline (GAR-936), the first clinically studied glycylcycline, has a potent gram-positive activity with a potential treatment option for these streptococcal infections. The studied collection (848 strains) included 100 isolates each of Streptococcus anginosus, Streptococcus constellatus, Streptococcus intermedius, Streptococcus mitis, Streptococcus oralis, Streptococcus salivarius, Streptococcus sanguis, and fewer strains of S. gallolyticus (98 strains) and Streptococcus mutans (50 strains). These strains were isolated from patients on 3 continents in the SENTRY Antimicrobial Surveillance Program and tested for susceptibility and interpreted by Clinical and Laboratory Standards Institute broth microdilution methods and criteria (< or = 0.25 microg/mL for tigecycline per US Food and Drug Administration). Penicillin susceptibility rates for the entire collection varied from 61% (S. sanguis) to 98% (S. constellatus), and macrolide susceptibility was also compromised (49-88%; average, 69%). Tigecycline was active against all isolates tested, in contrast to tetracycline resistance rates of 8-66%, and highest for S. gallolyticus. In conclusion tigecycline was quite active against bacteremic isolates of viridans group streptococci species and S. gallolyticus with an overall MIC90 at < or = 0.06 microg/mL; the highest MIC was only 0.25 microg/mL.

Anti-Bacterial Agents↗

Contemporary activity of meropenem and comparator broad-spectrum agents: MYSTIC program report from the United States component (2005).

The Meropenem Yearly Susceptibility Test Information Collection Program is a 9-year-old antimicrobial resistance surveillance network of more than 100 medical centers worldwide, including 15 sites in the United States (US) that monitors the susceptibility of Gram-negative and Gram-positive bacterial pathogens especially to carbapenems. In 2005, the antimicrobial activity of 11 broad-spectrum agents was assessed against 2910 bacterial isolates (2493 Gram-negative and 417 staphylococci) submitted from the US medical centers to a reference laboratory using Clinical and Laboratory Standards Institute susceptibility testing methods and interpretative criteria. Meropenem continued to demonstrate 1) high potency with MIC(90) values 4- to 16-fold lower than imipenem against the Enterobacteriaceae, 2) equal activity against Pseudomonas aeruginosa, 3) 2-fold less activity compared with imipenem against Acinetobacter spp., and 4) 4- to 8-fold less activity compared with imipenem against the oxacillin-susceptible staphylococci. The wide spectrum of activity for carbapenems against Enterobacteriaceae (1657 strains) was confirmed by the overall rank order by percentage susceptibility at breakpoint criteria: imipenem (98.9%) > meropenem (98.7%) > cefepime (97.6%) > piperacillin/tazobactam (92.0%) > ceftriaxone (91.2%) > aztreonam (90.6%) > gentamicin = tobramycin (90.5%) > ceftazidime (90.4%) > levofloxacin (84.9%) > ciprofloxacin (83.9%). Against Acinetobacter spp. isolates, only tobramycin (92.0% susceptible) and carbapenems (92.0-85.6%) exhibited acceptable levels of activity. A continued increase in the resistance rate for both ciprofloxacin and levofloxacin was observed with highest rates found among indole-positive Proteae species (36.5-33.3%) and Escherichia coli (21.6-20.4%) isolates, some documented by molecular typing methods as clonally related. Ongoing surveillance of meropenem and other broad-spectrum antimicrobial agents appears warranted to monitor the potency and spectrum of activity against indicated Gram-negative and-positive pathogens causing serious infections in the hospital setting, and to detect the emergence of new or novel resistance mechanisms that could compromise clinical utility (serine and metallo-carbapenemases).

Anti-Bacterial Agents↗

Assessment of pathogen frequency and resistance patterns among pediatric patient isolates: report from the 2004 SENTRY Antimicrobial Surveillance Program on 3 continents.

Selecting empiric or directed therapy for pathogens isolated from pediatric patients can be problematic. Many antimicrobial agents are not indicated for use in pediatric patients, and regional variations of resistance mechanisms have been reported. The purpose of this study was to analyze antimicrobial resistance patterns and pathogen occurrence rates in pediatric-aged patient infections on 3 continents using data from the SENTRY Antimicrobial Surveillance Program. A total of 3537 clinical isolates were collected from 47 medical centers in 2004. With a protocol that dictated a sampling of 80 consecutive isolates from children (< or =18 years of age), all samples were forwarded to a central laboratory for reference susceptibility testing. Broth microdilution methods and current Clinical and Laboratory Standards Institute breakpoint criteria were used. The 15 most frequently observed pathogens accounted for 93.6% of all isolates. Staphylococcus aureus was the most common pathogen isolated in North America (27.4%) and Europe (19.0%), but Escherichia coli was most common in Latin America (19.3%). All Streptococcus pneumoniae strains from North America and Latin America were susceptible to the newer fluoroquinolones, gatifloxacin and levofloxacin. However, 2 S. pneumoniae strains from Italy were resistant to gatifloxacin, levofloxacin, and ciprofloxacin (> or =4 microg/mL). Ribotype and pulsed-field gel electrophoresis patterns found that these resistant pneumococci were clonal. Numerous strains of Klebsiella spp. (22.5%), E. coli (4.5%), and Proteus mirabilis (4.9%) exhibited phenotypic extended-spectrum beta-lactamase resistance patterns. Four Pseudomonas aeruginosa strains (3 from Latin America and 1 from Europe) were multidrug resistant, 2 P. aeruginosa isolates from Turkey were resistant to polymyxin B (> or =4 microg/mL), and 8.7% of Stenotrophomonas maltophilia isolates from Latin America were resistant to the "drug of choice", trimethoprim/sulfamethoxazole. Physicians should be aware of pathogen occurrences that vary by children's age, geographic location, and prior antimicrobial exposure. Therefore, continued surveillance will be necessary to monitor emerging antimicrobial resistance in the pediatric patient population, especially because new agents such as the fluoroquinolones are used to a greater extent in this age group.

Adolescent↗

Comparisons of parenteral broad-spectrum cephalosporins tested against bacterial isolates from pediatric patients: report from the SENTRY Antimicrobial Surveillance Program (1998-2004).

A contemporary collection of 12737 strains from pediatric patients (<18 years) isolated over a 7-year period (1998-2004) from 52 sentinel hospitals in North America was tested to determine the comparative antimicrobial potency of broad-spectrum parenteral cephalosporins and selected comparator agents. Most of the strains (84.1%) were isolated from blood stream or respiratory tract infections. The rank order of the top 10 pediatric pathogens analyzed was Streptococcus pneumoniae (15.5%) >Haemophilus influenzae (14.6%) >Staphylococcus aureus (13.8%) >Moraxella catarrhalis = coagulase-negative staphylococci (8.0%) >Escherichia coli (7.8%) >Pseudomonas aeruginosa (5.2%) >Klebsiella spp. (4.8%) >Enterococcus spp. (4.7%) > beta-hemolytic streptococci (4.4%). Both cefepime and ceftriaxone (MIC(90), 1 microg/mL; 93.9% and 93.7% susceptible, respectively) were highly active against S. pneumoniae. However, the S. pneumoniae strains showed reduced susceptibility to ceftazidime (56.6%), as well as penicillin (56.6%) < trimethoprim-sulfamethoxazole (57.1%) < erythromycin (66.2%) < tetracycline (71.4%). beta-Hemolytic streptococci showed 100.0% susceptibility to penicillin, cefepime, and ceftriaxone. Cefepime and ceftriaxone exhibited high activity against oxacillin (methicillin)-susceptible S. aureus, (MIC(90), 4 microg/mL; 100.0% and 99.8% susceptible, respectively), whereas ceftazidime (MIC(90), 16 microg/mL) was active against only 86.7% of strains. H. influenzae strains showed complete susceptibility to cefepime, ceftriaxone, and levofloxacin (MIC(90), < or =0.5 microg/mL; 100.0%), and 34.0% of H. influenzae and 99.2% of M. catarrhalis strains produced beta-lactamase. Although the 3 cephalosporins tested (cefepime, ceftriaxone, and ceftazidime) were very active (98.6-99.6% susceptible) against E. coli, cefepime (99.0% susceptible) was slightly more active than ceftriaxone and ceftazidime (96.4% and 95.1% susceptible, respectively) against Klebsiella spp. Cefepime was also the most active beta-lactam agent tested against Enterobacter spp. (MIC(90), 2 microg/mL; 99.3% susceptible), whereas the susceptibility rates of other broad-spectrum beta-lactams (ceftriaxone, ceftazidime and piperacillin-tazobactam) were significantly lower (78.4-81.5%). Against P. aeruginosa, imipenem and piperacillin-tazobactam showed the highest susceptibility rates (94.4% and 93.3%, respectively), whereas imipenem and cefepime showed the lowest resistance rates (1.4% and 2.3%, respectively). Our results indicate that cefepime was the most broad-spectrum cephalosporin analyzed and remains a very potent alternative for the treatment of contemporary pediatric infections in North America.

Adolescent↗

Pharmacodynamics of cefprozil against Haemophilus influenzae in an in vitro pharmacodynamic model.

An in vitro pharmacodynamic model was used to determine the pharmacokinetic-pharmacodynamic (PK-PD) measure and magnitude most strongly related to cefprozil activity against Haemophilus influenzae. Using 3 clinical isolates of H. influenzae, a series of dose-fractionation studies were conducted, simulating cefprozil pediatric pharmacokinetics. The studies were designed to deliver a range of free cefprozil AUC(24) given once daily, twice daily, and by continuous infusion (CI). Drug effect, characterized by computing the log(10) ratio of the area under the 24-h bacterial colony-forming unit (CFU) (AUC(CFU)) curve to drug-free control, was fit to a Hill-type model for 3 PK-PD measures of activity: AUC(24)/MIC, C(max)/MIC, and %T > MIC. Once daily regimens provided much less activity than twice daily or CI regimens. AUC(24)/MIC and %T > MIC characterized the data well, whereas C(max)/MIC did not. Based on the PK-PD model results, for cefprozil twice daily, 50% and 80% of maximum drug effect (E(max)) was achieved at a %T > MIC of approximately 52% and 75%, respectively. A 2-log(10) reduction in log(10) ratio would require free drug %T > MIC of 58% or AUC(24)/MIC of 86. Bacteriostasis was achieved at a %T > MIC and an AUC(24)/MIC of approximately 25% and 30%, respectively. An in vitro pharmacodynamic model was able to characterize the PK-PD of cefprozil against H. influenzae. Consistent with limited clinical data, a minimum %T > MIC of 40% to 50% would be suggested to achieve in vivo activity in otitis media, with maximal activity at approximately 70%T > MIC.

Anti-Bacterial Agents↗

Influence of patient age on the frequency of occurrence and antimicrobial resistance patterns of isolates from hematology/oncology patients: report from the Chemotherapy Alliance for Neutropenics and the Control of Emerging Resistance Program (North America).

The Chemotherapy Alliance for Neutropenics and the Control of Emerging Resistance Program (CANCER) monitored the susceptibility of pathogens recovered in hematology/oncology centers from 2000 to 2002. A total of 3970 isolates from 32 hospitals (26 United States, 6 Canada) were analyzed at a central location (JMI Laboratories, North Liberty, IA) for trends in pathogen occurrence and reference antimicrobial susceptibility profiles. The top 5 ranking pathogens were Staphylococcus aureus (19.3%), coagulase-negative staphylococci (CoNS) (14.1%), Escherichia coli (13.4%), Enterococcus spp. (10.2%), and Klebsiella spp. (9.5%). A total of 35.5% of S. aureus and 78.8% of CoNS were resistant to oxacillin, whereas 22.0% of Enterococcus spp. were resistant to vancomycin. E. coli and Klebsiella spp. were highly susceptible (>90%) to piperacillin/tazobactam, 3rd-generation cephalosporins, and ciprofloxacin, but 3.9% and 2.4% of these species, respectively, met screening criteria for extended spectrum beta-lactamase production. Enterobacter spp. were less susceptible to piperacillin/tazobactam, ceftazidime, and ceftriaxone (83.7-88.2%) because of Amp C production and were most inhibited by cefepime and imipenem. Amikacin and polymyxin B were very active against Pseudomonas aeruginosa (97.4-97.7% susceptible). Prevalence of S. aureus, E. coli, Enterobacter spp., and Klebsiella spp. increased significantly (+48% to 98%) with age, whereas CoNS and viridans group streptococci decreased markedly (-62% to 69%) with advancing age. The isolation of Gram-positive pathogens declined (55% to 47%) with age (< or =14 to > or =65 years). Fluoroquinolones generally exhibited decreased susceptibility with increased age against nearly all listed pathogens. Oxacillin resistance rates for S. aureus increased with age (6-46%) as did vancomycin resistance rates for enterococci (nil in < or =14 years group to 18-24% in adults). Pathogens infecting neutropenic patients did not reflect greater resistance than those found in the general hospitalized patients. Gram-positive organisms were only slightly more predominant (53.4%), and cited age-related variations in pathogen occurrence and/or susceptibility patterns by species must be considered for empiric regimes for hematology and oncology patients.

Adolescent↗

Update on the cefdinir spectrum and potency against pathogens isolated from uncomplicated skin and soft tissue infections in North America: are we evaluating the orally administered cephalosporins correctly?

The spectrum and potency of cefdinir, an orally administered cephalosporin, was reevaluated for the uncomplicated skin and soft tissue infection (uSSTI) indication using contemporary isolates from 2004 to 2005. Cefdinir continues to have high rates of susceptibility against methicillin-susceptible staphylococci (100.0%), beta-hemolytic streptococci (groups A and B; 100.0%), viridans group streptococci (88.9%), Escherichia coli (93.2%), and Klebsiella pneumoniae (90.0%). No diminished activity was detected since the last evaluation (1997-2002 isolates), and cefdinir remains significantly more potent (4- to 16-fold) than cephalexin, even when using surrogate agents of cephalexin susceptibility that were suspect for estimating true clinical utility. Activity greater than cephalexin (4-fold) was also noted for cefdinir against community-associated methicillin-resistant Staphylococcus aureus isolates. Cefdinir should be considered as a viable option for the therapy uSSTI caused by indicated species.

Administration, Oral↗