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Recent advances in the chemistry and biology of carbapenem antibiotics.

The discovery of the olivanic acids and thienamycin aroused considerable interest amongst medicinal chemists and microbiologists around the world. The susceptibility of these agents to metabolic degradation has, however, been a major obstacle in their development. For many years the only notable success from such intensive research was the combination of imipenem with cilastatin, an inhibitor of the renal dipeptidase enzyme DHP-1. The enormous success of Primaxin for the treatment of a range of life-threatening bacterial infections provided the impetus for the discovery of totally synthetic, non-natural carbapenem derivatives that combine the broad spectrum of antimicrobial activity with stability to enzymatic degradation. This has indeed been realised in the development of meropenem; it possesses the broad spectrum of activity and resistance to beta-lactamases that are embodied in imipenem as well as displaying increased stability to human dehydropeptidases. Most recent research has focused upon the development of carbapenem antibiotics which combine broad spectrum antimicrobial activity and metabolic stability with oral absorption, for the treatment of community-acquired infections. Indeed, the pro-drug esters of the tricyclic carbapenems represent the first significant advance in this respect. However, the increased use of carbapenem antibiotics would undoubtedly accelerate the emergence of carbapenem-hydrolysing enzymes. The ultimate challenge could therefore be the design and synthesis of carbapenem derivatives that are resistant to these metallo-beta-lactamases. Due to the enormous problems encountered in the development of the carbapenem antibiotics, this area of research has, in the past, been described as a battlefield that did not bode well for the future [181]. Primaxin and meropenem proved however that these problems were not insurmountable, and are therefore a testimony to the persistence and dedication of those scientists in their war against bacterial infection.

Bacterial Infections↗

[Clonal diversity and antimicrobial susceptibility of Acinetobacter baumannii isolated in Spain. A nationwide multicenter study: GEIH-Ab project (2000)].

INTRODUCTION: A nationwide multicenter study was performed in Spain to evaluate the clonal diversity and antimicrobial susceptibility of Acinetobacter baumannii clinical isolates. METHODS: A total of 221 consecutive A. baumannii isolates recovered from clinical samples from 25 Spanish hospitals during November 2000 were studied. Isolate identification was performed by phenotyping methods and by amplified rDNA restriction analysis. Clonal relationships among A. baumannii isolates were determined by pulsed field gel electrophoresis. MICs of amikacin (AK), ampicillin (AP), cephalothin (CF), cefoxitin (FX), ceftazidime (CZ), ciprofloxacin (CP), cotrimoxazole (T/S), doxycycline (DX), gemifloxacin (GX), gentamicin (GN), imipenem (IP), meropenem (MP), minocycline (MI), piperacillin (PP), polymyxin B (PB), rifampicin (RI), tetracycline (TT), sulbactam (SB) and tobramycin (TO) were determined by microdilution (NCCLS guidelines). RESULTS: Seventy-nine A. baumannii clones were differentiated. MIC50/MIC90 (mg/L) values for the 221 A. baumannii isolates were PP: > 512/> 512; AP, CF, FX: > 256/> 256; TT, GN: > 128/> 128; CZ: 128/> 256; CP: > 64/> 64; FP: 64/256; AK: 32/256; DX: 32/64; GX: > 16/> 16; TO: 16/128; SB, T/S: 16/64; MP: 8/> 128; IP: 4/128; RF: 4/8; MI: 2/16 and PB: 1/2. Percentages of susceptible isolates were PB: 100%; MI: 65.8%; IP: 52.5%, RF: 49.3%; SB: 46.7%; MP: 43.1%; AK: 34.7%; DX: 32.0%; TO: 21.3% and CZ, FP, GN, T/S, TT, GX, CP, AP, PP, CF and FX: < 20%. CONCLUSIONS: A. baumannii isolates show high clonal variability in Spain. The most active antimicrobial agents against this organism were polymyxin B, minocycline, rifampicin, imipenem, sulbactam, meropenem, amikacin and doxycycline.

Acinetobacter Infections↗

Respiratory tract pathogens isolated from patients hospitalized with suspected pneumonia: frequency of occurrence and antimicrobial susceptibility patterns from the SENTRY Antimicrobial Surveillance Program (United States and Canada, 1997).

Thirty-seven sentinel hospitals (29 in the United States [US]; eight in Canada) collected bacterial isolates from hospitalized patients with a diagnosis of pneumonia. The antimicrobial susceptibility patterns of these pathogens were determined to more than 60 agents (40 reported) using the reference broth microdilution method described by the National Committee for Clinical Laboratory Standards. The five most frequently recorded species among the 2757 isolates collected during the study were (no. tested/%): Staphylococcus aureus (632/22.9%), Pseudomonas aeruginosa (498/18. 1%), Haemophilus influenzae (284/10.3%), Klebsiella spp. (240/8.7%), and Streptococcus pneumoniae (213/7.7%). There was a significant difference in the susceptibility to antimicrobials between the US and Canada for S. aureus to oxacillin (50.1% versus 93.8% susceptible, respectively), gentamicin (78.7% versus 97.8%), and fluoroquinolones (49.5 to 53.0% versus 89.8 to 94.9%). Amikacin (92. 8% susceptible) was the most active antimicrobial agent against P. aeruginosa, and meropenem was the most potent beta-lactam. Against H. influenzae, most drugs retained a high level of activity, whilst against the S. pneumoniae, only the newer fluoroquinolones (gatifloxacin, levofloxacin, sparfloxacin) remained highly effective in vitro. Only two antimicrobial agents (imipenem and meropenem) were >99% active against the Klebsiella spp. and Enterobacter spp. isolated in this survey (possess extended spectrum beta-lactamases or hyperproduction of Amp C cephalosporins); cefepime (95.6-100.0% susceptible) was significantly more active than other cephalosporins tested. Clonal, epidemic outbreaks of multiply resistant strains were very rare in monitored hospitals. In conclusion, important differences exist between the US and Canada in the susceptibility patterns of some respiratory tract pathogens to commonly used antimicrobial agents with Canadian strains generally being more susceptible to currently available antimicrobial agents.

Anti-Bacterial Agents↗

Antibacterial activity of 41 antimicrobials tested against over 2773 bacterial isolates from hospitalized patients with pneumonia: I--results from the SENTRY Antimicrobial Surveillance Program (North America, 1998).

Pneumonia is the second most frequent cause of nosocomial infection, and hospitalization frequently is needed for community-acquired pneumonia. Knowledge of causative pathogens through periodic surveillance, and their prevailing antimicrobial susceptibility patterns becomes paramount in choosing appropriate empiric therapy. The SENTRY Antimicrobial Surveillance Program, tracks pathogen distribution worldwide since 1997 and documents emerging resistance to a wide range of antimicrobial agents. During the respiratory disease season in 1998, each of 30 medical centers (25 in the United States [US], and five in Canada [CAN]) contributed 100 consecutive isolates obtained from hospitalized patients with suspected pneumonia. The 2773 organisms, processed by the monitor consisted of a total of 35 species, with Staphylococcus aureus comprising 25.6% of all isolates and five other species (Pseudomonas aeruginosa 18.7%, Haemophilus influenzae 9.4%, Streptococcus pneumoniae 7.8%, Klebsiella spp. 7.0%, and Enterobacter spp. 6.7%) making up almost 50% of the total. In the US, pneumococci (8.5%) were more prevalent than in CAN (4.1%; p = 0.001). The US isolates of S. pneumoniae were variably susceptible to penicillin (76.8%), with non-susceptible strains demonstrating greater levels of cross resistance to macrolides (31.8%), cefepime (9.0%) and cefotaxime (6.8%), but remaining susceptible to gatifloxacin and quinupristin/dalfopristin. H. influenzae and Moraxella catarrhalis were generally ampicillin-resistant, 40.4-44.4% and 93.7-95.7%, respectively. P. aeruginosa remained very susceptible to amikacin (91.3-93.8%) > tobramycin > meropenem > piperacillin/tazobactam > gentamicin > piperacillin > cefepime (80.0-81.8%). Extended spectrum beta-lactamase phenotypes among the Klebsiella spp. were isolated from five medical centers in the US and were 4.8-6.0% overall; a rate similar to the previous year. Among the US isolates of Enterobacter spp., only 77.6% and 79.6% were susceptible to ceftazidime and cefotaxime, respectively, but >90% were inhibited by cefepime, imipenem, meropenem, aminoglycosides, and fluoroquinolones. Isolates from CAN were generally more susceptible, except for Pseudomonas isolates, where resistance to aminoglycosides, fluoroquinolones and imipenem was greater. The SENTRY Program results outline important national differences in the frequencies of pathogen occurrence, but more importantly, identify unstable patterns of resistance to available antimicrobial drugs, and serves as a reference for results of other local, national or international investigations.

Adolescent↗

Determining the value of antimicrobial surveillance programs.

Antimicrobial surveillance programs provide important information on the development of bacterial resistance mechanisms in different geographical regions. Data concerning these mechanisms and patterns of antimicrobial resistance allows the implementation of changes in antimicrobial prescribing practices and infection control interventions. The three most widely known global surveillance programs currently in active operation are: The Meropenem Yearly Susceptibility Test Information Collection (MYSTIC), The SENTRY Antimicrobial Surveillance Program, and The Alexander Project. This presentation reviews these surveillance programs, using a set of key criteria in order to assess the significance of each program in monitoring the spread of antimicrobial resistance. The content of the MYSTIC Program monitors the in vitro performance of meropenem in hospital units in which this drug is actively prescribed. This distinguishes the MYSTIC Program from the other two major surveillance programs as it seeks to correlate antimicrobial resistance data, collected from high carbapenem usage institutions, with antimicrobial prescribing patterns over time. The MYSTIC Program and other assessed networks appear to be both valuable and complementary in their design and function.

Drug Resistance, Bacterial↗

Respiratory tract pathogens isolated from patients hospitalized with suspected pneumonia in Latin America: frequency of occurrence and antimicrobial susceptibility profile: results from the SENTRY Antimicrobial Surveillance Program (1997-2000).

In spite of the recent medical advances, lower respiratory tract infections are still the most frequent infectious causes of mortality worldwide. The objective of this study was to determine the frequency of occurrence and antimicrobial susceptibility of bacterial isolates collected from hospitalized patients with pneumonia in Latin American medical centers during the first four years of the SENTRY Program. The five most frequently isolated species were (n/%): Pseudomonas aeruginosa (659/26.3%), Staphylococcus aureus (582/23.3%), Klebsiella pneumoniae (255/10.2%), Acinetobacter spp. (239/9.6%), and Enterobacter spp. (134/5.4%). P. aeruginosa demonstrated high rates of resistance to most of the antimicrobials tested. Against P. aeruginosa, the most active agents were meropenem (MIC(50), 1 microg/ml; 71.6% susceptible), amikacin (MIC(50), 4 microg/ml; 71.0% susceptible), and piperacillin/tazobactam (MIC(50), 16 microg/ml; 70.4% susceptible). Imipenem (MIC(50), 1 microg/ml; 84.1% susceptible) and meropenem (MIC(50), 2 microg/ml; 84.9% susceptible) were the most active agents against Acinetobacter spp. followed by tetracycline (MIC(50), </=4 microg/ml; 52.3% susceptible). Although the broad-spectrum cephalosporins had demonstrated excellent in vitro activity against Klebsiella pneumoniae isolates (MIC(50)s range, </= 0.12 to 0.25 microg/ml), elevated rates of resistance (46.3%-58.5%) were observed. Approximately 44.0% and 29.0% of K. pneumoniae and E. coli isolates were considered ESBL producers based on NCCLS criteria, respectively. Overall, the prevalence of methicillin-resistant S. aureus was 46.2%. The most active drugs against this pathogen were vancomycin, teicoplanin, linezolid and quinupristin/dalfopristin. In summary, the SENTRY Antimicrobial Surveillance Program has detected a high prevalence of methicillin-resistant S. aureus and multidrug resistant non-fermentative Gram-negative bacilli isolated from respiratory tract specimens of hospitalized patients with pneumonia in Latin America. Our results emphasize the importance of local surveillance programs in correctly guiding empiric therapy and local intervention programs in attempt to reduce antimicrobial resistance.

Anti-Bacterial Agents↗

Pathogen of occurrence and susceptibility patterns associated with pneumonia in hospitalized patients in North America: results of the SENTRY Antimicrobial Surveillance Study (2000).

Antimicrobial selection for patients diagnosed with pneumonia is a major therapeutic challenge and dilemma to the clinical practitioner. In the community setting, patients usually receive empiric oral therapy based upon multiple patient risk factors and locally prevalent pathogen susceptibilities. For patients admitted to the hospital with pneumonia, or who acquire pneumonia while in the hospital, therapy can be initially empiric and then become directed once culture and susceptibility results are known. The SENTRY Antimicrobial Surveillance Program since 1997, has monitored pathogen frequency and antimicrobial susceptibilities in hospitalized patients with pneumonia in North America. In this Study 2,712 pathogens were studied from 30 medical centers (25 in the United States and 5 in Canada). Over 30 species of organisms were recovered with Staphylococcus aureus comprising 28.0% of all isolates and with four other species (Pseudomonas aeruginosa 20.0%, Streptococcus pneumoniae 9.1%, Klebsiella spp. 7.5% and Haemophilus influenzae 7.3%) constituted 71.9% of isolates submitted. Methicillin (oxacillin)-resistant S. aureus accounted for 43.7% of all S. aureus isolates. Antimicrobials demonstrating significant (>80%) activity against S. aureus were: chloramphenicol (81.6%), tetracycline (91.4%), rifampin (96.4%) and quinupristin/dalfopristin (99.7%); and no isolate was resistant to glycopeptides or linezolid. North American isolates of P. aeruginosa were most susceptible to amikacin (93.7%) > tobramycin (90.2%) > meropenem (89.1%) > imipenem = piperacillin/tazobactam (85.6%) > piperacillin (82.1%) > cefepime (80.5%). Overall, 32.1% of S. pneumoniae were penicillin non-susceptible while erythromycin susceptibility was only 74.8%. Fluoroquinolones and recent generation cephalosporins retained excellent activity (gatifloxacin [99.2%] > levofloxacin = cefepime [98.8%] > ceftriaxone [97.2%]) against S. pneumoniae. Klebsiella spp. were 100.0% susceptible to the carbapenems (meropenem and imipenem) but extended spectrum beta-lactamases were detected at a rate of 5.4%. The beta-lactamase-positive rate in H. influenzae was 28.6% in North America (71.4% ampicillin-susceptible). The SENTRY Antimicrobial Surveillance Program continues to identify important North American patterns of pathogen frequency and resistance. Additionally, the provision of multi-year longitudinal data and associated reports allow for comparisons, which function as critical tools for effective patient management and antimicrobial interventions.

Anti-Bacterial Agents↗

Beta-lactam stability in frozen microdilution PASCO MIC panels using strains with known resistance mechanisms as biosensors.

The stability of amoxicillin/clavulanate, piperacillin/tazobactam, cefepime, imipenem, and meropenem in PASCO (PASCO System, DIFCO Laboratories, Detroit, MI, USA) frozen microdilution susceptibility panels stored for 16 weeks at -20 degrees C and -70 degrees C was evaluated. The increase in MIC values for the five American-Type Culture Collection (ATCC) quality control strains for susceptibility testing recommended by the National Committee for Clinical Laboratory Standards (NCCLS) and for 13 strains with different well-characterized resistance mechanisms was indicative of bioactivity deterioration. The overall agreement (+/- 1 twofold dilution) at purchase between the MIC values of PASCO frozen microdilution susceptibility panels and the standard agar dilution method was 97.7%. Minimum inhibitory concentration values for the associations of amoxicillin/clavulanate and piperacillin/tazobactam remained unchanged for the study period at -70 degrees C. In contrast, a carbapenem bioactivity decrease was detected only with strains having well-characterized resistance mechanisms from the 12th week onwards. At -20 degrees C, antibiotic deterioration with these latter strains was observed earlier than with ATCC strains: the activity of meropenem and imipenem remained unchanged only for the first 2 weeks, while a loss of activity was detected for amoxicillin/clavulanate and piperacillin/tazobactam at the 7th and 10th week, respectively. Cefepime was highly stable both at -20 degrees C and -70 degrees C. Strains with well-characterized resistance mechanisms should be used in routine quality control studies of antibiotic stability for susceptibility testing panels during the storage period.

Anti-Bacterial Agents↗

Bacterial pathogens isolated from patients with skin and soft tissue infections: frequency of occurrence and antimicrobial susceptibility patterns from the SENTRY Antimicrobial Surveillance Program (United States and Canada, 1997). SENTRY Study Group (North America).

As part of the SENTRY Antimicrobial Surveillance Program, 1562 bacterial isolates were recovered from hospitalized patients with skin and soft tissue infections (SSTIs) in 30 United States (U.S.) and 8 Canadian medical centers between October and December, 1997. The overall rank order of recovery of the six most common pathogens was Staphylococcus aureus (42.6%) > Pseudomonas aeruginosa (11.3%) > Enterococcus spp. (8.1%) > Escherichia coli (7.2%) > Enterobacter spp. (5.2%) > beta-hemolytic streptocci (5.1%). With one exception, essentially the same order was observed in both the U.S. and Canada. The single exception was the Enterococcus group, which were the third most common isolate in the U.S. (9.6%), but the seventh most common isolate in Canada (3.7). Of note, 24.0% of S. aureus isolates were oxacillin resistant; vancomycin was uniformly active. Vancomycin resistance among Enterococcus spp. (16.5%) was observed only in the U.S. Several antimicrobial agents remained broadly active for SSTI isolates of P. aeruginosa, including meropenem, amikacin, tobramycin, and piperacillin with or without tazobactam. Imipenem resistance (MICs, > or = 8 micrograms/mL) was observed in 11.9% of isolates of P. aeruginosa and ceftazidime, and cefepime had equivalent activity (85.2% and 85.8% susceptible, respectively). Numerous beta-lactams, aminoglycosides and fluoroquinolones were broadly active against E. coli SSTI isolates (i.e. < 5% resistance). Extended-spectrum beta-lactamase production was uncommon both with E. coli and Klebsiella spp. in both nations. Cefepime, imipenem, and meropenem; the aminoglycosides; and fluoroquinolones were conspicuously more active against Enterobacter spp. than other agents tested. High-level, stably derepressed Amp C beta-lactamase production was commonly observed in this group (26.8%), but cefepime generally retained activity against these ceftazidime-resistant organisms. The results of this study serve to define the most common bacterial causes of SSTIs in North America, elucidate patterns of antimicrobial resistance and can be used as a basis for making initial empiric antimicrobial management decisions in hospitalized patients with such infections.

Anti-Bacterial Agents↗

The susceptibility of non-fermentative Gram-negative bacilli to cefperazone and sulbactam compared with other antibacterial agents.

This study was designed to determine the bacterial susceptibility of non-fermentative Gram-negative organisms to various antibacterial agents. Bacterial susceptibility testing used the Kirby-Bauer method and data were assessed according to NCCLS 2000. Cefoperazone/sulbactam (CPER/SU) had good antibacterial activity against Pseudomonas aeruginosa. Its activity was next only to that of imipenem, meropenem and ceftazidime. CPER/SU was highly active against Acinetobacter spp., Alcaligenes spp., Burkholderia spp., Stenotrophomonas maltophilia and Flavobacterium spp., while the majority of strains of the latter two species were resistant to imipenem and meropenem. Of 3905 isolates tested, 39.5% were susceptible to CPER, 70.4% to CPER/SU. The resistance rate was 37% for CPER and 10.8% for CPER/SU.

Anti-Bacterial Agents↗

Contemporary in vitro spectrum of activity summary for antimicrobial agents tested against 18569 strains non-fermentative Gram-negative bacilli isolated in the SENTRY Antimicrobial Surveillance Program (1997-2001).

The frequency of occurrence and antimicrobial susceptibility patterns of 18569 non-fermentative Gram-negative bacilli consecutively collected as part of the SENTRY Antimicrobial Surveillance Program were summarized. The isolates were tested by the broth microdilution method in three coordinator laboratories using common reagents and reference methodologies. The most frequently isolated pathogen was Pseudomonas aeruginosa (11968 isolates; 64.5%) followed by Acinetobacter spp. (3468 isolates; 18.7%) and Stenotrophomonas maltophilia (1488 isolates; 8.0%). The lowest resistance rates for P. aeruginosa documented were for amikacin (8%), meropenem (10%) and cefepime (10%), and all fluoroquinolones tested showed similar resistance rates (22-24%). The most active compounds against Acinetobacter spp. were the carbapenems, imipenem (11% resistance) and meropenem (12% resistance) followed by cefepime (31% resistance) and gatifloxacin (32% resistance). Very few compounds showed reasonable in vitro activity against S. maltophilia, with the most active antimicrobial agents being trimethoprim/sulphamethoxazole, gatifloxacin and levofloxacin (5-6% resistance). Resistance surveillance among these organisms remains necessary to guide empirical antimicrobial therapy, especially for these less frequently isolated and difficult to test pathogens.

Bacterial Infections↗

Comparative in-vitro activities of trovafloxacin, ciproflaxacin, ofloxacin, and broad-spectrum beta-lactams against aerobe blood culture isolates.

The in vitro activity of trovafloxacin, a new fluoroquinolone, was compared with that of ciprofloxacin, ofloxacin, fleroxacin, ceftazidime, piperacillin/tazobactam, and meropenem against 613 consecutively recovered blood isolates from recently hospitalized patients. Susceptibility testing was performed by agar dilution according to NCCLS guidelines. Test strains included Acinetobacter species (n = 26), Escherichia coli (n = 137), Enterobacter species (n = 27), Klebsiella species (n = 42), Proteus species (n = 16), Pseudomonas aeruginosa (n = 28), Serratia marcescens (n = 13), Stenotrophomonas maltophilia (n = 7), enterococci (n = 54), coagulase-negative staphylococci (n = 38), Staphylococcus aureus (n = 137), Streptococcus pneumoniae (n = 27), beta-haemolytic streptococci (n = 13), and viridans group streptococci (n = 48). The overall respective MICs at which 50% and 90% of isolates were inhibited (MIC50s and MIC90s) were as follows: trovafloxacin, 0.06 and 1 mg/l; ciprofloxacin, 0.25 and 4 mg/l; ofloxacin, 0.5 and 4 mg/l; fleroxacin, 0.5 and 16 mg/l; ceftazidime, 2 and 128 mg/l; piperacillin/tazobactam, 2 and 8 mg/l; meropenem, 0.06 and 4 mg/l. For the quinolones, the rank order of activity against gram-negative microorganisms was ciprofloxacin > trovafloxacin > ofloxacin = fleroxacin, against gram-positive organisms, trovafloxacin > ciprofloxacin = ofloxacin > fleroxacin. Data obtained showed the similar activity of trovafloxacin and ciprofloxacin against gram-negative pathogens and the superior activity of trovafloxacin against gram-positive bacteria thus making it a potential candidate for the empiric treatment of patients with suspected bacteremia and sepsis.

Anti-Bacterial Agents↗

Mechanistic studies on the mononuclear ZnII-containing metallo-beta-lactamase ImiS from Aeromonas sobria.

In an effort to understand the reaction mechanism of a B2 metallo-beta-lactamase, steady-state and pre-steady-state kinetic and rapid freeze quench electron paramagnetic resonance (EPR) studies were conducted on ImiS and its reaction with imipenem and meropenem. pH dependence studies revealed no inflection points in the pH range of 5.0-8.5, while proton inventories demonstrated at least 1 rate-limiting proton transfer. Site-directed mutagenesis studies revealed that Lys224 plays a catalytic role in ImiS, while the side chain of Asn233 does not play a role in binding or catalysis. Stopped-flow fluorescence studies on ImiS, which monitor changes in tryptophan fluorescence on the enzyme, and its reaction with imipenem and meropenem revealed biphasic fluorescence time courses with a rate of fluorescence loss of 160 s(-)(1) and a slower rate of fluorescence regain of 98 s(-)(1). Stopped-flow UV-vis studies, which monitor the concentration of substrate, revealed a rapid loss in absorbance during catalysis with a rate of 97 s(-)(1). These results suggest that the rate-limiting step in the reaction catalyzed by ImiS is C-N bond cleavage. Rapid freeze quench EPR studies on Co(II)-substituted ImiS demonstrated the appearance of a rhombic signal after 10 ms that is assigned to a reaction intermediate that has a five-coordinate metal center. A distinct product (EP) complex was also observed and began to appear in 18-19 ms. When these results are taken together, they allow for a reaction mechanism to be offered for the B2 metallo-beta-lactamases and demonstrate that the mono- and dinuclear Zn(II)-containing enzymes share a common rate-limiting step, which is C-N bond cleavage.

Aeromonas↗

Emerging carbapenemases in Gram-negative aerobes.

Carbapenemases may be defined as beta-lactamases that significantly hydrolyze at least imipenem or/and meropenem. Carbapenemases involved in acquired resistance are of Ambler molecular classes A, B, and D. Class A, clavulanic acid-inhibited carbapenemases are rare. They are either chromosomally encoded (NMC-A, Sme-1 to Sme-3, IMI-1) in Enterobacter cloacae and Serratia marcescens, or plasmid encoded, such as KPC-1 in Klebsiella pneumoniae and GES-2 in Pseudomonas aeruginosa, the latter being a point-mutant of the clavulanic acid-inhibited extended-spectrum beta-lactamase GES-1. The class B enzymes are the most clinically significant carbapenemases. They are metalloenzymes of the IMP or VIM series. They have been reported worldwide but mostly from South East Asia and Europe. Metalloenzymes, whose genes are plasmid and integron located, hydrolyze virtually all beta-lactams except aztreonam. Finally, the class D carbapenemases are increasingly reported in Acinetobacter baumannii but compromise imipenem and meropenem susceptibility only marginally. The sources of the acquired carbapenemase genes remain unknown, as does the relative importance of the spread of epidemic strains as opposed to the spread of plasmid- or integron-borne genes. Because most of these carbapenemases confer only reduced susceptibility to carbapenems in Enterobacteriaceae, they may remain underestimated as a consequence of the lack of their detection.

Amino Acid Sequence↗

In vitro anti-anaerobic activity of the cephalosporin derivative RWJ 54428, compared to seven other compounds.

Agar dilution MIC was used to test the activity of RWJ 54428, a new cephalosporin derivative, compared to imipenem, meropenem, ceftriaxone, piperacillin, piperacillin-tazobactam, clindamycin and metronidazole against 363 anaerobes isolated from clinical specimens. RWJ 54428 had low MICs against most beta-lactamase-negative Gram-negative rods, and all Gram-positive strains except Clostridium difficile. Imipenem and meropenem had the lowest MICs (MIC50s of 0.125 mg/L and MIC90s of 1.0 mg/L). Piperacillin-tazobactam, clindamycin and metronidazole were active against most strains, and ceftriaxone was active mainly against beta-lactamase-negative organisms.

Bacteria, Anaerobic↗

Development of resistance in Pseudomonas aeruginosa obtained from patients with cystic fibrosis at different times.

OBJECTIVE: Determination of the extent of changes in quantitative resistance in Pseudomonas aeruginosa isolates from patients with cystic fibrosis over a period of approximately 2 years. METHODS: Three hundred and ninety nine isolates of P. aeruginosa collected from 34 pediatric patients in the period between April 1994 and April 1996 were investigated. During the 2 years the children were treated with a combination of a betalactam and an aminoglycoside, approximately every 3 months. In between they received ciprofloxacin orally, when required. The minimal inhibitory concentrations (MICs) of 38 clones of P. aeruginosa defined by different patterns in macrorestriction analysis (pulse field gel electrophoresis, PFGE) were established for 12 antibiotics: gentamicin, amikacin, tobramycin, ciprofloxacin, levofloxacin, moxifloxacin, trovafloxacin, imipenem, meropenem, ceftazidime, cefepime, and piperacillin by means of broth microdilution tests according to DIN 58940. RESULTS: Twenty-four of the 38 clones developed increased MIC values during the time of observation especially for aminoglycosides and quinolones. Comparatively less affected were ceftazidime, imipenem and meropenem. An association between the number of the intravenous treatment courses and the increase of the MIC values could not be verified. CONCLUSIONS: A trend towards an increase of the MICs against antipseudomonal agents was observed over a limited period of time. It is necessary to prevent this development possibly by employing suitable combinations of antibiotics and the introduction of new substances.

Aminoglycosides↗

Treatment of pan-drug resistant Acinetobacter baumannii.

The objective of this study was to investigate the role of sulbactam in the treatment of pan-drug resistant Acinetobacter baumannii (PDRAB). We studied 89 patients with PDRAB infection treated with different antibiotic regimens. Group A (n = 39) were treated with carbapenem with sulbactam and group B (n = 30) with second and third generation cephalosporins, antipseudomonas penicillins, or fluoroquinolones with aminoglycosides. We also studied the MICs for 48 PDRAB strains by using antimicrobial agents with and without sulbactam. The clinical outcomes of the 2 groups did not differ significantly, either in terms of resolution of infection (25/59, 42% in group A vs 12/30, 40% in group B) or survival (35/59, 59% vs 17/30, 57%). However, the MICs indicated that 16 of the 48 strains were sensitive to imipenem/sulbactam, compared with only 2 of the 48 to imipenem alone. The addition of sulbactam thus reversed the response in 30% (14/46) of strains initially resistant or only intermediate sensitive to imipenem. The MICs for meropenem/sulbactam were in the sensitive range for 8 of 48 strains compared to only 3 of the meropenem alone, indicating an 11% (5/45) reversal rate when sulbactam was added to meropenem. For the 38 isolates initially resistant to both carbapenems alone, imipenem/sulbactam reversed the resistance in 16% (6/38), while meropenem/sulbactam did so in only 3% (1/38). Thus, the carbapenem-sulbactam combinations did not clearly improve clinical outcome, but they did demonstrate lower MICs for the PDRAB strains tested. It may be that aggressive, early treatment of A. baumannii infections with these agents might prevent the emergence of PDRAB strains.

Acinetobacter Infections↗

Four-year surveillance of major Gram-negative pathogens in a Saudi tertiary hospital: clinical distribution, comorbidity profiles, and antimicrobial resistance.

PURPOSE: To describe four-year diagnostic-distribution, burden, and antimicrobial-resistances of major Enterobacterales and Pseudomonas aeruginosa in a tertiary-care surveillance framework. PATIENTS AND METHODS: We retrospectively studied first non-duplicate-isolate per/patient/organism between 2022-2025 at a Saudi tertiary-care. Diagnostics used automated-platforms with GeneXpert-Carba-R employed parallel to cultures. Susceptibility interpretations used CLSI-breakpoints relevant to test-year. Annual-trends were assessed with grouped-binomial logistic-regression, and Benjamini-Hochberg false-discovery-rate correction was applied within prespecified analysis. RESULTS: Among 1,857 isolates, Klebsiella pneumoniae was most frequent (36.2%), followed by P.&#xa0;aeruginosa (33.4%), Escherichia coli (17.9%), and Enterobacter cloacae (12.3%). Mean patient age was 64.8&#x2009;years, 51.3% isolates were from intensive-care, 37.4% from urine, and 80.8% records had comorbidity. K.&#xa0;pneumoniae showed overall ESBL (76.6%), CRE (59.9%), MDR (69.3%), panel-defined XDR (64.7%), and panel-defined PDR (15.2%) frequencies. Enterobacterales ESBL-positivity increased (58.1% to 76.8%;q&#x2009;<0.001), whereas meropenem non-susceptibility decreased (52.6% to 33.2%;q&#x2009;<0.001). In P.&#xa0;aeruginosa, ceftazidime non-susceptibility increased (55.2% to 78.6%;q&#x2009;<0.001), meropenem decreased (46.8% to 32.9%;q&#x2009;=&#x2009;0.031), and tobramycin increased (22.2% to 45.7%;q&#x2009;=&#x2009;0.030). Crude-comorbidity differences remained insignificant after false-discovery-rate correction. CONCLUSION: We show a persistent species-specific Gram-negative resistance burden, led by K.&#xa0;pneumoniae and accompanied by substantial P.&#xa0;aeruginosa non-susceptibility. This supports organism-specific detections, antibiograms and continued multicenter-surveillance linked to antimicrobial exposure, genomic-data, and patient outcomes.

ESBL↗