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World-wide antibiotic resistance in methicillin-resistant Staphylococcus aureus.

Antibiotic resistance patterns were determined for 106 strains of methicillin-resistant Staphylococcus aureus (MRSA) from 21 countries. Resistance to gentamicin, tobramycin, netilmicin, amikacin, streptomycin, or erthromycin was recorded in more than 90% of strains. Resistance to the other compounds tested was as follows: tetracycline 86%, minocycline 76%, trimethoprim 69%, clindamycin 66%, neomycin 59%, chloramphenicol 39%, rifampicin 26%, fosfomycin 22%, ciprofloxacin 17%, fusidic acid 12%, bacitracin 2%, and novobiocin 1%. All the stains were sensitive to mupirocin, pristinamycin, ramoplanin, teicoplanin, and vancomycin. There were geographical patterns of resistance: MRSA from the UK and Australia were predominantly resistant to trimethoprim, whereas many strains from centres in Europe and the USA were sensitive. MRSA that were resistant to ciprofloxacin were of French and German origin. 15 strains, 12 of which came from France, Turkey, or Brazil, were resistant either to thirteen or to fourteen agents.

Administration, Topical↗

Resistance to methicillin and other antibiotics in isolates of Staphylococcus aureus from blood and cerebrospinal fluid, England and Wales, 1989-95.

BACKGROUND: Methicillin-resistant Staphylococcus aureus (MRSA) strains are colonising hospital patients in most areas of England and Wales, UK. The extent to which they cause invasive infection can be gauged from their presence in isolates from blood or cerebrospinal fluid. METHODS: About 200 clinical laboratories reported the results of susceptibility testing of between 4501 and 6370 isolates of S aureus from blood or cerebrospinal fluid in each of the years 1989-95. We assessed the rate of resistance to methicillin and other antibiotics for each of these years. FINDINGS: Resistance to methicillin was stable at about 1.5% of isolates during 1989-91, but increased thereafter to 13.2% in 1995 (p < 0.001). At the same time there was a significant increase in the percentage of isolates resistant to erythromycin, clindamycin, ciprofloxacin, gentamicin, trimethoprim, and rifampicin (p < 0.001 for each)-resistance characteristics often seen in MRSA. Resistance to benzylpenicillin increased slightly but significantly (p < 0.001); resistance to fusidic acid was stable (p > 0.05); resistance to tetracycline decreased significantly (p < 0.001). INTERPRETATION: Among cases of S aureus bacteraemia, the proportion due to MRSA has increased significantly. Bacteraemia due to MRSA has a poor prognosis, especially if not treated with suitable antibiotics. Therefore, these findings are important, especially for management of patients and the development of antibiotic policies.

Anti-Bacterial Agents↗

Susceptibility of Lactobacillus spp. to antimicrobial agents.

Bacteria used as probiotics or in starter cultures may serve as hosts of antibiotic resistance genes, which can be transferred to pathogenic bacteria. Before launching a starter culture or a probiotic product into the market, it is therefore important to verify that the single bacterial isolates (strains) do not contain transferable resistance genes. A study has been undertaken to establish the levels of susceptibility of Lactobacillus spp. to various antimicrobial agents. This is a prerequisite for differentiating putative transferable resistance from natural resistance. A selection of 62 strains has been screened with the use of the Etest (ABBiodisk, Stockholm, Sweden) for their susceptibility to 25 antimicrobial agents. The strains belonged to the following species: Lactobacillus plantarum/pentosus, L. rhamnosus, L. paracasei, L. sakei, L. curvatus and species of the L. acidophilus group: L. johnsonii, L. crispatus, L. gasseri, and L. acidophilus. The results from the Etests have shown that the level of susceptibility to the antimicrobial agents is species-dependent. For the following antimicrobial agents, susceptibility varied several folds between species: vancomycin, teicoplanin, tetracycline, norfloxacin, ciprofloxacin, fusidic acid, and clindamycin. The differences between the species were more subtle for the rest of the tested antimicrobial agents. On the basis of the result, it was possible to suggest minimal inhibition concentrations (MICs) for the individual Lactobacillus species to be used as a microbiological breakpoint when screening strains for transferable resistance genes.

Anti-Bacterial Agents↗

Control of an outbreak of an epidemic methicillin-resistant Staphylococcus aureus also resistant to mupirocin.

An epidemic methicillin-resistant Staphlococcus aureus (EMRSA-3) appeared in a District hospital in June 1989 as part of a regional outbreak. The dynamics of the outbreak were complex and involved patient transfer between hospitals and wards. Control measures followed UK guidelines and included the use of nasal mupirocin. During these efforts a mupirocin-resistant MRSA [MuMRSA: mupirocin minimum inhibitor concentration (MIC) > 256 mg/L] emerged, probably in a patient who had been given eight mupirocin courses over nine months. The MuMRSA had a narrower phage-typing pattern than EMRSA-3, but was indistinguishable by pulsed-field gel electrophoresis of SmaI chromosomal restriction enzyme digests and its susceptibility pattern to other antibiotics. The results of in vitro curing and gene probing indicated that mupirocin resistance was encoded on a 48 Md plasmid. MuMRSA spread occurred in 12 patients and 11 staff. The affected patients were nursed on the same ward. The strain was eradicated from patients with oral ciprofloxacin and rifampicin, triclosan skin treatment and nasal fusidic acid and bacitracin cream. The control of the outbreak had significant medical, social and financial implications. Fortunately, there were alternative topical agents to mupirocin, an agent which has played such a key role in MRSA eradication in recent years.

Aged↗

All Wales surveillance of methicillin-resistant Staphylococcus aureus (MRSA): the first year's results.

Over the last five years, hospitals in Wales have experienced difficulties with increasing numbers of isolates of methicillin-resistant Staphylococcus aureus (MRSA). Continuous total population surveillance of MRSA was introduced with the objectives of gaining an understanding of the extent and variation in time and place of its occurrence, the burden of disease and possible risk factors associated with its isolation and resistance to other antibiotics. All first isolates of MRSA from both hospital and community settings and all isolates of methicillin-sensitive Staphylococcus aureus (MSSA) associated with bacteraemia and cerebrospinal fluid (CSF) isolates detected in medical microbiology laboratories in Wales were collected via CoSurv, a set of interconnected data-base modules for communicable disease control. A data set was collected on each isolate and the patient associated with that isolate and compiled centrally at CDSC (Wales) for all-Wales analysis of the MRSA situation. Surveillance started in January 1996 and at the end of the first year, 2700 new isolates of MRSA had been reported from hospital and community settings, giving a rate of 92.43/100,000 population. The incidence of MRSA from bacteraemias and CSF was 5.20/100,000 compared with 12.70/100,000 for MSSA. MRSA from bacteraemia and CSF was significantly more commonly associated with male patients than MSSA. MRSA patients were significantly older. For all MRSA isolates, the highest reporting rate was in men aged 75+ (647.21/100,000). The highest incidence of invasive disease was also in men aged 75+ (45.69/100,000). Isolates from post-surgical patients were more likely to be involved in invasive disease (OR = 2.59), P < 0.001) than strains from other sources. The majority of isolates were resistant to at least two antibiotics in addition to methicillin, most frequently erythromycin and the fluoroquinolones. Very little resistance to fusidic acid, mupirocin or rifampicin was reported. Continuous total population surveillance has provided a minimum incidence of MRSA in Wales and has allowed a simple and intelligible picture of the problem to be determined, which has been fed back to hospitals to assist decisions on control.

Adolescent↗

[Study of methicillin-resistant Staphylococcus aureus colonization among intermediate-care facility patients].

PURPOSE: Prevalence of methicillin-resistant Staphylococcus aureus is high in the Poitiers teaching hospital, particularly in the intermediate care facilities. We performed a survey of methicillin-resistant Staphylococcus aureus colonization in the intermediate care facilities and 265 patients were included. METHODS: Nasal, cutaneous and wound swab cultures were done at the time of admission and at the time of the patients' departure. A decolonization procedure of methicillin-resistant Staphylococcus aureus carriers was performed using nasal application of fusidic acid and different soaps for the skin. At entry, 17.7% of patients were methicillin-resistant Staphylococcus aureus carriers (of at least one location). At departure, 30.4% were methicillin-resistant Staphylococcus aureus carriers. Among methicillin-resistant Staphylococcus aureus non-carriers at entry, 24.3% became methicillin-resistant Staphylococcus aureus carriers. RESULTS: The principal risk factor of carriage was the initial presence of a wound (RR = 3.6). The incidence rate of methicillin-resistant Staphylococcus aureus infection among the 265 patients included was 3%. CONCLUSION: The systematic screening of patients at the time of admission is expensive and isolation technically hard to manage in the intermediate care facilities. The risk factor we found in this study allow us to propose a 'light' screening limited to patients with wounds.

Aged↗

Molecular characterization of the prokaryotic efp gene product involved in a peptidyltransferase reaction.

The translation factor EF-P is required for efficient prokaryotic peptide bond synthesis on 70S ribosomes from fMet-tRNAfMet. This protein has been purified from Escherichia coli cells and the gene, efp, encoding it has been cloned and sequenced. We have isolated recombinant clones which overexpress a protein that co-migrates with purified EF-P upon SDS-PAGE analysis. Using these clones, we report the purification, crystallization and initial characterization of the efp gene product. The mechanism by which EF-P stimulates peptide-bond synthesis was studied using several antibiotics that inhibit translocation, peptide-bond synthesis and decoding. The stimulation of peptidyltransferase by EF-P was not inhibited by antibiotics that affect translocation and occupation of the A site (in the elongation state), ie thiostrepton, viomycin, neomycin and fusidic acid but was inhibited by streptomycin as well as by inhibitors of peptidyltransferase, chloramphenicol and lincomycin. This observation and the requirement for L16 but not for the L7/L12 nor L6 or L11 r-proteins suggest that the binding site for EF-P may overlap the peptidyltransferase center of the ribosome.

Anti-Bacterial Agents↗

[Antibiotic resistance of Staphylococcus aureus in urban experience: 6 month study in Aquitaine].

Antibiotic resistance of Staphylococcus aureus has been surveyed by eight city laboratories of the Aquitaine area, during a six month-period (january to june 1998). Antibiotic susceptibility testing has been performed by the disk diffusion method, and the results have been collected and analysed using the SIRscan system. After elimination of the redundant strains, a total of 747 isolates has been retained. They were mainly isolated from pus (64%) collected from patients of the community (40%) or hospitalized in 30 private clinics or nursing homes. The percentages of resistant strains (community/institutions) were: benzylpenicillin: 90% (87/92%), oxacillin: 39% (23/50%), kanamycin: 37% (22/47%); gentamicin: 13% (8/16%), tobramycin: 37% (21/47%), amikacin: 21% (13/27%); netilmicin: 6% (5/7%), erythromycin: 33% (30/35%), spiramycin: 72% (77/69%), lincomycin: 24% (17/29%), pristinamycin: 2% (1/2%), tetracycline: 17% (14/19%); pefloxacin: 40% (25/50%), fosfomycin: 9% (6/12%), rifampicin: 10% (7/13%), fusidic acid: 14% (11/15%), cotrimoxazole and vancomycin: 0%. Meticillin-susceptible strains of S. aureus were mostly sensitive to other antibiotics (< or = 6% resistant strains, except for erythromycin: 22%). Among meticillin-resistant S. aureus, heterogeneous strains with a KT phenotype, and various resistance patterns to the remaining antibiotics were predominant (61%), compared to the homogeneous strains with a KTG phenotype and multiresistant to the other antibiotics (32%). The frequencies of resistant strains were highly variable depending on the specimen, the laboratory and the health care institution, except for cotrimoxazole and vancomycin which were always active.

Anti-Bacterial Agents↗

Moellerella wisconsensis: identification, natural antibiotic susceptibility and its dependency on the medium applied.

The present study establishes a data compilation on biochemical features and natural antibiotic susceptibilities of Moellerella wisconsensis strains. 17 moellerellae isolated from humans (n = 11), food (n = 5) and water (n = 1) were tested. Identification was carried out using two commercially available systems and conventional tests. MIC determinations of 74 antibiotics were performed applying a microdilution procedure in Cation-adjusted Mueller Hinton broth and IsoSensitest broth. M. wisconsensis was naturally sensitive to doxycycline, minocycline, all tested aminoglycosides, numerous beta-lactams, all fluoroquinolones, folate-pathway inhibitors, chloramphenicol and nitrofurantoin. Natural resistance was found with oxacillin, penicillin G, all tested macrolides, lincomycin, streptogramins, ketolides, glycopeptides, fusidic acid, linezolid and rifampicin. Medium-dependent differences in susceptibility affecting clinical assessment criteria were seen with tetracycline, clindamycin and fosfomycin. From the data of the present study it is possible that some moellerellae are misidentified as Klebsiella pneumoniae subsp. ozaenae.

Anti-Bacterial Agents↗

Synergistic activity of trovafloxacin with other agents against gram-positive and -negative organisms.

The synergistic activity of trovafloxacin with other agents against 55 Gram-positive and -negative bacteria was determined by checkerboard titration. Synergistic fractional inhibitory concentration (FIC) indices (< or = 0.5) were seen in two methicillin-susceptible and one methicillin-resistant Staphyloccocus aureus with teicoplanin, one of each of the latter two with vancomycin; one methicillin-resistant coagulase-negative Staphylococcus with rifampin and one with fusidic acid; five Stenotrophomonas maltophilia with cefoperazone; three Pseudomonas aeruginosa with ticarcillin/clavulanate, four with aztreonam, two with ceftazidime, one with tobramycin, one with cefoperazone, and one with ceftriaxone; one pneumococcus with ceftriaxone; one Enterococcus faecalis with ceftriaxone, and one with vancomycin; two Bacteroides fragilis with metronidazole, two with clindamycin, and one with cefoxitin; and one Clostridium perfringens with metronidazole and one with clindamycin. All other FIC indices were additive/indifferent (0.51-2.0), and no antagonistic FIC indices (> 4.0) were observed.

Anti-Infective Agents↗

Identification and natural antibiotic susceptibility of Morganella morganii.

Our data should elucidate whether or not natural antibiotic susceptibility can be used as an aid for subspecies or biovar discrimination of Morganella morganii (II). Furthermore, our goal was to create a database of the natural susceptibility of M. morganii (III) and we were interested in the relative frequency of the recently described subspecific taxa (I). On the basis of trehalose fermentation (TRE), ornithine decarboxylase (ODC), and lysine decarboxylase (LDC) activities, we determined the biovar for 90 clinical isolates of M. morganii. Within these strains we examined the natural antibiotic susceptibility of 53 morganellae to 70 antibiotics by determination of the MICs with a microdilution procedure. (I): 80 strains (89%) of all morganellae belonged to M. morganii ssp. morganii (TRE-), with biovar A (LDC-, ODC+) predominating (67 strains). The remaining strains of this subspecies were identified as biovar B (LDC+, ODC+; 12 strains) and biovar C (LDC-, ODC-, one strain). Ten strains of M. morganii ssp. sibonii (TRE+) were found: four strains belonged to biovar F (LDC variable, ODC-) and six strains to biovar G (LDC-, ODC). (II): With one exception we found no significant differences in antibiotic susceptibility between different biovars. M. morganii ssp. morganii strains are more susceptible to tetracycline than strains of M. morganii ssp. sibonii, but there is no evidence that this parameter could be useful to differentiate biovars within a subspecies. It could be shown that 8 of 30 strains of biovar A and 2 of 12 strains of biovar B were tetracycline resistant. However, one M. morganii ssp. sibonii strain was clinically susceptible to tetracycline according to French and American standards. (III): The natural population of M. morganii is primarily (naturally) resistant to certain penicillins like benzylpenicillin, oxacillin, and amoxicillin, first and second generation cephalosporins (excluding cefoxitin), cefpodoxime, all antibiotics of the ML group (macrolides and lincosamides), sulfamethoxazole, glycopeptides, fosfomycin, and fusidic acid, naturally sensitive to aminoglycosides, piperacillin, mezlocillin, ticarcillin, third and fourth generation cephalosporins, carbapenems, aztreonam, quinolones, trimethoprim, cotrimoxazole, and chloramphenicol. M. morganii is naturally resistant to a wide range of antibiotics. The natural resistance pattern is useful for validation of sensitivity tests. Susceptibility to antibiotics is an unsuitable parameter for the discrimination of the described subspecific taxa of M. morganii. M. morganii strains that do not belong to biovar A are rare.

Anti-Bacterial Agents↗

Natural antibiotic susceptibility of Escherichia coli, Shigella, E. vulneris, and E. hermannii strains.

The natural antibiotic susceptibility of 139 Escherichia coli strains (including 18 enterohemorrhagic E. coli), 73 Shigella strains (S. sonnei (n = 37), S. flexneri (n = 29), S. boydii (n = 6), S. dysenteriae (n = 1)), 23 E. vulneris, and 20 E. hermannii strains toward 71 antibiotics was examined. MICs were determined using a microdilution procedure. All examined taxa were naturally sensitive/intermediate toward tetracyclines, aminoglycosides, some penicillins (amoxycillin/clavulanate, ampicillin/sulbactam, piperacillin [with and without tazobactam], mezlocillin, azlocillin), cephalosporins, carbapenems, monobactams, quinolones, trimethoprim, cotrimoxazole, and chloramphenicol and were naturally resistant/intermediate toward benzylpenicillin, oxacillin, macrolides, lincosamides, glycopeptides, rifampicin, and fusidic acid. No differences in natural antibiotic susceptibility were seen between enterohemorrhagic and other E. coli strains. Likewise, with one exception, no significant differences in natural antibiotic susceptibility were seen either among the Shigella subgroups or between Shigella and E. coli. The natural population of S. flexneri was slightly more susceptible to chloramphenicol than the natural populations of other taxa within the Shigella-E. coli complex. E. vulneris and E. hermannii showed susceptibility patterns to many antibiotics similar to Shigella and E. coli, but there were other antibiotics toward which there were significant differences in natural susceptibility. E. vulneris and E. hermannii were less susceptible to nitrofurantoin and slightly more susceptible to several aminoglycosides than E. coli and Shigella. E. hermannii was the only species that was naturally resistant/intermediate to ticarcillin and amoxycillin (DIN standard). The addition of clavulanic acid to the latter resulted in a decrease of seven twofold dilution steps (E. vulneris: four twofold dilution steps, E. coli/Shigella: two twofold dilution steps) of the MICs of the natural population. With the exception of cefoperazone and cefepime, E. hermannii was more susceptible to cephalosporins than strains of the other species. E. vulneris was the species most susceptible to ticarcillin and the only species that was highly resistant to fosfomycin (MIC > 256 micrograms/mL). The antibiotic susceptibility to fosfomycin was also unique for E. hermannii (MIC 32-128 micrograms/mL), whereas the natural populations of E. coli and Shigella showed lower MIC values. The data of this study represent an assessment of the natural susceptibility of strains of Escherichia spp. and Shigella subgroups to a wide range of antibiotics. These databases can be used for the validation of antibiotic susceptibility test results of Escherichia spp. and shigellae. The conformity of the natural antibiotic susceptibility test results not only among the Shigella subgroups but also between Shigella and E. coli support the status of Shigella as a subgroup of the species E. coli.

Anti-Bacterial Agents↗

Adherence characteristics and susceptibility to antimicrobial agents of Staphylococcus aureus strains isolated from skin infections and atopic dermatitis.

We examined the adherence characteristics and susceptibility to various antimicrobial agents of 130 strains of Staphylococcus aureus isolated from infective skin lesions and 135 strains of S. aureus isolated from non-infective eczematous lesions of atopic dermatitis (AD) patients. The isolation rate of methicillin-resistant S. aureus (MRSA) was 27.7% in strains from clinical sources excluding AD and 31.1% in those from AD. Coagulase type II strains were most frequently observed in MRSA strains isolated from all sources excluding AD, and coagulase type III strains were most frequently observed in those isolated from AD. We proposed that antimicrobial treatment for AD patients should be carefully designed to prevent MRSA infection. Plasma coagulation ability was lowest in S. aureus strains isolated from abscesses, suggesting that the lower production of fibrin observed in abscesses may assist the infiltration of neutrophils into skin tissues and that a decrease in plasma coagulation ability may enable abscess formation. Adherence to polypropylene tubes with slime production was most evident in S. aureus strains isolated from felon and least evident in those isolated from cellulitis and lymphangitis. Tube adherence was characteristic of the S. aureus strains attached to superficial skin tissues, but not necessarily for strains that had infiltrated the deep skin tissues. Fusidic acid demonstrated significant antimicrobial activity against the MRSA strains, but rifampicin was the strongest antimicrobial agent.

Anti-Bacterial Agents↗

Natural antibiotic susceptibility of Salmonella enterica strains.

The susceptibility of 100 Salmonella enterica strains belonging to S. enterica subsp. enterica (n=90) and S. enterica subsp. arizonae (n=10) was examined to 71 antibiotics. Within S. enterica subsp. enterica, strains of different serovars (typhimurium (n=17), enteritidis (n=17), dublin (n=10), typhi (n=16), paratyphi A (n=6), others (n=24)) were studied. MICs were determined using a microdilution procedure and apart from fosfomycin there were no significant differences in susceptibility between the subspecies and serovars of S. enterica. All salmonellae were sensitive or intermediately resistant to tetracyclines, aminoglycosides, most beta-lactam antibiotics, quinolones, co-trimoxazole group antibiotics, chloramphenicol, nitrofurantoin and azithromycin. S. enterica strains were intrinsically resistant to benzylpenicillin, oxacillin, most macrolides, rifampicin, lincosamides, streptogramins, glycopeptides and fusidic acid. Apart from some slight differences in antibiotic susceptibility between strains of S. enterica subsp. enterica and S. enterica subsp. arizonae, only the susceptibility to fosfomycin varied among the taxa studied. Whereas 'enteric' salmonellae including S. enterica subsp. arizonae were sensitive to fosfomycin, 'typhoid' salmonellae were intrinsically resistant. A database of the antibiotic susceptibility of S. enterica was set up. It may be of use to validate antibiotic susceptibility test results of these bacteria.

Anti-Bacterial Agents↗

Natural antibiotic susceptibility of strains of the Enterobacter cloacae complex.

The natural susceptibility to 70 antibiotics of 104 strains of the Enterobacter cloacae complex was examined using a microdilution procedure in Isosensitest broth. One hundred and one clinical strains designated as 'E. cloacae' were identified as E. hormaechei (n=65), E. asburiae (n=20) and E. cloacae genospecies 1 or 2 (n=16). Apart from fosfomycin susceptibility, there were only minor differences in natural antibiotic susceptibility patterns. All species were naturally sensitive or naturally sensitive and intermediate to numerous beta-lactams (e.g. carbapenems, aztreonam, acylaminopenicillins, ticarcillin, and some 'modern' cephalosporins), quinolones, aminoglycosides, tetracyclines, antifolates, chloramphenicol, and nitrofurantoin. Uniform natural resistance was found in benzylpenicillin, oxacillin, amoxycillin, amoxycillin/clavulanate, cefoxitin, rifampicin, lincosamides, glycopeptides, streptogramins and fusidic acid. Enterobacter hormaechei was the species most susceptible to fosfomycin. beta-Lactam susceptibility patterns pointed to the presence of chromosomally-encoded AmpC enzymes in all taxa of the E. cloacae complex.

Anti-Bacterial Agents↗

Natural antibiotic susceptibility of strains of Serratia marcescens and the S. liquefaciens complex: S. liquefaciens sensu stricto, S. proteamaculans and S. grimesii.

The natural susceptibility of 77 strains of Serratia marcescens and 41 strains of the S. liquefaciens complex (S. liquefaciens sensu stricto (n=21), S. grimesii (n=10), S. proteamaculans (n=10)) to 70 antibiotics was examined using a microdilution procedure in Isosensitest broth (all strains) and cation-adjusted Mueller Hinton broth (some strains). All species were naturally resistant to benzylpenicillin, oxacillin, cefaclor, cefazolin, cefuroxime, numerous macrolides, lincosamides, streptogramins, glycopeptides, rifampicin and fusidic acid. Uniform natural sensitivity was found to most aminoglycosides, several acylureidopenicillins, ticarcillin, newer cephalosporins, carbapenems, aztreonam, quinolones and antifolates. Species-related differences in susceptibility affecting clinical assessment criteria were found for several agents. S. marcescens was less susceptible to some aminoglycosides than species of the S. liquefaciens group. It was the only species that was uniformly naturally resistant to tetracycline, amoxycillin, amoxycillin/clavulanate and loracarbef. Species of the S. liquefaciens group were naturally resistant and intermediate or naturally intermediate to the latter agents. Differences in susceptibility among the species of the S. liquefaciens complex were generally small. S. proteamaculans was most susceptible to sulphamethoxazole. S. liquefaciens sensu stricto was less susceptible than S. grimesii and S. proteamaculans to tetracyclines, chloramphenicol and nitrofurantoin; it was the only species uniformly naturally resistant to fosfomycin. This study suggested that all species examined probably express chromosomally-encoded AmpC beta-lactamases, but the amount of enzyme may vary from species to species. The naturally-occurring low-level expression of the S. marcescens aminoglycoside 6'-acetyltransferase AAC(6')-Ic and its absence in other Serratia spp. was supported by the data. All species of the S. liquefaciens complex should be considered as probable agents of human diseases.

Anti-Bacterial Agents↗

Natural antimicrobial susceptibilities and biochemical profiles of Yersinia enterocolitica-like strains: Y. frederiksenii, Y. intermedia, Y. kristensenii and Y. rohdei.

The natural susceptibility of 131 Yersinia strains of Y. frederiksenii (n=38), Y. intermedia (n=48), Y. kristensenii (n=26) and Y. rohdei (n=19) to 70 antibiotics was tested. Minimum inhibitory concentration (MIC) values were determined with a microdilution procedure in IsoSensitest broth (all strains) and cation-adjusted Mueller Hinton broth (some strains). All species were naturally sensitive or sensitive and of intermediate susceptibility to tetracyclines, aminoglycosides, acylureidopenicillins, numerous cephalosporins, carbapenems, aztreonam, quinolones, chloramphenicol, folate-pathway inhibitors, nitrofurantoin, and fosfomycin. Uniform natural resistance was found with penicillin G, oxacillin, several macrolides, lincosamides, streptogramins, glycopeptides, rifampicin and fusidic acid. Species-specific differences in susceptibility affecting clinical assessment criteria were seen with aminopenicillins (in the presence and absence of beta-lactamase inhibitors), ticarcillin and some cephalosporins. Major medium-dependent susceptibilities were found with fosfomycin. beta-Lactam MIC susceptibility patterns suggested that most strains of the species tested produce both class A and class C (AmpC) beta-lactamases that are characteristic for the species. The present study describes a database concerning the natural susceptibility of some Y. enterocolitica-like species to a wide range of antibiotics, which can be applied to validate forthcoming antibiotic susceptibility tests of these strains and might contribute to their identification. An evaluation of 30 biochemical tests that secured phenotypic identification to the Yersinia species level is presented.

Animals↗

Frequency, clonal heterogeneity and antibiotic resistance of methicillin-resistant Staphylococcus aureus (MRSA) isolated in 1992-1994.

Since 1992, the proportion of methicillin-resistant Staphylococcus aureus (MRSA) isolated from patients of the University Hospital of Frankfurt/Main and six community hospitals increased to a level of 11% and has remained constant during the following two years. MRSA and methicillin-sensitive Staphylococcus aureus (MSSA) were distributed equally among almost all specimens except blood. There was evidence of a diminished potency of MRSA to cause bacteremia. All MRSA strains were susceptible to glycopeptides and mupirocin. Resistance rates to other non-beta-lactam antibiotics were low for fusidic acid (7.1%), fosfocin (8.3%), amikacin (11.4%) and cotrimoxazole (18.3%) and high for gentamicin (90.7%), ofloxacin (94.3%) and erythromycin (95.5%). Among 378 MRSA strains originating from 180 individuals, macrorestriction analysis of chromosomal DNA revealed 39 different genotypes. These could be divided into 14 epidemic strains isolated from 155 patients and 25 sporadic strains isolated from single patients. As most of the sporadic strains emerged in close local proximity to epidemic strains, we suppose a horizontal genetic transfer from MRSA to MSSA leading to the appearance of novel MRSA genotypes. Upon repeated isolation of MRSA strains from the same individuals, resistance rates and genotypes remained stable. Resistance patterns of the non-beta-lactams correlated poorly with macrorestriction analysis, whereas several MRSA genotypes could be distinguished by particular MICs of methicillin.

Anti-Bacterial Agents↗