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Biomedical subjects

C Chuard

Publications and source records attributed to C Chuard.

26 records · Page 2Linked to original sources

Comparative efficacies of imipenem, oxacillin and vancomycin for therapy of chronic foreign body infection due to methicillin-susceptible and -resistant Staphylococcus aureus.

The efficacies of imipenem when directed against methicillin-susceptible (MSSA) and methicillin-resistant (MRSA) strains of Staphylococcus aureus were compared with those of oxacillin and vancomycin in a subcutaneous rat model, using chronically infected tissue cages. At three weeks after inoculation, stable chronic infections were established with average bacterial counts exceeding 10(6) cfu/mL tissue cage fluid for both strains. Intraperitoneal administration (twice a day for 7 days) of imipenem (80 mg/kg) or oxacillin (200 mg/kg) produced peak levels of 23 or 45 mg/L and through levels of < 0.1 and 5.7 mg/L, respectively. The therapeutic regimens of either imipenem (P < 0.001) or oxacillin (P < 0.02) administered for 7 days led to significant reductions in bacterial counts in the tissue cage fluids of animals chronically infected with MSSA. In contrast, imipenem was not effective against chronic MRSA tissue cage infections, despite the relatively low MIC of the infecting strain and the use of high dose (120 mg/kg) therapy. In-vitro susceptibility testings of MRSA performed before and after imipenem therapy demonstrated the emergence of a highly resistant subpopulation.

Animals↗

Teicoplanin alone or combined with rifampin compared with vancomycin for prophylaxis and treatment of experimental foreign body infection by methicillin-resistant Staphylococcus aureus.

The prophylactic and therapeutic activities of teicoplanin were evaluated in two different experimental models of foreign body infections caused by methicillin-resistant Staphylococcus aureus (MRSA). In a guinea pig model of prophylaxis, subcutaneously implanted tissue cages were infected at a > 90% rate by 10(2) CFU of MRSA in control animals. A single dose of 30 mg of teicoplanin per kg of body weight administered intraperitoneally 6 h before bacterial challenge was as effective as vancomycin in preventing experimental infection in tissue cages injected with either 10(2), 10(3), or 10(4) CFU of MRSA. In a rat model evaluating the therapy of chronic tissue cage infection caused by MRSA, the efficacy of a 7-day high-dose (30 mg/kg once daily) regimen of teicoplanin was compared with that of vancomycin (50 mg/kg twice daily). Whereas high levels of teicoplanin were found in tissue cage fluid, continuously exceeding its MBC for MRSA by 8- to 16-fold, no significant reduction in the viable counts of MRSA occurred during therapy. In contrast, either vancomycin alone or a combined regimen of high-dose teicoplanin plus rifampin (25 mg/kg twice daily) could significantly decrease the viable counts in tissue cage fluids. Whereas the bacteria recovered from tissue cage fluids during therapy showed no evidence of teicoplanin resistance, they failed to be killed even by high levels of this antimicrobial agent. The altered susceptibility of in vivo growing bacteria to teicoplanin killing might in part explain the defective activity of this antimicrobial agent when used as monotherapy against chronic S. aureus infections. These data may indicate the need for a combined regimen of teicoplanin with other agents such as rifampin to optimize the therapy of severe staphylococcal infections.

Animals↗

Susceptibility of Staphylococcus aureus growing on fibronectin-coated surfaces to bactericidal antibiotics.

Several recent studies have shown that bacteria either grown in vitro as adherent biofilms or recovered from infected prosthetic devices have decreased susceptibilities to antimicrobial killing. To further study the microbial and environmental factors responsible for this decreased antibiotic susceptibility, we developed an in vitro model of surface-adherent Staphylococcus aureus growing on polymethylmethacrylate coverslips coated with pure fibronectin. After exponential growth for 4 h, the population of fibronectin-attached S. aureus remained constant for a further 48-h period, as evaluated by CFU counts of organisms quantitatively removed from the coverslips. At selected time points, surface-bound organisms were exposed to bactericidal concentrations of either oxacillin, vancomycin, fleroxacin, or gentamicin in short-term (0.5 to 2 h) or long-term (24 h) killing assays. Whereas at 2 h surface-growing organisms were still optimally killed by all antimicrobial agents, at 4 and 24 h attached bacteria expressed markedly altered susceptibilities to these agents. The decrease in susceptibility was moderate for fleroxacin, more important for oxacillin and vancomycin, and extensive for gentamicin. When surface-attached S. aureus was compared with bacteria grown in a fluid phase, both populations showed a parallel time-dependent decrease in their susceptibilities to either oxacillin, vancomycin, or fleroxacin. In contrast, attached organisms became considerably more resistance to gentamicin than suspended bacteria did. Subpopulations of organisms spontaneously released from coverslips during antibiotic exposure also showed markedly reduced susceptibilities to antimicrobial killing. This simple model of S. aureus colonization of in vitro fibronectin-coated surfaces might represent a useful approach to the study of the physiological and biochemical changes that underlie the decreased antibiotic susceptibilities of biomaterial-attached organisms.

Anti-Bacterial Agents↗

In-vitro and in-vivo evaluation of the antistaphylococcal activity of S-5556, a new 16-membered macrolide.

During recent years, a resurgence of interest in the macrolides had led to the discovery of new derivatives of erythromycin with improved antibacterial activity and pharmacokinetic properties. In this study the in-vitro and in-vivo antistaphylococcal activity of S-5556, a 16-membered macrolide, was evaluated. In vitro, S-5556 was slightly less active than erythromycin against methicillin-susceptible Staphylococcus aureus. In contrast, it had superior activity for methicillin-resistant S. aureus (MRSA); several of these strains with inducible resistance to the macrolides-lincosamides-streptogramins group were susceptible to S-5556 whereas erythromycin was inactive. The combination of S-5556 with oxacillin was synergic for most MRSA strains tested. In vivo, a single prophylactic dose of S-5556 prevented 75%-100% of the cases of acute staphylococcal subcutaneous foreign body infection in a guinea pig-model. In a rat-model of chronic implant infection due to a methicillin- and erythromycin-resistant S. aureus strain, S-5556 significantly decreased the bacterial concentration around the foreign material, however resistant mutants emerged.

Animals↗

Successful therapy of experimental chronic foreign-body infection due to methicillin-resistant Staphylococcus aureus by antimicrobial combinations.

We compared the efficacy of a long-duration (3-week) therapy of vancomycin, fleroxacin, fleroxacin plus rifampin, and vancomycin plus fleroxacin and rifampin in a recently developed rat model of chronic staphylococcal foreign-body infection. Subcutaneous tissue cages containing polymethylmethacrylate coverslips were infected with 1 x 10(5) to 5 x 10(5) CFU of methicillin-resistant Staphylococcus aureus. Three weeks later, a quantitative culturing of the fluid that had accumulated in the cages was done (mean, 6.72 log10 CFU/ml; n = 110) and treatment was initiated after randomization. The CFUs in the cage fluid were counted on days 11 and 22 and 1 week after the termination of treatment; in addition, a final culture of coverslips (surface-bound microorganisms) was performed. The three-drug therapy was significantly superior to the other treatments on day 11 (a 5.16 log10 decrease of bacterial counts versus a 2.12 log10 to 2.94 log10 decrease for vancomycin, fleroxacin, and fleroxacin plus rifampin; P less than 0.01). On day 22, count decreases were 4.16 log10 for vancomycin, 4.91 log10 for fleroxacin (vancomycin versus fleroxacin, not significant), 6.14 log10 for two-drug therapy, and 6.34 log10 for three-drug therapy (vancomycin-fleroxacin-rifampin versus fleroxacin-rifampin, not significant; fleroxacin-rifampin versus monotherapies, P less than 0.01); the numbers of CFU in most cage fluids were under the detection limit (20 CFU/ml) in combination groups. One week after the end of treatment, 92% of fluids and coverslips (detection limit, 1 CFU) were culture negative with tritherapy, 88% of fluids and 41% of coverslips were negative with bitherapy, and less than 12% of fluids and coverslips were negative with single drugs (for coverslips, P was <0.01 for vancomycin-fleroxacin-rifampin versus fleroxacin-rifampin and P was <0.001 for fleroxacin-rifampin versus the monotherapies). No mutants resistant to rifampin or fleroxacin were detected. In conclusion, antimicrobial combinations were highly effective and superior to single drugs in treating a chronic staphylococcal foreign-body infection for 3 weeks. The three-drug therapy decreased bacterial counts more rapidly than the two-drug therapy under study and appeared to be curative in most cases.

Animals↗

Resistance of Staphylococcus aureus recovered from infected foreign body in vivo to killing by antimicrobials.

Because persistence of infections associated with prosthetic material despite the use of appropriate antibiotics is a major clinical problem, the antimicrobial susceptibility of bacteria responsible for a chronic subcutaneous tissue cage infection in rat was investigated ex vivo. Three to 6 weeks after the initiation of infection, suspensions of two strains of Staphylococcus aureus recovered from the foreign body surface and surrounding fluid were exposed to either oxacillin, vancomycin, fleroxacin, gentamicin, or rifampin. The MBCs of these bacteria were markedly elevated, in most cases 128 to greater than 256 times higher than the MBC of batch culture S. aureus in either logarithmic or stationary phase. Kinetic studies showed the bacteria did not grow when incubated for 2 h in Mueller-Hinton broth, possibly reflecting dormancy. Their killing was slow and incomplete by all antibiotics at greater than 8 times their MIC. These data provide direct evidence of a decreased susceptibility of S. aureus to the killing effect of antimicrobials during chronic foreign body infections in vivo.

Animals↗

[Effect and tolerance of ofloxacin in bronchopulmonary infections in comparison with amoxicillin].

Ofloxacin and amoxicillin in the treatment of 121 bronchopulmonary infections were compared in a randomized, open clinical trial. 64% of the infections were pneumonias. S. pneumoniae, H. influenzae and B. catarrhalis accounted for 76% of the etiologic agents. The clinical and bacteriological responses were positive in more than 90% of the patients and comparable in both groups. None of the isolated agents was resistant to ofloxacin, whereas 21% were amoxicillin-resistant. Ofloxacin was used without randomization in the treatment of 26 atypical pneumonias and opportunistic infections, all of which were cured or improved. Occurrence of side-effects was rarely observed in either treatment group.

Aged↗