This study aimed to determine the effect of dexamethasone in combination with low-dose or high-dose daptomycin for the treatment of penicillin- and cephalosporin-resistant pneumococcal meningitis. Efficacy (ΔCFU/mL) and cerebrospinal fluid (CSF) levels of daptomycin at 15mg/kg and 25mg/kg were studied in a rabbit model of pneumococcal meningitis, comparing them with the same doses in combination with dexamethasone at 0.125mg/kg every 12h over a 26-h period against two different Streptococcus pneumoniae strains, HUB 2349 and ATCC 51916 with daptomycin minimum inhibitory concentrations (MICs) of 0.09mg/L and 0.19mg/L, respectively. Daptomycin levels in CSF were lower when dexamethasone was given concurrently. Against strain HUB 2349, therapeutic failure occurred with daptomycin 15mg/kg+dexamethasone; daptomycin 25mg/kg+dexamethasone was better at reducing bacterial counts than the lower dose throughout treatment. Against the highly cephalosporin-resistant ATCC 51916 strain, daptomycin 15mg/kg+dexamethasone achieved a lower bacterial decrease than daptomycin 15mg/kg alone, and therapeutic failure at 24h occurred in the daptomycin 15mg/kg+dexamethasone group. Addition of dexamethasone to a 25mg/kg daptomycin dose did not affect the efficacy of daptomycin: it remained bactericidal throughout treatment. In conclusion, against the studied strains, low-dose (15mg/kg/day) daptomycin is affected by concomitant use of dexamethasone: CSF levels are reduced and its bacterial efficacy is affected. At a higher daptomycin dose (25mg/kg/day), however, the use of dexamethasone does not alter efficacy; the combination appears to be a good choice for the treatment of pneumococcal meningitis.
BACKGROUND/PURPOSE:To measure the inflammatory response in terms of tumor necrosis factor-alpha (TNF-α) levels in cerebrospinal fluid (CSF), using bacteriolytic versus nonbacteriolytic antibiotic therapy and adjunctive treatment with dexamethasone in an experimental rabbit model of pneumococcal meningitis.METHODS:In a rabbit model of pneumococcal meningitis, we tested CSF TNF-α levels in several samples from rabbits infected with the HUB 2349 strain and treated with ceftriaxone 100 mg/kg/d, ceftriaxone plus vancomycin 30 mg/kg/d, or daptomycin at 15 mg/kg or 25 mg/kg. Daptomycin schedules were compared with the same doses in combination with dexamethasone at 0.125 mg/kg every 12 hours over a 26-hour period.RESULTS:The ceftriaxone group had the highest levels of TNF-α. TNF-α levels were significantly higher after ceftriaxone administration than in both daptomycin groups. The high-dose daptomycin group presented the lowest inflammatory levels in CSF samples. Adjunctive treatment with dexamethasone in this group modulated the inflammatory response, bringing down CSF TNF-α levels.CONCLUSION:CSF TNF-α levels were significantly lower in rabbits treated with daptomycin than in rabbits treated with ceftriaxone. Daptomycin avoided the inflammatory peak after administration observed in ceftriaxone-treated rabbits. The use of daptomycin plus dexamethasone achieved a significantly larger reduction in CSF TNF-α levels.
OBJECTIVES To determine the efficacy of daptomycin for the treatment of penicillin- and cephalosporin-resistant pneumococcal meningitis using in vitro and in vivo methods. METHODS In vitro killing curves were determined with clinically achievable CSF antibiotic concentrations. In a rabbit model of pneumococcal meningitis, we studied the efficacy (Δ cfu/mL) of daptomycin used at 15 and 25 mg/kg, comparing it with ceftriaxone 100 mg/kg/24 h and ceftriaxone plus vancomycin 30 mg/kg/24 h over a 26 h period against two different strains: HUB 2349 and ATCC 51916, with MICs of 2 and 32 mg/L of cefotaxime/ceftriaxone, respectively. RESULTS The penetration of daptomycin into CSF ranged between 9% and 11%. Daptomycin therapy achieved an excellent response, being bactericidal within 2 h of antibiotic administration. Against strain HUB 2349, daptomycin at both doses was as effective as ceftriaxone plus vancomycin. Against the highly resistant strain, daptomycin 25 mg/kg was significantly better than ceftriaxone plus vancomycin at 2 and 6 h. CONCLUSIONS Daptomycin at standard doses, and especially at high doses, may be a useful alternative for the treatment of penicillin- and cephalosporin-resistant pneumococcal meningitis.
Meropenem is a broad-spectrum carbapenem antibiotic that is highly active against the pathogens causing meningitis. The aims of this study was to determine the efficacies of meropenem alone and combined with rifampin against two Streptococcus pneumoniae strains with different susceptibility to beta-lactams using the guinea pig meningitis model and compare them with the standard ceftriaxone plus vancomycin therapy. All treatments except rifampin were bactericidal from 6 h. The addition of rifampin did not improve the activity of meropenem alone. Our results provide good evidence of the efficacy of meropenem in the treatment of penicillin- and cephalosporin-susceptible and -resistant pneumococcal meningitis similar to that of ceftriaxone plus vancomycin, suggesting that meropenem might be a good option in the management of this infection.
Meropenem is a carbapenem antibiotic that is highly active against the pathogens causing meningitis. Results with meropenem in the experimental rabbit model of penumococcal meningitis have been controversial, and the possible role of renal dehydropeptidase I in meropenem efficacy has been suggested. The aim of this study was to determine the efficacy of meropenem in two meningitis models and the possible influence of the animal model over results. Two strains of Streptococcus pneumoniae with different susceptibility to beta-lactams have been used in a guinea pig model and the classical rabbit meningitis model. Meropenem was bactericidal at 6 h in the guinea pig model against both strains with a reduction of >4 log ufc/ml. In the rabbit model it was bactericidal at 6 h against the susceptible strain, but against the resistant 3/8 therapeutical failures were recorded at 6 h, being bactericidal at 24 h. In conclusion, meropenem has shown bactericidal activity in both experimental models. This work emphasises the importance of an adequate election of the animal model for the appropriate development of studies of antimicrobial efficacy. We believe that guinea pig should be considered the best choice among laboratory animal species when assessing meropenem efficacy.
Chemischer InformationsdienstVolume 7, Issue 20 Preparative Organic Chemistry ChemInform Abstract: RELATION OF ADSORBED SPECIES OBSERVED BY INFRARED SPECTROSCOPY TO THE MECHANISM OF ETHYLENE OXIDATION OVER SILVER EDWIN L. FORCE, EDWIN L. FORCESearch for more papers by this authorALEXIS T. BELL, ALEXIS T. BELLSearch for more papers by this author EDWIN L. FORCE, EDWIN L. FORCESearch for more papers by this authorALEXIS T. BELL, ALEXIS T. BELLSearch for more papers by this author First published: May 18, 1976 https://doi.org/10.1002/chin.197620127AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinked InRedditWechat No abstract is available for this article. Volume7, Issue20May 18, 1976 RelatedInformation
Ethylene oxidation has been studied on a silver catalyst moderated by exposure to dichloroethane. Consistent with previous studies, it has been found that moderation causes a reduction in the oxidation rate and an increase in the selectivity towards ethylene oxide over that observed for an unmoderated catalyst. Infrared spectra have shown that moderation causes a reduction in the adsorption of ethylene and an enhancement in the adsorption of ethylene oxide and carbon dioxide. The effects of moderation have been interpreted in terms of a reaction mechanism proposed previously to explain ethylene oxidation over an unmoderated catalyst.
Infrared spectra are presented of the adsorbed species present on the surface of a silver catalyst during the oxidation of ethylene. These spectra, recorded as a function of time using a batch recirculation reactor, show significant changes as the reaction proceeds. The interpretation of the spectra recorded under reaction conditions is facilitated by comparison of these spectra with those obtained during the individual adsorption of reactants and products, both in the presence and absence of oxygen. Surface structures are proposed for each of the adsorbed species.
A combined infrared and kinetic investigation was performed on the oxidation of ethylene over a silver catalyst. Based upon the surface structures deduced from the spectra and additional information taken from the literature, a mechanism was developed to interpret both the epoxidation and combustion processes. The proposed mechanism explains qualitatively the kinetics observed in the present investigation and the variations in selectivity as a function of reactant and product concentrations reported in the literature by previous investigators.