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Biomedical subjects

R Quintiliani

Publications and source records attributed to R Quintiliani.

At least 37 records · Page 2Linked to original sources

Pharmacodynamics and pharmacokinetics of levofloxacin.

Principles of antibiotic pharmacodynamics include factors that are important for effective eradication of bacteria as well as the suppression of resistance. For effective eradication of bacteria and a good clinical outcome, a ratio for the area under the plasma concentration-time curve relative to the minimum inhibitory concentration (AUC/MIC) of greater than 100 is needed for gram-negative organisms, and a level of greater than 30 is required for gram-positive organisms. Pharmacodynamic principles can also be used to devise the optimal administration regimen for specific antimicrobial agents. Pharmacodynamic analysis of the activity of levofloxacin against Streptococcus pneumoniae revealed that, 99% of the time, actual hospitalized patients achieve an AUC/MIC of greater than 30. This indicates that levofloxacin will be very effective in treating S. pneumoniae infections in the majority of patients. Cost of treatment is an increasing concern voiced by healthcare providers and users alike. This has led to a much greater emphasis placed upon the cost of individual drugs used in the management of infections. However, when evaluating the cost of an antibiotic, it is extremely important that not only are the direct acquisition costs assessed, but consideration also given to other aspects incurring a financial burden, such as drug preparation cost, supplies, costs of treating adverse events or any treatment failures. It is only by having such a full assessment of costs that realistic financial comparisons can be made between different antibiotics.

Anti-Infective Agents↗

Comparative efficacies of levofloxacin and ciprofloxacin against Streptococcus pneumoniae in a mouse model of experimental septicaemia.

The in vivo efficacies of levofloxacin and ciprofloxacin were compared against three clinical isolates of Streptococcus pneumoniae, using a mouse protection model. Two strains (SP 22 and SP 28) were penicillin-sensitive while one strain (SP 46) was penicillin-resistant. Each strain had identical susceptibility to both drugs. Using mice with renal impairment induced by uranyl nitrate injection, the elimination half-life of each antibiotic was prolonged to approximate human pharmacokinetic profiles of the drugs. The dosing regimen of each drug that yielded serum levels in mice which mimic human therapeutic concentrations of the drugs, were designed. One hour after intraperitoneal inoculation with minimum lethal dose of each strain, either levofloxacin at a dosing regimen of 10.6 mg/kg every 8 h or ciprofloxacin at 9.5 mg/kg every 8 h was subcutaneously administered for a total of six or 15 doses. In treatment, monitored daily for 5-8 days, levofloxacin resulted in higher survival compared with ciprofloxacin for the three strains. For example, percent survival following levofloxacin treatment recorded at day 4 postinfection with SP 22, SP 28 and SP 46 were 41, 90 and 30%, respectively, while the corresponding values after ciprofloxacin treatment were 27, 75 and 16%, respectively. However, statistical analysis did not reveal a significant difference (p > 0.05). The lack of significant difference observed in the efficacies of both drugs reflected the comparability of their 24-h AUC/MIC ratios. It is suggested that, with some strains of S. pneumoniae, the efficacy of levofloxacin may be equivalent to that of ciprofloxacin in the treatment of systemic pneumococcal infections caused by susceptible strains of the organism.

Acute Kidney Injury↗

Influence of adjunctive interferon-gamma on treatment of gentamicin- and vancomycin-resistant Enterococcus faecalis infection in mice.

Increasing antibiotic resistance and the development of multidrug-resistance in the enterococci has complicated the treatment of serious enterococcal infections. It has been demonstrated in vitro that interferon-gamma (IFN-gamma) significantly augments the activities of gentamicin and vancomycin against Enterococcus faecalis resistant to these antibiotics. The present study was aimed at determining whether this beneficial effect of IFN-gamma on antienterococcal antibiotic activity can be validated in vivo. Following intraperitoneal inoculation in mice with a gentamicin- and vancomycin-resistant E. faecalis clinical isolate, the animals received IFN-gamma, antibiotic or a combination of both agents, subcutaneously, at determined dosing regimens. Treatment with IFN-gamma alone significantly improved survival of infected animals in a dose-dependent manner. High dose IFN-gamma was not beneficial and the level of enterococcal infectious burden influenced the effectiveness of the cytokine. The addition of IFN-gamma to therapy with gentamicin or vancomycin, or a combination of both antibiotics was associated with a marked increase in survival of infected non-neutropenic mice compared to treatments with the agents alone. However, the same treatments made in infected neutropenic mice did not show an enhancement effect by IFN-gamma after a combination therapy with antibiotics. In a study to examine pharmacokinetic interactions, concurrent administration with IFN-gamma significantly modified the disposition of gentamicin but not that of vancomycin. The results of this study suggest that the use of IFN-gamma in combination with vancomycin or gentamicin is a new treatment option that might improve the outcome of therapy of multidrug-resistant E. faecalis infections.

Animals↗

Protective effect of trovafloxacin, ciprofloxacin and ampicillin against Streptococcus pneumoniae in a murine sepsis model.

Trovafloxacin is a new fluoroquinolone that has potent microbiological activity against the pneumococcus, including penicillin-resistant strains. To evaluate the protective effect of trovafloxacin, ciprofloxacin and ampicillin against penicillin-susceptible, -intermediate and -resistant strains of Streptococcus pneumoniae, an intraperitoneal, immunocompetent mouse model of sepsis was used. The minimum lethal dose (MLD) for each isolate was determined in duplicate. A single sc dose of each antibiotic was administered over a wide range of doses 1 h after the ip inoculation of the test isolate at the MLD. The assessment of the protective dose for 50% of the population (PD50) for each antimicrobial/bacteria combination was performed in triplicate and the PD50 value was calculated at the end of 5 days. Results showed that trovafloxacin provided PD50 values that were significantly lower than those of ciprofloxacin for all isolates. For the penicillin-susceptible and -intermediate isolates, the PD50 values of ampicillin were significantly lower than those for either of the fluoroquinolones studied; however, trovafloxacin was statistically superior to both ciprofloxacin and ampicillin against the penicillin-resistant strain. Therefore, regardless of penicillin susceptibility, trovafloxacin has potent activity against Streptococcus pneumoniae and may be a viable alternative for the treatment of penicillin-resistant isolates.

Ampicillin↗

Oral bioavailability and pharmacokinetics of trovafloxacin in patients with AIDS.

Trovafloxacin pharmacokinetics were evaluated in 12 subjects with AIDS. By using a randomized design, single 200-mg doses of oral trovafloxacin and intravenous alatrofloxacin were administered. The mean absolute bioavailability was 91%. The pharmacokinetics of trovafloxacin when administered orally as the active form or intravenously as the prodrug (alatrofloxacin) are not altered in subjects with AIDS compared to those in healthy adults.

Acquired Immunodeficiency Syndrome↗

Beneficial effect of adjunctive azithromycin in treatment of mucoid Pseudomonas aeruginosa pneumonia in the murine model.

While a time-kill methodology noted no appreciable improvement in bactericidal activity with the addition of azithromycin (AZM) to a ceftazidime (CAZ) regimen, data from the murine pneumonia model showed that the addition of AZM significantly improved survival compared to treatment with CAZ alone. These data suggest that AZM might be a useful adjunctive therapy in the management of pneumonia resulting from mucoid isolates of Pseudomonas aeruginosa.

Animals↗

Pharmacodynamic comparisons of levofloxacin, ciprofloxacin, and ampicillin against Streptococcus pneumoniae in an in vitro model of infection.

The increasing frequency of penicillin-resistant pneumococcus continues to be of concern throughout the world. Newer fluoroquinolone antibiotics, such as levofloxacin, have shown enhanced in vitro activity against Streptococcus pneumoniae. In this study, the bactericidal characteristics and pharmacodynamic profiles of levofloxacin, ciprofloxacin, and ampicillin against four isolates of S. pneumoniae were compared by using an in vitro model of infection. Standard antibiotic dosing regimens which simulated the pharmacokinetic profile observed in humans were used. Control and treatment models were sampled for bacterial CFU per milliliter over the duration of each 24- or 48-h experiment. In addition, treatment models were sampled for MIC determinations and drug concentration. Regrowth of all isolates as well as an increase in MICs throughout the study period was observed in the ciprofloxacin experiments. A limited amount of regrowth was noted during levofloxacin therapy for one isolate; however, no change in MIC was detected for any isolate. Ampicillin showed rapid and sustained bactericidal activity against all isolates. In this study, ratios of effective fluoroquinolone area under the concentration-time curve (AUC):MIC values ranged from 30 to 55. Levofloxacin, owing to its larger AUC0-24 values, has excellent and sustained activity against different pneumococcal strains superior to that of ciprofloxacin.

Ampicillin↗

Antibiotic use in the critical care unit.

The antimicrobial management of patients in the critical care unit is complex. Not only must the clinician be familiar with a number of clinical, microbiological, pharmacological, and epidemiological observations but also fundamental pharmacodynamic concepts. It is an understanding of these concepts that forms the basis for the design of dosing strategies that maximize clinical efficacy and minimize toxicity. Antimicrobial selection is further complicated by the plethora of new antimicrobial agents available with varying clinical utility. Nowhere is this more evident than in the quinolone class of antibiotics. To aid the clinician in differentiating between quinolones it now seems reasonable to create a classification system akin to the generation grouping applied to the cephalosporins. Our classification is based upon the pharmacodynamic principles discussed within this article.

Aminoglycosides↗

Influence of adjunctive ticlopidine on the treatment of experimental Staphylococcus aureus endocarditis.

Antiplatelet therapy has been shown to reduce the size of aortic vegetations in a rabbit model of Staphylococcus aureus endocarditis. In addition, adjunctive aspirin improved the sterilization rate as compared with antibiotic treatment alone. To study the influence of ticlopidine, another potent inhibitor of platelet aggregation, infected animals received either vancomycin (Vm) alone or in combination with ticlopidine. When ticlopidine was given prior to and during antimicrobial therapy, a reduction in vegetation weight was observed. Ticlopidine administered with antimicrobial therapy, not only caused a reduction in vegetation weight, but also improved the rate of sterilization. This study provides additional data regarding the potential clinical role of antiplatelet agents in the treatment of endocarditis.

Animals↗

Comparison of bactericidal activity after multidose administration of clarithromycin, azithromycin, and ceruroxime axetil against Streptococcus pneumoniae.

The objective of this study was to compare the duration of serum bactericidal activity (SBA) for clarithromycin, azithromycin, and cefuroxime axetil in 12 young healthy volunteers after 5 days of therapy (dosed to steady-state) against two strains each of penicillin (PCN)-susceptible, -intermediate, and -resistant Streptococcus pneumoniae. This was a randomized, 3-way crossover study. All isolates were susceptible to clarithromycin (MICs 0.125 mg/l) and azithromycin (MICs 0.25-0.5 mg/l), while cefuroxime axetil susceptibilities correlated with PCN. Results showed that SBA was maintained for 100% of the dosing interval for clarithromycin and 50-100% for azithromycin regardless of PCN susceptibility when standard doses were employed. Cefuroxime axetil was active only against the PCN-susceptible isolate for 50% of the dosing interval, indicating that it should only be used for PCN-susceptible S. pneumoniae.

Anti-Bacterial Agents↗

The pharmacodynamics of aminoglycosides.

Recently, a more complete understanding of the pharmacodynamics of aminoglycosides has been recognized, indicating that this class of antibiotics exhibits both concentration-dependent bactericidal activity and a postantibiotic effect. This pharmacodynamic information, along with better knowledge of the mechanisms responsible for aminoglycoside toxicity, established the foundation for once-daily aminoglycoside dosing regimens. This new approach to aminoglycoside dosing appears to be safe, efficacious, and cost-effective, resulting in its increasing popularity in clinical practice.

Aminoglycosides↗