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Biomedical subjects

B Pangon

Publications and source records attributed to B Pangon.

At least 19 recordsLinked to original sources

Single daily dosing of antibiotics: importance of in vitro killing rate, serum half-life, and protein binding.

The relative importance of pharmacokinetic and pharmacodynamic parameters for the feasibility of a single daily dose (SDD) of antibiotics remains to be established. Therefore, we studied the relationship between in vitro bacteriological parameters (MIC, MBC, and killing rate [KR], defined as the reduction in the inoculum within 3 h), pharmacokinetic parameters (t1/2 and protein binding [PB], and in vivo antibacterial effect of a single antibiotic dose in an experimental rabbit model of Escherichia coli endocarditis. Nine antibiotics were investigated: two aminoglycosides, two quinolones, and five beta-lactams. For each drug, the minimal effective dose (MED) (in milligrams per kilogram) was defined as the lowest dose able to achieve a significant difference (P less than 0.05) of CFU in the vegetations in comparison with controls 24 h after a single intravenous injection. Aminoglycosides and quinolones had the lowest MEDs, followed by beta-lactams. Univariate regression analysis showed that KR was the major determinant of MED. A stepwise regression analysis showed that t1/2 significantly improved the predictive value of KR, while PB, MIC, and MBC did not. The final equation was MED = 1,586-238 KR-297 t1/2 (r = 0.90, P = 0.01). We concluded that the pharmacodynamic parameters (especially the high KR) of aminoglycosides and quinolones explained their low MEDs and might allow SDD. In contrast, the low KR of beta-lactams emphasized the critical importance of a long t1/2, as for ceftriaxone, allowing the use of this beta-lactam alone in SDD.

Animals

Ceftriaxone-sulbactam combination in rabbit endocarditis caused by a strain of Klebsiella pneumoniae producing extended-broad-spectrum TEM-3 beta-lactamase.

We studied the activity of the combination of sulbactam and ceftriaxone against a Klebsiella pneumoniae strain producing TEM-3, a new extended-broad-spectrum beta-lactamase, in an endocarditis model. In vitro, ceftriaxone was strongly inactivated in the presence of TEM-3 (MBC, 128 micrograms/ml with an inoculum of 5 x 10(5) CFU/ml). A marked inoculum effect was demonstrated with sulbactam: effective concentrations of inhibitor needed to reduce the MIC and MBC of ceftriaxone to similar levels increased from 1 microgram/ml in the presence of an inoculum of 5 x 10(5) CFU/ml to 20 micrograms/ml in the presence of an inoculum of 1 x 10(7) CFU/ml. In vivo, sulbactam given at 200 mg/kg of body weight every 12 h, a dosage higher than that previously reported to be effective against rabbit endocarditis caused by other microorganisms, was not sufficient to restore the complete activity of ceftriaxone given at 30 mg/kg once daily for 4 days. This insufficient activity may be correlated with the presence of a high level of beta-lactamase inside the vegetations, as indicated by a quantitative in vitro assay of beta-lactamase activity in the cardiac vegetation, suggesting an insufficient inactivation of the extended-broad-spectrum beta-lactamase in vivo.

Animals

Activity of sulbactam in combination with ceftriaxone in vitro and in experimental endocarditis caused by Escherichia coli producing SHV-2-like beta-lactamase.

We studied the efficacy of sulbactam, a beta-lactamase inhibitor, in combination with ceftriaxone in vitro and in experimental endocarditis due to an Escherichia coli strain producing an extended-spectrum beta-lactamase most similar to SHV-2, a new mechanism of resistance to broad-spectrum cephalosporins among members of the family Enterobacteriaceae. In vitro, ceftriaxone demonstrated an important inoculum effect (MICs were 2 and 256 micrograms/ml with 5 X 10(5) and 5 X 10(7) CFU of inoculum per ml, respectively). Sulbactam inhibited the beta-lactamase degradation of ceftriaxone and enhanced the killing by ceftriaxone with both inocula tested. In vivo, sulbactam (100 mg/kg every 8 h) or ceftriaxone (15 or 30 mg/kg every 24 h) alone were ineffective after a 4-day therapy. The addition of sulbactam to ceftriaxone (15 mg/kg) or to the ceftriaxone (15 mg/kg)-netilmicin (6 mg/kg every 24 h) combination produced a reduction of 2 log10 CFU/g of vegetation greater than that produced by therapy without sulbactam. The sulbactam-ceftriaxone (30 mg/kg) combination produced a reduction of almost 5 log10 CFU/g of vegetation greater than that produced by single-drug therapy (P less than 0.01), sterilized five of eight vegetations (versus none of seven for ceftriaxone [30 mg/kg] alone; P less than 0.05), and was as effective as the ceftriaxone (15 mg/kg)-sulbactam-netilmicin combination. We concluded that (i) SHV-2 production was responsible for ceftriaxone failure in vivo, probably because of the high inoculum present in vegetations; (ii) sulbactam used in a regimen which provided levels in serum constantly above 4 micrograms/ml and a vegetation/serum peak ratio of approximately 1:3 enhanced the activity of a broad-spectrum cephalosporin in a severe experimental infection; and (iii) the highest dose of ceftriaxone in combination with sulbactam was as effective as the lowest dose of ceftriaxone plus sulbactam plus an aminoglycoside.

Animals

TEM-4, a new plasmid-mediated beta-lactamase that hydrolyzes broad-spectrum cephalosporins in a clinical isolate of Escherichia coli.

A clinical isolate of Escherichia coli, strain CB-134, recovered in 1986 from an abdominal abscess, exhibited resistance to penams, oxyimino-beta-lactams including broad-spectrum cephalosporins (cefotaxime, ceftriaxone, ceftazidime), and aztreonam but remained susceptible to cephamycins (cefoxitin, cefotetan) and to moxalactam and imipenem. Clavulanate (2 micrograms/ml) restored the susceptibility of the strain to broad-spectrum cephalosporins and aztreonam. A beta-lactamase with an isoelectric point (pI) of 5.9 was detected in strain CB-134, and the corresponding gene was transferred by conjugation to E. coli together with the associated aminoglycoside resistance determinant [AAC(3)-II] and tetracycline, trimethoprim, and sulfonamide resistance. The beta-lactamase efficiently hydrolyzed cefotaxime and ceftriaxone but only moderately hydrolyzed ceftazidime and was inhibited by clavulanate and sulbactam (1 microM) and by anti-TEM-1 and anti-TEM-2 sera. This extended-spectrum beta-lactamase, conferring resistance to cefotaxime, ceftriaxone, ceftazidime, and aztreonam, was comparable to CTX-1 (TEM-3) but differed from it by pI. Agarose gel electrophoresis of the plasmid DNA indicated that this new enzyme was coded by pUD16, a plasmid of 220 kilobases which belongs to the Inc6 incompatibility group. Hybridization with an intragenic probe for TEM-1 revealed that this beta-lactamase derives from TEM-type beta-lactamases and hence it was named TEM-4.

Cephalosporins

Ceftriaxone-netilmicin combination in single-daily-dose treatment of experimental Escherichia coli endocarditis.

We evaluated the activities of ceftriaxone (15 mg/kg), netilmicin (6 mg/kg), and their combination given intramuscularly once daily for 4 days for the treatment of experimental Escherichia coli endocarditis in rabbits. In vitro, a greater rate of killing and an increased trough serum bactericidal titer (P less than 0.01) were achieved with the combination. In vivo, the combination had a greater bactericidal effect (P less than 0.01) and resulted in a greater number of sterile vegetations (P less than 0.05) than single-drug therapy. Thus, in vivo, an increased effect can be obtained despite a single daily dose of a long-acting cephalosporin and an aminoglycoside.

Animals

Pharmacokinetics of cefsulodin in rat cerebrospinal fluid during experimental Pseudomonas aeruginosa meningitis.

Experimental meningitis was induced in rats with Pseudomonas aeruginosa. Bacteria were inoculated in the second ventricle. Twenty hours later cefsulodin penetration was studied in CSF by on-line cannula system which permitted sampling of CSF in the third ventricle. Comparison with healthy animals indicated breakdown of the blood-CSF barrier and high concentrations of cefsulodin were found in CSF.

Animals

[A fosfomycin-gentamicin combination in the treatment of experimental endocarditis caused by Klebsiella pneumoniae producing type TEM-3 beta-lactamase].

The authors studied the activity of fosfomycin (FOS) and/or gentamicin (GEN) against a Klebsiella pneumoniae strain resistant to all beta-lactams--except cephamycins and imipenem--by production of a plasmid mediated extended broad-spectrum beta-lactamase-TEM-3, to all aminoglycosides--except gentamicin--by production of a plasmid mediated 6' aminoglycoside acetyltransferase IV, to sulfonamides and to tetracyclines. In vitro, the combination FOS (MIC = MBC = 32 mg/l) + GEN (MIC = MBC = 2) appeared indifferent (FIC = 0.75; FBC = 1). In vivo, on experimental endocarditis in rabbits, FOS alone was ineffective, GEN alone was active but only at high dose regimen, FOS - GEN combination was active as compared with controls. Fosfomycin - gentamicin combination may be an alternative in the therapy of severe infections due to multiresistant Enterobacteriacae.

Animals

[Retrospective bacteriological study of mycobacterial infections in patients with acquired immunodeficiency syndrome].

The main species of mycobacteria isolated in 62 of the 316 acquired immunodeficiency syndrome patients admitted to the Claude Bernard Hospital, Paris, between January, 1983 and October, 1986 were studied retrospectively according to their site of isolation and their pathogenic role. Mycobacterium tuberculosis was isolated in 19 cases (from pulmonary specimens in 17 cases); this species was present in 59 percent of our African patients as against 20 percent of our European patients. M. avium intracellulare was isolated in 33 cases (17 from blood, 12 from the lung and 11 from the gastrointestinal tract) and was found in 55 p. 100 of our European patients. Other species that were isolated less frequently were M. xenopi (5 cases), M. kansasii (3 cases), M. aurum, M. chelonae, M. fortuitum, M. gordonae, M. simiae and M. terrae (1 case each). Post mortem specimens obtained from 110 acquired immunodeficiency syndrome patients were cultivated during the same period. In 20 patients, at least one specimen was positive for a mycobacterium: M. tuberculosis in 2 cases, M. avium intracellulare in 18 cases. Twenty-nine of the 33 patients in whom M. avium intracellulare was isolated were considered a posteriori as being infected by this organism. The therapeutic approach varies according to the species involved. No treatment seems to be truly effective against M. avium intracellulare. Pending the results of cultures, no direct bacteriological examination can provide information on the mycobacterial species concerned; however, a conventional antituberculosis treatment may be instituted, particularly in patients from Africa or Haiti.

Acquired Immunodeficiency Syndrome

The pharmacokinetics and extravascular diffusion of teicoplanin in rabbits and comparative efficacy with vancomycin in an experimental endocarditis model.

The serum protein binding, extravascular diffusion and urinary excretion of teicoplanin were studied in rabbits. Extravascular diffusion was studied after a 20 min iv infusion, and after one or five im injections (7.5 mg/kg), and was compared with the results obtained after im administration of vancomycin (7.5 and 15 mg/kg). In an experimental model of Staphylococcus aureus endocarditis, the efficacy of both antibiotics was also investigated. We observed teicoplanin serum protein binding of 87 +/- 4%. The serum concentrations of teicoplanin showed a three-phase exponential decline: T1/2 alpha, 0.11 +/- 0.01 h; T1/2 beta, 1.4 +/- 0.4 h; T1/2 gamma, 8.3 +/- 2.2 h. Teicoplanin appeared to be slightly secreted by renal tubules. The extravascular diffusion and the therapeutic efficacy of both drugs were studied with intervals between two injections based on the same multiple of beta half-life. Teicoplanin, like vancomycin, appeared slowly in extravascular fluid and the diffusibility of both drugs was similar. Peak extravascular concentrations of teicoplanin after 5 im injections were greater when the compound was administered every 16 h, rather than every 24 h and, for this drug, iv administration induced higher peak extravascular concentrations (P less than 0.01) than im injection. In the experimental model of S. aureus endocarditis, vancomycin 9 mg/kg/12 h and teicoplanin 4.5 mg/kg/16 h were similarly active and more effective than teicoplanin 4.5 mg/kg/24 h.

Animals

Enhancement of the therapeutic effect of cephalosporins in experimental endocarditis by altering their pharmacokinetics with diclofenac.

We studied the effect of a nonsteroidal anti-inflammatory drug, diclofenac, in rabbits on the kinetics of three cephalosporins: cefotiam, cefmenoxime and ceftriaxone, and compared the antibacterial effect of these antibiotics, given alone or with diclofenac, in experimental endocarditis. Diclofenac significantly increased (P less than .05) the area under the curve in tissue-cage fluid of ceftriaxone and cefotiam-treated animals, and the terminal half-life of ceftriaxone in their sera (3.45 +/- 0.4 vs. 2.8 +/- 0.5 hr). Diclofenac reduced urinary excretion of cefotiam only. Cefmenoxime pharmacokinetics remained unchanged by diclofenac. The alteration of ceftriaxone kinetics appeared to be due to nonrenal mechanisms and could suggest reduction of biliary excretion. In Escherichia coli endocarditis, diclofenac enhanced the concentration (P less than .05) of cefotiam (23 +/- 16 vs. 8.9 +/- 5 micrograms/g) and ceftriaxone (13.2 +/- 3 vs. 8.5 +/- 4 micrograms/g) in infected vegetations, but not that of cefmenoxime. The antibacterial effect of ceftriaxone increased with diclofenac (5.5 +/- 1 vs. 7.2 +/- 1 log10 colony forming unit/g of vegetation). In vitro, neither protein binding to rabbit serum proteins nor intrinsic activity on the E. coli strain of each antibiotic was modified by diclofenac. These results suggest that anti-inflammatory drugs could increase antibiotic efficacy by altering their pharmacokinetics. The renal and nonrenal site of interaction may be involved for drugs belonging to the same class. Results obtained in tissue-cage fluid were predictive of the interference at the infected site.

Animals

[Treatment with a cefotaxime-fosfomycin combination of staphylococcal or enterobacterial meningitis in adults].

Thirty-two patients were included in this trial: 22 with staphylococcal meningitis (including 5 methicillin-resistant) and 10 with enterobacterial meningitis. Mean duration of treatment was 14.5 and 15.9 days respectively. The combination was synergistic in vitro against 10 of the 12 strains of Staphylococcus and 5 of the 6 strains of Enterobacteriaceae studied. Bacteriological sterilization occurred in all cases which could be evaluated, and clinical recovery was obtained in 95.2% of patients with staphylococcal meningitis (4 unrelated deaths) and 100% of patients with enterobacterial meningitis (2 deaths). Bactericidal power of the cerebro-spinal fluid, often less than 1/8, was not correlated with effectiveness against Staphylococci. Mean CSF concentrations of cefotaxime, desacetylcefotaxime and fosfomycin on the 2nd and 15th days of treatment were 4, 3.5 and 39.8 mg/l and 2.2, 2.1 and 28.0 mg/l, respectively. Clinical and biological acceptability was satisfactory. There were three cases of superinfection or colonization, by Pseudomonas and Enterobacter.

Adolescent

Value of antibiotic levels in serum and cardiac vegetations for predicting antibacterial effect of ceftriaxone in experimental Escherichia coli endocarditis.

In a rabbit model of Escherichia coli endocarditis, we studied the penetration into infected vegetations and the antibacterial effect of ceftriaxone. Ceftriaxone was given at different dosages, alone or with an interfering agent, diclofenac, a nonsteroidal anti-inflammatory drug, to determine the predictive value of the antibiotic levels in serum or infected vegetations on the antibacterial efficacy. Diclofenac increased the serum terminal half-life of ceftriaxone and increased its extravascular diffusion in tissue cage fluid, as well as in infected vegetations, allowing us to obtain various antibiotic concentrations in the infected site. Two hours after the fourth injection, around the time of peak level in serum, we observed a linear relationship between (i) serum and local antibiotic levels in vegetations, (ii) local antibiotic levels in a range of 142 to 600 X MBC and bacterial titer (log10 CFU/g) in vegetations, and (iii) serum antibiotic levels in a range of 800 to 1,400X MBC and bacterial titer in vegetations. In vivo, antibacterial effect was obtained only with high antibiotic levels in vegetations (greater than or equal to 220X MBC). This was confirmed by incubating vegetations sampled from infected animals in rabbit serum containing ceftriaxone (ex vivo experiment). Given once daily at a therapeutic dosage (30 mg/kg) for 4 days, ceftriaxone exhibited good efficacy (log10 CFU/g of vegetation = 2.41 +/- 2.7 versus 7.41 +/- 0.92 in control animals) and prevented regrowth of bacteria until 24 h after the last injection. We concluded that (i) provided the dose is sufficient, a long-acting cephalosporin can prove effective in severe gram-negative infections even when given infrequently, and (ii) serum antibiotic levels around the peak value, reflecting high effective local levels, could predict the therapeutic efficacy and represent a simple test to monitor the clinical course of a severe infectious process.

Animals