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Biomedical subjects

H Mattie

Publications and source records attributed to H Mattie.

At least 19 recordsLinked to original sources

Diffusion of cloxacillin into synovial tissue.

After a 30 min i.v. infusion of 1 g cloxacillin, the concentrations of this antibiotic were measured in plasma and synovial tissue samples from 11 patients undergoing total hip replacement. Assuming passive distribution between plasma and tissue the rate constants of distribution were estimated. The mean half-life of distribution was 22 min. The concentration of free drug in synovial tissue was estimated to be 77% of the total tissue concentration. The maximum tissue drug concentration after an i.v. bolus dose is predicted to occur at about 37 min.

Aged

Comparison of the antibacterial efficacies of ampicillin and ciprofloxacin against experimental infections with Listeria monocytogenes in hydrocortisone-treated mice.

The efficacies of ciprofloxacin and ampicillin against Listeria monocytogenes in an immunosuppressed mouse model of listeriosis were compared. Immunosuppression was achieved by administration of 2.5 mg of hydrocortisone acetate daily. Both ciprofloxacin and ampicillin were effective in reducing the number of viable L. monocytogenes cells in the liver and spleen. After treatment with 100 mg of ampicillin per kg of body weight every 6 h for 3 days, virtually no L. monocytogenes could be recovered from the livers and spleens of the mice. In contrast, after treatment with 100 mg of ciprofloxacin per kg every 6 h for 3 days, a geometric mean of 5 x 10(4) CFU of L. monocytogenes was recovered from the spleens and 1 x 10(5) CFU was recovered from the livers of the mice. Results of the study show that the antibacterial efficacy of ampicillin is far superior to that of ciprofloxacin in our animal model of listeriosis.

Ampicillin

Comparison of the antibacterial effects of cefepime and ceftazidime against Escherichia coli in vitro and in vivo.

The efficacies of cefepime and ceftazidime in an experimental Escherichia coli infection in granulocytopenic mice were related to their in vitro activities and their pharmacokinetic profiles. Cefepime had a higher intrinsic activity in vitro than ceftazidime, and it had a different pharmacokinetic profile, resulting in higher peak concentrations in plasma and a longer elimination half-life. To predict the antibacterial efficacy in vivo on the basis of in vitro activity and pharmacokinetics, we applied a mathematical model in which the in vitro effect is expressed as the difference in growth rate between control cultures and cultures grown in the presence of the antibiotic (ER), whereas the in vivo effect is given by the difference in the number of CFU between controls and antibiotic-treated animals (EN). The integral of ER over time, called ERt, was calculated by using in vivo concentrations. A significant linear relationship was found between EN and ERt for different doses at various times up to 4 h after administration, although the slope of this relationship was slightly but significantly less for cefepime (0.44) than for ceftazidime (0.59).

Animals

Comparison of the effects of aztreonam and tigemonam against Escherichia coli and Klebsiella pneumoniae in vitro and in vivo.

A study was performed to investigate the pharmacodynamics of aztreonam and tigemonam against Escherichia coli and Klebsiella pneumoniae in vitro and in vivo. The in vitro concentration-effect relationships were determined in short-term growth experiments. The in vivo dose-effect relationships were determined in an experimental thigh muscle infection in irradiated mice. In this model, E. coli was injected into one thigh muscle and K. pneumoniae was injected into the other. Throughout these experiments aztreonam was administered subcutaneously and tigemonam was administered orally. For analysis of the antibacterial pharmacodynamics, the following parameters were determined: the maximum effect as a parameter for efficacy, the 50% effective concentration (or dose) as a parameter for potency, and the slope of the concentration-effect relationship. To assess the relationship between the concentration of the antibiotic and the antibacterial effect in vivo, the pharmacokinetics of the two drugs in the plasma of mice were determined as well. The maximum in vitro and in vivo effects of aztreonam and tigemonam against both bacteria did not differ substantially. However, both drugs killed E. coli more effectively than K. pneumoniae, indicating that the maximum in vitro effect of these drugs against E. coli was higher than that against K. pneumoniae. The maximum in vivo effect of both drugs against E. coli was similar to that against K. pneumoniae. Furthermore, in vitro aztreonam was about twice as potent as tigemonam, but in vivo the reverse was the case. These findings were explained by pharmacokinetic differences between subcutaneously administered aztreonam and orally administered tigemonam, because concentrations of tigemonam in plasma remained at microbiologically active concentrations longer than those of aztreonam did.

Animals

Modulation of the intestinal flora of mice by parenteral treatment with broad-spectrum cephalosporins.

A study was performed to determine the effect of parenteral treatment with four broad-spectrum cephalosporins (cefoperazone, ceftriaxone, ceftazidime, and cefepime) on the number of aerobic gram-negative rods and on the outgrowth of Candida albicans and a multiresistant strain of Citrobacter freundii in the feces of mice. The estimated fractions of a parenteral dose that were excreted into the gastrointestinal tract were 0.37 for cefoperazone, 0.11 for ceftriaxone, 0.03 for ceftazidime, and 0.002 for cefepime. All four cephalosporins significantly decreased the number of aerobic gram-negative rods in the feces, and virtually all gram-negative rods were eliminated at high doses of cefoperazone, ceftazidime, and ceftriaxone. Furthermore, at high doses these three compounds led to a significant increase of the outgrowth of resistant Citrobacter freundii. The outgrowth of Candida albicans was increased at high doses of cefoperazone and ceftriaxone, whereas ceftazidime and cefepime did not have this effect. The most profound changes in the gastrointestinal ecology were observed during treatment with high doses of cefoperazone. The results suggest that the colonization resistance of the gastrointestinal tract can be substantially decreased by parenteral treatment with cefoperazone and, to a lesser extent, with ceftriaxone and ceftazidime.

Animals

Modulation of the intestinal flora of mice by treatment with aztreonam and tigemonam.

Oral and parenteral administration of aztreonam and oral administration of tigemonam to conventional mice caused a decrease in the number of aerobic gram-negative rods in the feces. Oral treatment with high doses of aztreonam (greater than or equal to 25 mg/kg/day) and tigemonam (100 mg/kg/day) adversely influenced colonization resistance, whereas oral treatment with lower doses of the monobactams or parenteral treatment with aztreonam did not.

Administration, Oral

Evaluation of cloxacillin concentrations in plasma and muscle tissue during cardiopulmonary bypass.

Concentrations of cloxacillin in plasma and deep thoracic muscle tissue were measured in 10 patients who underwent elective coronary bypass surgery or valve replacement. One g of cloxacillin was administered after the induction of anaesthesia and 1 g cloxacillin was added to the oxygenator pump priming fluid before the start of the procedure. Blood and tissue samples were obtained before, during and after cardiopulmonary bypass. The relation between unbound plasma concentrations and total tissue contents of the drug was calculated. It was shown that measurement of the free plasma concentration may provide fairly reliable information on the free concentrations of cloxacillin in the tissues, and that determination of tissue contents may therefore not be necessary. Due to the administration of the second dose of cloxacillin at the start of cardiopulmonary bypass free tissue contents were just adequate in most patients. However, to obtain adequate tissue concentrations after bypass it is recommended that a third dose of the antibiotic be administered before the end of the operation.

Adult

Effect of cytostatic agents on the number of alveolar phagocytes and the efficacy of ceftriaxone in an experimental murine lung infection.

Mice made monocytopenic and granulocytopenic by cyclophosphamide or monocytopenic by etoposide were infected by exposure to an aerosol containing Klebsiella pneumoniae. Eighteen hours later ceftriaxone was administered and three hours after that the experiment was ended. At the time of infection and at 18 and 21 h the numbers of alveolar macrophages and granulocytes in bronchoalveolar lavage (BAL) fluid were significantly lower in the cyclophosphamide-pretreated animals than in the controls. Furthermore, outgrowth of K. pneumoniae in the lungs was significantly stronger in cyclophosphamide-pretreated mice and a fourfold higher dose of ceftriaxone was needed to obtain the same antibacterial effect as in the controls. In the etoposide-pretreated mice the number of alveolar macrophages in BAL was not significantly lower than that in the controls, but the number of granulocytes was. Compared with the controls, there was no significant difference in the number of K. pneumoniae in the lungs, and the efficacy of ceftriaxone did not differ either.

Animals

Antibacterial activity of four cephalosporins in an experimental infection in relation to in vitro effect and pharmacokinetics.

The in vitro activity of four cephalosporins was compared with their effects in an experimental thigh infection (cefuroxime and cefamandole against Escherichia coli and cefamandole, ceftriaxone, and ceftazidime against Klebsiella pneumoniae) in granulocytopenic mice. The effect in vitro (ER) was defined as the difference between the growth rate without antibiotic and the growth rate at the steepest part of a 3-h growth curve in the presence of an antibiotic. The relation between concentration and ER was described with the Hill equation. Using pharmacokinetic parameters of the plasma concentrations in vivo and those of the Hill equation the corresponding time course of ER was calculated and by integration with respect to time (0tERdt), an estimate was obtained of the effect on bacteria. For all four antibiotics this estimate was significantly correlated with the actual values of the effect in vivo (EN), defined as the difference in numbers of bacteria between controls and antibiotic-treated animals at 4 h.

Agranulocytosis

Effect of amphotericin B, fluconazole and itraconazole on intracellular Candida albicans and germ tube development in macrophages.

Candida albicans may resist intracellular killing by macrophages through the formation of germ tubes. Antifungal drugs that inhibit intracellular germ tube formation could therefore facilitate host defence against C. albicans. We assessed the effects of amphotericin B and the new triazole drugs fluconazole and itraconazole on the multiplication and intracellular germ tube formation of C. albicans phagocytosed by murine peritoneal macrophages, and compared the findings with the effects of these drugs on C. albicans in the absence of macrophages. The fungicidal effect of amphotericin B against C. albicans in macrophages was less prominent than that found for extracellular candida. However, amphotericin B completely blocked germ tube formation of C. albicans both in macrophages and extracellularly. Fluconazole and itraconazole had little effect on the number of candida but significantly, although incompletely, inhibited germ tube formation both inside macrophages and extracellularly. The inhibition of intracellular germ tube formation by the triazoles may facilitate host defences against C. albicans and contribute to the efficacies of these drugs in vivo.

Amphotericin B

Relation between the therapeutic efficacy of imipenem in an experimental infection in granulocytopenic mice and its effect on murine intestinal microbial ecology.

A study was performed to assess the effect of parenteral administration of imipenem on the intestinal microbial ecology of mice in relation to the therapeutic efficacy of the drug. The therapeutic effect of imipenem was assessed in a short-term experimental thigh muscle infection with Escherichia coli in irradiated mice. The maximum antibacterial effect of imipenem was approached at a single dose of 80 mg/kg. At this dose of imipenem the number of viable E. coli in the thigh muscle decreased from 9 x 10(6) to 4 x 10(5), whereas in untreated controls this number increased from 9 x 10(6) to 2 x 10(8). Daily administration of a dose of 80 mg/kg imipenem caused significant changes in the intestinal flora of conventional mice, despite the low concentrations of the drug (about 1 mg/kg) found in the caecum 30 min after infection of this dose. These changes consisted of an increase in the number of E. coli and enterococci and a decrease in the number of Staphylococcus aureus in the faeces. Furthermore, at this dose of imipenem, the number of Candida albicans recovered from the faeces after oral contamination with this organism was increased. We conclude from these animal experiments that the use of imipenem in high doses causes ecological changes in the intestinal bacterial flora with the potential to promote colonization by candida.

Animals

Antistaphylococcal activities of teicoplanin and vancomycin in vitro and in an experimental infection.

The efficacies of vancomycin and teicoplanin in an experimental Staphylococcus aureus infection in granulocytopenic mice were related to their activities in vitro and their pharmacokinetic profiles. In vitro teicoplanin had a higher intrinsic activity than vancomycin did; and it also had a more favorable pharmacokinetic profile, resulting in higher peak concentrations in plasma, a longer elimination half-life, and a larger area under the concentration-time curve than those of vancomycin. To predict the antibacterial efficacies of the drugs in vivo on the basis of their activities in vitro and pharmacokinetics, a mathematical model was applied. In the model the in vitro effect was expressed as the difference in growth rate between control cultures and those in the presence of the antibiotic (ER), and the in vivo effect was expressed as the difference between numbers of CFU in control and antibiotic-treated animals (EN). The integral of ER against time, ERt, was calculated by using the concentrations found in vivo. A significant linear relationship was found between EN and ERt for different dosages at the same times (4 h) after drug administration as well as for the same doses at consecutive times, although at the lowest doses of teicoplanin the observed effect was less than the predicted effect.

Animals

Comparative study of the effects of four cephalosporins against Escherichia coli in vitro and in vivo.

A thigh muscle infection induced with Escherichia coli in irradiated mice was used as a model to compare the in vivo pharmacodynamics of the antibacterial effect of four cephalosporins (i.e., cefepime, ceftriaxone, ceftazidime, and cefoperazone) with the in vitro antibacterial pharmacodynamics of these drugs. The following in vitro pharmacodynamic parameters were determined: the maximum effect as a measure for efficacy, the 50% effective concentration as a parameter for potency, and the slope of the concentration-effect relationship. For analysis of the in vivo antibacterial pharmacodynamics, the same parameters were applied for the dose instead of the concentration. For the detection of a relationship between concentration and antibacterial effect in vivo, we determined the pharmacokinetics of the four cephalosporins in the plasma of mice. The results showed that, in general, there is a direct relationship between the in vivo and in vitro pharmacodynamics of these cephalosporins. The maximum effects of cefepime, ceftazidime, and cefoperazone were approximately similar in vivo and in vitro. The sequence of potency of these drugs was, in descending order, cefepime, ceftazidime, and cefoperazone. Ceftriaxone differed from the other three cephalosporins in that it displayed unexpected in vivo pharmacodynamics. Ceftriaxone was just as efficacious as the other three in vitro, but its maximum effect in vivo was much lower. This relatively low maximum effect of ceftriaxone in vivo was not explained by the pharmacokinetic characteristics of the drug. From the present results it can be concluded that the in vitro efficacy of cephalosporins does not necessarily have a predictive value for the in vivo efficacy.

Animals

Influence of cytostatic treatment on the efficacy of erythromycin and roxithromycin in a staphylococcal infection in mice.

Mice made monocytopenic with etoposide or both granulocytopenic and monocytopenic with cyclophosphamide were infected in a thigh muscle with 3 x 10(6) CFU of Staphylococcus aureus; 1 h later erythromycin or roxithromycin was administered, and 4 h after that the number of CFU per thigh was determined. In vitro as well as in vivo, the maximal effect of both antibiotics was only bacteriostatic. Monocytopenia did not diminish the efficacy of either erythromycin or roxithromycin in vivo, whereas the combination of granulocytopenia and monocytopenia markedly decreased the efficacy of both drugs: a 4-fold dose increase was necessary to obtain the same final number of CFU at the site of infection as in the controls. It is concluded that granulocytes contributed substantially to antibiotic efficacy against S. aureus in this short-term infection model.

Animals

A predictive parameter of antibacterial efficacy in vivo, based on efficacy in vitro and pharmacokinetics.

A method is described to predict the efficacy of antibiotics at changing concentrations in vitro or in an experimental thigh infection in granulocytopenic mice from the activity at constant concentrations in vitro, using pharmacokinetic parameters. The combinations studied were erythromycin against Staphylococcus aureus (in vitro and in vivo), four cephalosporins against two Gram-negative rods (in vivo), netilmicin against Pseudomonas aeruginosa (in vitro) and vancomycin against S. aureus (in vivo). The effect in vitro (ER) was defined as the difference between the growth rate without antibiotic and the growth rate in the presence of an antibiotic. The relationship between concentration and ER was described with the Hill equation. Using pharmacokinetic parameters of exponentially declining concentrations in vitro or of a bi-exponential concentration course in vivo together with the parameters of the Hill equation, the corresponding time course of ER was calculated. By integration with respect to time, an estimate, called ERt, was obtained of the effect on bacterial numbers, called EN, defined as the difference between the number of bacteria in the controls and the number in the presence of the antibiotics. For all antibiotics studied the value of ERt was significantly correlated with the actual values of EN.

Animals

Minocycline treatment for rheumatoid arthritis: an open dose finding study.

Ten patients with active definite or classical rheumatoid arthritis (RA) were treated with oral minocycline (maximal daily dose 400 mg) during 16 weeks in an open study. Seven patients reported side effects (in most cases vestibular) leading to premature discontinuation in one. Half of the efficacy variables improved significantly after 4 weeks of therapy. At the end of the study all variables were significantly changed compared with their pretreatment values. We conclude that minocycline may be beneficial in RA. This effect needs to be confirmed in controlled studies.

Administration, Oral

Decontaminating efficacy of ciprofloxacin in an animal model.

A study was performed to assess the suppressive effect of ciprofloxacin on the aerobic gram-negative flora of the gastrointestinal tract in mice in relation to its effect on colonization resistance. Ciprofloxacin exhibited a potent decontaminating effect, with the maximum effect being reached at a dose of 8 mg/kg/day. At this dose aerobic gram-negative rods were eliminated from the gastrointestinal tract within 24h without any adverse influence on the parameters of colonization resistance measured.

Animals