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Biomedical subjects

C Carbon

Publications and source records attributed to C Carbon.

At least 19 recordsLinked to original sources

[Salmonellosis: therapeutic aspects].

The antibiotic therapy of salmonellosis has changed during the last decade, due to the development of resistance to classical drugs and also to increased knowledge in the conditions of in vitro and in vivo efficacy of new compounds. These new informations led to clinical studies of efficacy and tolerance of fluoroquinolones in the treatment of acute diarrhea or chronic carriage due to Salmonella, or against typhoid fever. These drugs appeared very efficacious and able to significantly shorten the duration of treatment. However, two potential pitfalls have to be kept in mind deserving additional informations: selection of resistant mutants and increased risk of persistent carriage.

Anti-Bacterial Agents

[Choice and monitoring of the treatment of systemic mycoses. Value and limitations of in vitro tests].

Systemic fungal infections are an important cause of morbidity and mortality among immunocompromised patients. New antifungal agents, such as triazoles, are now available, and the place of in vitro tests has to be discussed. It has been shown that interlaboratory reproducibility of in vitro susceptibility tests against fungi was low, due to the lack of standardization. Recently, the NCCLS defined conditions permitting a good interlaboratory reproducibility. However, the predictive value of in vitro susceptibility tests on the therapeutic outcome remain to be demonstrated, and is now under investigation. At the present time, susceptibility testing can be useful: in patients treated by amphotericin B for a severe fungal infection and who do not improve under therapy; to detect resistance to 5-fluorocytosine; to compare the sensitivity to triazoles before and after treatment, in case of therapeutic failure. Serum levels monitoring is useful to prevent the toxicity due to 5-fluorocytosine and to control the digestive absorption of triazoles, especially the lipophilic compound itraconazole.

Acquired Immunodeficiency Syndrome

Inhibiting cholesterol synthesis reduces the binding and toxicity of amphotericin B against rabbit renal tubular cells in primary culture.

Renal tubular cells are a target of amphotericin B (AmB) toxicity, but the mechanisms involved in the tubular cell-AmB interactions are unknown. Ketoconazole was selected to lower the cholesterol content of rabbit renal tubular cells in primary culture. The consequences of cholesterol depletion on AmB nephrotoxicity was investigated in vitro as the inhibition of Na(+)-dependent phosphate uptake. After 1 h of exposure, AmB decreased phosphate uptake (49%, 77%, and 82% inhibition with 5, 10, and 20 microM of AmB, respectively). Pretreatment of cells with ketoconazole (10 microM for 24 h) reduced by 50% (P less than .01) the phosphate uptake inhibition induced by AmB, decreased cellular cholesterol synthesis (greater than 80% inhibition), and decreased AmB binding to cell membrane by 50%, as measured by the fluorescence extinction of a probe bound to tubular cell membrane. Incubation with exogenous exchangeable cholesterol again increased AmB binding to plasma membrane and restored AmB toxicity. These results demonstrate that the first step of AmB renal tubular toxicity is mediated by cellular cholesterol content and is parallel to the binding of AmB to cell membrane.

Amphotericin B

Prospective randomized phase II study of intravenous cefpirome 1g or 2g bd in the treatment of hospitalized patients with different infections. Cefpirome Study Group.

Two hundred and seventy-six hospitalized patients with severe infection (complicated UTI, pneumonia, skin and soft tissue infection or septicaemia) were randomly allocated to receive either 1g or 2g cefpirome bd. Two hundred and seventy-four patients were evaluable for tolerance, 210 for bacteriological efficacy. The two groups were similar in terms of underlying disease, age, sex, and general condition on admission. The overall clinical and bacteriological response rates were 97/103 (94%) and 68/76 (90%) respectively in the 1g group, compared with 102/107 (95%) and 67/71 (94%) in the 2g group. There was no significant difference between the treatment groups. Eighteen adverse events, possibly or probably drug related, were reported (7 in the 1g group, 11 in the 2g group). This resulted in discontinuation of therapy in four cases (two in each group). Fourteen of the adverse events were local (five receiving 1g, nine receiving 2g), mainly phlebitis or pain at the injection site. Thirteen patients died during the study period (up to 14 days after the last dose) but in no case was death attributed to cefpirome. A review of routine laboratory parameters revealed no abnormalities which could definitely be attributed to cefpirome although in four cases a relationship was considered possible; these included two increases in serum creatinine, one increase in SGPT, and one episode of neutropenia. Cefpirome administered as 1 or 2g twice daily was a well tolerated, effective agent for the treatment of severe sepsis in hospitalized patients.

Adolescent

Efficacy of temafloxacin in experimental Streptococcus adjacens endocarditis and autoradiographic diffusion pattern of [14C]temafloxacin in cardiac vegetations.

Temafloxacin, a new fluoroquinolone, alone or in combination with tobramycin, was compared with penicillin, tobramycin, and their combination in the therapy of rabbits with endocarditis caused by Streptococcus adjacens GaDT, a new species of nutritionally variant streptococci. Animals were injected intramuscularly for 4 days with temafloxacin (50 mg/kg of body weight twice daily [b.i.d.]) alone or combined with tobramycin (12 mg/kg once daily), with procaine penicillin (150,000 U/kg b.i.d.) alone or combined with tobramycin (12 mg/kg once daily), or with tobramycin (12 mg/kg once daily) alone. Another group of animals was treated with a higher dose of temafloxacin (100 mg/kg b.i.d.). Temafloxacin, penicillin, and tobramycin MICs and MBCs were 1 and 2, 0.015 and 1, and 8 and 16 micrograms/ml, respectively. Time-kill curves showed that the addition of tobramycin to penicillin or temafloxacin increased the killing rate. In vivo, treatment with temafloxacin (50 and 100 mg/kg b.i.d.) alone reduced the bacterial counts in vegetations (3.9 +/- 0.9 and 3.1 +/- 0.8 log10 CFU/g of vegetation) compared with those in the vegetations of control animals (7.5 +/- 0.9 log10 CFU/g of vegetation). This result was similar to that obtained with penicillin alone (4.5 +/- 0.8 log10 CFU/g of vegetation). The combination of temafloxacin (50 mg/kg) and tobramycin was as effective as penicillin plus tobramycin (2.5 +/- 0.3 versus 2.3 +/- 0.4 log10 CFU/g of vegetation, respectively). The autoradiographic pattern of [14C]temafloxacin diffusion into infected cardiac vegetations was studied. Thirty minutes after the end of infusion of 250 microCi of [14C]temafloxacin, the [14C]temafloxacin was homogeneously distributed throughout the vegetations. These data support further evaluation of quinolones in experimental endocarditis.

Animals

Optimal aminoglycoside dosing regimen for penicillin-tobramycin synergism in experimental Streptococcus adjacens endocarditis.

The combination of penicillin and aminoglycoside is the recommended therapy for endocarditis caused by nutritionally variant streptococci (NVS). However, the optimal aminoglycoside dosing regimen remains controversial. We compared the efficacies of four regimens of tobramycin alone or combined with procaine penicillin in the therapy of rabbits with endocarditis caused by Streptococcus adjacens, a new species of NVS. Animals were injected intramuscularly for 4 days with procaine penicillin (150,000 U/kg of body weight twice daily) or tobramycin at a low dose (3 mg/kg every 24 h) or a high dose (12 mg/kg every 24 h) either once or three times daily (t.i.d.) alone or in combination with procaine penicillin. Additional groups of animals were treated with the combination regimens for a shorter period of time (2 days) in order to demonstrate a possible difference in the rapidity of efficacy between the regimens. The MICs and MBCs were 0.015 and 1 micrograms/ml and 8 and 16 micrograms/ml for penicillin and tobramycin, respectively. The mean peak tobramycin levels in plasma were 2.4 +/- 1.3 (1 mg/kg t.i.d.), 5.4 +/- 3.7 (4 mg/kg t.i.d.), and 25 +/- 9.3 (12 mg/kg once daily). The mean penicillin levels in serum were always above the MIC. In vitro kill curves plotted at the time that peak concentrations were reached in plasma showed a concentration-dependent killing effect of tobramycin alone but not in combination with penicillin. In vivo, low-dose tobramycin was significantly less effective than the high dose. Results for the combinations of the different dosing regimens of tobramycin with procaine penicillin were not significantly different. Our results suggest that (i) against susceptible strains of streptococci, aminoglycoside alone exhibits a concentration-dependent killing effect both in vitro and in vivo; (ii) against NVS strains, combinations of penicillin and high- or low-dose tobramycin are equally effective; and (iii) aminoglycoside given once daily or at a low dose t.i.d. with penicillin could be a cost-effective alternative with reduced toxic risk for patients with NVS endocarditis when the bacteria are susceptible to the killing activities of both compounds.

Animals

Modification of cefixime bioavailability by nifedipine in humans: involvement of the dipeptide carrier system.

We studied the action of nifedipine on the bioavailability of cefixime, a molecule absorbed via the gut wall dipeptide carrier system in the rat, and on the bioavailability of D-xylose, which is absorbed via a pH (and Na(+)-)-dependent transporter. Each compound was administered alone or in combination with 20 mg of nifedipine to eight healthy male volunteers. Nifedipine significantly increased the absorption rate of cefixime (20.7 +/- 4.3 versus 16 +/- 3.5 mg/h in the absence of nifedipine). The absolute bioavailability of cefixime alone was 31% +/- 6% compared with 53% +/- 1% (P < 0.01) in the presence of nifedipine. The observed peak concentrations in serum were significantly different (2.5 +/- 0.3 mg/liter without nifedipine and 3.7 +/- 1.1 mg/liter with nifedipine; P < 0.02). In contrast, nifedipine induced no significant differences in the pharmacokinetic profile of xylose following oral administration. We conclude that (i) cefixime is absorbed in humans by an apparently active process which can be enhanced by a calcium channel blocker, in this case, nifedipine; and (ii) nifedipine does not modify the activity of the pentose transporter.

Administration, Oral

Daptomycin or teicoplanin in combination with gentamicin for treatment of experimental endocarditis due to a highly glycopeptide-resistant isolate of Enterococcus faecium.

Using an experimental endocarditis model, we studied the activity of daptomycin used alone or in combination with gentamicin against an Enterococcus faecium strain that was highly resistant to glycopeptides and susceptible to gentamicin. In vitro, the MIC of daptomycin was 1 micrograms/ml. In vivo, daptomycin appeared to be effective only when it was used in a high-dose regimen, i.e., 12 mg/kg of body weight every 8 h (-2.5 log10 CFU/g versus controls; P < 0.05), particularly when it was combined with gentamicin (-5.0 log10 CFU/g versus controls; P < 0.01). Since the distribution of daptomycin into cardiac vegetations, as evaluated by autoradiography, appeared to be homogeneous, the poor in vivo activity of daptomycin was considered to be related to its high degree of protein binding, as suggested by killing curves studies. Since the MIC of teicoplanin for the vancomycin-resistant E. faecium strain used in the study was only 64 micrograms/ml and since an in vitro synergy between teicoplanin at high dose and gentamicin was observed, a high-dose regimen of teicoplanin, i.e., 40 mg/kg every 12 h, was also assessed in vivo. This treatment provided marginal activity only when it was combined with gentamicin (-2.3 log10 CFU/g versus controls; P < 0.05). These results suggest that the levels of daptomycin or teicoplanin in serum required to cure experimental endocarditis caused by a highly glycopeptide-resistant strain of E. faecium would not be achievable in humans.

Animals

Activity of MS-8209, a nonester amphotericin B derivative, in treatment of experimental systemic mycoses.

The in vitro and in vivo toxicities and activities of MS-8209, a new hydrosoluble amphotericin B (deoxycholate-amphotericin B [D-AmB]; Fungizone) derivative, were studied. In vitro, MS-8209 was less toxic than AmB against renal tubular cells in primary culture and less active against Candida albicans and Cryptococcus neoformans. However, at 10-fold the AmB concentration, MS-8209 in vitro antifungal activity paralleled that of AmB. Fifty-percent lethal doses of MS-8209 and D-AmB in OF1 noninfected mice were 26 and 2.3 mg/kg, respectively. Therapeutic efficacy of MS-8209 was assessed in murine candidiasis, cryptococcosis, and aspergillosis. In each model of infection, we determined the maximum tolerated dosages of MS-8209 and D-AmB, i.e., the dosage inducing less than 15% mortality due to toxicity; the efficacies of MS-8209 and D-AmB at their respective maximum tolerated dosages were compared. In candidiasis, MS-8209 (15 mg/kg) significantly increased the survival time compared with D-AmB (0.5 mg/kg). Both compounds were equally effective at reducing CFU counts in the kidney. MS-8209 was the most effective agent for increasing the survival time in cryptococcal meningoencephalitis and for reducing CFU counts in spleen, brain, and lung during both cryptococcal pneumonia and meningoencephalitis. In aspergillosis, MS-8209 and D-AmB similarly prolonged the survival of treated mice compared with controls. These results show that when MS-8209 and D-AmB were used at the maximum tolerated dosage, MS-8209 was as effective as or more effective than D-AmB for the treatment of systemic mycoses. These findings warrant further experiments to study the pharmacokinetic properties and toxicity of MS-8209 under conditions of chronic administration.

Amphotericin B

Influence of phospholipid/amphotericin B ratio and phospholipid type on in vitro renal cell toxicities and fungicidal activities of lipid-associated amphotericin B formulations.

We studied the influence of the lipid/amphotericin B (AMB) ratio and the phospholipid type on the in vitro renal cell toxicity and antifungal efficacy of lipid-associated AMB (L-AMB). L-AMB was prepared at one of two different lipid/AMB ratios (1 and 40) by incubating AMB with empty small unilamellar vesicles, made from one of three different phospholipids: dipalmitoyl-, dimirystoyl-, and distearoylphosphatidylcholine (DPPC, DMPC, and DSPC, respectively). Renal cell toxicity, investigated through an assessment of the Na-dependent uptake of phosphate by proximal tubular cells, and fungicidal effect against Candida albicans were studied after 1 h of treatment at 37 degrees C. The amount of unbound AMB present in each L-AMB formulation was studied by use of circular dichroism. At a lipid/AMB ratio of 40, the three lipidic formulations were not toxic for renal cells but were less effective against C. albicans than AMB; however, DSPC-AMB, which contained 50% unbound AMB, was more effective against C. albicans than DPCC-AMB or DMPC-AMB, containing 0 and 13% unbound AMB, respectively. At a lipid/AMB ratio of 1, the antifungal effects of L-AMB and AMB were similar, whatever the phospholipid used, but only DMPC-AMB remained highly protective against AMB renal cell toxicity, despite the presence of the same amount of unbound AMB (50%) in DMPC-AMB and DPPC-AMB. We conclude that the in vitro activities and renal cell toxicities of different L-AMB formulations are influenced by the phospholipid type and the lipid/AMB ratio. The optimal ratio depends on the phospholipid itself. At a lipid/AMB ratio of 40, the antifungal activity depends mainly on the amount of unbound AMB in the formulation. At a lipid/AMB ratio of 1, the renal cell toxicity also depends on the fluidity of the phospholipid.

1,2-Dipalmitoylphosphatidylcholine

Efficacy and safety of temafloxacin versus those of amoxicillin in hospitalized adults with community-acquired pneumonia.

Temafloxacin, a new fluoroquinolone, was compared with amoxicillin in the treatment of adult hospitalized patients with community-acquired pneumonia. In this double-blind, multicenter study, patients were randomly assigned to treatment with temafloxacin at 600 mg twice daily (n = 125) or amoxicillin at 500 mg three times daily (n = 121); the average duration of treatment was 10 days. Clinical recovery rates were similar for patients treated with temafloxacin and amoxicillin (89 and 85%), as were bacterial eradication rates (99 and 97%). This was also true for subgroups of patients with pneumococcal pneumonia (n = 100), nonpneumococcal pneumonia (n = 122), or atypical pneumonia (n = 12). Outcomes for temafloxacin- and amoxicillin-treated patients were also similar in terms of defervescence, improvement in leukocytosis, and radiographic evidence of infection. The frequency and severity of adverse events were similar in both groups, consisting primarily of digestive disorders and skin manifestations. We conclude that temafloxacin may be recommended as an alternative antibacterial drug for patients with suspected pneumococcal pneumonia who fail to respond to benzylpenicillin or amoxicillin when the incidence of multiresistant pneumococcal strains is low. In countries where the incidence of these strains is high, temafloxacin may also be recommended.

Administration, Oral

Piperacillin, tazobactam, and gentamicin alone or combined in an endocarditis model of infection by a TEM-3-producing strain of Klebsiella pneumoniae or its susceptible variant.

The efficacy of tazobactam, a beta-lactamase inhibitor, in combination with piperacillin, was studied in vitro and in rabbit experimental endocarditis due to a Klebsiella pneumoniae strain (KpR) producing an extended-spectrum beta-lactamase, TEM-3, or its nonproducing variant (KpS). In vitro, piperacillin was active against KpS (MIC = 4 micrograms/ml, MBC = 8 micrograms/ml with 10(7)-CFU/ml inoculum) but not against KpR (MIC = MBC = 256 micrograms/ml). Tazobactam (1 microgram/ml) restored the activity of piperacillin against KpR (MIC = 2 micrograms/ml, MBC = 4 micrograms/ml). Gentamicin was active against both strains (MIC = 0.25 and 0.5 micrograms/ml for KpS and KpR, respectively). The piperacillin-tazobactam-gentamicin combination was synergistic in vitro. The piperacillin/tazobactam ratio in plasma and in vegetations was always lower than the 4/1 injected dose ratio. In vivo, piperacillin (300 mg/kg of body weight four times a day [QID]) was active against KpS but not against KpR. Tazobactam (75 mg/kg QID) was able to restore the in vivo effect of piperacillin (300 mg/kg QID) against KpR (-3.0 log10 CFU/g of vegetation versus that of controls). Gentamicin (4 mg/kg twice a day [BID]) was active against both strains. Compared with controls, the combination of gentamicin plus piperacillin against KpS (-5.6 log10 CFU/g of vegetation), and the gentamicin-piperacillin-tazobactam combination against KpR (-4.4 log10 CFU/g of vegetation) achieved the greatest decrease in bacterial counts in vegetations and were the only regimens that significantly increased the proportion of sterile vegetations. It is concluded that (i) tazobactam was able to restore the effect of piperacillin against a TEM-3 extended-spectrum Beta-lactamase-producing strain of K. pneumoniae, both in vitro and in a severe experimental infection with high inoculum, when used in a 4/1 piperacillin/tazobactam dose ratio; (ii) gentamicin alone was effective because of the high peak/MBC ratio in plasma; (iii) piperacillin-tazobactam-gentamicin, probably because of the effect of gentamicin in reducing bacterial inoculum in vivo, as stressed by the results obtained by piperacillin-gentamicin against KpS, may be the most effective regimen against KpR.

Animals

Tissue distribution and antifungal effect of liposomal itraconazole in experimental cryptococcosis and pulmonary aspergillosis.

We studied the tissue distribution and in vivo antifungal effect of itraconazole, incorporated into pure dipalmitoylphosphatidylcholine (DPPC) multilamellar liposomes and administered intravenously. Eighty percent of the itraconazole was associated with DPPC. Drug levels in lung, brain, and liver, obtained after intravenous administration of tritiated itraconazole, were higher when the drug was administered intravenously as liposomal than when it was dissolved in cyclodextrin. Administration of the liposomal formulation also led to higher and sustained levels of intact itraconazole in serum. Efficacy was assessed in DBA/2 mice infected intravenously with 3 x 10(6) Cryptococcus neoformans, an inoculum responsible for early fatal pneumonia, or 3 x 10(5) C. neoformans, leading to delayed meningitis. In pneumonia, 20 mg/kg of liposomal itraconazole was more effective on survival than the same dose given intravenously in cyclodextrin or twice the dose administered orally dissolved in polyethylene glycol 200. In meningitis, liposomal itraconazole was also more efficient than the drug dissolved in cyclodextrin. These results were confirmed by colony counts in the brain and lung of infected mice. In immunosuppressed OF1 mice infected after inhalation of Aspergillus fumigatus spores, liposomal itraconazole (20 mg/kg x 3) was the only effective treatment. We conclude that intravenous liposomal delivery of itraconazole enhances both concentrations in infected tissues and the in vivo efficacy of the drug. Such passive targeting of antifungal agents other than amphotericin B might be helpful in the treatment of severe systemic mycoses, especially in the case of lung or brain involvement.

Animals

Methods for clinical assessment of expectorants: a critical review.

The purpose of the paper is to discuss some aspects of the methods that are most appropriate for the clinical assessment of new expectorants. Expectorants are drugs devised to help in the removal of bronchial secretions. The evaluation of these drugs is aimed at demonstrating, in controlled trials, their efficacy, safety and, if possible, mechanism of action. Unfortunately, there is no universally accepted assessment technique available. Evaluation of symptoms with the use of self-reported measures is imprecise. Studies of quality of life can assist as a means of assessing the usefulness of this class of drug for patients. Lung function tests evaluate only the possible indirect effects of expectorants; the changes observed are often minor and they do not correlate with other methods of evaluation. Mucociliary clearance studies evaluate bronchial drainage by mucociliary transport and cough. They are a useful pharmacological approach but they cannot replace therapeutic trials. In vitro and ex vivo studies of bronchial secretion, while improving knowledge of the mechanisms of bronchial secretion, fail to predict the modifications of bronchial drainage produced in vivo by cough or mucociliary transport. To be considered efficient, expectorants should not only ease the removal of bronchial secretions, but also improve the patient's condition for the duration of treatment.

Animals