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Biomedical subjects

H Lode

Publications and source records attributed to H Lode.

At least 199 records · Page 11Linked to original sources

Comparative pharmacokinetics of intravenous ofloxacin and ciprofloxacin.

In ten volunteers the pharmacokinetics of ofloxacin and ciprofloxacin were determined after crossover administration of 100 and 200 mg intravenously (30 min constant infusion). Concentrations in serum and urine were measured by HPLC. Concentrations in serum following parenteral ofloxacin dosages demonstrated dose dependency with long biological half-lives. Pharmacokinetic parameters were calculated on the basis of an open three-compartment model, which resulted in a high volume of distribution for both substances (166-246 1 for ofloxacin, 178-2611 for ciprofloxacin). AUC for ofloxacin was three times higher than that for ciprofloxacin. Approximately 80% of ofloxacin and 57% of ciprofloxacin were eliminated through the kidneys. Ciprofloxacin had a considerable amount of extrarenal clearance, whereas only 19% of ofloxacin were eliminated by extrarenal mechanisms. Only 4.3% of ofloxacin after iv dosing could be detected as metabolites in urine.

Adult↗

Pharmacokinetics and serum bactericidal activity of vancomycin alone and in combination with ceftazidime in healthy volunteers.

The pharmacokinetics and serum bactericidal activity of vancomycin alone and in combination with ceftazidime were investigated in 10 healthy volunteers. The pharmacokinetic parameters showed no significant differences (P less than 0.05) between single and combined administration. No antagonistic effects were observed in serum bactericidal activity with the combination against 20 gram-positive and 20 gram-negative locally isolated bacteria. A titer of greater than or equal to 1:8 was generated by the combination against all test strains except enterococci. Seven of ten volunteers developed a typical "red man's syndrome" during the administration of 1.0 g of vancomycin.

Adult↗

Comparative pharmacokinetics of sulbactam/ampicillin and clavulanic acid/amoxycillin in human volunteers.

In this study, the pharmacokinetic parameters of 2 different beta-lactamase inhibitors (sulbactam and clavulanic acid) in combination with 2 different aminobenzylpenicillins (ampicillin and amoxycillin) were compared. The study involved 10 healthy volunteers who received sulbactam 250 mg plus ampicillin 500 mg intravenously, clavulanic acid 100 mg plus amoxycillin 500 mg intravenously, sultamicillin equivalent to sulbactam 294 mg plus ampicillin 440 mg orally, and clavulanic acid 125 mg plus amoxycillin 500 mg orally in a crossover, randomised trial. Serum and urine concentrations of ampicillin, amoxycillin and clavulanic acid were assayed by agar diffusion test, and the concentrations of sulbactam by gas chromatography with mass spectrometry. Pharmacokinetic parameters were calculated according to open 1- and 2-compartment models. Test results showed that the addition of sulbactam significantly increases the bioavailability of oral ampicillin when the 2 drugs are administered in the form of the prodrug sultamicillin. Also, sulbactam does not interfere with the kinetics of intravenous ampicillin but increases the absorption of oral ampicillin.

Administration, Oral↗

Significance of non-pneumophila Legionella species in adult community-acquired and nosocomial pneumonias.

The number of different Legionella species is increasing at an impressive rate. In two prospective studies, one involving 110 intensive-care unit (ICU) patients with mainly nosocomial pneumonias and the other 105 patients with community-acquired pneumonias, we investigated the incidence and significance of Legionella pneumophila and non-pneumophila pneumonias on the basis of 17 different main serogroups. In the first study, 14 ICU patients had 15 (13.6%) Legionella pneumonias, which, in 5 cases (33%), were of non-pneumophila etiology. In the second study, 9 patients with community-acquired pneumonias had 10 (9.5%) Legionella pneumonias. Leading this study were 6 L. gormanii infections, followed by 2 L. dumoffii and only 1 L. pneumophila and 1 L. longbeachae pneumonia. Of the total, 22 of 23 patients with Legionnaires' disease suffered from severe basic diseases and complications (acute renal failure, respiratory insufficiency, etc.) predominant among the nosocomial pneumonias. The mortality rate was significant in these patients at 33% (5 patients) in the ICU group and 10% (1 patient) in the group with community-acquired pneumonias. We conclude that non-pneumophila Legionella species should receive more diagnostic and therapeutic consideration in patients with nosocomial or community-acquired pneumonias.

Adolescent↗

Therapeutic aminoglycoside monitoring in renal failure patients.

In patients with normal renal function, defined peak (5-10 mg/L) and trough levels (less than 2 mg/L) for gentamicin, tobramicin, and netilmicin are considered therapeutic. Netilmicin peak and trough levels were investigated in 50 patients requiring hemodialysis due to acute (70%) or permanent (30%) renal failure. Netilmicin was given at a dosage interval of 24 h, with a loading dose on the first day (1.5 mg/kg) and a reduced daily maintenance dose (0.5 mg/kg) supplemented to the posthemodialysis dosage (1.3 mg/kg) after each hemodialysis. As compared with studies on patients not requiring hemodialysis, mortality (44%) was higher, mainly due to uncontrolled infection, whereas ototoxicity (17%) was not. Peak (5.9 +/- 1.7 mg/L) and trough plasma levels (3.0 +/- 0.9 mg/L) were significantly lower in patients who did not respond and died than were peak (8.2 +/- 2.5 mg/L) and trough (3.8 +/- 1.2 mg/L) levels in patients responding to aminoglycoside treatment. In renal failure patients, there is obviously not only the risk of overdosing and toxic side effects but also the risk of insufficient bactericidal effect as a result of underdosing. Consequently, by use of an aminoglycoside dosage similar to the present schedule, peak levels (5-10 mg/L) as desired in normal subjects but trough levels (2.5-5 mg/L) that are considerably higher than in normal subjects should be the target concentrations for patients with advanced renal failure.

Acute Kidney Injury↗

Prospective randomized controlled study of ciprofloxacin versus imipenem-cilastatin in severe clinical infections.

In a randomized prospective study, 66 patients with serious bacterial infections--mainly lower respiratory tract infections--were treated with either imipenem plus cilastatin (32 patients) or ciprofloxacin (34 patients); 30 patients in each group were evaluable for efficacy. Substantial underlying disease was present in most of the patients; pathogens isolated prior to treatment (77 isolates) consisted mainly of members of the family Enterobacteriaceae, Pseudomonas aeruginosa, Staphylococcus aureus, Haemophilus influenzae, and streptococci. Of the etiologic bacteria, 67% were eradicated by ciprofloxacin treatment and 79% by imipenem therapy; however, two patients (6.7%) failed in the ciprofloxacin group, and six patients (20%) did not respond to imipenem treatment (P = 0.25). All patients with therapeutic failures suffered from severe fatal underlying diseases, which had substantial impact on the outcome of treatment. Therapeutic drug monitoring in the ciprofloxacin patients revealed higher concentrations in serum at days 4 and 8 in comparison with day 1 of treatment, indicating that steady-state conditions were reached between days 1 and 4. The total number of side effects was relatively high--eight imipenem patients (25%) and six ciprofloxacin patients (18%) had reactions. Treatment had to be discontinued due to adverse reactions for three ciprofloxacin patients and two imipenem patients. Major side effects in both groups were gastrointestinal and central nervous system-related symptoms. In terms of clinical and bacteriological efficacy and safety, there was no statistical difference between the two groups, and both groups gave good to excellent results for bacterial infections that were difficult to treat.

Adolescent↗

Pharmacokinetics of ofloxacin after parenteral and oral administration.

In 10 volunteers, the pharmacokinetics of ofloxacin [HOE 280, DL 8280; (+/-)-9-fluoro-2,3-dihydro-3-methyl-10-(4-methyl-1-piperazinyl)-7-oxo-7H -pyrido-[1,2,3-de] [1,4]benzoxacine-6-carboxylic acid] was determined after administration of 25, 50, 100, and 200 mg intravenously (30-min infusion) as well as 200 and 400 mg orally. Concentrations in serum and urine were measured by high-pressure liquid chromatography. Concentrations in serum following different parenteral ofloxacin dosages demonstrated dose dependency with long biological half-lives of 231 to 267 min. Pharmacokinetic parameters were calculated on the basis of open two- and three-compartment models, which yielded nearly identical results. High volumes of distribution (1.2 to 1.4 liters/kg of body weight) suggested effective diffusion into the extravascular space. High total and renal clearances indicated primarily renal excretion with additional elimination pathways, such as tubular secretion and extrarenal elimination. After oral administration, absorption was excellent, and the absolute bioavailability following 200 mg of ofloxacin could be calculated at greater than 0.95. Maximal concentrations in serum were attained 1.2 to 1.9 h after dosing; areas under the curve increased in proportion to dose between 200 and 400 mg of oral ofloxacin. The amount of known metabolites (demethyl and N-oxide compounds) excreted in urine reached only 4.3% (intravenously) and 4.0% (orally). Transient headaches in some volunteers were the only side effects registered.

Administration, Oral↗

Perioperative antibiotic prophylaxis in bile-duct interventions: results of two prospective randomized studies.

The success of perioperative prophylaxis in gallbladder surgery was examined in two prospective randomized studies with a total of 326 patients. Postoperative wound-healing impairments did not occur in any of the patients receiving a single preoperative application of an antibiotic with a high biliary elimination rate (ceftriaxone or apalcillin). 11% of a control group without prophylactic antibiotic application evidenced infectious wound-healing disturbances.

Adolescent↗

Comparative pharmacokinetics of new quinolones.

The pharmacokinetic properties of the new quinolones are characterised by a high volume of distribution, long biological half-life, low serum protein binding, elimination mainly by the kidneys, high total and renal clearances, limited biotransformation and a moderate to excellent bioavailability after oral administration. However, each quinolone derivative (ciprofloxacin, enoxacin, norfloxacin, ofloxacin and pefloxacin) possesses individual pharmacokinetic characteristics, which should be considered in the treatment of patients, especially when liver and/or renal dysfunction exists.

Anti-Infective Agents↗

[Biotransformation of selected gyrase inhibitors].

The common structure of the gyrase inhibitors norfloxacin, ciprofloxacin, pefloxacin, and ofloxacin is 3-carboxy-4-oxo-6-fluoro-7-(1-piperazinyl)-1,4-dihydro-quinolone. Several biotransformations of these substances are reported in the literature, mostly in animals and partly in humans: 1. Conjugation of the carboxylic acid to glucuronic acid (formation of an O-methyl ester of norfloxacin was found only in the rat); 2. Oxidation of the piperazine ring to the oxo derivative and subsequent metabolisation (or degradation) of the piperazine ring to several intermediates and finally to elimination of the side chain; 3. Substitution of the piperazine side chain to the 4-N-acetyl or 4-N-formyl-derivative (norfloxacin, ciprofloxacin); 4. Methylation of the 4-methyl-piperazine side chain (pefloxacin, ofloxacin). 5. N-oxidation of the 4-methyl-piperazine side chain (pefloxacin, ofloxacin). The glucuronides are microbiologically inactive. The activity of metabolites with a modified piperazine side chain varies from high (oxo derivatives) to low (after splitting of the ring). Quantitative data on the formation of the described transformation products in humans are presently still incomplete. The oxo derivative appears to be the main metabolite of norfloxacin and ciprofloxacin. Additional metabolites to the described ones are likely to be detected in the near future.

Anti-Infective Agents↗

Pharmacokinetics of ciprofloxacin in healthy volunteers after oral and intravenous administration.

The pharmacokinetics of ciprofloxacin was studied in three groups of healthy volunteers comprising a total of 16 males and 16 females (age 21-35 years; body weight 52-80 kg). Single oral doses of 50, 100, 250, 500 and 750 mg were given to fasting subjects. The 250 mg dose was repeated after a breakfast. Intravenous doses of 50, 100 and 200 mg were given by short infusion in a randomized cross-over sequence. Concentrations of the drug in serum and urine were determined by high-performance liquid chromatography and by a microbiological assay. Mean peak concentrations between 0.37 +/- 0.49 mg/l (100 mg dose) and 1.97 +/- 0.50 (750 mg dose) were measured 60-75 min after oral administration. Twelve hours after 750 mg ciprofloxacin, serum concentrations were 0.15 +/- 0.05 mg/l. Taking a breakfast reduced absorption by 15-20% compared to the fasting state, as judged by peak concentrations, AUC and renal excretion. After 200 mg i.v. (20 min infusion period), initial serum concentrations of 4.0 +/- 1.2 mg/l were observed which declined 12 h later to 0.070 +/- 0.025 mg/l. Mean cumulated recovery of ciprofloxacin from urine over 24 h varied between 25.5% and 33.6% of oral doses and between 53.2% and 57.4% of intravenous doses. Two of the three metabolites seen in the chromatograms were identified as M1 and M3 (oxo-ciprofloxacin). Cumulated renal excretion after an oral 250 mg dose was 1.2 +/- 0.4% of M1 and 5.5 +/- 1.6% of M3.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗