PubMed Health⌕ Search

Biomedical subjects

D Sassella

Publications and source records attributed to D Sassella.

At least 19 recordsLinked to original sources

Effect of rifabutin on ethambutol pharmacokinetics in healthy volunteers.

The effect of repeated administration of rifabutin on the pharmacokinetics and metabolism of ethambutol was evaluated in ten healthy volunteers. The subjects received a single oral administration of 1200 mg ethambutol on days 1 and 10 and a single daily oral dose of 300 mg rifabutin from days 3 to 9. No statistically significant difference was found in plasma pharmacokinetics (C(max), t(max), AUC, half-life and MRT) and in the renal clearance, whereas a significant decrease in the amount of unchanged ethambutol excreted in urine was observed. The decrease observed in ethambutol urinary excretion may be accounted for by taking into consideration the variability of the urinary excretion of ethambutol reported in the literature. However, a slight, likely not clinically relevant, induction or activation of kidney alcohol and/or aldehyde dehydrogenase isoenzymes by rifabutin cannot be ruled out at present. Evidence exists in the present study for autoinduction of rifabutin metabolism; this is shown by the lower plasma concentrations obtained 24 h after the seventh dose as compared to the theoretical concentrations.

Adult↗

A study of the pharmacokinetics and tolerability of ritipenem acoxil in healthy volunteers following multiple oral dosing.

The pharmacokinetics of ritipenem acoxil, the oral prodrug of the antibiotic ritipenem, were studied in volunteers after single and repeated dosing (500 mg, three times daily for 10 days). Concentrations of ritipenem and open beta-lactam ring metabolites were measured using HPLC/UV. Ritipenem did not accumulate significantly in plasma, owing to its half-life of about 0.7 h; the area under the curve for 0-8 h was on average about 10 mg x h/L. Plasma pharmacokinetics of ritipenem and metabolites were time-independent. A decrease of ritipenem renal clearance (87 versus 132 mL/min) and a slight increase in the amount of metabolites excreted in urine were observed following repeated dosing.

Administration, Oral↗

Rifabutin versus placebo in combination with three drugs in the treatment of nontuberculous mycobacterial infection in patients with AIDS.

The aim of this double-blind, randomized, placebo-controlled, 12-week study was to assess the efficacy of rifabutin (450 or 600 mg/d) in the treatment of disseminated nontuberculous mycobacterial infection in patients with AIDS. Companion drugs in both arms of the study were ethambutol, clofazimine, and isoniazid. Because of low accrual, the study was prematurely terminated when a total of 382 patients had been enrolled, of which 200 were eligible (i.e., their specimens were culture-positive for Mycobacterium avium complex [MAC] or Mycobacterium xenopi at baseline) and 102 were evaluable (i.e., they were eligible, were treated for a minimum of 6 weeks, and had at least one culture assessment after baseline). The original protocol called for a total of 220 evaluable patients. At week 12, rifabutin treatment was associated with higher, although nonsignificant, rates of bacteriologic conversion than was the placebo arm, with regard to both the eligible patients (25% vs. 18%) and the evaluable patients (45% vs. 38%). Corresponding median times to culture conversion were 42 vs. 63 days (eligible patients) and 43 vs. 69 days (evaluable patients). No significant difference was observed in clinical improvement, mortality, or toxicity between the two treatment arms. The addition of rifabutin to a triple-drug regimen may contribute to the clearance of disseminated MAC infection in patients with AIDS, without causing additional toxicity.

AIDS-Related Opportunistic Infections↗

Early bactericidal activity of rifabutin versus that of placebo in treatment of disseminated Mycobacterium avium complex bacteremia in AIDS patients.

Rifabutin, 600 mg/day, was compared with a placebo in the early treatment of culture-proven Mycobacterium avium bacteremia in patients with AIDS. Following 14 days' treatment, bacteriological success, defined as a negative culture or a reduction in the number of CFU of M. avium organisms per milliliter of blood by a factor of > or = 0.5 log from the baseline, was observed in 7 of 10 (70%) evaluable rifabutin patients and in 1 of 13 (8%) evaluable placebo patients (P = 0.002). Rifabutin is active against M. avium as a single agent and can make a significant contribution to combination regimens for the treatment of disseminated M. avium infection in AIDS patients.

AIDS-Related Opportunistic Infections↗

Clinical experience with rifabutin in the treatment of mycobacterial infections.

Effective new therapies are required to combat the increasing incidence of mycobacterial infections. Rifabutin has been investigated in studies conducted in various countries around the world, and in the treatment of tuberculosis rifabutin in combination regimen has been shown to be as effective as rifampicin. Rifabutin is active in approximately 30% of patients with tuberculosis resistant to standard therapies, including rifampicin and/or isoniazid. Placebo-controlled studies of rifabutin in the treatment of Mycobacterium avium-intracellulare complex (MAC) infection in AIDS patients have provided evidence for the inclusion of rifabutin in multidrug regimens. Rifabutin as a single agent is the only drug approved for the prophylaxis of MAC infection. Clinical experience indicates that rifabutin is well tolerated and that it does not reduce the tolerability of combination regimens.

AIDS-Related Opportunistic Infections↗

Pharmacokinetics of [14C]FCE 22891, a penem antibiotic, following oral administration to healthy volunteers.

FCE 22891 is a prodrug of the penem antibiotic FCE 22101 and is suitable for oral administration. The pharmacokinetics of FCE 22891 were investigated in four healthy male volunteers following the oral administration of 500 mg of [14C]FCE 22891. Levels of radioactivity in plasma were always higher and persisted for longer than those of FCE 22101. The time to the maximum concentration of radioactivity in plasma generally coincided with that of FCE 22101. The respective values for the maximum concentrations of radioactivity in plasma were, on average, 8.57 +/- 2.95 micrograms equivalent/ml and 2.97 +/- 2.05 micrograms/ml. Over a 5-day period, mean urinary and fecal recovery of radioactivity accounted for 53.2 and 41.0% of the dose, respectively. The average amount of FCE 22101 excreted in urine and feces corresponded to 9.0 and 1.6% of the dose, respectively. The urinary recovery of the open-ring metabolite P1 and of its 5-S epimer P2 accounted for about 6.5 and 1.2% of the dose, respectively. Other chromatographic peaks corresponding to nonidentified compounds accounted for about 14.0% (polar metabolite fraction; peak P), 3.7% (less polar fraction; peak X), and 15.4% (least polar fraction) of the dose. Elimination of radioactivity and FCE 22101 in urine was rapid. Intersubject variability in the kinetics of total radioactivity in plasma was far less than that observed for FCE 22101. The results of the present study support suggestions that presystemic metabolism of FCE 22101 and/or transformation of the prodrug to compounds other than FCE 22101 are the main cause of intersubject variability in the kinetics of FCE 22101 produced in plasma following oral administration of its prodrug.

Administration, Oral↗

A study of the effects of rifabutin on isoniazid pharmacokinetics and metabolism in healthy volunteers.

The effect of repeated administration of rifabutin on the pharmacokinetics and metabolism of isoniazid was evaluated in 6 healthy volunteers. The subjects received on day 1 and 9 a single oral dose of 300 mg isoniazid and from day 2 to 8 a single daily oral dose of 300 mg rifabutin. Two out of 6 subjects were shown to be rapid acetylators. No significant modification of the plasma pharmacokinetic profiles of isoniazid and acetylisoniazid was found. Evidence exists in the present study for autoinduction of rifabutin metabolism; this is shown by the lower plasma concentrations obtained 24 h after the seventh dose as compared to the theoretical concentrations.

Acetylation↗

Pharmacokinetics in healthy subjects of FCE 22101 and its acetoxymethyl ester, FCE 22891: effect of co-administration of imipenem/cilastatin on the renal metabolism of FCE 22101.

The pharmacokinetics of FCE 22101 were studied in eight healthy male subjects who received FCE 22101 intravenously alone or together with imipenem/cilastatin which was given to inhibit dehydropeptidase-I, a renal enzyme metabolizing penem and carbapenem antibiotics. The kinetics of FCE 22101 were also studied following oral administration of its acetoxymethyl ester, FCE 22891. For comparative purposes, the kinetics of imipenem and cilastatin, given alone or together with FCE 22101, were calculated. Intravenously administered FCE 22101 at a dose of 250 mg gave peak plasma concentrations of about 12 mg/l and the plasma half-life was about 60 min. Co-administration of FCE 22101 with imipenem/cilastatin did not affect the plasma kinetics of FCE 22101, nor did FCE 22101 influence the kinetics of imipenem or cilastatin. Cilastatin increased the urinary recovery of FCE 22101 from 17.5% to 53.0% with FCE 22101 alone to 73.2% to 91.8% when it was given with cilastatin. There was a high correlation between the urinary recovery of FCE 22101 in this study and that of imipenem given alone to the same subjects in previous studies; subjects who were high metabolizers of imipenem were also high metabolizers of FCE 22101. When FCE 22891 was given orally at a dose of 500 mg (corresponding to 400 mg of FCE 22101 free acid), peak concentrations of 2.2 to 6.1 mg/l were found. The absorption was rapid with peak concentrations achieved 20 to 80 min after administration. In comparison with imipenem, FCE 22101 seems to undergo less non-renal metabolism.

Adult↗

Autoinduction of rifabutin metabolism in man.

1. The pharmacokinetics of the antimycobacterial agent rifabutin were studied in healthy volunteers, following single (450 mg) and repeated (450 mg once daily for 10 days) oral administration. 2. After repeated administration, induction of metabolism was indicated by lower AUC and Cmin values, compared to the corresponding theoretical values. The elimination half-life was unchanged after repeated administration. 3. Induction of presystemic extrahepatic metabolism, which seems to be important in the availability of rifabutin, should be mainly responsible for the decrease in the AUC observed, while induced systemic clearance (if any) should be of minor importance. 4. Induction of presystemic extrahepatic metabolism after repeated administration has also been reported for rifampicin, an antibiotic agent with hepatic enzyme-inducing properties, which has a structure similar to rifabutin but a different pharmacokinetic profile.

Adult↗

Pharmacokinetics and tolerance of a new penem antibiotic, FCE 22101, in healthy volunteers after a single intravenous dose.

The clinical tolerance and pharmacokinetics of FCE 22101 (sodium (5R, 6S)-6-[(1R)-hydroxyethyl]-2-carbamoyloxymethyl-2-penem-3-carboxylate), a new penem antibiotic, have been studied after giving a single i.v. dose of 4 mg.kg-1 to ten healthy male volunteers. The pharmacokinetics was estimated according to a two-compartment open model. The peak plasma concentration (Cmax) was 15.5 (1.08) micrograms.ml-1, mean (SEM). FCE 22101 was rapidly cleared from the systemic circulation [t 1/2 lambda z = 44.2 (4.2) min; CL = 7.21 (0.47) ml.kg-1.min-1]. The mean apparent volume of distribution at steady-state was 246 (16.9) ml.kg-1. The mean residence time relative to the 10 min infusion was 39.4 (1.5) min. Urinary recovery of FCE 22101 showed wide inter-subject variation, ranging from 10.2 to 53.6% of the dose. No subject complained of adverse effects.

Adult↗

Urinary recovery and tolerability of FCE 22101 following single intravenous administration under restricted and high fluid intake.

The urinary recovery and tolerability of FCE 22101, a broad spectrum injectable penem, were investigated in a multicentre single-blind randomized crossover study of 60 healthy male volunteers. Single 1 g doses of FCE 22101 or placebo were given by intravenous bolus at weekly intervals. FCE 22101 was given either after intake of 750 ml water (treatment A) or after 8 h of water restriction (treatment B). Placebo was given under water restriction (treatment C). Urine samples obtained at timed intervals were assayed for FCE 22101 and its metabolites P1 and P2 by HPLC. The 24 h urinary recoveries of the parent drug and its metabolites were similar after treatments A and B. Mean recoveries +/- S.D were 29 +/- 13% (FCE 22101), 31 +/- 12% (P1) and 7 +/- 2% (P2) of the dose. Transient suprapubic pain or dysuria, or both, were reported by two subjects after treatment A and by six subjects after treatment B. Symptoms were associated with low urine volumes at 0-2 h and low urinary recovery of FCE 22101 and metabolite P1.

Adult↗

Comparative effects of roxithromycin and erythromycin on cellular immune functions in vitro. 2. Chemotaxis and phagocytosis of 3H-Staphylococcus aureus by human macrophages.

The in vitro effects of roxithromycin on human macrophage activity were compared with those of erythromycin. Half the MIC of roxithromycin significantly enhanced the phagocytosis of 3H-labelled Staphylococcus aureus by human macrophages. Bacterial phagocytosis was also increased after pre-incubation of staphylococci with roxithromycin. Erythromycin displayed a less stimulating effect. Pre-incubation of macrophages with the drugs caused a depression of staphylococcal uptake by phagocytes. Macrophage chemotaxis was unchanged in the presence of both macrolides.

Chemotaxis↗

Toxicity, uptake, and subcellular distribution in rat hepatocytes of roxithromycin, a new semisynthetic macrolide, and erythromycin base.

Rat hepatocytes were used to study the toxicity of a new semisynthetic macrolide, roxithromycin, in comparison with erythromycin base and erythromycin estolate. Roxithromycin caused lactate dehydrogenase leakage close to that of erythromycin estolate and higher than erythromycin base after 21 h of exposure to the drugs. This effect was, at least in part, explained by the higher uptake: roxithromycin was two to three times more concentrated by liver cells than erythromycin base. For both roxithromycin and erythromycin base, the uptake depended on time, temperature, and extracellular antibiotic concentration. The accumulated macrolides egressed rapidly when cells were incubated in antibiotic-free medium. No uptake and no loss of accumulated drugs were observed at 4 degrees C. After accumulation by hepatocytes, roxithromycin and erythromycin base underwent similar subcellular distribution, mostly concentrating in cytosol and lysosomes. The small amount accumulated in the other particulate fractions followed the order mitochondria much greater than nuclei greater than microsomes. Roxithromycin, however, was less concentrated than erythromycin base in the microsomes.

Animals↗

Roxithromycin disposition in tonsils after single and repeated administrations.

Levels of roxithromycin in serum and tissue were investigated in 29 subjects undergoing tonsillectomy. A total of 13 subjects received a single oral dose of 300 mg, and 16 received four oral doses 12 h apart as follows: a 300-mg loading dose followed by three 150-mg doses. Measurable levels of roxithromycin were present in tonsil samples of 11 of 13 subjects in the first group. The mean levels in tonsils and serum were 0.8 microgram/g and 6.7 micrograms/ml, resulting in a mean tissue/serum ratio of 0.16. In the multiple-dose group, roxithromycin was found in 14 of 16 subjects at mean levels in tonsils and serum of 1.6 micrograms/g and 8.7 micrograms/ml, and the tissue/serum ratio was 0.23.

Adolescent↗

Effects of roxithromycin, a new semisynthetic macrolide, and two erythromycins on drug metabolizing enzymes in rat liver.

The effects of a new semisynthetic macrolide, roxithromycin, on drug metabolizing enzymes of rat liver were compared with two erythromycins, the base (EB) and the estolate (EE), after 7 days' treatment with high oral doses (400 and 800 mg/kg daily). Dose-related higher concentrations of roxithromycin were reached in serum and liver than after EB or EE. The two reference erythromycins induced the synthesis of microsomal enzymes and formed inactive cytochrome P-450-metabolite complexes. N-Demethylation of erythromycin itself and aminopyrine was increased by the treatment. Liver microsomal enzyme activities were not induced and the inactive cytochrome P-450-metabolite complex was not formed after 400 mg/kg of roxithromycin and only to a very limited extent after 800 mg/kg (10% vs. 50% after EE). At the higher dose microsomal activities were not changed by roxithromycin and only aminopyrine N-demethylation was reduced.

Animals↗

Gastric antisecretory and cytoprotective activity of MDL 646, a 16-methyl-16-methoxy prostaglandin E1 analog in man.

MDL 646 is a 16-methyl-16-methoxy PGE analog with gastric antisecretory and cytoprotective activity in rats following oral administration. The efficacy of MDL 646 in inhibiting pentagastrin-stimulated acid secretion in man was investigated in a pilot crossover study in 10 male subjects given single oral doses of 500-1,000 mcg of the compound or placebo in randomized order. The doses showing consistent antisecretory effects in all subjects were 800 and 1,000 mcg, which caused a reduction in acid output of at least 25% over the whole test period (2.5 h), with greater inhibition in the first hour. The cytoprotective activity of MDL 646 was investigated by measuring the ability of single oral doses of 500 mcg of compound to prevent the drop in gastric potential difference (PD) induced by aspirin. The study was carried out in 8 male subjects given MDL 646 or placebo in randomized order in accordance with a single-blind crossover design. MDL 646 prevented the aspirin-induced drop in PD: No adverse reactions or changes in bowel habits were reported in either study. The compound is worth investigating further as a potential anti-ulcer agent.

Administration, Oral↗