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Biomedical subjects

S Garattini

Publications and source records attributed to S Garattini.

At least 109 records · Page 6Linked to original sources

Single and multiple dose pharmacokinetics of etizolam in healthy subjects.

The pharmacokinetics of etizolam, a new thienodiazepine derivative, has been examined after single and multiple (0.5 mg tablet) (0.5 mg b.d for 1 week) oral therapeutic doses in healthy volunteers. The single-dose kinetic profile of etizolam suggested that absorption after oral dosage was reasonably rapid, the maximum plasma concentration (Cmax) being attained within 0.5-2 h in all subjects. The mean elimination half-life (t1/2) averaged 3.4 h. Consistent with this, steady-state concentration were rapidly achieved and accumulation was extremely limited. Predicted average plasma concentrations (Cp) did not differ significantly from those actually measured at steady-state, suggesting that the kinetics of etizolam was linear, at least at therapeutic doses. The mean wash-out t1/2 was comparable to the elimination t1/2 of the single dose, which means that the drug probably has no effect on hepatic microsomal enzymes and other kinetic variables after repeated dosing. At steady state plasma concentrations of the main metabolite, alpha-hydroxyetizolam, were higher and disappeared more slowly (mean t1/2 8.2 h) than those of the parent compound. Taken with the fact that in animals the metabolite shows almost the same potency of pharmacological action as etizolam, this suggests that it may contribute significantly to the clinical effects of the parent compound. Based on the kinetic characteristics of the parent drug and its metabolite, etizolam can be regarded as a short-acting benzodiazepine, with elimination kinetics between those of short-intermediate derivatives and ultra-rapidly eliminated benzodiazepines.

Administration, Oral↗

Pharmacokinetics of fotemustine and BCNU in plasma, liver and tumor tissue of rats bearing two lines of Walker 256 carcinoma.

The plasma and tissue pharmacokinetics of fotemustine (diethyl-1-[3-(2-chlorethyl)-3-nitrosoureido]-ethylphosphonate+ ++) and BCNU (1,3-bis-[2-chlorethyl]-1-nitrosourea) were investigated in healthy control rats and in animals bearing either the nitrosourea-sensitive line A (W256/A) or the nitrosourea-resistant line B (W256/B) of Walker 256 carcinoma. The antitumor activities of these nitrosoureas were similar following i.v. doses ranging from 10 to 40 mg/kg. For both drugs, the survival of tumor-bearing rats was lower in the W256/B than in the sensitive W256/A line. Some sex differences were observed, female rats being more responsive than males to both drugs. Nitrosourea concentrations were assayed in plasma and tissues by differential pulse polarography so as to assess whether the pharmacokinetics could explain the differences in antitumor activity. The antineoplastic effects of fotemustine seemed to be influenced by its pharmacokinetics. The plasma AUC of the intact nitrosourea was higher in females than in males. Fotemustine was cleared 2-5 times more slowly than BCNU from tumor tissue, and its clearance was higher in W256/B- than in W256/A-bearing rats. This suggests that the antitumor activity in the responsive line might partly be due to longer exposure of the growing tumor to the drug. The distribution volume of both nitrosoureas in plasma was higher in tumor-bearing animals than in healthy controls, indicating that the tumor tissue probably constitutes an additional distribution space.

Animals↗

Kinetics of piribedil and effects on dopamine metabolism: hepatic biotransformation is not a determinant of its dopaminergic action in rats.

The importance of hepatic metabolism in relation to the central (dopaminergic) effects of piribedil (PD) is still not really known. Plasma and brain kinetics and the effects on striatal dopamine (DA) metabolism of the parent drug and its known metabolites were therefore evaluated in rats, a species widely used in neurochemical studies of this drug. PD injected intraperitoneally (IP, 15-60 mg/kg) and centrally (ICV, 100-200 micrograms/rat) lowered striatal 3,4-dihydroxyphenylacetic acid (DOPAC) and 3-methoxy-4-hydroxyphenylacetic acid (HVA) content and the intensity and time-course of the neurochemical effects were route- and dose-relatedly dependent on brain PD kinetics. The catechol (M1), p-hydroxylated (M2) and N-oxide (M3) metabolites of the drug were detectable only in trace amounts in rat brain and only at the highest IP dose tested; when administered ICV at doses equimolar to PD they caused no decrease in striatal DA metabolites, although striatal concentrations were higher than after IP PD, being comparable to or higher than those of the ICV parent drug. These data suggest that metabolites do not contribute to the dopaminergic effects of PD in rats.

3,4-Dihydroxyphenylacetic Acid↗

Effects of intracerebroventricular administration of d-fenfluramine and d-norfenfluramine, as a single injection or 2-hr infusion, on serotonin in brain: relationship to concentrations of drugs in brain.

The effects of d-fenfluramine (DF) and d-norfenfluramine (DNF), administered intracerebroventricularly (i.c.v.) on levels of serotonin (5-HT) in the brain, was assessed in relation to levels of drugs in brain. d-Fenfluramine, as a single injection (500 micrograms/20 microliters), caused no significant changes in 5-HT in whole brain from 15 to 480 min after injection. When infused intraventricularly for 2 hr, DF and DNF at 500 but not at 125 250 micrograms/hr, markedly reduced concentrations of 5-HT in brain 4 hr after the end of the infusion. At this time levels of DNF in brain were similar (between 4 and 5 micrograms/g) with both compounds, whereas levels of DNF after single intraventricular injections of DF were below 2 micrograms/g at all times after injection. Infusion of 500 micrograms/hr of DNF for 2-hr reduced concentrations of 5-HT in various regions of the brain, with the exception of the brainstem, whereas 250 micrograms/hr of DNF significantly lowered levels of 5-HT only in the cortex. The effect of infusion of 500 micrograms/hr of DNF was specific for 5-HT (no effect on dopamine and norepinephrine) and lasted for at least 168 hr. The results suggest that the effect on 5-HT in brain of intraventricular infusion of DF, but not a single injection, was due to the fact that, only in the former condition were adequate levels of DNF, the active metabolite of DF, reached in the brain. These results are relevant to the interpretation of studies in which biochemical changes in the brain after intraventricular administration, are reported without any measurement of the drug or its active metabolites, in plasma and brain.

Animals↗

Diazepam binding inhibitor (DBI) increases after acute stress in rat.

Diazepam binding inhibitor (DBI) acts in brain by binding to GABAA/benzodiazepine receptors (GBR) and to mitochondrial benzodiazepine receptors (MBR). Because DBI acting at MBR, has been shown to be an effector of ACTH-induced steroidogenesis and stress is known to change the level of GBR and MBR, the model of acute noise stress in rats was used to study modifications of DBI and GRB or the content of MBR in various areas of the brain and adrenal gland. It was found that, in the brain of stressed rats, DBI and its processing products (ODN-like immunoreactivity), increased selectively in the hippocampus. This increase in the content of DBI was preceded and followed by a net decrease of GBR and an increase of MBR. Similarly, in adrenal cortex, the content of DBI and MBR increased during the first hour, following acute stress and this increase paralleled the increase in plasma corticosterone. These data suggest that DBI, acting on MBR may regulate steroidogenic function in stress.

Adrenal Glands↗

Cellular retention, cytotoxicity and morphological transformation by vanadium(IV) and vanadium(V) in BALB/3T3 cell lines.

Cytotoxicity, morphological transformation and cellular retention have been studied in BALB/3T3 Cl A 31-1-1 cells for ammonium or sodium vanadate [vanadium(V)] and for vanadyl sulphate [vanadium(IV)]. A morphological transformation focus assay showed transforming activity for vanadium(V) (P less than 0.005 at concentrations of 3 x 10(-6) or higher) while vanadium(IV) was not transforming in the cells. Cytotoxicity was higher for vanadium(V) than for vanadium(IV); this was particularly clear at doses from 5 x 10(-6) to 5 x 10(-5) M. The cellular retention of both vanadate and vanadyl compounds at 24, 48 and 72 h incubation was similar. At concentrations lower than 10(-6) M vanadate, the retention was linear with the dose, while at higher exposures the vanadium taken up by the cells levelled off or slightly decreased. Exposure to 10(-6) M and 10(-5) M vanadium(V) for 3 and 24 h as well as to 10(-6) M for 48 and 72 h yielded greater than 94% vanadium in the cytosol, but exposure to a toxic dose (10(-5) M) for 48 and 72 h yielded 20% vanadium associated with cellular organelles, which suggests that some sites in the cytosol become saturated with vanadium. The corresponding gel-filtration experiments indicate that a redistribution of the element among the cytosol components occurs with time.

Animals↗

Progress of anticancer drugs in reducing mortality from selected cancers in Europe: an assessment.

Trends in mortality from four groups of cancers amenable to anti-cancer treatments (testicular cancer, Hodgkin's disease, leukemias and childhood cancers) between the late 1950s and the late 1980s were analyzed for the 23 larger European countries. In Western Europe, newer treatments led to the avoidance of approximately 1000 deaths from testicular cancer, 4000 from Hodgkin's disease, 4000 from leukemias, and 2500 from childhood cancers. In Eastern Europe, declines in mortality were observed only for childhood cancers, for a total of about 500 fewer deaths per year. Thus, approximately 11,000 deaths per year were avoided in Europe by newer cancer treatments, corresponding to 1% cancer deaths registered in the 23 larger European countries. A few thousand further deaths from these cancers could be avoided through more widespread and rational utilization of currently available therapies, particularly in Eastern Europe.

Antineoplastic Agents↗

Evaluation of prevalence of "doping" among Italian athletes.

To evaluate knowledge of, attitudes to, and use of illegal drugs and other forms of "doping" in sport 1015 Italian athletes and 216 coaches, doctors, and managers (technicians) were interviewed after selection on a quota basis. Overall, 30% of athletes, managers, and coaches and 21% of doctors indicated that athletic performance can be enhanced by drugs or other doping practices. Over 10% of athletes indicated a frequent use of amphetamines or anabolic steroids at national or international level, fewer athletes mentioning blood doping (7%) and beta-blockers (2%) or other classes of drugs. These proportions were 2-3 times higher for occasional use than for frequent use. Estimates by managers and coaches were much the same as those of athletes when allowance was made for larger random variation. 62% of athletes who acknowledged doping reported pressure to do so from coaches and managers. According to over 70% of athletes access to illegal substances was not difficult. Both athletes and technicians awarded higher scores to risk than to efficacy for any substance, although 42-67% of athletes and technicians regarded amphetamines and anabolic steroids as efficacious. 82% wanted stricter controls not only during competitions but also during training.

Adolescent↗

Influence of dose and route of administration on the kinetics of fluoxetine and its metabolite norfluoxetine in the rat.

Fluoxetine (FL) is being used in neuropharmacology as a tool for studying various functional roles of serotoninergic neurons. Its kinetics was studied in rats, a species widely used in neurochemical studies, after IV (2.5-10 mg/kg) and oral (5-20 mg/kg) administration. When injected IV the drug followed apparent first-order kinetics up the 10 mg/kg dose. Its volume of distribution was large and total body clearance was relatively high compared to liver blood flow. The mean elimination half-lives (t1/2) of FL and its active metabolite norfluoxetine (NFL) were about 5 and 15 h, respectively. The mean blood:plasma concentration ratios of FL and NFL approached unity and plasma protein binding was 85-90% for both compounds. After oral doses the kinetics of FL were complex. At the lowest dose tested (5 mg/kg) the drug was efficiently extracted by the liver (extraction ratio about 60%), resulting in bioavailability of only about 38%. Plasma areas under the curve (AUC) of the metabolite were approximately the same as after IV injection of the same dose; consequently the metabolite-to-parent drug ratio after oral administration (about 5) was approximately twice that after IV injection of FL (about 2.5). At higher doses, however, the oral bioavailability (e.g. Cmax and AUC) appeared greater than expected, possibly because of transient saturation of FL first-pass metabolism in the case of the 10 mg/kg dose and concomitant saturation of elimination kinetics at the higher dose (20 mg/kg). The apparent elimination t1/2 of FL markedly increased and the metabolite-to-parent drug ratio declined with the higher dose, this also being consistent with saturable elimination.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Effect of buspirone and its metabolite 1-(2-pyrimidinyl)-piperazine on hippocampal serotoninergic system, studied in freely moving rats.

The effects of the anxiolytic drug buspirone and its metabolite 1-(2-pyrimidinyl)-piperazine (1PP) were studied on the serotoninergic system in the hippocampus of freely moving rats. Pulse voltammetry was used in association with chronically implanted carbon fiber microelectrodes to record 5HIAA, the serotonin metabolite in the extracellular space, almost continuously. Buspirone, 2.5 mg/kg i.p. was ineffective, but the dose of 10 mg/kg lowered 5HIAA between about 45 and 150 min; the same decrease was obtained with 40 mg/kg. This effect can be explained by an agonistic action on 5HT1 A receptors. The metabolite 1PP, which displays alpha 2 adrenoceptor blocking properties, either had no effect or raised extracellular 5HIAA, depending on the dose (1.5 or 6 mg/kg). The rapid metabolization of buspirone to 1PP can thus explain the short time course of the drug effect. Pretreatment with 1PP could only partially prevent buspirone's effect on the serotoninergic system.

Animals↗

Oral zeranol shortens the prolonged bleeding time of uremic rats.

Intravenous conjugated estrogens reduce the prolonged bleeding time in uremic patients and in a rat model of uremia. However, estrogens have major side effects related to their hormonal activity. We investigated whether a beta-resorcylic acid lactone, zeranol (a compound with close spatial similarity to estrogens but with a weak estrogenic activity), improves primary hemostasis in uremic rats and whether the effect is mediated by estrogen receptors. The results showed that single oral administration of zeranol significantly (P less than 0.01) shortened the bleeding time of uremic rats, 20 mg/kg being the minimum effective dose. This effect was long-lasting (72 hours). The dose of 30 mg/kg zeranol reproduced the pattern observed after 20 mg/kg but bleeding time values were still significantly (P less than 0.01) shortened 96 hours after the administration. No changes in hematocrit, platelet and leukocyte count, and serum creatinine were detected after zeranol administration. When uremic rats were pre-treated orally with two estrogen receptor antagonists, tamoxifen and clomiphene (3 mg/kg), zeranol did not shorten the bleeding time, thus suggesting that the hemostatic effect of zeranol was due to an estrogen receptor-mediated mechanisms. These results might have important future implications for the management of uremic bleeding in humans.

Administration, Oral↗

Formation of active metabolites of psychotropic drugs. An updated review of their significance.

Most of the currently available psychotropic drugs form 1 or more active metabolites during in vivo biotransformation in humans and/or animals. In some cases these metabolites are rapidly conjugated and excreted, but in others they attain blood and/or brain concentrations within the same range as, or even higher than, those of the parent drug, thus being potential biologically active compounds. The formation of metabolites with their own biological activity in addition to that of the parent compound may result in a complex situation where different chemical species participate in the final effects. These chemical species may have different pharmacokinetic properties of distribution and clearance. They may act by similar mechanisms, by different mechanisms or even antagonistically. The formation of active metabolites may be important not only for the therapeutic outcome but also for explaining the toxicity of particular drugs. The examples given, although limited, provide evidence that studies on drug metabolites are essential for an understanding of the mechanism of action of psychotropic drugs, and for extrapolating pharmacological and toxicological findings from animals to humans. The development of any new psychotropic agent requires knowledge of the pharmacology and toxicology of all active species as well as their pharmacokinetic profile, including the extent to which they reach the central nervous system.

Animals↗

17 beta-estradiol is the most active component of the conjugated estrogen mixture active on uremic bleeding by a receptor mechanism.

We have reported previously that a mixture of conjugated estrogens which is effective in shortening the prolonged bleeding time in uremic patients is also effective on bleeding time in a rat model of uremia. With the present study we took advantage from such a rat model of chronic uremia and decided to identify the component(s) of the conjugated estrogen mixture responsible for shortening the bleeding time. Moreover, we wanted to clarify whether estrogen effect on primary hemostasis is due to a receptor mechanism and can be neutralized by specific estrogen receptor antagonists such as tamoxifen or clomiphene. Both estrone sulfate and 17 beta-estradiol, but not equilin, were effective in shortening the prolonged bleeding time of uremic rats. 17 beta-Estradiol was the most active component of the mixture, reproducing the time course of bleeding time shortening of the entire mixture (effect lasting 48 hr). The effect of estrone sulfate injection lasted only 24 hr. Tamoxifen and clomiphene pretreatment prevented the shortening of bleeding time induced by conjugated estrogen mixture and its active components. These findings indicate that 17 beta-estradiol is the key compound of the conjugated estrogen mixture effective on bleeding time shortening and that the effect of estrogens on primary hemostasis is mediated by a receptor mechanism.

Animals↗