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Biomedical subjects

S Garattini

Publications and source records attributed to S Garattini.

At least 55 records · Page 3Linked to original sources

Neuropharmacological effects of low and high doses of repeated oral dexfenfluramine in rats: a comparison with fluoxetine.

The neuropharmacological effects of repeated oral doses of dexfenfluramine (DF; 1.25-10 mg/kg, twice daily for 21 days) were examined in rats and related to the drug brain levels. Results were compared with fluoxetine (FL) given at similar doses relative to its anorectic ED50. Both drugs dose-dependently slowed body weight gain and reduced brain serotonin (5-HT). However, at 1.25 mg/kg DF caused only a slight and transient decrease in cortical 5-HT. Comparable doses of FL (6.25-12.5 mg/kg) lowered 5-HT more than DF, besides slightly reducing striatal dopamine. At higher doses DF markedly reduced 5-HT in all regions, and to a lesser extent noradrenaline in hippocampus. There was a negative relationship between 5-HT and log total active drug levels and the indole was approximately halved at drug levels about 50 times lower with DF than FL. However, the ratio between drug levels causing marked 5-HT reductions and those considered anorectic was similar for DF and FL because brain levels at the anorectic ED50 were higher with FL than DF. Long-lasting reductions of 5-HT were also observed but recovery was only consistently slow beginning from 5 mg/ kg DF. Comparable doses of FL could not be used because its general toxicity leads to the death of rats after only 2-4 multiples of its anorectic ED50.

Administration, Oral↗

Pharmacology of amineptine, an antidepressant agent acting on the dopaminergic system: a review.

Amineptine is a tricyclic antidepressant agent with a unique capacity to reduce dopamine uptake selectively in vitro: this effect is also obtained in vivo. In vivo, amineptine increases striatal homovanillic acid without affecting the levels of other metabolites, 3,4-dihydroxyphenylacetic acid (DOPAC) and 3-methoxytyramine. However, relatively high doses of amineptine preferentially lower the extracellular DOPAC level, assessed by pulse voltammetry, in the nucleus accumbens but not in the striatum. Microdialysis techniques confirm an increase in extracellular dopamine in various brain areas (striatum, nucleus accumbens and frontal cortex) and an increase in extracellular noradrenaline in the frontal cortex and dorsal hippocampus. Chronic treatment with amineptine induces downregulation of dopamine D2, beta- and alpha 2-adrenergic receptors. Amineptine enters the brain and its pharmacological effects are probably induced by the unchanged drug, rather than its two main metabolites.

Animals↗

Mechanism of inhibition of tumor necrosis factor production by chlorpromazine and its derivatives in mice.

In previous work, we reported that chlorpromazine inhibits tumor necrosis factor (TNF) production in endotoxin lipopolysaccharide-treated mice, and protects against lipopolysaccharide toxicity. Chlorpromazine is used as an antipsychotic and has several effects on the central nervous system. It acts on different neurotransmitter receptors and has other biochemical activities some of which, like inhibition of phospholipase A2, might be responsible for the inhibitory effect on TNF production. To investigate the role of these actions in the inhibition of TNF production by chlorpromazine, we have synthesized some chlorpromazine derivatives that do not have central activities. Some of these analogs have lost their affinity for various receptors and their phospholipase A2 inhibitory activity, but still inhibit TNF production. No correlation was found between TNF inhibition and the ability to inhibit nitric oxide (NO) synthase, whereas a good correlation was evident between TNF inhibition and antioxidant activity.

Animals↗

In vitro and in vivo effects of the anorectic agent dexfenfluramine on the central serotoninergic neuronal systems of non-human primates. A comparison with the rat.

The effects of repeated subcutaneous (s.c) injections of dexfenfluramine (d-F; 10 mg/kg, twice daily, for 4 days) on the contents of serotonin (5-HT) and its metabolite 5-hydroxyindoleacetic acid (5-HIAA) in the brain were assessed in primates (cynomolgus and rhesus monkeys) and compared with the regional brain concentrations of unchanged drug and its active metabolite, dexnorfenfluramine (d-NF). This four-day, high-dose, regimen caused a large depletion of 5-HT (more than 95%) and of 5-HIAA (80-90%) in all brain areas studied (cortex, hippocampus, putamen, caudate nucleus and hypothalamus) 2 h after the last injection of d-F. Analysis of the plasma and brain contents of d-F and d-NF confirmed that both compounds were concentrated as in other species, in regions of the primate brain. However, d-NF was concentrated to a greater extent than d-F, and there were differences between the two primate species. Unlike in the rat brain, concentrations of d-NF greatly exceeded those of d-F in the primate brain suggesting that in these primates the d-NF may play a major role in the overall neurochemical response. The effects of d-F and d-NF on different in vitro parameters of serotoninergic neuronal function did not show appreciable differences between cynomolgus or rhesus monkeys when compared to rats, the ability of the two compounds to inhibit 5-HT reuptake, to enhance its release, and to affect the binding of [3H] -d-F or of [3H] -mesulergine (a ligand for 5-HT2C receptors) being similar. Kinetic differences in the disposition of d-F appear to have more relevance than biochemical effects in providing an explanation for the more marked brain depletion induced by d-F in primates than in rodents.

Animals↗

Adverse effects of preventive therapy in humans.

The main adverse effects of tamoxifen, aspirin, oral contraceptives (OCs) and retinoids used as chemopreventive agents in humans are reviewed and quantified here. With regard to tamoxifen, there are suggestions of some excess risk of liver, and perhaps gastrointestinal, cancers. The public health impact of such associations, if any, is still unclear. Tamoxifen use is associated with endometrial and myometrial hyperplasia. Data from five studies based on 174 cases indicate that the overall relative risk (RR) of endometrial cancer in ever tamoxifen users is 1.73 (95% confidence interval = 1.1-2.6). However, there is a significant difference between the results of American and European studies, so the relationship between tamoxifen and endometrial cancer remains open to debate. The major side-effect of aspirin is gastrointestinal lesions; the risk of these is increased two- to tenfold, depending on the dose. Aspirin is also associated with an increased risk of haemorrhagic stroke, although its protection against other types of stroke and against myocardial infarction leads to a favourable pattern of risk for all cardiovascular conditions. Short-term side-effects of OCs include vascular diseases and a moderately increased risk of breast cancer. The RR of cervical cancer and hepatocellular carcinoma are also increased in OC users, although the public health impact of such associations is small. Toxicity associated with retinoid treatment is rarely serious as most effects observed are reversible on stopping use. Side-effects include changes in the skin and mucous membranes (dry skin, hair loss, dry nose, conjunctivitis), musculoskeletal symptoms, ophthalmological effects, changes in transaminase activity, changes in clinical chemistry markers (increase in serum triglycerides and decrease in high-density lipoproteins) and, rarely, central nervous system effects. A serious toxicological aspect of retinoid treatment is teratogenesis; its use should therefore be avoided in women with childbearing potential, and, in cases of use, conception should be delayed for a long time after stopping treatment. Thus, when considering side-effects of chemoprevention, the major issues of concern are the rare long-term effects (chiefly neoplasms), and the need for more precise overall risk-and cost-benefit assessment, particularly for healthy people.

Anticarcinogenic Agents↗

Extracellular glutamate levels in the hypothalamus and hippocampus of rats after acute or chronic oral intake of monosodium glutamate.

Using brain microdialysis we studied the effect of high doses of monosodium glutamate (MSG) on the extracellular concentration of glutamate in the hypothalamus and in the hippocampus of freely moving rats. MSG at 4 g/kg (40% solution) given by gavage caused a significant increase in plasma (5.3 +/- 0.4-fold, P < 0.01) and extracellular glutamate in the hippocampus (4.2 +/- 0.6-fold, P < 0.01) and in the hypothalamus (8.9 +/- 1.7-fold, P < 0.01) compared to control rats receiving a 40% sucrose solution (10 ml/kg). The peak increase was found within 40 min after MSG administration then declining to baseline in the next 80 min. No changes were found in glutamate tissue concentrations. Twenty-one days after ad libitum MSG intake with the diet (approximately 4 g/kg) no changes were found, in plasma, in extracellular and tissue concentration of glutamate in the hypothalamus compared to rats fed with a normal diet. Glutamate release induced by 200 mM KCl was not modified as well. Histological analysis of Nissl-stained brain tissue slices did not reveal any obvious cell loss in the hippocampus after acute or chronic MSG administration.

Administration, Oral↗

Biological actions of drugs affecting serotonin and eating.

The present status of knowledge on drugs affecting food intake and presumably acting via a serotoninergic mechanism is reviewed. The mechanism of action of these drugs is analyzed at the neurochemical level. All the drugs, to various extents, inhibit the uptake of serotonin (5HT), increase the release of 5HT and decrease brain levels of 5HT and 5HIAA. However, the underlying mechanisms are not identical as exemplified by comparisons made with d-fenfluramine, d-norfenfluramine, fluoxetine, sertraline and paroxetine. An analysis of the role of 5HT in the inhibition of food intake reveals that only d-fenfluramine is inhibited by antiserotonin agents. The role of the different 5HT receptor-subtypes in this antagonism is discussed. More selective 5HT antagonists are needed to establish which 5HT receptor(s) controls food intake.

Animals↗

Effect of d-fenfluramine on the indole contents of the rat brain after treatment with different inducers of cytochrome P450 isoenzymes.

The effects of pretreatment with inducers of hepatic cytochrome P450 isoenzymes (phenobarbital, dexamethasone and beta-naphthoflavone) on the metabolism of d-fenfluramine (d-F) and its acute and long-lasting indole-depleting effects were studied in rats, in an effort to obtain further information on the importance of hepatic drug metabolism in relation to its neurochemical actions. Twenty-four hours after the last dose of each inducer, rats were injected with d-F hydrochloride (5 mg/kg, IP) and killed at various times thereafter for parallel determination of indoles and drug concentrations in plasma and brain. Additional rats were treated as above and killed 1 week after d-F hydrochloride (5 and 10 mg/kg) to study the recovery of indole in the cortex, a particularly sensitive brain area. Phenobarbital and beta-naphthoflavone and, to a lesser degree, dexamethasone, stimulated the metabolism of d-F, as evidenced by a decrease in plasma and brain areas under the curve (AUC) compared to vehicle-treated rats. This indicated that multiple isoenzymes are capable of mediating the drug's metabolism, primarily by N-dealkylation to d-norfenfluramine (d-NF). None of the inducers raised plasma and brain AUC of the nor-derivative, and in fact phenobarbital and particularly beta-naphthoflavone reduced it. These different effects were even apparent in rats given d-NF (2.5 mg/kg), indicating that both phenobarbital and beta-naphthoflavone also stimulate the sequential metabolism of the nor-metabolite (by N-deamintaion) which, however, is apparently enhanced most actively by beta-naphthoflavone-inducible forms of P-450.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Depletion and time-course of recovery of brain serotonin after repeated subcutaneous dexfenfluramine in the mouse. A comparison with the rat.

The indole-depleting effects of repeated subcutaneous doses of dexfenfluramine (D-F) (2.5, 5, 10, 20 and 40 mg/kg/day, for four days) in mice were examined with regard to the initial response and time-course of recovery and related to the pharmacokinetics of D-F and its active metabolite dexnorfenfluramine (D-NF). Steady-state plasma and brain concentrations of D-F rose dose-dependently with a metabolite-to-drug ratio averaging 0.4 in brain. This confirmed that in mice D-NF contributes less than in other species to the effects of D-F. Regional serotonin (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) contents were decreased dose-dependently 4 hr after the last injection of D-F. However, two weeks after D-F (2.5-10 mg/kg/day) brain indoles had almost totally recovered, and the long-term effects of the 20 mg/kg/day dose were completely reversed by six weeks, when significant effects are still observable in rats. Although substantial recovery was evident even at 40 mg/kg/day, 5-HT but not 5-HIAA was still slightly reduced nine weeks later. Comparative studies in rats given 2.5-20 mg/kg/day D-F indicated much more severe initial indole depletions than in mice. Brain levels of D-F and D-NF were much higher in rats than in mice. The total active drug brain concentration (D-F + D-NF) was significantly correlated with 5-HT content in both species, with approx 20 nmol/g of total drug causing 50% reduction. These findings point to species differences in D-F kinetics as a main reason for differences in the neurochemical response, supporting the view that the recovery of indoles over time is related to the extent of initial depletion, which in turn depends on critical drug brain concentrations. In view of the qualitative and quantitative species differences in the pharmacodynamics and pharmacokinetics of D-F neither of these rodent species is a suitable model for predicting potential drug toxicity in humans.

Animals↗

Pharmaceutical prescriptions in Italy.

Pharmaceutical prescriptions are quite different in four European countries: Italy, France, Germany, and the United Kingdom. In particular, in 1992, among the 50 most sold products by value, only seven active principles are common to these four countries. In Italy, in 1994, there has been a substantial change in pharmaceutical prescriptions, since, for the first time, drugs have been reimbursed by the National Health System (NHS) on the basis of efficacy. As a result of this new policy, the 50 most-sold products by value have changed dramatically in the first five months of 1994. The pharmacologic and economic implications of this change are discussed.

Drug Prescriptions↗

Oral kinetics of dexfenfluramine and dexnorfenfluramine in non-human primates.

1. Large doses of dexfenfluramine in animals cause a decrease of serotoninergic markers but none of the species so far investigated shows sufficient kinetic and metabolic similarity with man to be a valid model for safety studies. The plasma kinetics of dexfenfluramine and its active metabolite dexnorfenfluramine were therefore studied in baboon, rhesus and cynomolgus monkeys given dexfenfluramine hydrochloride orally (2 mg/kg) in order to investigate whether any of these primates have a biodisposition particularly similar to man. 2. The drug was rapidly N-deethylated to dexnorfenfluramine achieving comparatively low mean maximum plasma levels (Cmax) of 12-14 ng/ml in all primates, and rapidly disappeared thereafter with half-lives (t1/2) ranging from 2 to 3 h in the baboon and rhesus monkey to 6 h in the cynomolgus monkey. Its normetabolite reached higher mean Cmax (52-97 ng/ml) and the t1/2's were longer, varying from about 11 h in the rhesus monkey to 22 h in the cynomolgus monkey. The metabolite-to-parent drug ratio (14-37), in terms of plasma area under curve (AUC), greatly exceeded that in man (< 1), being higher than in all species investigated so far. 3. Comparative repeat dose simulation in monkey and man indicated that the dosage in primates would need to be increased 10-fold to achieve comparable dexfenfluramine steady-state plasma Cmax, producing nor-metabolite levels several times those in man, whilst for comparable metabolite Cmax, those of the parent drug would be correspondingly too low. 4. In view of the different mechanism of action of dexfenfluramine and dexnorfenfluramine within the serotoninergic system none of these primates is therefore a suitable model for safety assessment in terms of exposure of the active moieties in comparison with man.

Animals↗

Treatment of idiopathic membranous glomerulopathy.

The treatment of membranous nephropathy, the most common form of glomerular diseases causing nephrotic syndrome in adults, is still debated. A considerable percentage of patients have a spontaneous remission of the disease and reduction of urinary protein excretion with time. Studies in the past have indicated that prednisone may have beneficial effects, but this has not been confirmed by more recent investigation. Others have studied the association of methylprednisolone with cyclophosphamide or chlorambucil, but results are conflicting. The main reasons for the conflicting data are the variety of clinical presentations of the disease and the different study populations. Most trials performed so far have not included enough patients in each category to adequately detect differences between treatment groups and placebo groups. Several studies with few numbers of patients reported that cyclosporine effectively reduced proteinuria and may have less long-term toxicity than more conventional immunosuppressants. This finding, however, must be verified by appropriate clinical trials.

Clinical Trials as Topic↗