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Biomedical subjects

M Marinelli

Publications and source records attributed to M Marinelli.

At least 55 records · Page 3Linked to original sources

EEG Patterns after callosotomy.

In 36 patients with drug-resistant epilepsy submitted to anterior callosotomy (27 cases), to two-stage total callosotomy (8 cases) and to posterior callosotomy (1 case) the EEG variations concerning background activity, focal activity and sharp-waves (SW) bisynchronous activity were evaluated. EEG modifications observed after callosotomy are the following: background rhythm tends to be better organised as spectral analysis demonstrated, this finding usually coincide with reduction of bisynchronous discharges. It appears that improvement in background activity cannot be correlated with outcome, but it seems to be to some extent since at the same time cognitive functions also seem to improve; however, this last aspect need to be checked in much larger series. The number and location of EEG foci do not change, but they appear to be more active; this is likely to depend only on the concomitant reduction of bisynchronous activity. No correlation seems to exist between the number and the location of foci, which are generally multiple. Lateralization of bisynchronous discharges as well as the reduction of their frequency and duration were observed. However, the clinical course is quite different: in some patients we have achieved good clinical responses in others postoperative results were poor. Lateralization of bisynchronous discharges is never absolute, on the grounds that in prolonged recordings bisynchronous discharges are nearly always present. Bisynchronous discharges in some cases are alternatively predominant in both hemispheres even within minutes or seconds. It was observed that after certain time, generally some months, lateralized discharges tend to generalize again, confirming that corpus callosum is replaced in discharge diffusion by other structures (brain-stem, diencephalon).

Adolescent↗

Suppression of glucocorticoid secretion and antipsychotic drugs have similar effects on the mesolimbic dopaminergic transmission.

Specific antagonists of central dopaminergic receptors constitute the major class of antipsychotic drugs (APD). Two principal effects of APD are used as criteria for the pre-clinical screening of their antipsychotic action: (i) inhibition of basal and depolarization-induced activity of mesolimbic dopaminergic neurons; (ii) antagonism of the locomotor effects of dopaminergic agonists. Given that glucocorticoid hormones in animals increase dopamine release and dopamine-mediated behaviors and that high levels of glucocorticoids can induce psychotic symptoms in humans, these experiments examined whether inhibition of endogenous glucocorticoids might have APD-like effects on mesolimbic dopaminergic transmission in rats. It is shown that suppression of glucocorticoid secretion by adrenalectomy profoundly decreased (by greater than 50%): (i) basal dopaminergic release and the release of dopamine induced by a depolarizing stimulus such as morphine (2 mg/kg, s.c.), as measured in the nucleus accumbens of freely moving animals by microdialysis; (ii) the locomotor activity induced by the direct dopaminergic agonist apomorphine. The effects of adrenalectomy were glucocorticoid specific given that they were reversed by the administration of glucocorticoids at doses within the physiological range. Despite its profound diminution of dopaminergic neurotransmission, adrenalectomy neither modified the number of mesencephalic dopaminergic neurons nor induced gliosis in the mesencephalon or in the nucleus accumbens, as shown by tyrosine hydroxylase and glial fibrillary acidic protein immunostaining. In conclusion, these findings suggest that blockade of central effects of glucocorticoids might open new therapeutic strategies of behavioral disturbances.

Adrenalectomy↗

Acute pharmacological blockade of corticosterone secretion reverses food restriction-induced sensitization of the locomotor response to cocaine.

Several data indicate that a blockade of stress-induced corticosterone secretion prevents the development of the stress-induced sensitization of the behavioral effects of drugs of abuse. In this report we investigated if an acute blockade of corticosterone secretion could reverse stress-induced sensitization once it is already established. Food restriction (90% of initial body weight) was used as stressor. Corticosterone secretion was blocked by the corticosterone synthesis inhibitor metyrapone (100 mg/kg). After 8 days of food restriction, animals received an injection of metyrapone and 3 h later they were tested either for the locomotor response to cocaine or for the corticosterone secretion in response to stress (restraint, 30 min). Neither metyrapone nor food restriction had any effect on the locomotor response to a saline injection. In contrast, food-restricted animals, compared to ad libitum-fed controls, showed a higher locomotor response to cocaine and higher corticosterone levels. Treatment with metyrapone totally abolished these effects. Food-restricted animals, receiving a single injection of metyrapone, did not differ from ad libitum-fed controls for both locomotor response to cocaine and corticosterone secretion. Metyrapone treatment also similarly reduced the response to cocaine and corticosterone secretion in ad libitum-fed controls. In conclusion, this study provides further evidence that the enhancement in drug effects produced by stress depends on an increase in corticosterone levels. Since stress-induced sensitization is considered one of the conditions predisposing to drug abuse, the present results might have implications for the treatment of addiction.

Animals↗

Pepsinogens and gastrointestinal symptoms in mountain marathon runners.

Although there are various descriptive reports concerning exercise-induced gastrointestinal distress, the role of gastrointestinal hormones and/or enzymes is not definitively established. In this study we investigated the behaviour of pepsinogens (PGI and PGII) after an endurance race performed at an altitude of 4,300 m by 13 well-trained marathon runners, with the aim to establish their interrelationship with gastrointestinal distress and with the modifications of gastrin and cortisol. The athletes showed a significant rise in gastrin (p < 0.01) and in cortisol (p < 0.01) and a significant decrease in PGI (p < 0.01) and PGII (p < 0.05) after the race. The PGI/PGII ratio presented small variations indicating that heavy exercise has less effects on PGs than those observed for gastrin. Gastrointestinal symptoms occurred in 6 athletes (46%) during the race and in 8 athletes (62%) after the race. No relationship was found between gastrointestinal symptoms and hormonal modifications after the race. A control group of 5 subjects was used: they (n = 5) did not show any significant modification of gastrin and PGs during the period spent at the above altitude, indicating that travel, altitude and acclimatization, food and beverages, do not influence the behaviour of these hormones. Conversely, they presented a significant decrease of cortisol (p < 0.05) linked to the circadian rhythm. The data of the present study indicate that the potential damage of gastrointestinal apparatus in mountain marathon runners is not related to the above mentioned hormones.

Adult↗

Effective role of the renin-angiotensin system in the control of prostanoid synthesis and renal function in healthy women with moderate salt depletion.

The interaction between moderate salt depletion and urinary excretions of prostanoids (PGE2,6-keto-PGF1 alpha and TxB2), as well as the effective role of the activated renin-angiotensin system (RAS), in the control of renal function and urinary prostanoid excretions have been investigated in healthy women. Salt depletion (SD, n = 8) was induced by low sodium chloride dietary intake (< or = 60 mmol per day) and combined treatment with natriuretic and potassium sparing drugs. The cumulative sodium deficit was 381 +/- 55 mmol. The renal function and urinary excretion of prostanoids were evaluated during hypotonic polyuria (oral water load) and subsequent moderate antidiuresis (lysine-8-vasopressin (LVP) low-dose infusion). Basal plasma renin activity (PRA) and urinary aldosterone excretion were determined, before the water load, in both the SD group and control studies in normal balance of sodium and potassium (N, n = 20). Paired studies were performed in the absence and in the presence of enalapril in the same SD group, as well as in a subgroup, with normal sodium and potassium balance, previously studied (N3, n = 6). In the SD vs. N group, significantly higher values of PRA and urinary aldosterone excretion were found. The renal antinatriuretic mechanism was activated and the diuretic response to water load depressed. During polyuria, the urinary 6-keto-PGF1 alpha and TxB2 excretions were significantly higher, probably reflecting an increase in the renal synthesis of their precursors. During the late LVP infusion, the urinary PGE2 excretion was also significantly increased, in absence of significant differences in urinary flow rate. In both SD and N3 groups, enalapril decreased the mean arterial pressure (MAP). Despite the decrease in MAP, not significantly different in SD vs. N3 group, the drug did not significantly affect the creatinine clearance. Also, the urinary prostanoid excretions were not significantly affected by enalapril. However, in the SD group, but not in the N3 group, the drug was effective in significantly decreasing the absolute and fractional excretions of sodium and chloride. Moreover, the plasma potassium concentration significantly decreased, despite the concurrent decrease in urinary potassium excretion. The data suggest that: (1) in salt depletion, the prostanoid release from the renal cortical structures was stimulated; (2) the renal prostanoid synthesis, either activated (sodium depletion) or not (normal sodium and potassium balance), was not affected by the RAS pharmacological blockade in the short-term; (3) in salt depletion, the RAS blockade recruited a homeostatic mechanism responsible for the improved renal salt conservation, as well as for the redistribution of potassium between the extra- and intra-cellular compartments.

Adult↗

Different localization of spermidine/spermine N1-acetyltransferase and ornithine decarboxylase transcripts in the rat kidney.

In situ hybridization histochemistry of transverse sections from male rat kidney showed that the mRNA of the regulatory enzyme of polyamine degradation, spermidine/spermine N1-acetyltransferase, has a spotty distribution in the cortex, is low and diffused in the outer stripe and high and diffused in the inner stripe of the outer medulla. At the cellular level, this mRNA is solely expressed by the epithelium of the distal straight and convoluted nephron tubules. Since biosynthetic ornithine decarboxylase mRNA is solely found in the proximal straight tubules, it is proposed that polyamine biosynthesis and degradation occur at separate sites along the nephron.

Acetyltransferases↗

Platelet indices in athletes performing a race in altitude environment.

Physical activity could modify platelet count and platelet indices. Previous reports showed modifications after exercise linked to type and duration of sports performances. The shortage of studies in this field stems from the crucial methodological problem of EDTA (ethylenediaminetetraacetic acid)-dependent, mean platelet volume modifications: the published data on platelets count and indices were obtained by using a light-scattering system without standardization of the period elapsed from drawing to measurement. We present a study of platelet indices performed in athletes participating in an "extreme" performance, a race of 30 km in altitude (6,700 m of ascents and descents), using standardized measurement by an aperture-impedance instrument transferred in the field. The platelet count and mean platelet volume significantly increased in athletes, whereas platelet distribution width decreased. The mean initial values were 240.6*10(9)/L for platelet count, 8.79 fL for mean platelet volume, and 15.79% for platelet distribution width. The correspondent mean final values were 288.4*10(9)/L, 9.14 fL, and 15.48%. The modifications of platelet count and indices were always in the physiological reference range. The entity and the rapidity of platelet count and indices modifications suggest that the more probable source of variation is the recruitment of noncirculating pools of mature platelets. Strenuous exercise does not show abnormal changes of platelet parameters.

Adolescent↗

Stress-induced sensitization and glucocorticoids. I. Sensitization of dopamine-dependent locomotor effects of amphetamine and morphine depends on stress-induced corticosterone secretion.

Repeated exposures to stress sensitize motor and addictive effects of drugs of abuse. Recently, it has been shown that stress-induced behavioral sensitization depends on the secretion of glucocorticoids. We investigated if sensitization of dopamine-dependent effects of psychostimulants and opioids was influenced by glucocorticoid. Sensitization of the dopaminergic response to drugs is considered the neural substrate of behavioral sensitization and has been implicated in vulnerability to drug abuse. Dopamine-dependent effects of psychostimulants and opioids were evaluated by injecting either amphetamine into the nucleus accumbens (10 micrograms/side) or morphine into the ventral tegmental area (VTA) (1 microgram/side). The locomotor response to psychostimulants and opioids injected in these brain areas depends on the mesencephalic dopaminergic transmission. Drug-induced locomotion was compared in male rats in which corticosterone secretion was either in +tct or experimentally suppressed by an adrenalectomy associated with a substitutive treatment reproducing basal levels of the hormone. Eight days of food restriction (80% of the initial body weight) were used as a stressor. Suppression of stress-induced corticosterone secretion abolished food restriction-induced sensitization of the locomotor effects of intra-accumbens amphetamine and intra-VTA morphine. This effect was corticosterone dependent since the restoration of corticosterone levels in the range of those induced by stress totally reinstates sensitization. Our results suggest that glucocorticoids control stress-induced sensitization by changing the sensitivity of the mesencephalic dopaminergic transmission to drugs of abuse. Since dopaminergic effects of drugs are related to their addictive properties, secretion of glucocorticoids may be one of the factors determining the enhanced vulnerability to drugs observed in stressed subjects.

Amphetamine↗

Stress-induced sensitization and glucocorticoids. II. Sensitization of the increase in extracellular dopamine induced by cocaine depends on stress-induced corticosterone secretion.

Secretion of glucocorticoids seems to control stress-induced sensitization of the behavioral effects of drugs of abuse by acting on the mesencephalic dopaminergic transmission, the principal neural substrate of sensitization. In order to investigate the mechanisms of this interaction between glucocorticoids and dopamine, we studied the sensitization of the increase in extracellular concentration of dopamine induced by cocaine in male rats in which corticosterone secretion was either intact or blocked. Extracellular concentrations of dopamine were evaluated in the nucleus accumbens of freely moving animals by means of microdialysis. Metyrapone, an inhibitor of corticosterone synthesis, was used to block stress-induced corticosterone secretion. Food-restriction (90% of the initial body weight) was the stressor used to induce sensitization. It was found that metyrapone (100 mg/kg s.c. twice a day for 8 d) suppressed stress-induced sensitization of the increase in accumbens dopamine induced by cocaine (10 mg/kg, i.p.) and sensitization of cocaine-induced locomotion Metyrapone suppressed both the development and the expression of sensitization. Thus, sensitization was equally blocked when the metyrapone treatment started either 1 d before the start of food-restriction or 8 d later, that is, when food-restriction-induced sensitization to cocaine was already established. In conclusion, our results suggest that glucocorticoids modify sensitization of the behavioral effects of cocaine by acting on extracellular concentrations of dopamine. Since addictive properties of psychostimulants seem mediated by the increase in extracellular concentrations of dopamine they induce, these findings may have implications for the development of new therapeutic strategies of addiction.

Animals↗

Inhibition of corticosterone synthesis by Metyrapone decreases cocaine-induced locomotion and relapse of cocaine self-administration.

Several studies have recently shown that basal and stress-induced secretion of corticosterone may enhance vulnerability to drugs of abuse. In this report, we studied the effects of metyrapone, an inhibitor of the synthesis of corticosterone, on cocaine-induced locomotion and on the relapse of cocaine self-administration. Locomotor response to cocaine was studied because psychomotor effects of drugs have been shown to be related to their reinforcing properties. Self-administration was studied in the relapse phase since blockade of relapse is central to the therapy of addiction. Before these behavioral tests, rats in different experimental groups were injected subcutaneously with either metyrapone (100 mg/kg) or vehicle, twice a day for 8 days. Metyrapone treatment reduced cocaine-induced locomotor activity and relapse of cocaine self-administration, without inducing a nonspecific disruption of motor or food-directed behaviors. Under these experimental conditions, the metyrapone treatment totally blocked stress-induced corticosterone secretion but did not modify basal corticosterone levels. These results confirm the involvement of glucocorticoids in the pathophysiological mechanisms underlying vulnerability to drug abuse, and may have implications for the development of new therapeutic strategies of drug addiction.

Analysis of Variance↗

Animals predisposed to develop amphetamine self-administration show higher susceptibility to develop contextual conditioning of both amphetamine-induced hyperlocomotion and sensitization.

It has been shown that rats, like humans, display individual differences in the propensity to develop psychostimulant self-administration. Animals showing the highest locomotor reactivity to novelty (HRs: High Responders) are more prone to develop amphetamine self-administration than rats having a low locomotor response to novelty (LRs: Low Responders). The present study was designed to ascertain whether individual differences are also present in the conditioning of drug effects, a process involved in the maintenance of addiction. After pairing the drug effect with a particular set of environmental cues, only HRs showed conditioned hyperlocomotion and environment-specific sensitization to the effect of amphetamine. Unconditioned sensitization was, however, observed in LRs but not in HRs. The environment-specific sensitization disappeared on extinction of the conditioned hyperlocomotion in HRs, indicating that conditioning facilitates the expression of sensitization. In contrast, an inhibitory influence of conditioning on sensitization emerged from the analysis of the same results over all the experimental groups, without taking individual differences into account. In conclusion, our results show that: (i) locomotor reactivity to novelty predicts both vulnerability to develop self-administration and contextual conditioning of drug effects, which suggests that the two phenomena are two related features and that conditioning plays an important role not only in the maintenance of drug intake but also in its development; (ii) conditioned and unconditioned sensitization can be developed separately in different individuals which suggests that they are independent phenomena; (iii) analysis of individual differences is relevant to pharmacological studies, especially with respect to drugs of abuse.

Amphetamine↗