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Biomedical subjects

I Zini

Publications and source records attributed to I Zini.

At least 55 records · Page 3Linked to original sources

Glucocorticoid receptor immunoreactivity in monoaminergic neurons of rat brain.

A monoclonal antibody against the rat liver glucocorticoid receptor was used in combination with rabbit antibodies against tyrosine hydroxylase, phenylethanolamine N-methyltransferase, and 5-hydroxytryptamine to demonstrate strong glucocorticoid receptor immunoreactivity in large numbers of central monoaminergic nerve cell bodies of the male rat. The receptor immunoreactivity was predominantly located in the nucleus, whereas the tyrosine hydroxylase, phenylethanolamine N-methyltransferase, and 5-hydroxytryptamine were detected mainly in the cytoplasm. The vast majority of the noradrenergic nerve cell bodies of groups A1-A7 and of the 5-hydroxytryptaminergic cell bodies of groups B1-B9 were found to contain strong glucocorticoid receptor immunoreactivity. The majority of the phenylethanolamine N-methyltransferase-immunoreactive nerve cells of the adrenergic cell groups C1-C3 and of the dorsal subnuclei of the nucleus tractus solitarius in the medulla oblongata were also strongly immunoreactive for glucocorticoid receptor. In the midbrain dopaminergic groups A8-A10, moderately (A8, A9) to strongly (A10) glucocorticoid receptor-immunoreactive cells were found, ranging from 40 to 75% of the total population. In the hypothalamic dopaminergic cell groups, all the cells of groups A12 and A14, as well as the majority of the dopaminergic cells of the zona incerta (A13), were found to contain moderate to strong glucocorticoid receptor immunoreactivity, but none of the large dopaminergic cells of the posterior hypothalamus (A11) showed such immunoreactivity.

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Intravenous uridine treatment antagonizes hypoglycaemia-induced reduction in brain somatostatin-like immunoreactivity.

By means of radioimmunoassay procedures, cholecystokinin-(CCK) and somatostatin-(SRIF) like immunoreactivity have been studied in the dorsal hippocampal formation and in the frontoparietal cortex of the male rat in insulin-induced hypoglycaemia, leading to an isoelectric EEG pattern. It has been demonstrated that severe hypoglycaemia of 40-min-duration produces a disappearance of SRIF but not of CCK-like immunoreactivity in both cortical regions. It was found that an i.v. injection of uridine but not of saline could significantly counteract the disappearance of SRIF-like immunoreactivity induced by severe hypoglycaemia in both cortical areas. Uridine did not by itself change plasma glucose levels. It is suggested that uridine may prevent release and/or increase synthesis of cortical SRIF peptides in severe hypoglycaemia, possibly due to an action on the metabolism (e.g. by enhancing the resynthesis of phosphatidyl inositol) within the tissue of the cerebral cortex and/or on putative pyrimidine binding sites in the brain controlling SRIF synthesis and/or release. It is possible that uridine in this way may improve recovery of neuronal function within SRIF-immunoreactive neurons of the cerebral cortex after severe hypoglycaemia (which also may be true in other states of reduced metabolic support). These findings suggest a possibility to use uridine in the treatment of Alzheimer's disease and Status epilepticus.

Animals↗

Effects of neurotoxic and mechanical lesions of the mesostriatal dopamine pathway on striatal polyamine levels in the rat: modulation by chronic ganglioside GM1 treatment.

In male rats, partial hemitransections but not 6-hydroxydopamine (6-OHDA)-induced lesions of the mesostriatal dopamine (DA) pathway produce after 7 days a marked and a modest increase of striatal putrescine and spermidine levels, respectively, on the lesioned side. Following chronic ganglioside GM1 treatment of partially hemitransected rats, an increase of striatal polyamine levels was observed also on the intact side. It is suggested that retrograde cell body changes produced by hemitransection may induce striatal ornithine decarboxylase activity and in this way increase striatal putrescine levels, favoring regenerative mechanisms. The increase of striatal polyamine levels by GM1 treatment on the intact side of both 6-OHDA and mechanically lesioned rats compared with intact unoperated rats may also reflect an increased synthesis of striatal polyamines.

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Effects of lesions and ganglioside GM1 treatment on striatal polyamine levels and nigral DA neurons. A role of putrescine in the neurotropic activity of gangliosides.

The effects of a partial hemitransection at the meso-diencephalic level, with or without chronic ganglioside GMI treatment, have been evaluated on striatal polyamine levels, 7, 14 and 21 days after lesion, as well as on the ability of the polyamine synthesis inhibitor alpha-difluoromethylornithine (alpha-DFMO) to modulate the protective effects of chronic ganglioside GMI treatment against retrograde degeneration of the nigral dopamine (DA) nerve cell bodies (14 day time interval). The striatal polyamine levels were measured by high pressure liquid chromatography after dansylation of the polyamines. The nigral DA nerve cells were studied by means of tyrosine hydroxylase (TH) immunocytochemistry using the indirect immunoperoxidase technique. Quantitation was performed by means of morphometrical evaluation of the TH immunoreactive area of the substantia nigra. Seven days after partial hemitransection there is a marked increase (above 350%) in striatal putrescine levels, which is not modulated by chronic GMI treatment. This marked increase could, to a large extent, be counteracted by simultaneous treatment with alpha-DFMO, which blocks mainly the synthesis of putrescine. Twenty-one days after lesion chronic GMI treatment could produce an increase in striatal putrescine levels on the intact side and also after this time-interval prevent the reduction of striatal spermine levels. It was also found that simultaneous treatment with alpha-DFMO prevents the development of the protective action of chronic ganglioside GMI treatment against retrograde degeneration of the nigral DA neurons.(ABSTRACT TRUNCATED AT 250 WORDS)

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l-Glutamate reduces the affinity of [3H]N-propylnorapomorphine binding sites in striatal membranes.

l-Glutamate but not methyl-D-aspartate (NMDA) or quisqualate ( Quis ) (10(-6 M) in vitro with or without preincubation increased significantly the KD value of the [3H]N-propylnorapomorphine ( [3H]NPA) binding sites by 21 and 36% respectively in striatal membranes of rat without influencing the striatal [3H]spiperone binding sites. The number of striatal [3H]NPA binding sites was not changed by l-glutamate (10(-6) and 10(-5) M) in vitro. There may thus exist interactions between striatal glutamate receptors -- not related to excitatory amino-acid receptors of the NMDA or the QUIS type -- and high affinity striatal DA receptors.

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Effects of gangliosides on the functional recovery of damaged brain.

The effect of GM1 ganglioside on the recovery of dopaminergic nigro-striatal neurons was studied in rats after unilateral hemitransection. GM1 treatment favoured the collateral sprouting of dopaminergic axons in the striatum as indicated by the induced increase of tyrosine hydroxylase (TH) activity and immunofluorescence. Concomitantly GM1 partially prevented the decrease of TH activity caused by the hemitransection in the substantia nigra ipsilateral to the lesion. A significant increase of TH immunoreactivity was also detected in the substantia nigra: GM1 prevented the disappearance of TH-positive cell bodies and increased the formation of TH-positive collaterals and dendrites with respect to the saline treatment. The addition of GM1 to embryonic dissociated mesencephalic cell cultures stimulates the expression of dopaminergic characteristics as suggested by the increase of 3H-DA uptake.

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A method for rostrocaudal integration of morphometric information from transmitter-identified cell groups. A morphometrical identification and description of 5-HT cell groups in the medulla oblongata of the rat.

A method has been developed to integrate rostrocaudal information from morphometrically characterized 5-HT nerve cell groups visualized by means of the indirect immunofluorescence technique in single coronal sections of the neuroaxis. The present method has been applied to the 5-HT positive cells of the medulla oblongata of the rat. 5-HT cell body and cell group parameters were measured by the use of a semiautomatic image analyzer (Kontron, MOP AMO 2) plugged into an Apple II computer. The density distribution of 5-HT positive cells was also studied by dividing the area analyzed into unitary squares (about 120 X 120 micron) and then by considering the number of 5-HT cells falling in each of these squares. The existence of a 5-HT cell group was determined by testing the randomness of the 5-HT profiles per unitary square. The entire population of 5-HT positive cells as well as the 5-HT cell groups were described in terms of gravity center coordinates, mean maximal diameter and homogeneity index. A rostrocaudal representation of the gravity centers and of the dispersion of the 5-HT nerve cell groups around them provided an exact three-dimensional description of the respective locations of the 5-HT cell groups within the medulla oblongata. These methods can be applied to all types of transmitter-identified cell groups and at any level of the neuroaxis.

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Actions of centrally administered neuropeptide Y on EEG activity in different rat strains and in different phases of their circadian cycle.

The effects of centrally administered neuropeptide Y (NPY) on the sleep-wakefulness cycle have been studied by analyzing its action in different strains of rats with or without spontaneous hypertension and during two different phases of the circadian cycle. Normal adult Sprague-Dawley (SD), Wistar-Kyoto (WKy) and spontaneous hypertensive (SH) rats were used. By means of EEG electrodes the recording of the fronto-parietal electrocorticogram and the electromyogram could be made. Stainless steel cannula were also implanted into the lateral ventricle. The effects of an intraventricular injection of NPY (1.25 nmol/rat) was compared with the effects of the vehicle (saline) alone. The EEG patterns were classified as desynchronized, mixed or synchronized. In the SD rats NPY produced behavioural signs of sedation and a significant reduction of synchronized EEG activity as well as significant increase of synchronized and mixed EEG activities in comparison with the saline treated rats. In the WKy rats NPY administration produced an increase of synchronized EEG activity during evening sessions. In SH rats NPY produced a significant increase of desynchronized EEG activity and a decrease in mixed EEG activity indicating an awakening effect of the peptide. In view of the NPY innervation of the locus ceruleus, it therefore seems possible that the neuronal and hormonal regulation of the locus ceruleus noradrenaline nerve cells is different in the two strains of rats. It also seems possible that the ability of NPY to increase wakefulness in hypertensive animals is related to abnormal changes in the alpha 2-adrenoreceptors taking place in SH rats.

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Computer-assisted morphometry and microdensitometry of transmitter- identified neurons with special reference to the mesostriatal dopamine pathway. Methodological aspects.

New morphometrical and microdensitometrical approaches for evaluation of transmitter-identified neurons in the central nervous system have been developed. These rely at the presynaptic level on the use of immunocytochemistry and at the postsynaptic level on the use of receptor autoradiography. The immunocytochemical analysis involves the indirect immunofluorescence method and the indirect immunoperoxidase method utilizing cryostat and vibratome sections, respectively. In the postsynaptic analysis cryostat sections and tritium-sensitive film were employed. A block diagram representation of the system of the image analyzer used and its connection with its host computer is given. Furthermore, flow charts of the original software developed by our group in presented. The morphometrical analysis has been performed on coronal sections of rat brain resulting in determinations of cell body and cell group parameters. Based on this information, objective criteria have been introduced to assess the existence of a cell group of transmitter-identified neurons in a three-dimensional frame and to give a morphometrical description of this group in the space. Moreover, new quantitative approaches to describe the dendritic and terminal fields have been introduced and for the first time in this type of morphometrical analysis, the Lorenz curves and the Gini index have been utilized in the description of the pattern of dendritic and terminal networks. By means of these morphometrical approaches it became possible to analyze topological and biochemical heterogeneities within cell groups defined in the rostrocaudal frame. In particular, it has been possible to develop a quantitative method for the evaluation of coexistence in nerve cell bodies. This method has been called the overlap method and allows an analysis cell by cell of the possible coexistence of two or more antigens.

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Chronic ganglioside treatment counteracts the biochemical signs of dopamine receptor supersensitivity induced by chronic haloperidol treatment.

Chronic ganglioside treatment (10 mg/kg, i.p.) using the molecular species with only one neuroaminic acid residue (GM1) given together with haloperidol (0.3 and 5 mg/kg, i.p.) once daily in male rats, counteracted the haloperidol-induced increase in the number of [3H]spiperone binding sites in striatal membranes when the low dose of haloperidol, but not the high dose, was administered. The present results therefore indicate that chronic GM1 treatment can partially counteract the increase in the number of dopamine receptors having a high affinity for neuroleptics (D2 type) induced by chronic haloperidol treatment in striatal membranes, and therefore may also partially counteract the development of neuroleptic-induced dopamine receptor supersensitivity.

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Effects of chronic sino-aortic denervation in male rats on regional catecholamine levels and turnover and on neuroendocrine function.

A four week sino-aortic denervation produces an increase of adrenaline (A) turnover in the anterior but not the posterior hypothalamus and a selective reduction of dopamine stores in the anterior hypothalamus. Furthermore, the mean arterial blood pressure and heart rate are unchanged in conscious animals, and a selective increase in LH secretion is observed. The activation of a compensatory vasodepressor adrenergic mechanism in the anterior hypothalamus may in part be responsible for the maintenance of a normal mean arterial blood pressure after chronic sino-aortic denervation. The neurochemical changes in the hypothalamic area may also be related to the increase in LH secretion found after chronic sino-aortic denervation.

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Chronic antidepressant treatment and central 5-HT synapses.

The present studies have shown that chronic antidepressant treatment with desipramine, imipramine, zimelidine and alaproclate led to adaptive changes in both pre- and postsynaptic 5-hydroxytryptamine (5-HT) receptor mechanisms which appear to result in 5-HT sub- or supersensitivity development depending upon the 5-HT nerve terminal systems analyzed. The results underline the heterogeneity of the central 5-HT neurone systems in their responses to chronic antidepressant treatment. An involvement of 5-HT comodulators is postulated in the actions of antidepressants on central 5-HT synapses. Finally, the results point to the importance of 5-HT neurone systems as targets for the action for antidepressant drugs and they may mediate at least some of the therapeutic activity of antidepressant drugs.

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Quantitative autoradiographic localization of [3H]imipramine binding sites in the brain of the rat: relationship to ascending 5-hydroxytryptamine neuron systems.

Quantitative autoradiography shows that there is a close relationship between [3H]imipramine binding sites and the distribution of 5-hydroxytryptamine (5-HT) neurons in the rat brain. High labeling is observed in the midbrain raphe nuclei, the areas of the dopamine cell groups of the substantia nigra and of the ventral tegmental area of Tsai, the ventral amygdaloid nucleus, the midline thalamic area, and parts of the hypothalmus. Thus, antidepressant drugs that have high affinity for [3H]imipramine binding sites can exert an influence at the 5-HT cell body as well as at the 5-HT nerve terminal level. The present results underline the possibility that the 5-HT and dopamine hypotheses for the mechanism of action of antidepressant drugs are not mutually exclusive, because both 5-HT and dopamine neurons can be regulated by large numbers of [3H]imipramine binding sites.

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Chronic treatment with 1-dopa plus carbidopa in hemitransected rats: preferential effects at intact dopamine synapses leading to behavioural signs of dopamine receptor supersensitivity.

Chronic i.p. treatment with 1-dopa-carbidopa for 3 weeks in hemitransected male rats leads on one hand to tolerance to 1-dopa induced turning behaviour and on the other hand to behavioural and biochemical signs of dopamine (DA receptor supersensitivity on the intact side. Thus, the apomorphine induced ipsilateral turning behaviour is enhanced and the KD values of the 3H-spiperone binding sites linked to DA receptors of the D2 type on the intact, but not on the denervated side are reduced by 40%. However, the number of 3H-spiperone binding sites is reduced by 20% in striatal membranes on the intact side after this type of treatment. Therefore, chronic treatment with a catecholamine (CA) precursor leads to selective adaptive changes at intact striatal DA synapses with certain signs of the expected development of DA receptor subsensitivity, but above all with signs of paradoxical development of DA receptor supersensitivity. A hypothesis is introduced to explain these results.

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