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S Govoni

Publications and source records attributed to S Govoni.

At least 91 records · Page 5Linked to original sources

Mixed 5-HT1A/D-2 activity of a new model of arylpiperazines: 1-aryl-4-[3-(1,2-dihydronaphthalen-4-yl)-n-propyl]piperazines. 1. Synthesis and structure-activity relationships.

A new model of 4-alkyl-1-arylpiperazines containing a terminal dihydronaphthalene fragment on the alkyl chain was synthesized in order to have mixed serotonergic and dopaminergic activity and to pursue the recent alternative approaches to the discovery of novel antipsychotic and anxiolytic agents. Title compounds were evaluated for in vitro activity on dopamine D-2 and serotonin 5-HT1A and 5-HT2 receptors by radioreceptor binding assays. They show high nanomolar affinity for 5-HT1A, moderate affinity for D-2, and low affinity for 5-HT2 receptors, and in particular, two compounds, 4-[3-(1,2-dihydro-6-methoxynaphthalen-4-yl)-n-propyl]-1-(2- methoxyphenyl)piperazine (8) and 4-[3-(1,2-dihydro-8-methoxynaphthalen-4-yl)-n-propyl]-1-(2- pyridyl)piperazine (15), show values (nM) of IC50 = 2.0 and 1.4 for 5-HT1A and IC50 = 90.6 and 119.3 for D-2, respectively. Some in vivo behavioral studies show compound 8 to be an antagonist on 5-HT1A receptors. These first findings place the new arylpiperazines on the same level as that of the azaspirone class, e.g., 1-(2-methoxyphenyl)-4-[4-(2-phthalimido)-n-butyl]piperazine (NAN-190) and buspirone.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Characterization and distribution of protein kinase C isoforms in human skin fibroblasts.

In the present study we have examined the distribution of several isoforms of protein kinase C, a lipid-regulated serine/threonine kinase essential for signal transduction and cell regulation, in cultured human skin fibroblasts. By Western blot analysis we have detected the presence of at least three of the known protein kinase C isoforms. The calcium-dependent protein kinase C alpha was primarily associated with the cytosolic fraction. Three non-calcium-dependent isoforms, protein kinases C epsilon, C delta, and C zeta, were also detected. Protein kinases C zeta and C delta were present primarily in the cytosol, while protein kinase C epsilon was associated primarily with the membrane fraction. Binding and activity studies were consistent with the pattern of expression and distribution defined by Western blot analysis. These results provide a useful frame of reference for the study of isoform-specific effects of protein kinase C in the regulation of cell growth and metabolism.

Adult↗

PKC translocation in rat brain cortex is promoted in vivo and in vitro by alpha-glycerylphosphorylcholine, a cognition-enhancing drug.

Protein kinase C (PKC) activity was measured in soluble and particulate fractions of rat individual brain areas after treatment with alpha-glycerylphosphorylcholine (GPC), a cognition-enhancing drug which promotes acetylcholine synthesis and release. The drug induced both in vivo and in vitro PKC translocation. In vivo, an increase of particulate PKC activity was observed 1 hour following the acute oral administration of a behaviorally active dose (600 mg/kg); the effect was transient. In vitro, GPC promoted PKC translocation in cortical slices at concentrations as low as 50 nM; the concentration-response curve was bell shaped. The increased PKC activity may be related to the cortical effects of GPC.

Amphetamine↗

Cognition stimulating drugs modulate protein kinase C activity in cerebral cortex and hippocampus of adult rats.

The in vivo and in vitro effect of oxiracetam, aniracetam and alpha-glycerylphosphorylcholine (alpha GPC) on protein kinase C (PKC) activity was studied in rat brain cortex and hippocampus. Administration of oxiracetam and alpha GPC in vivo elicited an early increase of particulate histone-directed PKC activity accompanied by a decrease of soluble activity and followed a few hours later by a down regulation of the enzyme. The effect was also observed in vitro when either oxiracetam or alpha GPC were administered at nanomolar concentrations to rat brain cortex slices. Aniracetam had no effect in the cortex but promoted PKC translocation both in vivo and in vitro in the hippocampus. In cortex slices the effect of oxiracetam was antagonized by the addition of AP-5, an NMDA receptor blocker, but not by CNQX and L-AP3, antagonists of AMPA and metabotropic glutamate receptors, respectively. Scopolamine also prevented the increase of particulate PKC elicited by oxiracetam in vitro. In the hippocampus the increase of particulate PKC activity was antagonized by AP-5, CNQX and L-AP3, indicating participation by both ionotropic and metabotropic glutamate receptors in the action of aniracetam. The data support the hypothesis that PKC activation may be a common mechanism amongst cognition stimulating drugs from different chemical classes.

Animals↗

Cytosol protein kinase C downregulation in fibroblasts from Alzheimer's disease patients.

We attempted to determine whether changes in protein kinase C (PKC) activity in Alzheimer's disease (AD) brains are also present in cultured skin fibroblasts from living patients. Biopsies collected from shoulder skin were transferred to culture plates with an appropriate growth medium, and histone-directed PKC activity as well as phorbol ester binding were individually determined in soluble and particulate fractions prepared from AD and non-AD fibroblast cell lines. Binding experiments indicated that PKC was unevenly distributed between cytosol (78%) and particulate (22%). The Bmax values for phorbol ester binding in soluble and particulate fractions were similar in AD and non-AD patients. Kd values in the cytosol were 94% higher in AD patients, indicating lower affinity of the enzyme for the ligand. Accordingly, the soluble PKC activity was 30% lower in AD patients. The data suggest that the changes in PKC phosphorylating activity represent a diffuse cellular defect in AD and are not confined to the brain. The alterations of the enzyme may participate in the disregulation in processing of beta-amyloid precursor protein in AD.

Aged↗

Effect of ethanol exposure on voltage-dependent calcium channels in in vitro cellular models.

Chronic ethanol exposure alters calcium movements and the number of dihydropyridine (DHP) binding sites in the animal brain and in cultured neural cell lines. The present study investigates the effect of ethanol treatment on dihydropyridine- and omega-conotoxin (CgTx)- labelled calcium channels in undifferentiated and differentiated NG 108-15 cells. Following differentiation, the binding of [3H] -PN 200-110 increased by 48% while [125I]-CgTx binding increased by six fold. In accordance with data in the literature, undifferentiated cells exposed to ethanol (3 days) showed a large increase (70%) in DHP binding sites. In contrast, CgTx binding sites were unmodified by the treatment. Using differentiated cells, ethanol exposure induced a significant decrease (53%) in CgTx binding sites without altering those labelled by PN 200-110 (isradipine). These findings indicate that the effect of ethanol exposure on calcium channels may be dependent on the type of channel considered and on the status of the cells treated.

Animals↗

Oxygen isosteric derivatives of 3-(3-hydroxyphenyl)-N-n-propylpiperidine.

Some substituted 3-phenylmorpholines (10a-e,j,k) and 3-thienylmorpholines (10f,g), isosteres of 3-(3-hydroxy-phenyl)-N-n-propylpiperidine (3-PPP), were prepared and submitted to binding assays on D-2 dopaminergic and 5-HT1 and 5-HT2 serotonergic receptors, in comparison with 3-PPP and its analogue 3a,b. The results show the loss of D-2 affinity for all morpholines, while a certain activity was still observable for piperidine derivatives. Regarding the serotonergic affinity, only chloro and methoxy derivatives (10a-d) were moderately active on the 5-HT1A receptor, either when the substituent was in the C-2 or C-3 position, whereas no tested compounds showed affinity toward the 5-HT2 receptor.

Animals↗

Protein kinase C increase in rat brain cortical membranes may be promoted by cognition enhancing drugs.

Protein Kinase C (PKC) activity was measured in soluble and particulate fractions of rat individual brain cortices after in vivo treatment with two cognition enhancers: oxiracetam and alpha-glicerylphosphorylcholine. Both drugs induced an increase (+40-50%) of PKC particulate activity at 1 hr after the treatment. The effect was transient; at 5 hours PKC activity was lower than in controls. The dose response curve to oxiracetam was bell shaped, the increase of PKC being significant at 100 mg/kg. At higher doses the drug induced a decrease in enzyme activity. The increased PKC activity may be related to the cortical effects of these compounds.

Animals↗

G protein modulation of omega-conotoxin binding sites in neuroblastoma x glioma NG 108-15 hybrid cells.

Electrophysiological evidence shows that voltage-dependent calcium channel (VDCC) activity can be regulated by a large number of neurotransmitters. In particular, guanine nucleotide binding regulatory protein (G protein)-mediated inhibitory modulation of the channel activity has been deduced from evidence that GTP analogues and purified G proteins are able to mimic this effect. The G proteins involved are pertussis toxin (PTx) sensitive. The purpose of the present study was to investigate, using biochemical techniques, whether G protein activation modulates the recognition site for omega-conotoxin GVIA (CgTx), a peptide neurotoxin that selectively labels a population of high-threshold VDCC. Undifferentiated and differentiated (1 mM dibutyryl cyclic AMP, 4 days) NG 108-15 cells were used. In both crude cellular extracts specific binding of 125I-CgTx was characterized. Differentiation induced a sixfold increase in the number of binding sites and doubled the KD value. The in vitro addition of guanylylimidodiphosphate (GMP-PNP; a nonhydrolyzable analogue of GTP) to extracts prepared from differentiated cells reduced the 125I-CgTx binding by 48%. This effect, observed in undifferentiated cells as well, was also caused by other triphosphate guanine nucleotides, such as GTP, but not by guanosine 5'-O-(2-thiodiphosphate) or adenine nucleotides. Treatment of the cells with PTx prevented the GMP-PNP effect. Moreover, the results obtained after preincubation with specific antisera raised against the alpha subunits of Gi1-2 and Go suggest that Go is the G protein responsible for the observed effect.

Animals↗

Maitotoxin-induced intracellular calcium rise in PC12 cells: involvement of dihydropyridine-sensitive and omega-conotoxin-sensitive calcium channels and phosphoinositide breakdown.

The biological activities of maitotoxin are strictly dependent on the extracellular calcium concentration and are always associated with an increase of the free cytosolic calcium level. We tested the effects of voltage-sensitive calcium channel blockers (nicardipine and omega-conotoxin) on maitotoxin-induced intracellular calcium increase, membrane depolarization, and inositol phosphate production in PC12 cells. Maitotoxin dose dependently increased the cytosolic calcium level, as measured by the fluorescent probe fura 2. This effect disappeared in a calcium-free medium; it was still observed in the absence of extracellular sodium and was enhanced by the dihydropyridine calcium agonist Bay K 8644. Nicardipine inhibited the effect of maitotoxin on intracellular calcium concentration in a dose-dependent manner. The maitotoxin-induced calcium rise was also reduced by pretreating cells with omega-conotoxin. Pretreatment of cells with maitotoxin did not modify 125I-omega-conotoxin and [3H]PN 200-110 binding to PC12 membranes. Nicardipine and omega-conotoxin inhibition of maitotoxin-evoked calcium increase was reduced by pertussis toxin pretreatment. Maitotoxin caused a substantial membrane depolarization of PC12 cells as assessed by the fluorescent dye bisoxonol. This effect was reduced by pretreating the cells with either nicardipine or omega-conotoxin and was almost completely abolished by the simultaneous pretreatment with both calcium antagonists. Maitotoxin stimulated inositol phosphate production in a dose-dependent manner. This effect was reduced by pretreating the cells with 1 microM nicardipine and was completely abolished in a calcium-free EGTA-containing medium. The findings on maitotoxin-induced cytosolic calcium rise and membrane depolarization suggest that maitotoxin exerts its action primarily through the activation of voltage-sensitive calcium channels, the increase of inositol phosphate production likely being an effect dependent on calcium influx. The ability of nicardipine and omega-conotoxin to inhibit the effect of maitotoxin on both calcium homeostasis and membrane potential suggests that L- and N-type calcium channel activation is responsible for the influx of calcium following exposure to maitotoxin, and not that a depolarization of unknown nature causes the opening of calcium channels.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Evidence for protein kinase C modulation of the ciliary muscle response to carbachol and desensitization.

The role of protein kinase C (PKC) in the desensitization of muscarinic receptor-mediated responses in bovine ciliary muscle was examined. Exposure of the bovine ciliary muscle to phorbol esters, used to activate PKC, resulted in antagonism of muscarinic receptor-mediated contraction. On the other hand, staurosporine, a known PKC inhibitor, caused a significant potentiation of the contractile effect induced by carbachol. Staurosporine reduced the desensitization induced by repeated additions of carbachol and completely suppressed that induced by phorbol esters. The results also indicate that desensitization mediated by phorbol esters as well as that mediated by muscarinic receptor agonists is heterologous.

Alkaloids↗

Modulation of rat skeletal muscle chloride channels by activators and inhibitors of protein kinase C.

The membrane electrical parameters and component conductances of rat extensor digitorum longus muscle fibres were studied in vitro at 30 degrees C with standard two microelectrode square pulse cable analysis in the presence of protein kinase C (PKC) activators and inhibitors. The PKC activator, 4-beta-phorbol-12,13 dibutyrate (4-beta-PDB), (2-90 nM) blocked up to 67% chloride conductance (GCl) in rat skeletal muscle fibres and induced myotonic hyperexcitability. The concentration necessary to produce a 50% block of the membrane GCl was 23 nM. The "inactive" 4-alpha-phorbol-12,13 dibutyrate had no effect at 2 microM. The blocking effect of 4-beta-PDB on GCl was prevented by preincubation of the preparations with the PKC inhibitors, staurosporine (1-5 microM) and tetrahydropapaverolone (50-100 microM). The blocking effects on membrane GCl of 4-beta-PDB and its antagonism by the inhibitors used support the concept of the involvement of PKC in regulating Cl channels of mammalian skeletal muscle fibres.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

The aging brain: protein phosphorylation as a target of changes in neuronal function.

There is evidence that senescence affects neurotransmission at different levels. In particular, this review summarizes the studies on age-dependent modifications in protein phosphorylation, which represents the final pathway in the action of transmitters and hormones at neuronal level. Cyclic AMP-dependent protein kinase and protein kinase C have been reported to be modified during aging in various cerebral areas; the changes may involve either enzyme activity or substrate availability. These findings can be related to the alterations in neurotransmitter function and synaptic efficiency observed in the senescent brain. The activity of the other types of protein kinases (tyrosine-, cGMP-, calcium/calmodulin-dependent) during aging needs to be explored. An emerging point is the role of protein phosphorylation in the transfer of membrane signals to the nucleus, for the activation or disactivation of specific genes responsible for long-term neuronal events. Along this view, alterations in protein kinase pathway during senescence would ultimately affect gene expression, resulting in long term modifications of cell function. The reviewed literature opens the perspective of restoring some of the deficits associated with senescence by modulating protein phosphorylation pathway.

Aging↗

Effect of a new cognition enhancer, alpha-glycerylphosphorylcholine, on scopolamine-induced amnesia and brain acetylcholine.

The present study investigates the effect of the administration of alpha-glycerylphosphorylcholine (alpha-GPC) on scopolamine-induced amnesia and on brain acetylcholine (ACh) levels and release in rats. The results indicate that alpha-GPC, when administered orally, reverses the amnesia caused by scopolamine in passive avoidance. The peak effect is observed using 600 mg/kg IG, 5 h before training. The effect of the drug is long lasting (up 30 h) in accordance with its pharmacokinetic characteristics. Since, alpha-GPC administered IG is cleaved within the gut mucosal cells to glycerophosphate and free choline, it is tempting to speculate that this drug acts by increasing the ACh precursor pool. This view is supported also by the observation that alpha-GPC partially counteracts the decrease of brain ACh levels elicited by scopolamine administration. The effect is observed in the hippocampus and cortex, but not in the striatum. Moreover, in ex vivo experiments, alpha-GPC is able to increase the amount of ACh released by rat hippocampus slices following potassium stimulation.

Acetylcholine↗

Evaluation of beta-endorphin/beta-lipotropin immunoreactivity content in the CSF of patients affected by deafferentation pain syndromes.

Beta-endorphin/beta-lipotropin immunoreactivity (BE/BLPH-IR) content was evaluated in the CSF of patients suffering by deafferentation pain syndromes. BE/BLPH-IR CSF concentrations of these patients were compared with those obtained in a group of patients affected by low back pain and in a control group without pain problems. No statistically significant variation in BE/BLPH-IR levels were found between controls and subjects with different types of chronic pain.

Adult↗