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Biomedical subjects

A Battistella

Publications and source records attributed to A Battistella.

14 recordsLinked to original sources

Spontaneous partial regression of low-grade glioma in children with neurofibromatosis-1: a real possibility.

At the age of 41 and 31 months, respectively, a boy and a girl affected by neurofibromatosis-1 were diagnosed with a visual pathway glioma during surveillance contrast-enhanced head magnetic resonance imaging (MRI). In the first child, the initial MRI showed that the entire optic chiasm, the intracranial tract of the left optic nerve, and hypothalamus were grossly enlarged and enhanced in the post-gadolinium T1-weighted images. Ten months later, the hypothalamic component of the lesion had regressed markedly and there were no more areas of contrast enhancement. In the second child, the initial MRI showed that the optic chiasm, the right optic tract, and geniculate body were enlarged and enhanced after gadolinium injection. At 6-month follow-up, the MRI showed that the right optic tract and the anterior aspect of the optic chiasm decreased in size and the contrast enhancement of the entire lesion was reduced dramatically. These findings, as indicated by other similar reports, confirm that spontaneous regression of visual pathway glioma is a rare but real possibility in children with neurofibromatosis-1. Therefore, clinicians need to be aware of visual pathway glioma's erratic behavior in children with neurofibromatosis-1 with special attention given to the importance of a very conservative attitude toward any type of treatment for such patients.

Child, Preschool↗

Inhibition of protein kinase activity by apomorphine.

The effect of apomorphine (1-20 microM) on protein kinase activity was studied in extracts from rat peritoneal mast cells and brain tissue. Apomorphine inhibited the cyclic AMP-dependent and the calcium-plus phosphatidylserine-dependent protein kinase activity with an IC50 between 1 and 6 microM, depending on the tissue and on the protein kinase involved. This effect might explain previous results on the apomorphine-induced inhibition of histamine release in rat peritoneal mast cells.

Animals↗

Apomorphine-induced inhibition of histamine release in rat peritoneal mast cells.

The apomorphine-induced inhibition of histamine release in rat peritoneal mast cells was studied by means of secretagogues stimulating different pathways of mast cell activation. Apomorphine inhibited the mast cell response to all releasing agents (lysophosphatidylserine plus nerve growth factor, compound 48/80, substance P, ATP, tetradecanoylphorbolacetate, melittin). The IC50 ranged from 4 microM to 24 microM at concentrations of secretagogues releasing 30-50% of mast cell histamine. However, the potency of the drug decreased at higher secretagogue concentrations. Mast cells, pretreated with apomorphine and washed, released little histamine upon stimulation. The secretory response could be partially restored on increasing the concentration of secretagogues. The results suggest that apomorphine affects a regulatory step controlling the terminal sequence of mast cell secretory activity. As indicated by the reduced potency of the drug, the control by the apomorphine-sensitive reaction loses efficiency under conditions of massive histamine release.

Adenosine Triphosphate↗

Synergism between lysophosphatidylserine and the phorbol ester tetradecanoylphorbolacetate in rat mast cells.

In rat peritoneal mast cells tetradecanoylphorbolacetate (TPA) induced a non cytotoxic histamine release in the absence of extracellular calcium. The addition of calcium prevented the TPA effect but micromolar concentrations of lysophosphatidylserine (lysoPS) converted the calcium-induced inhibition into a stimulation. Other lysophospholipids were inactive. In agreement with a mutual influence between lysoPS and TPA, minimal TPA concentrations enhanced the calcium-dependent histamine release induced by lysoPS in the presence of nerve-growth factor. It is proposed that the calcium-dependent pathway promoted by lysoPS and the activation of protein kinase C by TPA act synergically to induce histamine release from mast cells.

Animals↗

Serine phospholipids as endocoids.

Unusual phospholipid effects may occur when their distribution in the membrane is altered or when uncontrolled metabolic reactions yield elevated concentrations of their short lived derivatives. Serine phospholipids are normally buried in the internal side of plasma membrane. Upon exposure to the extracellular environment they elicit a response from selected cell populations. The interaction between these phospholipids and neuroactive compounds in rat peritoneal mast cells may indicate that serine phospholipids have a role in the nervous system during development.

Animals↗

Modulation of lysophosphatidylserine-dependent histamine release.

Apomorphine (2-30 microM) inhibits lysophosphatidyl-serine-dependent histamine release in rat and mouse peritoneal mast cells. The drug-induced inhibition is influenced by the concentration of lysophosphatidylserine. Log concentration-response curves show a surmountable type of antagonism between the two compounds.

Animals↗

Lysophosphatidylserine as histamine releaser in mice and rats.

Lysophosphatidylserine is a specific inducer of histamine release in isolated mast cells. To determine whether a similar effect is manifest in vivo, the phospholipid was injected (1-5 mg/kg i.v.) into mice and rats. A dose-dependent rise in blood histamine was observed in both animals. The several-fold increase in blood histamine occurred in the first minutes and was followed by a slower decline toward normal values. A second dose of lysophosphatidylserine was without effect. Systemic manifestations (depression, hypothermia, hypotension) were associated with the increased blood histamine level. When the tissue histamine stores accessible to lysophosphatidylserine were previously decreased by repeated phospholipid injections, no systemic symptoms occurred. Mobilization of carbohydrate reserves was also manifest during the action of lysophosphatidylserine. Prior treatment with compound 48/80 induced sustained refractoriness to lysophosphatidylserine. Structure-activity relationship demonstrated that the property to induce histamine release was linked to the structure of serine head group. Thus, other natural phospholipids or lysophospholipids were inactive. It is concluded that in analogy with the effect seen in vitro lysophosphatidylserine produces in vivo release of mast cell histamine.

Adrenalectomy↗

Biochemical changes of rat brain membranes with aging.

Modification of membrane composition and enzymatic activities both in total brain homogenate and purified synaptic plasma membrane of 3 and 24 month old rats has been investigated. Protein, cholesterol and phospholipid content and (Na+, K+)ATPase and 2',3' cyclic nucleotide phosphohydrolase activities were determined. The major changes occurred in the whole homogenate where a general increase in total protein and cholesterol content with age and a significant increase of the cholesterol/phospholipids molar ratio has been detected. In S.P.M. aging process induced a decrease of protein, cholesterol and phospholipids content associated with an increased membrane viscosity and a decrease of delta E. These data are consistent with a change in the structural organization and in the distribution pattern of different cell population in the aging brain. A possible artifactual effect of freezing on the reported parameter is also discussed.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Temporal sequence of changes in central noradrenergic system of rat after prolonged antidepressant treatment: receptor desensitization and neurotransmitter interactions.

It has been shown that different receptor components may be involved in the adaptive changes occurring in noradrenergic (NE) neurones after prolonged periods of exposure to antidepressant drugs. In this report the desensitization of NE-coupled adenylate cyclase (NE-AC). beta-adrenergic receptors and [3H]imipramine ([3H]-IMI) or [3H]desipramine ([3H]-DMI) binding sites have been temporally correlated with in vivo changes of NE utilization. Normetanephrine (NMN) was measured as indicator of NE synaptic events involved in antidepressant action. Concentrations of normetanephrine were increased after acute desipramine (DMI), viloxazine and mianserin administration. Following 3 days of treatment, the antidepressant-induced increase of normetanephrine became tolerant and NE neurones were resistant to the antidepressant effect until the 15th day of treatment. After two weeks, DMI elicited a significant decrease in the content of normetanephrine. A different pattern of changes has been found in the temporal modification of [3H]-IMI recognition sites, beta-adrenoceptors and NE-AC activity after chronic DMI treatment. Binding sites and receptors were down regulated after 10 days of treatment preceding the decrease in normetanephrine content. No down-regulation was observed in [3H]-DMI binding sites. Studies on the effects of antidepressants during brain maturation revealed that the mechanisms which cause desensitization of beta-receptors and [3H]-IMI binding sites appear in the early stages of postnatal life. Since [3H]-IMI and [3H]-DMI recognition sites have been shown to be located on serotonergic (5-HT) and noradrenergic neurones respectively, the interactions between NE and 5-HT neurones could represent possible mechanisms implicated in receptor desensitization. The experiments presented involving lesions of 5-HT neurones have clearly demonstrated that NE release in rat cerebral cortex is under a tonic serotonergic influence. Alterations in the chemico-physical properties of the synaptic membranes might be also taken in consideration for the mechanisms underlying receptor modulation. In fact, evidence is provided that in neural tissue phospholipid methylation can be affected. In conclusion, the temporal sequence of changes in cortical noradrenergic neurones, after chronic antidepressant treatment, has demonstrated that integrated mechanisms are operative for the function of the overall system.

Animals↗

Phospholipid methylation increases [3H]diazepam and [3H]GABA binding in membrane preparations of rat cerebellum.

The effect of phospholipid methylation on both [3H]diazepam and [3H]GABA ( [3H]gamma-aminobutyric acid) binding to crude synaptic plasma membrane from rat cerebellum has been studied. S-Adenosylmethionine (SAM) stimulates [3H]methyl group incorporation into membrane phospholipids and enhances [3H]diazepam binding by increasing the apparent Bmax. Conversely, inhibition of [3H]methyl group transfer from [3H]SAM to phospholipids by preincubation with SAM at 0 degrees C or with SAH abolishes the increase of binding. After preincubation with SAM, analysis of the GABA binding reveals the presence of binding sites with high affinity, a property absent in control membranes preincubated without SAM. Among the neurotransmitter bindings tested, only those of GABA and benzodiazepine in the cerebellum and beta-adrenergic ligands in the cerebral cortex are enhanced upon stimulation of phospholipid methyltransferase activity. [3H]Dihydromorphine, [3H]dihydro-alpha-ergokryptine and [3H]spiroperidol bindings are not affected by SAM. The present data suggest an involvement of phospholipid methylation in regulation of both [3H]GABA and [3H]-diazepam binding.

Animals↗

Age dependent changes in the methylation of rat brain phospholipids.

Phospholipid methyltransferase I and II enzymes methylate phosphatidylethanolamine three times to form phosphatidylcholine. The activity of these two enzymes was determined in synaptosome-enriched fractions from rats 1, 3, 7, 15 and 21 months old. The activity of phospholipid methyltransferase I was significantly greater in 7-, 15- and 21-month-old rats than in 1- and 3-month-old rats. In contrast, the activity of phospholipid methyltransferase II did not change with age. These changes in methyltransferase activity with increasing age may be related to changes in beta-receptor function with increasing age.

Aging↗