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W F Gattaz

Publications and source records attributed to W F Gattaz.

At least 19 recordsLinked to original sources

The role of phospholipase A2 in neuronal homeostasis and memory formation: implications for the pathogenesis of Alzheimer's disease.

Phospholipase A(2) (PLA(2)) is a key enzyme in cerebral phospholipid metabolism. Preliminary post-mortem studies have shown that PLA(2) activity is decreased in frontal and parietal areas of the AD brain, which is in accordance with recent (31)P-Magnetic Resonance Spectroscopy evidence of reduced phospholipid turnover in the pre-frontal cortex of moderately demented AD patients. Such abnormality may also be observed in peripheral cells, and reduced PLA(2) activity in platelet membranes of AD patients, and correlates with the severity of dementia. In rat hippocampal slices, PLA(2) has been implicated in mechanisms of synaptic plasticity. In adult rats, the stereotaxic injection of PLA(2) inhibitors in the CA1 area of hippocampus impaired, in a dose-dependent manner, the formation of short- and long-term memory. Additionally, such inhibition resulted in a reduction of the fluidity of hippocampal membranes. In primary cultures of cortical and hippocampal neurons, the inhibition of PLA(2) precluded neurite outgrowth, and the sustained inhibition of the enzyme in mature cultures lead to loss of viability. Taken together, these findings reinforce the involvement of PLA(2) enzymes in neurodevelopment and neurodegeneration processes, and further suggest that reduced PLA(2) activity, probably reducing membrane phospholipids breakdown, may contribute to the memory impairment in AD.

Alzheimer Disease↗

Requirement of hippocampal phospholipase A2 activity for long-term memory retrieval in rats.

In rats, the inhibition of phospholipase A(2) (PLA(2)) in hippocampus was reported to impair memory acquisition. In the present study we investigated in rats whether PLA(2) inhibition in hippocampus is also related to impairment of memory retrieval. Rats were bilaterally implanted with cannulae in hippocampal CA1 region. After recovery, animals were submitted to one-trial step-down inhibitory avoidance task and tested for long-term memory (LTM) 24 h later. Before test session, animals received infusions of vehicle or the PLA(2) inhibitor PACOCF(3). Inhibition of PLA(2) activity impaired LTM retrieval. Memory impairment was fully reversed once PLA(2) activity was recovered. Moreover, LTM retrieval per se increased PLA(2) activity. To our knowledge, we demonstrated for the first time that PLA(2) activity is required for memory retrieval. Because reduced PLA(2) activity has been found in Alzheimer's disease brains, the present results may be relevant to clarify at least part of the biology of this disorder.

Alzheimer Disease↗

Modulation of phospholipase A2 activity in primary cultures of rat cortical neurons.

In neurons, phospholipase A2 (PLA2) plays a central role in the regulation of membrane phospholipid metabolism. We have addressed the pharmacological modulation of PLA2 in primary cultures of rat cortical neurons. Inhibition curves were obtained in 4 day-in-culture neurons treated for 30 minutes with either the dual PLA2 inhibitor methyl arachidonyl fluorophosphonate (MAFP), or the iPLA2 inhibitor bromoenol lactone (BEL). Full inhibition was achieved with 100 and 250 microM of MAFP, or 10 and 20 microM of BEL. Conversely, a dose-dependent activation of PLA2 was obtained with 10-20 microg/ml of melitin. PLA2 inhibition with MAFP or BEL was not acutely toxic for cultured neurons. However, sustained inhibition of the enzyme precluded the development of neurites, and resulted in long-term loss of neuronal viability. We present a model of pharmacological challenge of PLA2 in vitro, which can be further used to address the involvement of the enzyme in neurodevelopment and neurodegeneration models.

Animals↗

Inhibition of phospholipase A2 activity reduces membrane fluidity in rat hippocampus.

Phospholipase A2 (PLA2) is a family of key enzymes in membrane phospholipid metabolism. In rats, the inhibition of PLA2 activity in the hippocampus was found to impair memory formation. Because memory function is largely dependent on the fluidity of brain membranes, we performed the present study to investigate the effects of in vivo PLA2 inhibition (with PACOCF3) on the fluidity of hippocampal membranes from rats trained in a learning task. Hippocampal tissue from rats injected with 100 microM PACOCF3 showed reduced membrane fluidity as compared to vehicle (p < 0.01), and the reduction of membrane fluidity was highly correlated with PLA2 inhibition (r = .76, p < 0.03). This finding is of interest because reduction of brain membrane fluidity impairs memory formation and both decreased PLA2 activity and reduced membrane fluidity have been reported in the brain from patients with Alzheimer's disease.

Animals↗

Fluoxetine versus trimipramine in the treatment of depression in geriatric patients.

INTRODUCTION: Fluoxetine, a selective serotonin reuptake inhibitor (SSRI), and trimipramine, a tricyclic antidepressant (TCA), were compared in terms of efficacy and tolerability in a six-week, parallel group, double-blind pilot study in 41 geriatric patients with major depression (61 - 85 years old). METHOD: The Hamilton Rating Scale for Depression (HAMD-17), the Montgomery-Asberg Rating Scale (MADRS), the Adjective Mood Scale (Bf-S), the Clinical Global Impression (CGI), and the Patients Global Impression (PGI) were used to measure changes in depressive symptoms. RESULTS: Improvement with treatment was found on all scales. Efficacy and tolerability were similar in both groups. No statistically significant differences were found. CONCLUSION: These findings suggest that fluoxetine and trimipramine are comparable in terms of efficacy and tolerability in the treatment of major depression in geriatric patients.

Aged↗

Platelet phospholipase A(2) activity in Alzheimer's disease and mild cognitive impairment.

Phospholipase A(2) (PLA(2)) controls the metabolism of phospholipids in cell membranes. In the brain, PLA(2) influences the processing of the amyloid precursor protein (APP) and thus the production of the amyloid-beta peptides (Abeta), which are the major components of the senile plaques in Alzheimer's disease (AD). Reduced PLA(2) activity has been reported in brain and in platelets of AD patients. In the present study we investigated PLA(2) activity in platelets from 21 AD patients as compared to 17 healthy elderly controls and 11 individuals with mild cognitive impairment (MCI). Subjects were cognitively assessed by the Mini-Mental State Examination (MMSE) and the CAMDEX schedule. Platelet PLA(2) activity was determined by radio-enzymatic assay, which mainly detected a calcium-independent form of the enzyme present also in the brain (iPLA(2)). PLA(2) activity was significantly lower in AD than in controls (p < 0.001). Mean PLA(2) activity in MCI individuals was between the values of AD patients and controls, with a subgroup showing PLA as low as the lowest AD patients, but the differences from MCI were not significant from AD and control groups. Lower PLA(2) activity was significantly correlated with a worse cognitive performance both at the MMSE (p = 0.001) and the cognitive sub-scale of the CAMDEX inventory (p = 0.002). Our data replicate previous findings of reduced platelet PLA(2) activity in AD. Both reduced PLA(2) activity and the correlation with impaired cognition were also reported in brain tissue of AD patients, suggesting thus that the present determinations in platelets may be related to a reduction in the brain. In the brain the inhibition of PLA(2) inhibits the physiological secretion of the APP, a mechanism that increases Abeta formation. Further longitudinal studies should investigate whether those MCI individuals with the lowest PLA(2) values in platelets would be at a higher risk to develop AD during a longitudinal follow up.

Aged↗

Olanzapine versus flupenthixol in the treatment of inpatients with schizophrenia: a randomized double-blind trial.

OBJECTIVE: The atypical antipsychotic olanzapine has extensively been compared with haloperidol, whereas studies vs. other (conventional) neuroleptics are scarce. This exploratory double-blind 4-week study was designed to compare the efficacy and the safety of olanzapine (OLA) and flupenthixol (FLU) which have recently been considered as a "partially atypical" antipsychotics. METHODS: Twenty-eight inpatients with schizophrenia (DSM-IV) were randomly assigned for treatment with OLA (N = 15, 5-20 mg/d) or FLU (N = 13, 5-20 mg/d). The Brief Psychiatric Rating Scale (BPRS) and the Negative Symptoms Rating Scale (NSRS), plus the Patient Global Impression (PGI) and Clinical Global Impression (CGI) scales, were used to assess the efficacy of both compounds; safety was determined by using the Simpson Angus Scale (SAS) and the Abnormal Involuntary Movement Scale (AIMS) and by assessing treatment-emergent adverse events. Non-parametric statistics were applied. RESULTS: BPRS and NSRS scores improved in both groups (exploratory tests; all p < or = 0.02). Similar results were observed for CGI-Severity, CGI- and PGI-Improvement. There were no significant group differences. Responder rates (at least 40 % decrease in BPRS total) were 9/13 OLA patients (69 %) and 9/12 FLU patients (75 %). EPS events were reported only in the FLU group (p < 0.01); FLU patients needed significantly more anticholinergic medication. Weight gain was higher in OLA patients (p < 0.01). Overall, fewer patients with adverse events were observed in the OLA group (p = 0.04). No significant changes were noted on SAS and AIMS scores. CONCLUSION: Findings from this study suggest that overall and negative symptomatology improved in both treatment groups, while the safety and tolerability profiles differed for both substances.

Adult↗

Topographic abnormality of slow cortical potentials in schizophrenia.

A recent study from our laboratory has provided evidence for the generation of slow potentials occurring in anticipation to task-performance feedback stimuli, in multiple association cortical areas, consistently including two prefrontal areas. In the present study, we intended to determine whether these slow potentials would indicate some abnormality (topographic) in schizophrenic patients, and thus serve as an indication of abnormal association cortex activity. We recorded slow potentials while subjects performed a paired-associates memory task. A 123-channel EEG montage and common average reference were used for 20 unmedicated schizophrenic (mean duration of illness: 11.3 +/- 9.2 years; mean number of previous hospitalizations: 1.2 +/- 1.9) and 22 healthy control subjects during a visual paired-associates matching task. For the topographic analysis, we used a simple index of individual topographic deviation from normality, corrected for absolute potential intensities. Slow potentials were observed in all subjects. Control subjects showed a simple spatial pattern of voltage extrema (left central positive and right prefrontal negative), whereas schizophrenic patients presented a more complex, fragmented pattern. Topographic deviation was significantly different between groups (P<0.001). The increased topographic complexity in schizophrenics could be visualized in grand averages computed across subjects. Increased topographic complexity could also be seen when grand averages were computed for subgroups of patients assembled either according to task-performance (high versus low) or by their scores on psychopathological scales. There was no significant correlation between topographic deviation and psychopathology scores. We conclude that the slow potential topographic abnormalities of schizophrenia indicate an abnormality in the configuration of large-scale electrical activity in association cortices.

Adult↗

Phospholipase A2 activity in rat embryonic brain and in primary cultures of cortical neurons.

We investigated, with the aid of a radio-enzymatic method, the developmental changes in the activity of 85 kDa calcium-dependent cytosolic phospholipase A(2) (cPLA(2)) in pre-term embryonic rat brain and in primary cultures of cortical neurons. PLA(2) activity was highest in the brains of 18 day embryos (E18) and gradually decreased toward birth (E18 through E21). No significant differences were found regarding cPLA(2) activity in different topographies, namely hippocampus, cortex, and total brain. In primary cultures of E18/E19 cortical neurons, cPLA(2) activity was higher than the respective embryonic tissue activity, straight from early development. In vitro cPLA(2) activity peaked on the 4th day in culture, and decreased after the six days of incubation, when the cultures became mature. This result reinforces previous evidence that cPLA(2) plays an important role in the early development of the nervous system, and further suggests that it may be implicated in neurodevelopmental processes and in in vitro neuronal survival. We believe that we have produced a useful model for the tissue culture study of PLA(2) metabolism and biochemistry, which can be further addressed to the investigation of the biology of neurodegenerative and neuropsychiatric disorders.

Animals↗

Multidimensional analysis of the concentrations of 17 substances in the CSF of schizophrenics and controls.

The concentrations of 17 substances were determined in the cerebrospinal fluid (CSF) of 28 paranoid schizophrenic patients and 16 controls. Results were standardized and simultaneously evaluated through Multidimensional Scaling (MDS). The full data set can be considered as a cloud of points consisting of the 44 subjects in the 17-dimensional parameter space. MDS seeks a two-dimensional representation of this 17-dimensional cloud of points, while retaining as much as possible the distances between the subjects. The two-dimensional reduction of the 17 CSF parameters correctly separated 15 of 16 controls from the schizophrenic subjects. This indicates that a biological heterogeneity between schizophrenic and nonschizophrenic subjects can be detected by the simultaneous analysis of the CSF concentrations of substances related directly or indirectly to the neuronal activity in the brain.

Adult↗

Lack of association between schizophrenia and the phospholipase-A(2) genes cPLA2 and sPLA2.

The well-established role of genetic factors in the etiology of schizophrenia together with reports of allelic association with cPLA2, a phospholipase-A(2) gene, a reported increase of phospholipase-A(2) activity, and the phospholipase-A(2) hypothesis of Horrobin et al. [1995: Med Hypotheses 45:605-613] strongly support cPLA2 (PLA2G4A) and sPLA2 (PLA2G1B) as candidate genes for schizophrenia. In search for allelic association between these phospholipase-A(2) genes and schizophrenia, two samples of Chinese and European origins, in total 328 unrelated schizophrenic patients and their parents, were investigated using Falk and Rubinstein's haplotype relative risk method. Both genes showed marginally significant evidence for association in the total sample (P <or= 0.05), which, however, did not survive the Bonferroni correction for multiple testing. In conclusion, our results do not provide support for the phospholipase-A(2) hypothesis of schizophrenia. Additional studies will be necessary to rule out a possible confounding effect of niacin sensitivity as postulated by Hudson et al. [1999: Biol Psychiatr 46:401-405].

Adolescent↗

Effects of antipsychotic treatment on membrane phospholipid metabolism in schizophrenia.

Several studies have shown an increased membrane phospholipid turnover in brain and blood cells of schizophrenic patients. However the specificity of these findings for schizophrenia and the effects of longterm antipsychotic treatment had yet to be demonstrated. In the present study we measured the concentrations of phospholipids in platelet membranes from 67 neuroleptic-free schizophrenic patients compared to both healthy and psychiatric controls, followed by repeated measurements during a 6 months antipsychotic treatment period. At baseline, levels of the main phospholipid components phosphatidylcholine (PC) and phosphatidylethanolamine (PE) were decreased and lysophosphatidylcholine (LPC), a major breakdown product of phospholipid metabolism, was increased in schizophrenic patients compared to healthy and to psychiatric controls, suggesting a specificity of the findings for schizophrenia. During the first 3-weeks on antipsychotic drug treatment LPC levels decreased to control values, but increased again during the following 6 months, reaching significantly higher levels than controls at the end of this period. Thus, at least in peripheral cells an increased breakdown of phospholipids in schizophrenia appears to be present during the acute episode, being influenced only by initial antipsychotic treatment, but without evidence of a long lasting treatment effect on membrane metabolism.

Adult↗

Differential effects of trimipramine and fluoxetine on sleep in geriatric depression.

The effects of trimipramine, a tricyclic antidepressant (TCA) with atypical pharmacological properties, and fluoxetine, a selective serotonine reuptake inhibitor (SSRI), were compared in an exploratory analysis using mood and polysomnographic parameters during a six-week double-blind trial in 19 depressed geriatric patients. In sleep EEG measures, trimipramine demonstrated clear-cut effects on sleep measures resulting in higher values for sleep efficiency, total sleep time, stage 2 sleep, and shorter wake time. Under fluoxetine treatment, the proportion of REM sleep was decreased and REM latency was lengthened, whereas no change in REM sleep parameters was observed in the trimipramine group. The present data suggest that early antidepressant effects of medication occur independently of drug-induced changes in objective measures of sleep, i.e. suppression of REM sleep.

Affect↗

[Antipsychotics and phospholipid metabolism in schizophrenia].

To date numerous in-vivo (31)P-MRS and in-vitro studies in schizophrenic patients have been able to demonstrate changes in their membrane phospholipid metabolism, which might be relevant for the cause and the therapeutic responsiveness of this disorder. Thus far, however, only limited studies exist regarding the specificity of these findings for schizophrenia and the effect of antipsychotic medication. The present study examined the composition of membrane phospholipids in platelets of 67 neuroleptic-free schizophrenic patients compared to healthy and psychiatric controls. In a subsample of the schizophrenic patients we determined the effect of antipsychotic treatment on the phospholipid metabolism during six-months follow up. While untreated patients showed a decrease in major membrane phospholipid components, i.e. phosphatidylcholine and phosphatidylethanolamine, when compared to control subjects, as well as an increase in their breakdown-product lysophosphatidylcholine (LPC), there was a significant reduction in LPC during three weeks of pharmacotherapy with haloperidol. After six months treatment with different antipsychotics some divergent effects on phospholipid metabolism in schizophrenic patients could be demonstrated. While in the long-term course LPC remained decreased under continuous therapy with typical neuroleptics, patients being treated with the atypical drug zotepine showed an increase in LPC compared to their baseline level before therapy. Thus, specific mechanisms of the different antipsychotic therapies on phospholipid metabolism might serve to explain the divergent findings of (31)P-MRS in medicated patients.

Adult↗

Olanzapine as alternative therapy for patients with haloperidol-induced extrapyramidal symptoms: results of a multicenter, collaborative trial in Latin America.

Conventional antipsychotic agents can induce extrapyramidal symptoms (EPS) that may be alleviated by switching patients to novel agents such as olanzapine. Patients with schizophrenia and related disorders (ICD-10) who were taking haloperidol (N = 94; mean dose = 12.7 mg/day) and had EPS (Simpson-Angus Scale [SAS] > 3) were directly switched to 6 weeks of open-label olanzapine treatment (mean dose = 11.4 mg/day). There were significant mean improvements (p <0.001 for all measurements) from baseline to endpoint on the SAS (-9.69+/-5.33; percentage change, 87.2%), the Barnes Akathisia Scale (-1.00+/-1.19; percentage change, 82.5%), and the Abnormal Involuntary Movement Scale (-1.48+/-2.89; percentage change, 81.1%), and anticholinergic use decreased from 47.9% to 12.8% (mean baseline to endpoint change: -1.52+/-1.91-mg equivalents of benztropine; p < 0.001). Significant mean baseline to endpoint improvements (p < 0.001 for all measurements) were observed on the Positive and Negative Syndrome Scale (PANSS; -25.28+/-18.67; percentage change, 30.3%), the PANSS-extracted Brief Psychiatric Rating Scale (0-6 scale, -13.41+/-10.16; percentage change, 54.4%), and the Clinical Global Impressions Severity scale (-1.16+/-1.19; percentage change, 26.4%). Spontaneously reported treatment- emergent adverse events with a greater than 5% incidence were somnolence (16.0%), increased appetite (14.9%), weight gain (11.7%), headache (8.5%), anxiety (7.4%), dizziness (6.4%), and insomnia (5.3%). Criteria for a successful switch were met by 90.5% of patients. Psychotic symptom exacerbation was experienced by 30.9% of patients at any time during the study and by 11.7% of patients at endpoint. Results suggest that a direct switch to olanzapine is a therapeutic option when patients with haloperidol-induced EPS are unable to tolerate a more gradual switch.

Adolescent↗

Decreased S100-beta protein in schizophrenia: preliminary evidence.

The S100 proteins are a family of calcium-binding proteins found in the central and peripheral nervous systems of vertebrates. S100beta, the most abundant member of this family in the CNS, mediates calcium signal transduction, and shows neurotrophic, gliotrophic and mitogenic actions that influence the development and maintenance of the nervous system. Another member of the S100 family (S100A10) was found to modulate phospholipid turnover by inhibiting the activity of enzyme phospholipase A2 (PLA2). We determined the concentration of S100beta protein in the plasma of 23 medicated schizophrenic patients and 23 healthy controls. S100beta protein accounts for 96% of the total S100 in the brain. Schizophrenic patients showed reduced S100beta concentrations (p=0.003), and this finding was not related to clinical variables or to intake of antipsychotic medication. Decreased S100beta could be related to the findings of increased PLA2 activity and to brain maldevelopment in schizophrenia. These results are discussed further with respect to the role of adenosine in S100beta release.

Adult↗

The effect of rivastigmine on sleep in elderly healthy subjects.

Previous research has shown that acetylcholinesterase inhibitors may affect REM sleep, however, results are inconclusive. From the present findings it is concluded that the effects of rivastigmine, a reversible acetycholinesterase inhibitor, on REM sleep are more pronounced in the elderly where we found REM latency to be significantly reduced. This may be explained by better bioavailability and/or by reduced stability of the circadian rhythmicity in elderly individuals. Because rivastigmine is used in the treatment of Alzheimer's disease, further research investigating the relationship between the REM enhancing properties of rivastigmine and cognitive functioning seems promising.

Aged↗

Diurnal variability of orofacial dyskinetic movements.

OBJECTIVE: Instrumental methods to measure tardive dyskinesia (TD) have been introduced in the last few years to try to eliminate the differences in inter-rater reliability. After eliminating variations attributed to the use of different raters, it is clear that TD frequently shows fluctuations in severity contributing to a low test-retest reliability. In the present study the diurnal variability of dyskinetic movements was explored by a computerized technique using digital imaging processing to measure orofacial movements. METHOD: Ten patients with persistent tardive dyskinesia were assessed three times a day once a week for four consecutive weeks. RESULTS: Four patients had significant diurnal variations in the severity of dyskinetic movements and six did not have significant variations. The period of time between waking and the assessment, the severity of dyskinetic movements, and smoking were significantly different between these two groups. CONCLUSION: Diurnal variations, particularly in relation to sleeping and smoking patterns, may need to be taken into account during longitudinal studies of tardive dyskinesia.

Adult↗