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Biomedical subjects

D Pickar

Publications and source records attributed to D Pickar.

At least 19 recordsLinked to original sources

Effects of alprazolam on pituitary-adrenal and catecholaminergic responses to metabolic stress in humans.

Concurrent effects of benzodiazepines on stress-induced activation of the three classical "stress" systems: pituitary-adrenal, adrenomedullary, and sympathoneural systems have not been extensively investigated in humans. In the present study, the effects of alprazolam (1.5 mg) on plasma levels of adrenocorticotropin hormone (ACTH), epinephrine, norepinephrine, dihydroxyphenylglycol (DHPG, the intraneuronal metabolite of norepinephrine), and mood states were examined in 10 healthy volunteers undergoing glucoprivic stress. Glucoprivic stress was induced by intravenous administration of the glucose analog, 2-deoxyglucose (2DG), at a dose (50 mg/kg) that impairs cellular glucose metabolism and produces a state comparable to hypoglycemia. Alprazolam and 2DG were administered in a double-blind, placebo-controlled manner. 2DG produced robust elevations in plasma ACTH and epinephrine levels, modest elevations in plasma norepinephrine levels, and decreases in plasma DHPG levels. Alprazolam significantly attenuated the 2DG-induced increases in plasma ACTH and epinephrine, but did not significantly effect plasma norepinephrine and DHPG. These data suggest that benzodiazepines attenuate metabolic stress-induced activation of the pituitary-adrenal and adrenomedullary systems but do not effect 2DG-related effects on peripheral sympathoneural function. The possible mechanisms involved are discussed.

Adrenocorticotropic Hormone

Clinical and biologic response to clozapine in patients with schizophrenia. Crossover comparison with fluphenazine.

Twenty-one patients with schizophrenia who met criteria for neuroleptic treatment resistance or intolerance participated in a crossover, placebo-controlled, double-blind comparison of long-term typical neuroleptic and clozapine treatment. Clozapine significantly reduced total as well as positive and negative symptoms in comparison with both fluphenazine and placebo. Of the 21 patients, eight (38%) showed clozapine superiority on the basis of prospective response criteria. High levels of extrapyramidal side effects during fluphenazine treatment and later onset of illness were clinical predictors of clozapine superiority. Clozapine and fluphenazine equally reduced plasma homovanillic acid levels in comparison with placebo, although fluphenazine but not clozapine increased plasma prolactin level. A striking biologic difference between clozapine and fluphenazine was clozapine's enhancement of indexes of noradrenergic activity. Superior clozapine response was predicted by low ratios of cerebrospinal fluid homovanillic acid to 5-hydroxyindoleacetic acid, consistent with the notion that balance between dopaminergic and serotoninergic systems is important for clozapine's mechanism of action.

Adult

Plasma levels of catecholamines and corticotrophin during acute glucopenia induced by 2-deoxy-D-glucose in normal man.

Acute cellular glucopenia after 2-deoxy-D-glucose administration profoundly stimulates hypothalamic-pituitary-adrenocortical and adrenomedullary activity. Whether glucopenia stimulates sympathoneural release of noradrenaline is unclear. We studied 20 healthy subjects who received 2-deoxy-D-glucose (50 mg/kg in 100 ml isotonic saline) or isotonic saline (100 ml) i.v. for 30 min on each of 2 test days. Heart rate and blood pressure were measured with antecubital venous blood obtained via an indwelling catheter for assays of plasma catecholamines (noradrenaline; adrenaline; dihydroxyphenylalanine; dihydroxyphenylglycol; and dihydroxyphenylacetic acid), corticotrophin, cortisol, and glucose. 2-deoxy-D-glucose decreased diastolic blood pressure by 20% (from 69 +/- 2 to 55 +/- 2 mmHg) and increased adrenaline levels by 30-fold [21 +/- 6 (SEM) to 634 +/- 73 pg/ml], corticotrophin by sevenfold (5.1 +/- 1.2 to 35.8 +/- 4.9 pg/ml), glucose and cortisol by two-fold (82 +/- 5 to 163 +/- 9 mg/dl and 15 +/- 2 to 31 +/- 2 micrograms/dl), and noradrenaline by about 30% (224 +/- 15 to 295 +/- 24 pg/ml, p < 0.05), whereas plasma dihydroxyphenylglycol levels decreased (765 +/- 56 to 628 +/- 42 pg/ml). Small decreases in dihydroxyphenylalanine and dihydroxyphenylacetic acid levels after 2-deoxy-D-glucose did not differ from those after saline. Responses of adrenaline levels were positively correlated with those of noradrenaline (r = 0.47, p < 0.05) and glucose (r = 0.45, p = 0.06), but not of corticotrophin.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone

Maladaptive anticipatory saccades in schizophrenia.

We compared the saccades made by 8 neuroleptic-treated and 7 drug-free schizophrenic inpatients with those made by 11 normal controls during two eye movement tasks. The first task was designed to elicit visually guided but not internally guided saccades. The second task was designed so that optimal performance required saccades be guided on the basis of an internal representation of target behavior. During the first task, schizophrenics made visually guided saccades that were as accurate as those made by control, but both drug-free and neuroleptic-treated schizophrenics made intrusive saccades at a significantly higher rate than control subjects. Most of these maladaptive saccades appeared to be premature attempts to anticipate target jump. During the second eye movement task, which for optimal performance required use of an internal representation to guide eye movements, most patients learned to anticipate target jump as well as controls. However, neuroleptic-treated patients made significantly smaller adaptive anticipatory saccades than either drug-free schizophrenic patients or normal subjects. These finding are discussed as they relate to the prefrontal cortex-basal ganglia circuits involved in the regulation of behavior by representational knowledge and the idea that the abnormal anticipatory saccades we observed represent a failure in the sensorimotor gating of information derived from internal representations.

Adult

Computed tomography measurements of brain density in Schizophrenia.

Although previous studies have reported differences in computed tomography (CT) scan attenuation values between patients with schizophrenia and controls, interpretation of these findings has been hindered by methodological shortcomings such as the failure to control for head size, scanner calibration differences, and other confounding variables. In the present study of CT attenuation values in multiple brain regions in 20 patients with chronic schizophrenia and an equal number of age- and sex-matched normal subjects we controlled for head size and normalized the attenuation values for each scan to an internal standard. No significant differences emerged between the patients with schizophrenia and the controls. However, in the controls only, the mean density of white matter in the left frontal area was significantly higher (t = -2.83, p = 0.01) than that in the right. The results, although possibly suggestive of deviant lateralization in schizophrenia, raise questions about the sensitivity and validity of regional CT attenuation values in detecting subtle anatomic abnormalities in patients with this illness.

Adult

National Institute of Mental Health longitudinal study of chronic schizophrenia. Prognosis and predictors of outcome.

We performed a longitudinal study of chronic schizophrenic patients who were hospitalized for research purposes at the National Institute of Mental Health (NIMH) Intramural Program in the 1970s and early 1980s. We assessed present course, outcome and predictor data from the initial cohort of 58 young chronic schizophrenic patients who were followed up for 2 to 12 years following their NIMH index hospitalization. At follow-up, the sample showed substantial functional impairment and levels of symptoms with only about 20% of the sample demonstrating a good outcome. In addition, strong intercorrelation was noted among the symptom and functioning indexes at follow-up. Moreover, neuropsychologic tests of frontal cortical functioning were significantly correlated with outcome levels of negative symptoms and social functioning but not with levels of positive symptoms. During the period from the index hospitalization to the follow-up assessment, 78% of the sample suffered a relapse, 38% attempted suicide and 24% had episodes of major affective illness. Furthermore, levels of positive and negative symptoms ascertained when patients received optimal neuroleptic treatment during the index hospitalization significantly predicted outcome levels of symptoms and functioning and time spent hospitalized during the follow-up period. In contrast, levels of index positive and negative symptoms ascertained during the drug-free state did not predict outcome symptoms or functioning. These data suggest that treatment response is a critical predictor variable. We examined the implication of these data for the course of illness in schizophrenics.

Adult

The acute effects of central- and peripheral-acting dopamine antagonists on plasma HVA in schizophrenic patients.

The short-term effects of fluphenazine on plasma HVA concentrations were compared with the effects of fluphenazine and concurrent administration of debrisoquin, a monoamine oxidase inhibitor which does not cross the blood brain barrier and is used to enhance the CNS contribution to circulating plasma HVA concentrations. Fluphenazine significantly increased plasma HVA with or without debrisoquin 24 hours following the initiation of treatment. Domperidone, a butyrophenone dopamine antagonist which acts only in the peripheral nervous system, failed to alter plasma HVA concentrations. These data suggest that the acute effects of neuroleptic drugs on plasma HVA concentrations are dependent upon interaction with CNS dopaminergic systems and provide additional support for the use of plasma HVA as a reflection of CNS dopamine system activity in clinical studies.

Adult

Correlation of Wisconsin Card Sorting Test performance with eye tracking in schizophrenia.

The authors studied the relationship between performance on the Wisconsin Card Sorting Test and on the Trailmaking-B test and measures of smooth pursuit eye movements in 12 patients with chronic schizophrenia and 12 normal volunteers. They found that performance on the Wisconsin Card Sorting Test was significantly correlated with measures of smooth pursuit eye movements in schizophrenic patients but not in normal subjects. Trailmaking-B scores, however, were unrelated to smooth pursuit eye movements in either group.

Adult

Benzodiazepines in the treatment of schizophrenia: a review and reappraisal.

OBJECTIVE: Benzodiazepines, either alone or added to neuroleptics, have been studied extensively as treatments for schizophrenia, but no consensus regarding their efficacy has been reached. The authors review the double-blind trials in the literature and relate the findings to the neurobiology of benzodiazepine actions. METHOD: The clinical review included all double-blind studies through 1989 that could be identified by means of Index Medicus and computer-assisted searches and by the cross-referencing of articles. The findings from the 14 studies of benzodiazepines used alone and the 16 studies of adjunctive therapy are presented separately. RESULTS: The studies reviewed suggest that 1) response is highly variable, and about one-third to one-half of patients improve; 2) benzodiazepines are potentially most useful as adjuncts to neuroleptics in the acute management of psychotic agitation, although actual antipsychotic effects have also been observed in some patients; 3) relatively higher doses of benzodiazepines may be associated with better response; and 4) therapeutic effects, when seen, develop rapidly but diminish after several weeks in some patients. The authors explore the neurobiological bases of benzodiazepine action, which presumably underlie their efficacy in schizophrenia and may help explain the variability of response. CONCLUSIONS: Future research on benzodiazepines in the treatment of schizophrenia should focus on features that predict response, the relation of dopamine or other neurotransmitter systems to therapeutic effects, the schizophrenic symptoms most amenable to benzodiazepine treatment, changes in neuroleptic dose during benzodiazepine augmentation, the role of benzodiazepines in maintenance therapy, and the optimal characteristics of benzodiazepine treatment.

Antipsychotic Agents

Effects of the acute administration of caffeine in patients with schizophrenia.

Caffeine, 10 mg/kg, was administered to 13 schizophrenic patients in a double-blind placebo-controlled study of its behavioral effects. Some measures of psychopathology were significantly increased: Brief Psychiatric Rating Scale (BPRS) total, BPRS subscales thought disorder, unusual thought content, and euphoria-activation, and several individual BPRS items. Nurses' Bunney-Hamberg ratings of psychosis and mania, comparing the day before with the day after pharmacological challenge, increased significantly. Compared to placebo, caffeine also produced significant increases of diastolic blood pressure and cortisol. Thus, these findings indicate that caffeine increases arousal and has a psychotogenic effect when administered to schizophrenic patients. The possible roles of various neurotransmitters is discussed with special emphasis on caffeine's actions on dopaminergic and adenosinergic systems.

Adolescent

Circadian variation of plasma homovanillic acid levels is attenuated by fluphenazine in patients with schizophrenia.

Plasma homovanillic acid (HVA) levels were measured hourly for a 24-hour period in 10 patients with schizophrenia during treatment with placebo and fluphenazine. Ten age- and sex-matched normal volunteers were similarly studied. Diet and activity were carefully controlled and monitored in both patients and controls. A circadian rhythm of the plasma HVA level was found in controls with a nadir in the afternoon and peak values in the early morning hours; when the patients were free from drugs, they showed a similar rhythm with lower amplitudes. Fluphenazine treatment significantly reduced the plasma concentrations of HVA and abolished the 24-hour rhythm. These data suggest that a 24-hour rhythm of the plasma HVA level exists in humans and that the amplitude of this rhythm may be less pronounced in patients with schizophrenia. Treatment with neuroleptic drugs reduces both the absolute levels and the normal circadian rhythm of the plasma HVA level.

Adult

Cerebrospinal fluid and plasma monoamine metabolites and their relation to psychosis. Implications for regional brain dysfunction in schizophrenia.

The relationship between central (cerebrospinal fluid [CSF]) and peripheral (plasma) monoaminergic metabolites and psychotic symptoms was examined in 22 drug-free schizophrenic inpatients. The CSF homovanillic acid levels did not differ significantly between patients and normal controls (n = 33). The CSF homovanillic acid levels, however, were negatively correlated with ratings of psychosis and positive symptoms, and the CSF homovanillic acid and 5-hydroxyindoleacetic acid levels correlated negatively with individual deficit symptoms. Stepwise and hierarchical multiple-regression analysis revealed that among monoaminergic measures, only the CSF and plasma homovanillic acid levels contributed significantly to the total Brief Psychiatric Rating Scale and positive symptom variance with negative and positive partial correlations, respectively. Levels of CSF 3-methoxy-4-hydroxyphenylglycol, but not of CSF norepinephrine, were significantly elevated in the schizophrenic patients compared with controls, and plasma 3-methoxy-4-hydroxyphenylglycol levels were positively correlated with negative symptoms. We discuss the potential implications of these findings for a model of dopaminergic dysfunction in schizophrenia involving distinct cortical and subcortical contributions.

Adult

Prednisone effects on neurochemistry and behavior. Preliminary findings.

To evaluate the neurochemical, neuroendocrine, and behavioral effects of exogenous corticosteroids in humans, we administered prednisone (80 mg/d orally for 5 days) in a double-blind manner to 12 medically healthy volunteers. Behavioral measures were assessed before, during, and after prednisone administration in all 12 subjects, and cerebrospinal fluid biochemistry was assessed before and during prednisone administration in 9 of the subjects. Prednisone administration was associated with decreases in cerebrospinal fluid levels of corticotropin, norepinephrine, beta-endorphin, beta-lipotropin, and somatostatinlike immunoreactivity. No significant changes were noted in cerebrospinal fluid levels of alpha-melanocyte-stimulating hormone, corticotropin-releasing hormone, 3-methoxy-4-hydroxyphenylglycol, homovanillic acid, or 5-hydroxyindoleacetic acid. No consistent or significant group mean changes were observed in structured behavioral ratings, although 9 (75%) of the volunteers studied reported mild behavioral changes while receiving prednisone. Correlations between the neurochemical and behavioral changes are discussed.

Adult