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Biomedical subjects

O M Wolkowitz

Publications and source records attributed to O M Wolkowitz.

At least 19 recordsLinked to original sources

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

Benzodiazepine augmentation of neuroleptics in treatment-resistant schizophrenia.

A significant minority of patients with schizophrenia fail to respond to neuroleptic medication alone. In some of these patients, adjunctive treatment with benzodiazepines may prove beneficial. Preclinical studies suggest that benzodiazepines significantly decrease brain dopamine release and turnover, perhaps by augmenting gamma-aminobutyric acid (GABA) inhibition of dopamine neuron activity. Double-blind clinical studies, however, have not conclusively established a role for benzodiazepines in the treatment of schizophrenia, and it seems likely that some patients respond favorably, whereas others do not. We review preliminary new observations that approximately half of a group of treatment-resistant patients, studied in a double-blind treatment protocol, demonstrated clinically significant antipsychotic responses to adjunctive alprazolam. We also briefly describe long-term efficacy of alprazolam in several patients whom we have followed in open-label clinical settings. Possible predictors or biological concomitants of benzodiazepine responsivity, which may aid in delineating distinct subgroups of patients, are discussed, and recommendations for future research are presented.

Anti-Anxiety Agents

Antiglucocorticoid strategies in hypercortisolemic states.

Major depressive illness is frequently associated with cortisol hypersecretion. The pathophysiologic significance of this is unknown, although it is possible that hypercortisolemia exacerbates or perpetuates depressive symptoms. In both depression and Cushing's syndrome, certain depressive symptoms are correlated with cortisol levels and, in the latter condition, therapeutic lowering of cortisol levels is associated with remission of psychiatric symptomatology. We review the behavioral effects of anticortisolemic drug administration in Cushing's syndrome and major depression. Preliminary data from small-scale studies suggest that ratings of depressive symptoms in hypercortisolemic major depression may be lowered by such interventions. Such results, if confirmed in larger scale, double-blind studies, might help clarify the role of endocrinologic disturbance in psychiatric symptomatology and might lead to the development of a novel class of antidepressant agent for hypercortisolemic depressed patients.

Depressive Disorder

MRI deep white matter hyperintensity in a psychiatric population.

The authors evaluated magnetic resonance imaging (MRI) of deep white matter hyperintensity (DWMH) in 90 adult psychiatric inpatients in whom MRIs were clinically indicated and 25 age-matched, medically healthy controls. Forty-two percent of the psychiatric patients and 12% of the controls had evidence of DWMH on MRI. Both incidence and severity of DWMH were significantly correlated with age in both groups. Even after controlling for age in the psychiatric population, DWMH was significantly associated with hypertension, history of myocardial infarction or angina, abnormal electrocardiogram, and abnormal neurological examinations.

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

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

Prednisone effects on blood-brain barrier permeability and CNS IgG synthesis in healthy humans.

Corticosteroids reportedly decrease blood-brain barrier (BBB) permeability and/or IgG synthesis in patients with multiple sclerosis or brain tumors. However, these effects have not been studied in healthy humans. We investigated the effects of prednisone, 80 mg/day for five days, on the ratio of cerebrospinal fluid (CSF) albumin/serum albumin, a measure of blood-brain barrier (BBB) permeability, and on CSF and serum IgG levels in six healthy, normal volunteers. We found significant steroid-induced decreases in serum and CSF albumin levels and in serum IgG levels. However, we found only a nonsignificant decrease in BBB permeability and no significant change in CNS IgG synthesis. These findings, based on a small number of volunteers, suggest that it may be difficult to further decrease BBB permeability and CNS IgG synthesis in medically healthy subjects.

Adult

Neurochemical and neural mechanisms of positive and negative symptoms in schizophrenia.

It is difficult to come away from review of pharmacologic and metabolite studies without concluding that dopaminergic mechanisms play a significant role in mediating both negative and positive symptoms. Nevertheless, the characteristics of dopaminergic involvement are unclear. Whereas compelling evidence continues to link the mechanism of action of neuroleptic drugs, including therapeutic effects on negative and positive symptoms, to blockade of D2 receptors, neuroleptic-induced alterations in dopaminergic function are time-dependent and may include reductions in variability as well as in net dopamine activity. Moreover, pharmacologic enhancement of dopaminergic function may at least transiently improve symptomatology (negative greater than positive) and levels of CSF HVA appear to be reduced or are negatively correlated with symptoms in some schizophrenic patients. Thus, there is support for both increased and decreased dopamine function in schizophrenia. Functional brain imaging has, after only a few years of application, made significant contributions to our understanding of the pathophysiology of schizophrenia. Studies of cerebral metabolism and regional CBF have shown remarkable consistency in their identification of abnormal function of the frontal cortex in schizophrenia. It should be pointed out, however, that agreement across studies remains largely conceptual with significant discrepancies still existing with regard to the precise localization of dysfunction and its relationship to cognitive activation. Although less well documented than 'hypofrontality' itself, negative symptomatology appears to bear some relationship to this defect. The idea that positive symptoms might be associated with increased subcortical and/or metabolism is less well supported. The recent advances in our understanding of structure and function of CNS dopaminergic systems may help to integrate these two bodies of data into more dynamic models of dopaminergic defects in schizophrenia. For example, the concept that diminished mesocortical coupled with increased subcortical dopaminergic activity might be a 'substrate' for psychosis is compatible with neurochemical evidence suggesting both diminished and enhanced dopaminergic processes as well as with metabolic hypofrontality. Better understanding of the regulatory mechanisms involved in establishing functional balance between cortical and subcortical systems might, therefore, identify new possibilities for biological dysfunction in schizophrenia. The recent study by Weinberger et al. which correlates CSF HVA levels with neuropsychologically induced frontal CBF is an example of how neurochemistry can enhance brain imaging data.(ABSTRACT TRUNCATED AT 400 WORDS)

Brain

Cognitive effects of corticosteroids.

In three independent studies with different designs and groups of subjects, the authors found that 1) depressed patients who did not suppress cortisol when given dexamethasone (compared to suppressors and normal control subjects), 2) healthy volunteers given a single 1-mg dose of dexamethasone (compared to those given placebo), and 3) healthy volunteers given 80 mg/day of prednisone for 5 days (compared to those given placebo) all made significantly more errors of commission in verbal memory tasks, with no significant change in their rates of errors of omission. These findings raise the possibility of specific corticosteroid-related cognitive impairments.

Adrenal Cortex Hormones

Plasma norepinephrine in chronic schizophrenia.

Several lines of evidence indicate altered noradrenergic function in schizophrenia. The authors examined resting, standing, and change (standing minus resting) in plasma norepinephrine levels in 14 drug-free patients with chronic schizophrenia or schizoaffective disorder and in 33 age- and sex-matched healthy volunteers. Schizophrenic patients had significantly higher resting and standing plasma norepinephrine levels and significantly greater change. Resting and standing levels were significantly related to positive and negative symptoms. There was a significant positive correlation between resting plasma and CSF norepinephrine levels and a significant negative correlation between CSF homovanillic acid and resting, standing, and change in plasma norepinephrine levels.

Adult

Use of the dexamethasone suppression test with mentally retarded persons: review and recommendations.

The correct methodology for performing the Dexamethasone Suppression Test (DST), which has been widely studied in psychiatry for its possible utility as a laboratory test of depression, was reviewed. Factors that may invalidate the test by producing false-positive or false-negative results and current recommendations regarding using the test were discussed. Studies of the use of the DST for patients with mental retardation as well as other patients displaying atypical symptoms of depression, such as children and demented elderly persons, were reviewed.

Adult

Fluphenazine treatment reduces CSF somatostatin in patients with schizophrenia: correlations with CSF HVA.

CSF somatostatin and homovanillic acid (HVA) were measured in 14 schizophrenic patients while they were drug-free and during chronic fluphenazine treatment. CSF somatostatin was significantly reduced and CSF HVA was significantly elevated (p less than 0.002) during fluphenazine treatment. There was a trend toward correlation between CSF somatostatin and CSF HVA in the 14 schizophrenic patients when drug-free (r = 0.49, p less than 0.07) and fluphenazine-treated (r = 0.47, p less than 0.08). When examined in a larger group (n = 46) of drug-free schizophrenics, this relationship was highly significant (r = 0.59, p less than 0.001). These clinical data are consistent with preclinical evidence indicating a functional interaction between CNS somatostatin and dopamine systems.

Adult