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Biomedical subjects

A Neumeister

Publications and source records attributed to A Neumeister.

At least 37 records · Page 2Linked to original sources

[Selective and safe. Review of new antidepressive drugs].

Epidemiological studies suggest an incidence of major depressive disorders between 6% and 17%. A number of therapeutic modalities, including modern antidepressants, have been shown to be effective treatment for these conditions. Modern antidepressants are significantly more effective than placebo in the treatment of depression, and are equally as effective as the older tricyclic and tetracyclic antidepressants. Modern antidepressants, however, show superior efficacy for the long-term treatment of depression, probably because of their favorable side effect profile.

Antidepressive Agents↗

[123I]-beta-CIT SPECT imaging shows reduced brain serotonin transporter availability in drug-free depressed patients with seasonal affective disorder.

BACKGROUND: Numerous findings indicate alterations in brain serotonin systems in seasonal affective disorder (SAD). [(123)I]-2-beta-carbomethoxy-3-beta-(4-iodophenyl)-tropane ([(123)I]-beta-CIT) labels serotonin transporters (5-HTTs) in the midbrain. We performed a [(123)I]-beta-CIT single photon emission computer tomography (SPECT) study under the hypothesis of lower [(123)I]-beta-CIT binding reflecting reduced central 5-HTT availability in depressed SAD patients. METHODS: Depressed SAD patients and healthy control subjects were investigated using [(123)I]-beta-CIT SPECT 4 hours and again 24 hours after tracer injection. Subjects had either never used psychotropic medication or had been drug-free for at least 6 months prior to the investigation. Specific-to-nondisplaceable partition coefficient (V(3)") was calculated for the thalamus-hypothalamus and the midbrain-pons; the cerebellum served as a reference region. RESULTS: Patients showed a reduction in V(3)" in thalamus-hypothalamus (2.41+/-0.3 vs. 2.84+/-0.4; p = .026) 24 hours post tracer injection (p.i.). No difference between patients and control subjects was found in midbrain-pons (1.31+/-0.2 vs. 1.42+/-0.2; p = .39). No differences were detected in the SPECT acquisitions 4 hours p.i. CONCLUSIONS: Depressed SAD patients showed lower specific-to-nondisplaceable [(123)I]-beta-CIT binding in the region of interest (ROI) thalamus-hypothalamus. The small size of the midbrain-pons ROI may have contributed to the failure to show a difference in this ROI as well. Similar to reduced midbrain 5-HTT availability in nonseasonal depression, depression in SAD seems to be associated with reduced 5-HTT availability to the thalamus-hypothalamus.

Adult↗

Seasonal variation of availability of serotonin transporter binding sites in healthy female subjects as measured by [123I]-2 beta-carbomethoxy-3 beta-(4-iodophenyl)tropane and single photon emission computed tomography.

BACKGROUND: Previous studies have indicated annual variations in central and peripheral serotonergic activity. In the present study we studied five women in summer and six women in winter and evaluated possible differences in availability of brain serotonin transporters between summer and winter. METHODS: We employed the single photon emission computed tomography ligand [123I]-2 beta-carbomethoxy-3 beta-(4-iodophenyl)tropane ([123I] beta-CIT) to visualize binding to the serotonin transporter site in the human thalamus/hypothalamus midbrain area in vivo. Brain imaging studies were performed in one group between May and August and in the other between November and December. RESULTS: We found significant differences in displaceable [123I] beta-CIT binding in the region corresponding to thalamus/hypothalamus between the summer group and the winter group (1.9 +/- 0.3 vs. 1.4 +/- 0.2, respectively; p < .01). CONCLUSIONS: The results of the present study suggest reduced brain serotonin transporter availability in winter. This finding further substantiates evidence of seasonal variations in brain serotonergic function.

Adult↗

Imaging serotonin and dopamine transporters with 123I-beta-CIT SPECT: binding kinetics and effects of normal aging.

UNLABELLED: [123I]beta-carbomethoxy-3-beta-(4-iodophenyl)-tropane (CIT) is a useful ligand for dopamine transporters (DATs) and serotonin transporters (5-HTTs). Previous SPECT studies have shown a state of sustained equilibrium in the striatum on day 2 after injection that allows quantification of striatal DATs using a simple ratio of specific-to-nondisplaceable binding. The aim of this study was to investigate the kinetics of [123I]beta-CIT uptake in the thalamus, hypothalamus, and midbrain, areas known to contain 5-HTTs in high densities. METHODS: SPECT with a triple-head camera was performed on 16 healthy volunteers (13 women, 3 men; mean age [+/-SD], 32 +/- 11 y) after intravenous bolus injection of 130 +/- 20 MBq (3.5 +/- 0.5 mCi) [123I]beta-CIT. Two individuals were scanned 1, 2, 4, 7, 10, 13, 16, and 24 h after injection, and the remaining 14 were scanned 4, 7, 10, 20, and 24 h after injection. Values from 19 previously examined healthy volunteers (8 women, 11 men; mean age, 52 +/- 20 y) were included in the analysis to study the age dependency of beta-CIT binding in striatal and 5-HTT-rich brain areas in a larger control sample. RESULTS: Peak uptake 4 h after injection, followed by stable uptake until 10 h and a slow decrease until 24 h, was observed in the thalamus-hypothalamus region. Activity in the midbrain-pons region peaked 2 h after injection. Because of a concomitant slow but steady decline of uptake in reference regions starting 4 h after injection, a higher stability of binding ratios for 5-HTT-rich brain areas was observed on day 2, suggesting that a state of transient equilibrium is reached between 20 and 24 h but that conditions are only close to transient equilibrium between 4 and 10 h after injection for 5-HTT-rich brain areas. In addition to an age-related decline of striatal [123I]beta-CIT binding of 6.6% per decade, a significant age-associated decrease of beta-CIT binding of 3-4% per decade was found in 5-HTT-rich brain areas. The decline of beta-CIT binding in these regions may be explained, at least in part, by a loss of monoamine transporters with age but may also be related to age-associated morphologic changes. CONCLUSION: [123I]beta-CIT appears to be a suitable ligand for imaging serotonin transporters with SPECT. However, careful age matching is warranted for [123I]beta-CIT SPECT studies of 5-HTT changes in patients with neuropsychiatric disorders.

Adult↗

Behavioral effects of tryptophan depletion in seasonal affective disorder associated with the serotonin transporter gene?

There is some evidence that the neurotransmitter serotonin (5-hydroxytryptamine; 5-HT) may be involved in the pathogenesis of seasonal affective disorder (SAD). Short-term tryptophan (TRP) depletion was carried out in 18 drug-free remitted patients who met DSM-IV criteria for SAD. Behavioral effects were measured with the Hamilton Depression Rating Scale (HDRS) both 24 h before and 24 h after TRP depletion. Some of the patients showed behavioral responses such as lowered mood, feelings of guilt, loss of interest, agitation, loss of energy, fatigue, social withdrawal, increased appetite, and carbohydrate craving. It was the aim of our study to investigate whether the genotypes of the serotonin transporter gene were associated with symptoms of transient depressive relapse after TRP depletion. In addition, we matched the SAD patients with healthy control subjects to see if alleles and genotypes of the serotonin transporter gene were associated with SAD. High molecular weight DNA was isolated from peripheral blood leukocytes using standard methods. For the 5-HTT receptor gene, a 17-bp repetitive element of intron 2 was genotyped (variable number tandem repeat, VNTR). Alterations in HDRS scores after TRP depletion showed no significant association with alleles or genotypes of the 5-HTT gene, although heterozygotes showed a trend toward increased HDRS scores. The serotonin transporter is known to play a critical role in the termination of serotonergic neurotransmission by sodium-dependent uptake of 5-HT into the presynaptic neuron. The present study in a small group of SAD patients was unable to demonstrate that the 5-HTT gene plays a role in the pathogenesis of SAD or in short-term depressive relapse after TRP depletion.

Adult↗

Monoamine depletion in non-pharmacological treatments for depression.

Non-pharmacological treatments such as light therapy for seasonal affective disorder or sleep deprivation for non-seasonal depression have been shown to treat depression effectively. With the use of the tryptophan depletion paradigm and the catecholamine depletion paradigm we assessed the role of brain serotonergic and catecholaminergic systems respectively. We found that disturbances in brain serotonin systems play a key role in the pathogenesis of seasonal affective disorder and that light therapy may compensate for the underlying deficit. Moreover there is evidence that catecholaminergic systems may be involved in the mechanism of action of light therapy. Tryptophan depletion studies suggest that sleep deprivation does not exert its antidepressant effects by involving brain serotonin systems alone. Interestingly, tryptophan depletion prevented the relapse after the recovery night, possibly by enhancing brain serotonin transmission after the depletion procedure.

Biogenic Monoamines↗

Monorhinal odor identification and depression scores in patients with seasonal affective disorder.

BACKGROUND: Visual and olfactory pathways are interconnected. Olfactory deafferentation unmasks photoperiodic responsiveness in some nonphotoperiodic animals such as laboratory rats. By analogy, we hypothesized that olfactory deficits may unmask seasonal rhythms in certain individuals, namely those with seasonal affective disorder (SAD). Since previous studies suggest lateralized hemispheric dysfunction in SAD, and since olfactory neurons' primary projections are largely ipsilateral, we assessed olfactory identification performance on both the right and left side of the nose. METHODS: Twenty-four patients with SAD and 24 matched controls were studied using a phenyl ethyl alcohol detection threshold test bilaterally and the University of Pennsylvania Smell Identification Test unilaterally. Subjects rated their mood using the Self Assessment Mood Scale for SAD. Patients' testing was done in both 'depressed' and 'improved on light' states. RESULTS: No difference in olfactory performance was found between patients and controls or between patients before and after light treatment. However, right-side identification scores were negatively correlated with 'typical' depression scores (r = -0.56, P = 0.006), while left-side olfactory scores were not. Atypical depression scores were unrelated to olfactory performance. Similar correlations emerged between the olfactory identification laterality quotient (Right - Left)/(Right + Left) and typical depressive scores (r = - 0.64, P < 0.001) and total depression scores (r = - 0.59, P < 0.004). LIMITATIONS: We studied a demographically heterogeneous sample and did not control for menstrual factors. DISCUSSION: Our results add to previous evidence of lateralized hemispheric involvement in SAD and suggest that olfaction may be related to seasonal emotional rhythms in humans.

Adult↗

Tryptophan depletion: a predictor of future depressive episodes in seasonal affective disorder?

Patients with seasonal affective disorder (SAD) do not necessarily experience depressive episodes every winter. We assessed whether the behavioural response to tryptophan depletion in summer when patients are fully remitted and off therapy is capable of predicting a future depressive episode of SAD. In a prospective study design, we followed up 11 consenting SAD patients who had undergone tryptophan depletion during summer. We evaluated how many of these patients would develop a depressive episode in the subsequent fall/winter. Seven out of eight patients who relapsed during tryptophan depletion in summer developed a depressive episode in the subsequent winter. Two out of the three patients who did not relapse during tryptophan depletion remained well during the follow-up period. Our preliminary findings suggest that those SAD patients who develop depressive symptoms during tryptophan depletion when they are fully remitted and off therapy remain at high risk to experience a depressive episode of SAD also in the subsequent winter.

Adult↗

[Therapeutic sleep deprivation and phototherapy].

Since ancient times the influence of chronobiological factors on the pathogenesis, course, and treatment of depression has been well known. Amongst antidepressive treatment strategies two are based on chronobiological knowledge: therapeutic sleep deprivation, which exerts a rapid and dramatic, albeit usually short-lasting, improvement of mood in the majority of patients with major depressive disorder, and light therapy with full-spectrum bright light. About sixty percent of all depressed patients improve after a single night of total or partial sleep deprivation. It has been shown that a combination of pharmacotherapy with antidepressants and sleep deprivation is superior to pharmacotherapy alone. Moreover, sleep deprivation has proved to hasten the onset of action of antidepressant medication and repeated sleep deprivation can also be an efficient treatment strategy in drug refractory depression. Light therapy with bright artificial light is especially beneficial in patients with a fall/winter pattern of depressive symptomatology that has been termed seasonal affective disorder. Similar to sleep deprivation, bright light therapy is characterized by a fast onset of antidepressant action and by the exertion of additive properties to antidepressive medication. Bright light therapy, beginning in the morning after partial sleep deprivation, is able to prevent the depressive relapse after the next night of sleep in sleep deprivation responders.

Antidepressive Agents↗

Low frontal electroencephalographic coherence in neuroleptic-free schizophrenic patients.

BACKGROUND: Electroencephalographic (EEG) coherence analysis is a noninvasive technique for studying corticocortical associations. As there is evidence for a dysfunction of the prefrontal dorsolateral cortex in schizophrenia, we hypothesized to find lower frontal EEG coherence in schizophrenia. METHODS: EEG amplitude and coherence analysis was performed in 16 antipsychotic-free schizophrenic patients and 16 healthy controls. EEG recordings were done with 19 gold-plated electrodes placed according to the International 10/20 system against averaged signals from both earlobes. Local coherence was computed for 22 adjacent electrode pairs within the hemispheres and interhemispheric coherence for eight corresponding electrode pairs of both hemispheres in the delta, theta, alpha, and beta-I band. RESULTS: Amplitude and interhemispheric coherence analysis revealed no differences. Local EEG coherence was significantly lower in schizophrenic patients for Fpl-F7 in the delta (p = .001) and the theta band (p = .002), and at F7-F3 in the alpha band (p = .002). In the delta band coherence of Fpl-F7 was inversely correlated to the Positive and Negative Syndrome Scale positive symptoms subscore (R = -.74, p = .014). CONCLUSIONS: Assuming that EEG coherence can be used to index functional coupling between brain areas under the electrodes, the low EEG coherence in Fpl-F7 and F7-F3 in schizophrenic patients might reflect impaired information processing in the left dorsolateral prefrontal cortex.

Adult↗

Effects of tryptophan depletion in drug-free depressed patients who responded to total sleep deprivation.

BACKGROUND: There is some evidence that sleep deprivation (SD) might exert its antidepressant properties by involving serotonergic mechanisms. We investigated the effects of short-term tryptophan depletion (TD) on depressed patients who responded to a single night of total SD. METHODS: Drug-free depressed inpatients (n = 30) were randomly assigned to either TD or sham depletion. Tryptophan depletion was induced by a 24-hour low-tryptophan diet (day 1) followed the next morning by ingestion of a tryptophan-free amino acid mixture (day 2). During sham depletion, the diet and the amino acid beverage were supplemented with tryptophan. Sleep deprivation was performed from day 1 until day 2. Only SD responders received the amino acid beverage the morning after SD. Behavioral ratings and total and free plasma tryptophan levels were obtained before and after the test sessions. RESULTS: Twenty-two of 30 patients showed a favorable outcome after SD. As predicted, TD significantly lowered total and free plasma tryptophan levels, whereas both levels increased during sham depletion. No acute effects on mood were observed during the day after SD in either treatment group. Unexpectedly, TD, but not control testing, prevented the depressive relapse after the recovery night in most of the patients. CONCLUSIONS: Tryptophan depletion did not reverse the antidepressant effects of SD, but it prevented the relapse beyond a night of recovery sleep. These findings suggest that SD does not act via a single monoamine-related mechanism, but they allow the assumption that TD may induce neurochemical alterations that transiently improve depression.

Adult↗

Effects of tryptophan depletion vs catecholamine depletion in patients with seasonal affective disorder in remission with light therapy.

BACKGROUND: Although hypotheses about the therapeutic mechanism of action of light therapy have focused on serotonergic mechanisms, the potential role, if any, of catecholaminergic pathways has not been fully explored. METHODS: Sixteen patients with seasonal affective disorder who had responded to a standard regimen of daily 10000-lux light therapy were enrolled in a double-blind, placebo-controlled, randomized crossover study. We compared the effects of tryptophan depletion with catecholamine depletion and sham depletion. Ingestion of a tryptophan-free amino acid beverage plus amino acid capsules was used to deplete tryptophan. Administration of the tyrosine hydroxylase inhibitor alpha-methyl-paratyrosine was used to deplete catecholamines. Diphenhydramine hydrochloride was used as an active placebo during sham depletion. The effects of these interventions were evaluated with measures of depression, plasma tryptophan levels, and plasma catecholamine metabolites. RESULTS: Tryptophan depletion significantly decreased plasma total and free tryptophan levels. Catecholamine depletion significantly decreased plasma 3-methoxy-4-hydroxyphenylethyleneglycol and homovanillic acid levels. Both tryptophan depletion and catecholamine depletion, compared with sham depletion, induced a robust increase (P<.001, repeated-measures analysis of variance) in depressive symptoms as measured with the Hamilton Depression Rating Scale, Seasonal Affective Disorder Version. CONCLUSIONS: The beneficial effects of light therapy in the treatment of seasonal affective disorder are reversed by both tryptophan depletion and catecholamine depletion. These findings confirm previous work showing that serotonin plays an important role in the mechanism of action of light therapy and provide new evidence that brain catecholaminergic systems may also be involved.

Adult↗

Effects of tryptophan depletion in fully remitted patients with seasonal affective disorder during summer.

BACKGROUND: Deficiencies in brain serotonin function are believed to play an important role in the pathophysiology of seasonal affective disorder/winter type (SAD). However, no direct evidence has been reported so far that lowered brain serotonin activity causes the symptoms of SAD. METHODS: We studied 11 SAD patients who had suffered recurrent winter depressive episodes of SAD and were fully recovered and off treatment during the summer. In a randomized, balanced, double-blind crossover design patients received two amino acid beverages, one containing tryptophan and the other containing no tryptophan but otherwise identical. Behavioural ratings and plasma total and free tryptophan concentrations were assessed at baseline before administration of the amino acid beverages and at several time points afterwards. RESULTS: The tryptophan-free amino acid beverage induced significant decreases of plasma total and free tryptophan levels and both levels increased during sham depletion (condition x time interaction: P < 0.001). Tryptophan depletion, but not sham depletion caused a transient return of depressive symptoms (condition x time interaction: P < 0.001). CONCLUSIONS: The present study demonstrates that SAD patients in remission during the summer are vulnerable to a return of depression when depleted of tryptophan. This finding supports the importance of serotonergic mechanisms in the pathophysiology of SAD.

Adult↗

Effects of tryptophan depletion on drug-free patients with seasonal affective disorder during a stable response to bright light therapy.

BACKGROUND: A dysfunction of the serotonin system may play a major role in the pathogenesis of seasonal affective disorder. Bright light therapy has been shown to be effective in the treatment of winter depression in patients with seasonal affective disorder. Light therapy-induced remission from depression may be associated with changes in brain serotonin function. METHODS: After at least 2 weeks of clinical remission, 12 drug-free patients who had had depression with seasonal affective disorder underwent tryptophan depletion in a double-blind, placebo-controlled, balanced cross-over design study. RESULTS: Short-term tryptophan depletion induced a significant decrease in plasma free and total tryptophan levels (P < .001 for both, repeated measures analysis of variance), with peak effects occurring 5 hours after ingestion of a tryptophan-free amino acid drink. It emerged that tryptophan depletion leads to a transient depressive relapse, which was most pronounced on the day after the tryptophan-depletion testing. No clinically relevant mood changes were observed in the control testing. CONCLUSIONS: The maintenance of light therapy-induced remission from depression in patients with seasonal mood cycles seems to depend on the functional integrity of the brain serotonin system. Our results suggest that the serotonin system might be involved in the mechanism of action of light therapy.

Adult↗

[Electroconvulsive therapy in clinical practice].

Between September 1st, 1994, and the end of August, 1995, 3% of all inpatients (21 of 731) were treated with electroconvulsive therapy (ECT) at the Department of General Psychiatry at the University Hospital for Psychiatry in Vienna. These patients suffered from psychotic and/or therapy-resistant depression (n = 15), therapy-resistant schizoaffective psychosis (n = 3), and catatonic schizophrenia (n = 3). ECT was administered in short-time anaesthetised and muscle relaxed patients. On average, each patient was treated with ECT on 9 non-consecutive days. As a rule, electrodes were placed unilaterally over the non-dominant hemisphere at the beginning. In four cases electrodes were placed bifronto-temporally. To be considered as effective the seizure had to last for at least 25 s. In shorter seizure duration ECT was repeated up to a maximum of three times in one session. With this procedure a reduction in clinical global impressions of -3.7 points was achieved in ECT-treated patients, who had been considered to be "severely" to "most severely" ill according to CGI before starting ECT. ECT proved to be effective for treating severe depression and catatonic schizophrenia, with only minor and reversible side effects. For establishing a favorable relation between good clinical outcome and remarkable few side effects, the following factors seem to be of importance, in accordance with the literature: (1) application of biphasic short-impulse stimuli in anaesthetised and muscle relaxed patients; (2) measurement of static impedance to avoid high skin impedance and short circuits. (3) at the beginning of each ECT series unilateral electrode placement over the non-dominant hemisphere; (4) ECT three times weekly on non-consecutive days.

Adult↗

[The tryptophan depletion test. Basic principles and clinical relevance].

The application of a tryptophan-free amino acid mixture (tryptophan depletion test) induces a rapid and substantial lowering of both total and free plasma tryptophan. Consequently, the brain serotonin content and also cerebral serotonin function are decreased. This method provides a paradigm to study the role of serotonin in the pathobiology of depressive disorders and their treatment modalities. Untreated depressed patients show few behavioral effects during tryptophan depletion. In depressed patients during an antidepressant or light-therapy-induced stable remission, a transient depressive relapse was induced by tryptophan depletion. Healthy subjects with a genetic risk for affective disorder show worsening of their condition induced by tryptophan depletion. These findings indicate the relevance of altered brain serotonin function in the pathophysiology of affective disorders and strengthen the importance of serotonin in the mechanism of action of antidepressants. Since recently published studies revealed some evidence that the serotonergic system is directly involved in the pathophysiology of various psychiatric syndromes besides depression, it seems to be reasonable to evaluate the validity of the tryptophan depletion test also in non-depressed patients.

Brain↗

Rapid tryptophan depletion in drug-free depressed patients with seasonal affective disorder.

OBJECTIVE: Brain serotonin systems might be involved in the pathophysiology of seasonal affective disorder. The authors tested whether tryptophan depletion alters the mood of depressed patients with seasonal affective disorder. METHOD: Eleven drug-free depressed patients with seasonal affective disorder underwent tryptophan depletion in a placebo-controlled, double-blind crossover study. Tryptophan depletion was induced by a 24-hour low-tryptophan diet and by ingestion of a tryptophan-free amino acid beverage. During control testing the diet and the beverage were supplemented with tryptophan. Behavioral ratings and plasma total and free tryptophan levels were obtained before the diet started and several times after administration of the beverages. RESULTS: The diet and the tryptophan-free amino acid drink reduced plasma total and free tryptophan levels by 79.0% and 87.5%, respectively. Both levels increased during control testing. No significant behavioral changes were induced by tryptophan depletion or control testing. CONCLUSIONS: The failure of tryptophan depletion to exacerbate the depressive syndrome suggests that dysfunctional serotonergic activity does not play a primary, direct role in the pathogenesis of winter depression.

Acute Disease↗