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Biomedical subjects

M Hatzinger

Publications and source records attributed to M Hatzinger.

43 records · Page 3Linked to original sources

[Cortisone-induced delusional depression in systemic lupus erythematosus].

A case of systemic lupus erythematodes (SLE) with development of a delusional depression is presented. Psychiatric symptoms in patients with SLE and in patients treated with glucocorticoids are discussed. The main psychiatric side effects of a therapy with steroids are a dose-dependent, reversible dementia like syndrome and a probably not dose-dependent provocation of psychosis. Furthermore the role of the dysregulation of the limbic-hypothalamic-pituitary-adrenocortical axis in major depression is stressed and consequences for psychopharmacological treatment are emphasized.

Adult↗

Effects of the novel acetylcholinesterase inhibitor SDZ ENA 713 on sleep in man.

A novel brain-selective acetylcholinesterase inhibitor, SDZ ENA 713, is under development for the treatment of dementia of the Alzheimer type. To determine the threshold dose for central activity, single doses of the compound were administered to 20 young male volunteers in a double-blind cross-over design and the effects on the sleep electroencephalography studied. The first group of eight volunteers received in random order: placebo, 0.5 mg; and 1 mg SDZ ENA 713. The second group of 12 volunteers received: placebo, 1.3 mg; and 2 mg SDZ ENA 713. Sleep quality was not affected by the study medication, which was well tolerated by all subjects. A statistically significant increase in rapid-eye movement sleep density was observed after doses of 1 mg, 1.3 mg, and 2 mg. Rapid-eye movement latency and slow-wave sleep were not altered. The results demonstrate that SDZ ENA 713 is centrally active in man at well-tolerated doses.

Adolescent↗

[Eosinophilic pleuritis and hepatopathy under trimipramine therapy].

A case of allergic reaction under treatment with a tricyclic drug, trimipramine, is described. The clinical manifestation was an acute, influenza-like syndrome with eosinophilic pleurisy and involvement of liver function. This case is compared with allergic reactions under antidepressant treatment described in the literature. The combination of pulmonary and hepatic involvement in an allergic reaction is not unusual, but has not thus far been described for tricyclic antidepressants. The importance of laboratory investigations during antidepressant therapy is emphasized.

Chemical and Drug Induced Liver Injury↗

Repeated administration of the combined dexamethasone-human corticotropin releasing hormone stimulation test during treatment of depression.

Human corticotropin releasing hormone (h-CRH) was administered to 14 patients with major depression, after premedication with an overnight dose of 1.5 mg dexamethasone. Cortisol response, expressed as area under the time course curve (AUC), was significantly higher in the 14 patients than in a group of 13 age-matched control subjects (9.4 +/- 7.6 ng x min x 1,000/ml vs. 3.1 +/- 3.6 ng x min x 1,000/ml). Corresponding AUC values for plasma adrenocorticotropic hormone (ACTH) were also significantly higher in patients than in control subjects (4.9 +/- 1.4 pg x min x 1,000/ml vs. 2.6 +/- 0.9 pg x min x 1,000/ml). After patients were treated with trimipramine (200 mg/day) for 6 weeks, the combined dexamethasone/h-CRH test was repeated. At that time, depression scores were significantly improved and the patients' cortisol response pattern became indistinguishable from that of controls. While plasma cortisol output normalized during treatment with trimipramine, ACTH release remained exaggerated. The combined dexamethasone/h-CRH challenge test may be of particular value in the detection of state-dependent changes of pituitary-adrenocortical neuroregulation.

Adrenocorticotropic Hormone↗

Sleep deprivation and bright light as potential augmenters of antidepressant drug treatment--neurobiological and psychometric assessment of course.

The present study was designed to investigate the clinical efficacy of trimipramine with adjunct sleep deprivation (SD) or bright light (BL) and to evaluate psychometric and neurobiological variables that might be of predictive value for treatment response. We used (1) the combined dexamethasone-corticotropin releasing hormone test (DEX-CRH test) to characterize alterations of the hypothalamic-pituitary-adrenal (HPA) system; (2) polysomnography to evaluate sleep disturbances; and (3) a standardized test battery to assess cognitive psychomotor functions after study initiation and after 5 weeks of treatment. The overall response rate (> or = 50% decrease in score on Hamilton Rating Scale for Depression [HRS]) was 55% (N = 42). The response rate in the group with trimipramine monotherapy (N = 14) was 79%, whereas in the groups with adjunct SD (N = 14) and BL (N = 14), respectively, it was only 43%. All three groups showed significant improvement at the end of the third week of treatment. Neither of the adjunct treatments hastened the onset of antidepressant action as measured by HRS. A significantly higher proportion of nonresponders than responders (p < .05) had HPA dysregulation, disturbed rapid eye movement (REM) sleep (REM latency, REM% first third of night) and decreased non-REM sleep (% stage 2). The non-responders showed significantly more corticotropin (ACTH) secretion after CRH stimulation in the DEX-CRH test than the responders and a less rapid normalization of the neuroendocrine dysregulation (cortisol secretion) (p < .01). In addition, REM latency was significantly shorter in the BL group than in the monotherapy group and estimated duration of illness significantly longer in the SD group than in the monotherapy group. REM latency, percentage of REM sleep during the first third of the total sleep period, percentage of non-REM sleep stage 2 and ACTH release after a DEX-CRH challenge predicted response across all three treatment groups. The neurobiological symptoms were unevenly distributed, among the three groups, thus creating heterogeneity in these measures. This heterogeneity may have contributed to the different treatment response rates as defined by psychopathology (HRS). In contrast, the neuropsychological tests and some of the sleep-EEG investigations revealed different response patterns for different groups: The onset of improvement in simple cognitive functions and in sleep continuity was earlier in the adjunct treatment groups. This study underlines the need for a multidimensional approach including use of neurobiological and neuropsychological measures to identify the therapeutic profiles of different treatment strategies and predictors of outcome.

Adrenocorticotropic Hormone↗

Hypothalamic-pituitary-adrenal system function in patients with Alzheimer's disease.

The neuropathologic hallmarks of Alzheimer's disease (AD) are very prominent in the hippocampus, a brain site which is pivotal for the regulation of the hypothalamic-pituitary-adrenal (HPA) system. Thus, the combined dexamethasone-suppression/CRH-stimulation-test outcome in patients with AD was compared to that of healthy elderly controls to assess--with a more refined neuroendocrine challenge procedure--HPA function in AD. Cortisol secretion after dexamethasone (DEX) pretreatment and before CRH was increased in Alzheimer's patients and 21% of this group were DST-nonsuppressors. None of the healthy control subjects escaped DEX-induced suppression of cortisol. However, after additional CRH administration, AD patients released significantly less cortisol and ACTH than the control subjects. No correlations were found between any of the endocrine parameters and degree of severity of dementia. It is concluded that the DST part of the DEX/CRH test better reflects glucocorticoid feedback disturbances, probably at a suprapituitary level. The CRH part of the DEX/CRH-test outcome might indicate the loss of endogenous CRH-Arginine-Vasopressin (AVP) synergism of the HPA system of these patients.

Adrenocorticotropic Hormone↗

Effect of sleep deprivation on neuroendocrine response to a serotonergic probe in healthy male subjects.

Neuroendocrine responses to stimulation with a selective serotonin reuptake inhibitor (citalopram) were measured to investigate the effects of all-night sleep deprivation on serotonergic function in healthy male subjects (n = 7). We studied citalopram-stimulated prolactin and cortisol plasma concentrations in a placebo-controlled cross-over protocol following sleep and sleep deprivation. Citalopram infusion (20 mg i.v. at 14:20-14:50 h) after a night of undisturbed sleep prompted robust increases in both plasma prolactin and cortisol concentrations. Following a night of sleep deprivation, by contrast, the citalopram-induced prolactin response was blunted, but the cortisol response was not significantly altered. This differential response pattern relates to the distinct pathways through which serotonin may activate the corticotrophic and the lactotrophic systems. While an unchanged cortisol response does not indicate (but also does not refute the possibility of) an altered serotonergic responsivity following sleep deprivation, the suppressed prolactin response could reflect a downregulation of 5-HT1A or 2 receptors. An alternative, not mutually exclusive, explanation points to the possibility that sleep deprivation activates the tubuloinfundibular dopaminergic system, the final inhibitory pathway of prolactin regulation.

Adult↗