1,293 publications from this institution
The TRH-test in depression: a review This paper reviews the literature on the thyrotropin releasing hormone (TRH)-test in depressive patients. The TRH-test appears to exhibit some use as an external validating criterion for the clinical diagnosis of major depression and, in particular melancholia versus minor depression once the clinical diagnosis depression is made. However, the clinical use of this test is hampered by the low sensitivity (±50%) and by the fact that abnormal tests occur in non-depressive states such as borderline personality disorder, schizophrenia, and anxiety disorders. The TRH-test may be used as a predictor for a positive response to biological therapies. In addition, the test has some value for the outcome of a depressive episode. The pathophysiology underpinning an abnormal TRH-test may be determined by noradrenergic (central and peripheric) or serotonergic (central) dysfunctions, thyroid hormone and cortisol hypersecretion, phenomena that are pertinent to severe depression. Recently, it has been established that an abnormal depression-linked TRH-test reflects lower basal thyroid secreting hormone (TSH) secretion. The determination of basal TSH may, in the future, replace TRH-testing.
Increased depression, somatization, gut inflammation and wider peripheral inflammation are all associated with the early stages of Parkinson's disease (PD). Classically such concurrent conditions have been viewed as "comorbidities", driven by high levels of stress in a still poorly understood and treated disorder. Here we review the data on how oxidative and nitrosative stress in association with immuno-inflammatory responses, drives alteration in tryptophan catabolites, including kynurenine, kynurenic acid and quinolinic acid that drive not only the 'comorbidities" of PD but also important processes in the etiology and course of PD per se. The induction of indoleamine 2,3-dioxygenase, leading to the driving of tryptophan into neuroregulatory tryptophan catabolite products and away from serotonin and melatonin production, has significant implications for understanding the role of nicotine, melatonin, and caffeine in regulating PD susceptibility. Tryptophan catabolite pathway activation will also regulate blood-brain barrier permeability, glia and mast cell reactivity as well as wider innate and adaptive immune cell responses, all relevant to the course of PD. As such, the "comorbidities" of PD such as depression, somatization and peripheral inflammatory disorders can all be conceptualized as being an intricate part of the biological underpinnings of both the etiology and course of PD. As a consequence, the data reviewed here has treatment implications; relevant to both the course of PD and in the management of L-DOPA induced dyskinesias. Keywords: Parkinson's, depression, somatization, tryptophan, indoleamine 2, 3-dioxygenase, nicotinic, melatonin, inflammation, cytokines.
A model of the development and progression of chronic fatigue syndrome (myalgic encephalomyelitis), the aetiology of which is currently unknown, is put forward, starting with a consideration of the post-infection role of damage-associated molecular patterns and the development of chronic inflammatory, oxidative and nitrosative stress in genetically predisposed individuals. The consequences are detailed, including the role of increased intestinal permeability and the translocation of commensal antigens into the circulation, and the development of dysautonomia, neuroinflammation, and neurocognitive and neuroimaging abnormalities. Increasing levels of such stress and the switch to immune and metabolic downregulation are detailed next in relation to the advent of hypernitrosylation, impaired mitochondrial performance, immune suppression, cellular hibernation, endotoxin tolerance and sirtuin 1 activation. The role of chronic stress and the development of endotoxin tolerance via indoleamine 2,3-dioxygenase upregulation and the characteristics of neutrophils, monocytes, macrophages and T cells, including regulatory T cells, in endotoxin tolerance are detailed next. Finally, it is shown how the immune and metabolic abnormalities of chronic fatigue syndrome can be explained by endotoxin tolerance, thus completing the model.
Aim & Objective: To delineate the associations between executive impairments and changes in tryptophan catabolite (TRYCAT) patterning, negative symptoms and deficit schizophrenia. Methods: We recruited 80 schizophrenic patients and 40 healthy controls and assessed 10 key cognitive tests using the Cambridge Neuropsychological Test Automated Battery (CANTAB), IgA/IgM responses to tryptophan catabolites (TRYCATs), the Scale for the Assessment of Negative Symptoms (SANS) and Positive and Negative Syndrome Scale. Results: Partial Least Squares path modeling shows that a large part of the variance in negative symptoms and the deficit phenotype (39-53%) is explained by executive impairments, TRYCAT levels and male sex and that 53.4% of the variance in executive impairments is explained by TRYCATs, lower education, age and a familial history of psychosis. Specific indirect effects of TRYCATs, age and education on negative symptoms are mediated by executive impairments. Nevertheless, sustained attention, memory and emotion recognition also mediate the effects of TRYCATS, lower education and male sex on negative symptoms. Conclusion: Deficit schizophrenia is accompanied by a broader spectrum of cognitive impairments than nondeficit schizophrenia, including executive functions, sustained attention, episodic and semantic memory and emotion recognition. Furthermore, neuro-immune disorders underpin executive impairments, whilst neuro-immune disorders coupled with executive and other cognitive impairments to a large extent determine negative symptoms and the deficit phenotype.
The aims of this study were to examine the late components of the auditory event-related potentials (AERPs), i.e. N<sub>100</sub>, P<sub>200</sub> and P<sub>300</sub>, in recently detoxified alcohol-dependent patients compared to normal controls and to investigate whether there is a relationship between alterations in these AERPs and signs of activation of the inflammatory response system (IRS). The study subjects consisted of 14 healthy volunteers and 14 recently detoxified alcohol-dependent patients. All subjects performed a two-tone auditory discrimination task, using a standard ‘oddball’ paradigm. The alcohol-dependent patients had their blood sampled to examine IRS markers, such as erythrocyte sedimentation rate (ESR), serum copper concentrations and the number of leukocytes. The P<sub>300</sub> latency was significantly greater in recently detoxified alcohol-dependent patients than in normal controls. There were significant correlations between the P<sub>300</sub> latency and the ESR (r = 0.84, p = 0.009), serum copper concentrations (r = 0.73, p = 0.01) and number of monocytes (r = 0.71, p = 0.006). It is concluded that the P<sub>300</sub> latency is prolonged in detoxified, chronic alcohol-dependent patients and is positively related to indicators of IRS activation. It is hypothesized that activation of the IRS may play a role in the delayed P<sub>300</sub> latency in recently detoxified, alcohol-dependent patients.
We have shown that a depletion of omega3 polysaturated fatty acids (PUFAs) plays a role in the pathophysiology of depression, in part because omega3 PUFAs have anti-inflammatory effects. omega3 PUFAs are frequently employed to treat depression. Most if not all antidepressants have negative immunoregulatory effects by decreasing the production of proinflammatory cytokines, such as interferon-gamma (IFNgamma) and/or increasing that of anti-inflammatory cytokines, such as interleukin10 (IL-10).The aim of the present study was to examine the immunoregulary effects of the omega3 PUFAs, eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), and the omega6 PUFA, arachidonic acid (AA), on the production of interferon-gamma (IFNgamma), interleukin-10 (IL-10) and tumor necrosis factor-alpha (TNFalpha).This study examines the ex vivo effects of EPA (4.5 microM, 9 microM, 18 microM and 45 microM), DHA (1.3 microM, 3 microM, 6 microM and 13 microM) and AA (8 microM, 16 microM, 32 microM and 80 microM) on the LPS + PHA-stimulated production of IFNgamma, IL-10 and TNFalpha, and on the IFNgamma/IL-10 production ratio.We found that EPA did not have any significant effects on the above cytokines. DHA significantly increased the IFNgamma/IL-10 production ratio, caused by a greater reduction in IL-10 than in IFNgamma. AA significantly decreased TNFalpha production.The results show that DHA induces a Th-1-like immune response and that AA has anti-inflammatory effects by decreasing the production of TNFalpha. Thus, the immune effects of omega3 PUFAs are not compatible with what is expected from antidepressive substances. The results of the present study show that treatment with fish oils, containing DHA, should be avoided in the treatment of depression. Toward this end, highly concentrated and pure EPA seems to be indicated.
Objectives: Stable-phase schizophrenia comprises two distinct entities namely Major Neuro-Cognitive Psychosis (MNP) and simple NP (SNP), which are defined by neuroimmune and neurocognitive abnormalities.Methods: This study investigates associations of psychomotor retardation (PMR), clinical and biomarker characteristics of schizophrenia. We recruited 40 healthy controls and 79 schizophrenia patients and measured IgA responses to tryptophan catabolites (TRYCATs), IgM to malondialdehyde and nitroso (NO)-cysteinyl, CCL-11, an immune activation index based on cytokine levels, and motor screening task (MOT) scores.Results: PMR differentiated schizophrenia from controls and MNP from SNP. In addition, PMR was strongly associated with impairments in executive functions and episodic and semantic memory, psychotic, hostility, excitation, mannerism and negative (PHEMN) symptoms. Around 50% of the variance in PMR was predicted by the cumulative effects of the immune activation index, CCL-11, TRYCATs, NO-Cysteinyl and natural IgM. PRM can reliably be combined with PHEMN symptoms, memory and executive impairments into one latent vector reflecting overall severity of schizophrenia.Conclusions: PMR is a key psychopathological feature of schizophrenia mainly MNP. In addition, PMR may be driven by deficits in the compensatory immune-regulatory system and increased production of neurotoxic immune products, namely TRYCATs, IgM to NO-cysteinyl, and CCL-11, an endogenous cognition deteriorating chemokine.