Most likely, no single ADHD biomarker can be identified. However, the use of a combination of markers may help to reduce heterogeneity and to identify homogeneous subtypes of ADHD.
Objective. The phenotypic complexity, together with the multifarious nature of the so-called ''schizophrenic psychoses'', limits our ability to form a simple and logical biologically based hypothesis for the disease group. Biological markers are defined as biochemical, physiological or anatomical traits that are specific to particular conditions. An important aim of biomarker discovery is the detection of disease correlates that can be used as diagnostic tools. Method. A selective review of the WFSBP Task Force on Biological Markers in schizophrenia is provided from the central nervous system to phenotypes, functional brain systems, chromosomal loci with potential genetic markers to the peripheral systems. Results. A number of biological measures have been proposed to be correlated with schizophrenia. At present, not a single biological trait in schizophrenia is available which achieves sufficient specificity, selectivity and is based on causal pathology and predictive validity to be recommended as diagnostic marker. Conclusions. With the emergence of new technologies and rigorous phenotypic subclassification the identification of genetic bases and assessment of dynamic disease related alterations will hopefully come to a new stage in the complex field of psychiatric research.
The pharmacodynamics of serotonergic antidepressants that differentially influence serotonin reuptake transporters is poorly investigated. The aim of this study was to compare the biochemical profiles in patients with anxious depression under the treatment with tianeptine, a serotonin reuptake enhancer, and sertraline, a selective serotonin reuptake inhibitor. Platelet monoamine oxidase (MAO) and serum amine oxidase (AO) activities, concentration of middle-mass endotoxic molecules (MMEM) and parameters that characterize the functional properties of serum albumin were investigated in 43 patients with anxious depression (ICD-10: F 32.1 and F 33.1). It was established that, in comparison with healthy controls, patients with anxious depression were characterized by the significant increase in MAO activity (by 95%), MMEM concentration (by 86%), and a significant decrease in AO activity (by 43%) and also in functional albumin activity. The results of the study show that both tianeptine and sertraline are equally effective in the treatment of anxious depression. The present biochemical investigation, however, suggests that the underlying biochemical changes are more complete following tianeptine treatment.
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