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The most prominent brain region evaluating the significance of external stimuli immediately after their onset is the amygdala. Stimuli evaluated as being stressful actuate a number of physiological processes as an immediate stress response. Variation in the serotonin transporter gene has been associated with increased anxiety- and depression-like behavior, altered stress reactivity and adaptation, and pathophysiology of stress-related disorders. In this study the instant reactions to an acute stressor were measured in a serotonin transporter knockout mouse model. Mice lacking the serotonin transporter were verified to be more anxious than their wild-type conspecifics. Genome-wide gene expression changes in the amygdala were measured after the mice were subjected to control condition or to an acute stressor of one minute exposure to water. The dissection of amygdalae and stabilization of RNA was conducted within nine minutes after the onset of the stressor. This extremely short protocol allowed for analysis of first wave primary response genes, typically induced within five to ten minutes of stimulation, and was performed using Affymetrix GeneChip Mouse Gene 1.0 ST Arrays. RNA profiling revealed a largely new set of differentially expressed primary response genes between the conditions acute stress and control that differed distinctly between wild-type and knockout mice. Consequently, functional categorization and pathway analysis indicated genes related to neuroplasticity and adaptation in wild-types whereas knockouts were characterized by impaired plasticity and genes more related to chronic stress and pathophysiology. Our study therefore disclosed different coping styles dependent on serotonin transporter genotype even directly after the onset of stress and accentuates the role of the serotonergic system in processing stressors and threat in the amygdala. Moreover, several of the first wave primary response genes that we found might provide promising targets for future therapeutic interventions of stress-related disorders also in humans.
Das Enzym Catechol-O- Methyltransferase (COMT) spielt eine wichtige Rolle beim Abbau der Neurotransmitter Dopamin, Noradrenalin und Adrenalin. In dessen Gen befindet sich ein Polymorphismus (SNP), der einen Aminosäureaustausch von Valin zu Methionin an Position 158 der membrangebundenden Isoform bewirkt.. In früheren Studien zeigen die verschiedenen Genotypen des Polymorphismus Unterschiede in der emotionalen Verarbeitung, bei der die COMT Einfluss auf die Verarbeitung von negativen, aber nicht von positiven Stimuli zeigt. Neben emotionalen werden durch die COMT aber auch kognitive präfrontale Prozesse beeinflusst. Eine Aufmerksamkeitslenkung auf Bilder führt im Zeitfenster der EPN und LPP zu ähnlichen Effekten wie beim Betrachten emotionaler Bilder In dieser Studie sollte daher untersucht werden, ob die COMT- Effekte auf die Emotionsverarbeitung durch Aufmerksamkeitsprozesse begründet sind und diese unabhängig vom emotionalen Inhalt durch die Aufmerksamkeitsinstruktion auslösbar sind.
Dafür wurden bei 48 gesunden und entweder Val/Val oder Met/Met- Homozygoten Probanden während der Präsentation von IAPS Bildern mit positiven, negativen und neutralen Bildern ein EEG abgeleitet. Und es wurde die neuronale Aktivierung bei emotionalen Stimuli, in Interaktion mit der Instruktion, die Aufmerksamkeit auf eine bestimmte emotionale Kategorie zu richten, untersucht. Dabei zeigten sich die erwarteten Emotions- und Aufmerksamkeitseffekte auf EPN und LPP. Keinen Einfluss hatte der COMT-Genotyp. Dies könnte an der Interferenz der Emotionseffekte mit kognitiven Effekten des COMT- Polymorphismus liegen.
Gegenstand der vorliegenden Arbeit ist die Untersuchung des Einflusses der Angstsensitivität auf die Emotionsverarbeitung und selektive Aufmerksamkeitsprozesse. Anhand des Angstsensitivitätsindex-3 (ASI-3) wurden die Probanden in stark und wenig angstsensitiv eingeteilt. Der Selbstbeurteilungsfragebogen ASI-3 erfasst in welchem Maß die betreffende Person auf typische angstauslösende Stimuli mit Symptomen reagiert (Kemper, et al., 2009). Bei 53 gesunden, freiwilligen Probanden wurde, während der Präsentation von Bildern mit positiven, negativen und neutralen Inhalt, ein EEG (Elektroenzephalogramm) abgeleitet. In Anlehnung an das Paradigma von Schupp und Kollegen (Schupp, et al., 2007) wurde jede Bildkategorie jeweils in einem Durchgang als Target- und gleichzeitig die beiden anderen Kategorien als Non-Target-Bedingung dargeboten. Außerdem wurde ein Durchgang mit der Anweisung „alle gleich beachten“ (PB-Bedingung) durchgeführt. Die Angstsensitivität beeinflusst den Verlauf des EPN (early posterior negative potential). Bei hoch angstsensitiven Probanden zeigt sich ein stärker negativer Verlauf der EPN-Amplitude als bei wenig Angstsensitiven. Diese Aussage gilt für die Darbietung von neutralen und positiven Bildern bei der PB-Bedingung. Bei Probanden mit hoher Angstsensitivität verläuft sowohl bei der Target-Bedingung als auch bei der Non-Target-Bedingung das EPN signifikant negativer, als bei denjenigen mit niedriger Angstsensitivität. Ebenfalls zeigte sich das EPN-Potential während der Target- und Non-Target-Bedingung bei positiven und neutralen Bildern für hoch angstsensitive Probanden signifikant negativer als bei wenig angstsensitiven Probanden. Im LPP (late positive potential) zeigte sich kein Einfluss der Angstsensitivität auf den Verlauf des Potentials. Keine geschlechtsspezifischen Unterschiede konnten im LPP und EPN festgestellt werden.
Background: Bipolar disorders (BD) are among the most severe mental disorders with first clinical signs and symptoms frequently appearing in adolescence and early adulthood. The long latency in clinical diagnosis (and subsequent adequate treatment) adversely affects the course of disease, effectiveness of interventions and health-related quality of life, and increases the economic burden of BD. Despite uncertainties about risk constellations and symptomatology in the early stages of potentially developing BD, many adolescents and young adults seek help, and most of them suffer substantially from symptoms already leading to impairments in psychosocial functioning in school, training, at work and in their social relationships. We aimed to identify subjects at risk of developing BD and investigate the efficacy and safety of early specific cognitive-behavioural psychotherapy (CBT) in this subpopulation.
Methods/Design: EarlyCBT is a randomised controlled multi-centre clinical trial to evaluate the efficacy and safety of early specific CBT, including stress management and problem solving strategies, with elements of mindfulness-based therapy (MBT) versus unstructured group meetings for 14 weeks each and follow-up until week 78. Participants are recruited at seven university hospitals throughout Germany, which provide in-and outpatient care (including early recognition centres) for psychiatric patients. Subjects at high risk must be 15 to 30 years old and meet the combination of specified affective symptomatology, reduction of psychosocial functioning, and family history for (schizo) affective disorders. Primary efficacy endpoints are differences in psychosocial functioning and defined affective symptomatology at 14 weeks between groups. Secondary endpoints include the above mentioned endpoints at 7, 24, 52 and 78 weeks and the change within groups compared to baseline; perception of, reaction to and coping with stress; and conversion to full BD.
Discussion: To our knowledge, this is the first study to evaluate early specific CBT in subjects at high risk for BD. Structured diagnostic interviews are used to map the risk status and development of disease. With our study, the level of evidence for the treatment of those young patients will be significantly raised.
Dysregulated IGFBP5 expression causes axon degeneration and motoneuron loss in diabetic neuropathy
(2015)
Diabetic neuropathy (DNP), afflicting sensory and motor nerve fibers, is a major complication in diabetes.The underlying cellular mechanisms of axon degeneration are poorly understood. IGFBP5, an inhibitory binding protein for insulin-like growth factor 1 (IGF1) is highly up-regulated in nerve biopsies of patients with DNP. We investigated the pathogenic relevance of this finding in transgenic mice overexpressing IGFBP5 in motor axons and sensory nerve fibers. These mice develop motor axonopathy and sensory deficits similar to those seen in DNP. Motor axon degeneration was also observed in mice in which the IGF1 receptor(IGF1R) was conditionally depleted in motoneurons, indicating that reduced activity of IGF1 on IGF1R in motoneurons is responsible for the observed effect. These data provide evidence that elevated expression of IGFBP5 in diabetic nerves reduces the availability of IGF1 for IGF1R on motor axons, thus leading to progressive neurodegeneration. Inhibition of IGFBP5 could thus offer novel treatment strategies for DNP.
Background
In individuals suffering from a rare disease the diagnostic process and the confirmation of a final diagnosis often extends over many years. Factors contributing to delayed diagnosis include health care professionals' limited knowledge of rare diseases and frequent (co-)occurrence of mental disorders that may complicate and delay the diagnostic process. The ZSE-DUO study aims to assess the benefits of a combination of a physician focusing on somatic aspects with a mental health expert working side by side as a tandem in the diagnostic process.
Study design
This multi-center, prospective controlled study has a two-phase cohort design.
Methods
Two cohorts of 682 patients each are sequentially recruited from 11 university-based German Centers for Rare Diseases (CRD): the standard care cohort (control, somatic expertise only) and the innovative care cohort (experimental, combined somatic and mental health expertise). Individuals aged 12 years and older presenting with symptoms and signs which are not explained by current diagnoses will be included. Data will be collected prior to the first visit to the CRD’s outpatient clinic (T0), at the first visit (T1) and 12 months thereafter (T2).
Outcomes
Primary outcome is the percentage of patients with one or more confirmed diagnoses covering the symptomatic spectrum presented. Sample size is calculated to detect a 10 percent increase from 30% in standard care to 40% in the innovative dual expert cohort. Secondary outcomes are (a) time to diagnosis/diagnoses explaining the symptomatology; (b) proportion of patients successfully referred from CRD to standard care; (c) costs of diagnosis including incremental cost effectiveness ratios; (d) predictive value of screening instruments administered at T0 to identify patients with mental disorders; (e) patients’ quality of life and evaluation of care; and f) physicians’ satisfaction with the innovative care approach.
Conclusions
This is the first multi-center study to investigate the effects of a mental health specialist working in tandem with a somatic expert physician in CRDs. If this innovative approach proves successful, it will be made available on a larger scale nationally and promoted internationally. In the best case, ZSE-DUO can significantly shorten the time to diagnosis for a suspected rare disease.
Intrazerebrale stereotaktische Eingriffe werden zu einem großen Teil ohne direkte Sichtkontrolle durchgeführt. Ein Operateur muss sich deshalb bei der räumlichen Festlegung von Strukturen und beim Anfahren dieser Strukturen auf Hilfsmittel wie stereotaktische Geräte und auf Atlanten, über welche die stereotaktischen Geräte gesteuert werden, verlassen. Trotz großer Fortschritte bei den bildgebenden Verfahren während der letzten dreißig Jahre, ist es gegenwärtig noch nicht möglich, zuverlässig alle subkortikalen Strukturen mit computertomographischen (CT) oder magnetresonanztomographischen (MRT) zu identifizieren oder begrenzen. Eine ganze Reihe zytoarchitektonischer beziehungsweise immunhistochemischer Atlanten wurde veröffentlicht. Dennoch ist es nicht gelungen, die Ergebnisse und Abbildungen dieser Atlanten mit bildgebenden Verfahren bis in die gewünschten Details zu kombinieren, um auf diese Weise das immer noch geringe Auflösungsvermögen radiologischer Methoden zu erhöhen. Deformationen bei der Gewebsentnahme des Gehirns, bei der anschließenden Einbettung, bei der alkoholischen Dehydrierung des Gewebes, Verformungen beim Schneiden und Färben der Schnitte überfordern selbst hoch komplexe mathematische Verfahren und Algorithmen beim Versuch, zytoarchitektonische und immunhistochemische Schnitte mit der gewünschten Präzision den radiologischen Ergebnissen und Bildern und damit indirekt auch den Verhältnissen in vivo anzupassen. Als Alternative verwendeten wir ungewöhnlich dicke (350 – 440 µm) Gallozyanin- (Nissl) gefärbte Serienschnitte durch die Gehirne (ZNS) von drei Personen im Alter von 56, 68 und 36 Jahren. Bei einem Fall wurde das ZNS post mortem mit einem Kernspintomographen vor der Entnahme gescannt. Die Serienschnitte durch dieses Gehirn und das eines zweiten und dritten nicht-gescannten Falles wurden mit Gallozyanin gefärbt, die zytoarchitektonischen Grenzen des Thalamuskomplexes und seiner Unterkerne wurden nach Hassler (1982) identifiziert, jede ihrer Grenzen mit dem Cursor eines Graphiktabletts umfahren und die Gestalt des Thalamuskomplexes und seiner Unterkerne mit Hilfe von Photoshop CS5® und eines computergestützten 3D-Rekonstruktionsprogramms (Amira®) dargestellt. Im Fall 3 ließen sich nach Dunkelfeldbeleuchten die Verteilung markhaltiger Fasern studieren und die zytoarchitektonischen mit myeloarchitektonischen Befunden erweitern und ergänzen. Zusätzlich konnten im Fall 1 die histologischen Serienschnitte und ihre 3D Rekonstruktion mit dem post mortem in cranio MRT registriert werden. Insgesamt kann dieser methodische Ansatz als eine robuste und relativ einfache wenn auch mit umfangreicherer manueller Tätigkeit verbundene Technik zur sehr detailreichen unverformten Korrelation zytoarchitektonischer und kernspinotomographsicher Darstellung des Thalamuskomplexus und seiner Unterkerne angesehen werden. Sie könnte als Grundlage für die Herausgabe eines multimedialen 3D stereotaktischen Atlas des menschlichen Gehirns dienen.
Multiple fluorescence in situ hybridization is the method of choice for studies aimed at determining simultaneous production of signal transduction molecules and neuromodulators in neurons. In our analyses of the monoamine receptor mRNA expression of peptidergic neurons in the rat telencephalon, double tyramide-signal-amplified fluorescence in situ hybridization delivered satisfactory results for coexpression analysis of neuropeptide Y (NPY) and serotonin receptor 2C (5-HT2C) mRNA, a receptor subtype expressed at high-to-moderate abundance in the regions analyzed. However, expression of 5-HT1A mRNA, which is expressed at comparatively low abundance in many telencephalic areas, could not be unequivocally identified in NPY mRNA-reactive neurons due to high background and poor signal-to-noise ratio in fluorescent receptor mRNA detections. Parallel chromogenic in situ hybridization provided clear labeling for 5-HT1A mRNA and additionally offered the possibility to monitor the chromogen deposition at regular time intervals to determine the optimal signal-to-noise ratio. We first developed a double labeling protocol combining fluorescence and chromogenic in situ hybridization and subsequently expanded this variation to combine double fluorescence and chromogenic in situ hybridization for triple labelings. With this method, we documented expression of 5-HT2C and/or 5-HT1A in subpopulations of telencephalic NPY-producing neurons. The method developed in the present study appears suitable for conventional light and fluorescence microscopy, combines advantages of fluorescence and chromogenic in situ hybridization protocols and thus provides a reliable non-radioactive alternative to previously published multiple labeling methods for coexpression analyses in which one mRNA species requires highly sensitive detection.
Multiple fluorescence in situ hybridization is the method of choice for studies aimed at determining simultaneous production of signal transduction molecules and neuromodulators in neurons. In our analyses of the monoamine receptor mRNA expression of peptidergic neurons in the rat telencephalon, double tyramide-signal-amplified fluorescence in situ hybridization delivered satisfactory results for coexpression analysis of neuropeptide Y (NPY) and serotonin receptor 2C (5-HT2C) mRNA, a receptor subtype expressed at high-to-moderate abundance in the regions analyzed. However, expression of 5-HT1A mRNA, which is expressed at comparatively low abundance in many telencephalic areas, could not be unequivocally identified in NPY mRNA-reactive neurons due to high background and poor signal-to-noise ratio in fluorescent receptor mRNA detections. Parallel chromogenic in situ hybridization provided clear labeling for 5-HT1A mRNA and additionally offered the possibility to monitor the chromogen deposition at regular time intervals to determine the optimal signal-to-noise ratio. We first developed a double labeling protocol combining fluorescence and chromogenic in situ hybridization and subsequently expanded this variation to combine double fluorescence and chromogenic in situ hybridization for triple labelings. With this method, we documented expression of 5-HT2C and/or 5-HT1A in subpopulations of telencephalic NPY-producing neurons. The method developed in the present study appears suitable for conventional light and fluorescence microscopy, combines advantages of fluorescence and chromogenic in situ hybridization protocols and thus provides a reliable non-radioactive alternative to previously published multiple labeling methods for coexpression analyses in which one mRNA species requires highly sensitive detection.
Multiple fluorescence in situ hybridization is the method of choice for studies aimed at determining simultaneous production of signal transduction molecules and neuromodulators in neurons. In our analyses of the monoamine receptor mRNA expression of peptidergic neurons in the rat telencephalon, double tyramide-signal-amplified fluorescence in situ hybridization delivered satisfactory results for coexpression analysis of neuropeptide Y (NPY) and serotonin receptor 2C (5-HT2C) mRNA, a receptor subtype expressed at high-to-moderate abundance in the regions analyzed. However, expression of 5-HT1A mRNA, which is expressed at comparatively low abundance in many telencephalic areas, could not be unequivocally identified in NPY mRNA-reactive neurons due to high background and poor signal-to-noise ratio in fluorescent receptor mRNA detections. Parallel chromogenic in situ hybridization provided clear labeling for 5-HT1A mRNA and additionally offered the possibility to monitor the chromogen deposition at regular time intervals to determine the optimal signal-to-noise ratio. We first developed a double labeling protocol combining fluorescence and chromogenic in situ hybridization and subsequently expanded this variation to combine double fluorescence and chromogenic in situ hybridization for triple labelings. With this method, we documented expression of 5-HT2C and/or 5-HT1A in subpopulations of telencephalic NPY-producing neurons. The method developed in the present study appears suitable for conventional light and fluorescence microscopy, combines advantages of fluorescence and chromogenic in situ hybridization protocols and thus provides a reliable non-radioactive alternative to previously published multiple labeling methods for coexpression analyses in which one mRNA species requires highly sensitive detection.
Recent studies as well as theoretical models of error processing assign fundamental importance to the brain's dopaminergic system. Research about how the electrophysiological correlates of error processing—the error-related negativity (ERN) and the error positivity (Pe)—are influenced by variations of common dopaminergic genes, however, is still relatively scarce. In the present study, we therefore investigated whether polymorphisms in the DAT1 gene and in the DRD4 gene, respectively, lead to interindividual differences in these error processing correlates. One hundred sixty participants completed a version of the Eriksen Flanker Task while a 26-channel EEG was recorded. The task was slightly modified in order to increase error rates. During data analysis, participants were split into two groups depending on their DAT1 and their DRD4 genotypes, respectively. ERN and Pe amplitudes after correct responses and after errors as well as difference amplitudes between errors and correct responses were analyzed. We found a differential effect of DAT1 genotype on the Pe difference amplitude but not on the ERN difference amplitude, while the reverse was true for DRD4 genotype. These findings are in line with predictions from theoretical models of dopaminergic transmission in the brain. They furthermore tie results from clinical investigations of disorders impacting on the dopamine system to genetic variations known to be at-risk genotypes.
Background
Temporal lobe epilepsy (TLE) with hippocampal sclerosis (HS) is a common pharmaco-resistant epilepsy referred for adult epilepsy surgery. Though associated with prolonged febrile seizures (FS) in childhood, the neurobiological basis for this relationship is not fully understood and currently no preventive or curative therapies are available. DNA methylation, an epigenetic mechanism catalyzed by DNA methyltransferases (DNMTs), potentially plays a pivotal role in epileptogenesis associated with FS. In an attempt to start exploring this notion, the present cross-sectional pilot study investigated whether global DNA methylation levels (5-mC and 5-hmC markers) and DNMT isoforms (DNMT1, DNMT3a1, and DNMT3a2) expression would be different in hippocampal and neocortical tissues between controls and TLE patients with or without a history of FS.
Results
We found that global DNA methylation levels and DNMT3a2 isoform expression were lower in the hippocampus for all TLE groups when compared to control patients, with a more significant decrease amongst the TLE groups with a history of FS. Interestingly, we showed that DNMT3a1 expression was severely diminished in the hippocampus of TLE patients with a history of FS in comparison with control and other TLE groups. In the neocortex, we found a higher expression of DNMT1 and DNMT3a1 as well as increased levels of global DNA methylation for all TLE patients compared to controls.
Conclusion
Together, the findings of this descriptive cross-sectional pilot study demonstrated brain region-specific changes in DNMT1 and DNMT3a isoform expression as well as global DNA methylation levels in human TLE with or without a history of FS. They highlighted a specific implication of DNMT3a isoforms in TLE after FS. Therefore, longitudinal studies that aim at targeting DNMT3a isoforms to evaluate the potential causal relationship between FS and TLE or treatment of FS-induced epileptogenesis seem warranted.
That the human brain contains magnetite is well established; however, its spatial distribution in the brain has remained unknown. We present room temperature, remanent magnetization measurements on 822 specimens from seven dissected whole human brains in order to systematically map concentrations of magnetic remanence carriers. Median saturation remanent magnetizations from the cerebellum were approximately twice as high as those from the cerebral cortex in all seven cases (statistically significantly distinct, p = 0.016). Brain stems were over two times higher in magnetization on average than the cerebral cortex. The ventral (lowermost) horizontal layer of the cerebral cortex was consistently more magnetic than the average cerebral cortex in each of the seven studied cases. Although exceptions existed, the reproducible magnetization patterns lead us to conclude that magnetite is preferentially partitioned in the human brain, specifically in the cerebellum and brain stem.
Disorder-specific effects of polymorphisms at opposing ends of the Insulin Degrading Enzymegene
(2011)
Background
Insulin-degrading enzyme (IDE) is the ubiquitously expressed enzyme responsible for insulin and amyloid beta (Aβ) degradation. IDE gene is located on chromosome region 10q23-q25 and exhibits a well-replicated peak of linkage with Type 2 diabetes mellitus (T2DM). Several genetic association studies examined IDE gene as a susceptibility gene for Alzheimer's disease (AD), however with controversial results.
Methods
We examined associations of three IDE polymorphisms (IDE2, rs4646953; IDE7, rs2251101 and IDE9, rs1887922) with AD, Aβ42 plasma level and T2DM risk in the longitudinal Vienna Transdanube Aging (VITA) study cohort.
Results
The upstream polymorphism IDE2 was found to influence AD risk and to trigger the Aβ42 plasma level, whereas the downstream polymorphism IDE7 modified the T2DM risk; no associations were found for the intronic variant IDE9.
Conclusions
Based on our SNP and haplotype results, we delineate the model that IDE promoter and 3' untranslated region/downstream variation may have different effects on IDE expression, presumably a relevant endophenotype with disorder-specific effects on AD and T2DM susceptibility.
Psychosocial factors affect mental health and health-related quality of life (HRQL) in a complex manner, yet gender differences in these interactions remain poorly understood. We investigated whether psychosocial factors such as social support and personal and work-related concerns impact mental health and HRQL differentially in women and men during the first year of the COVID-19 pandemic. Between June and October 2020, the first part of a COVID-19-specific program was conducted within the “Characteristics and Course of Heart Failure Stages A-B and Determinants of Progression (STAAB)” cohort study, a representative age- and gender-stratified sample of the general population of Würzburg, Germany. Using psychometric networks, we first established the complex relations between personal social support, personal and work-related concerns, and their interactions with anxiety, depression, and HRQL. Second, we tested for gender differences by comparing expected influence, edge weight differences, and stability of the networks. The network comparison revealed a significant difference in the overall network structure. The male (N = 1370) but not the female network (N = 1520) showed a positive link between work-related concern and anxiety. In both networks, anxiety was the most central variable. These findings provide further evidence that the complex interplay of psychosocial factors with mental health and HRQL decisively depends on gender. Our results are relevant for the development of gender-specific interventions to increase resilience in times of pandemic crisis.
Prenatal stress (PS) has been shown to influence the development of the fetal brain and to increase the risk for the development of psychiatric disorders in later life. Furthermore, the variation of human serotonin transporter (5-HTT, SLC6A4) gene was suggested to exert a modulating effect on the association between early life stress and the risk for depression. In the present study, we used a 5-HttxPS paradigm to investigate whether the effects of PS are dependent on the 5-Htt genotype. For this purpose, the effects of PS on cognition, anxiety-and depression-related behavior were examined using a maternal restraint stress paradigm of PS in C57BL6 wild-type (WT) and heterozygous 5-Htt deficient (5-Htt +/-) mice. Additionally, in female offspring, a genome-wide hippocampal gene expression profiling was performed using the Affymetrix GeneChip (R) Mouse Genome 430 2.0 Array. 5-Htt +/- offspring showed enhanced memory performance and signs of reduced anxiety as compared to WT offspring. In contrast, exposure of 5-Htt +/- mice to PS was associated with increased depressive-like behavior, an effect that tended to be more pronounced in female offspring. Further, 5-Htt genotype, PS and their interaction differentially affected the expression of numerous genes and related pathways within the female hippocampus. Specifically, MAPK and neurotrophin signaling were regulated by both the 5-Htt +/- genotype and PS exposure, whereas cytokine and Wnt signaling were affected in a 5-Htt genotypexPS manner, indicating a genexenvironment interaction at the molecular level. In conclusion, our data suggest that although the 5-Htt +/- genotype shows clear adaptive capacity, 5-Htt +/- mice -particularly females-at the same time appear to be more vulnerable to developmental stress exposure when compared to WT offspring. Moreover, hippocampal gene expression profiles suggest that distinct molecular mechanisms mediate the behavioral effects of the 5-Htt genotype, PS exposure, and their interaction.
Neuromelanin (NM) is a complex polymer pigment found in catecholaminergic neurons of the human substantia nigra and locus ceruleus. The structure of this molecule is poorly characterised, and the physiological function of it in the brain is unknown. In vitro data, based upon synthetic dopamine melanins (DAM), suggest that these pigments may exhibit radical scavenging properties, but in the presence of iron, DAM acts as a proxidant. These data suggested that NM may be associated with the especial vulnerability of pigmented dopaminergic cells in Parkinson´s disease (PD), a disorder in which nigral iron levels are increased and the relatively specific loss of the pigmented neurons of the substantia nigra. Given the rarity of NM, and the difficulty of isolating this material from the human brain, all functional studies of NM published to date have utilised a synthetic dopamine melanin in place of the native pigment. In the current work we investigated the effects of NM from the healthy human brain and synthetic DAM on cell health and oxidative status in human-derived cell lines. Methods SK-N-SH, a human neuroblastoma cell line, and U 373, a human glioblastoma cell line was chosen to represent human neuronal and glial cell types. NM was isolated from the SN of adult human subjects from Australia and Germany with no history of neurological or neurodegenerative diseases. Synthetic DAM was prepared by autooxidation of dopamine. DAM and NM samples were added to the cultures with fresh media to final concentrations of 0.05 or 0.1 mg/ml. In some experiments cells were incubated with Fenton reagent (400µM FeSO4 plus 200µM H2O2) in the presence or absence of melanin or the iron chelator desferoxamine mesylate (100µM). The cells were incubated at 37 °C at 5% CO2 for varying periods of time as described. Lactate dehydrogenase (LDH) activity and Lipid peroxidation were measured. Hydroxyl radical production in the cultures was estimated used a modification of the salicylic acid spin-trapping method. All experiments were performed three times in triplicate and analysed using regression analysis and one- or two-way Analysis of Variance followed by Bonferroni’s t test corrected for multiple comparisons as appropriate. Results Following 24 hr incubation, both the native NM and the synthetic DAM pigment could be seen as electron dense granules both within the cell bodies of the SK-N-SH and U373 cells. The melanin was incorporated into the cell via an invagination of the cell membrane. DAM but not NM significantly increased the LDH activity and lipid peroxidation as well as the hydroxyl radical production. Co-incubation of Fenton reagent with either DAM or NM resulted in additive effects, compared to the levels elicited by Fenton reagent and the melanins alone. When added the iron chelator desferoximine together with Fenton reagent attentuated lipid peroxidation and hydroxyl radical production to control levels. In contrast, lipid peroxidation and hydroxyl radical production in U373 cells exposed to NM or DAM did not differ to that measured in untreated cells. Discussion Human neuron-derived cell line is a useful approach to address the effects of NM on dopaminergic neuron function. This is the first work to use internalised NM isolated from the healthy human brain as a model of intraneuronal pigment in vitro. Cell line functional studies showing cellular changes induced by DAM but not NM demonstrated that DAM is relatively toxic to cells but not NM. DAM represents a poor functional model of NM in that it displays a marked toxicity unrepresentative of the effects of the native melanin. Both NM and DAM were unable to attentuate the toxic effects of the added oxidative stimulus, this probably due to the exceeding the chelating capacity of NM. Future studies should point to the characterization and role of NM under in vivo conditions. The development of strategies to protect the neuromelanin in dopaminergic neurons may have important therapeutic implications not only for PD.
Nikotinkonsum senkt zum einen die Lebenserwartung durch Verursachung von z.B. Erkrankungen des Herz-Kreislauf-Systems und Krebserkrankungen und führt zum anderen zu hohen volkswirtschaftlichen Belastungen. Das mesokortikolimbische dopaminerge System, insbesondere der dlPFC, spielt eine entscheidende Rolle für die Entstehung des cue-induced Craving, das als wichtiger Risikofaktor für Rückfälle bei der Entzugstherapie gilt. Die Wirkung von rTMS des dlPFC zur Verringerung des cue-induced Craving wurde in zahlreichen Studien untersucht. Jedoch gibt es bislang keine Studie, die sich mit der Wirkung von iTBS als relativ neue Variante der rTMS zur Unterstützung der Nikotinentwöhnung beschäftigt hat. 45 gesunde Raucher zwischen 21 und 64 Jahren nahmen an einem dreiwöchigen KBN teil. Die Versuchspersonen wurden randomisiert einer Verum- bzw. einer Placebogruppe zugeordnet, die jeweils vier iTBS-Behandlungen mit einer Stimulationsstärke von 80 % der Motorschwelle bzw. sham-Stimulationen über dem rechten dlPFC über zwei Wochen erhielten. Vor und nach den Stimulationen wurden Daten zum Rauchverhalten, insbesondere dem subjektiv empfundenen Craving, mittels standardisierter Fragebögen erhoben sowie die Aktivität des dlPFC mit fNIRS gemessen, einer relativ neuen, einfach und kostengünstig durchzuführenden Methode zur Erfassung kortikaler Hirnaktivitäten. Auf Verhaltensebene ließen sich keine signifikanten Gruppenunterschiede nachweisen. Auf neurophysiologischer Ebene konnte ein signifikanter Aktivitätsanstieg des dlPFC der Verumgruppe während der Betrachtung raucherassoziierter Cues gemessen werden, der sich in der Placebogruppe nicht fand. Insgesamt waren jedoch die gemessenen Hirnaktivitäten relativ gering ausgeprägt. Die Ergebnisse deuten auf eine Wirksamkeit der iTBS auf neurophysiologischer Ebene in Form verstärkter kognitiver Suppression des cue-induced Craving hin. Jedoch sollten die Ergebnisse aufgrund der insgesamt niedrig gemessenen Hirnaktivitäten zurückhaltend interpretiert werden. Verschiedene Möglichkeiten, den Versuchsablauf zu optimieren, beispielsweise durch eine Intensivierung der iTBS-Behandlungen, werden diskutiert. Nicht zuletzt konnte die Wirksamkeit des KBN für die Raucherentwöhnung belegt werden.
Diese Arbeit widmet sich der Untersuchung einer Kopienzahlvariante (CNV) im Erbgut, die zu
einer genomischen Duplikation des SLC2A3-Gens führt. Die Auswirkungen der SLC2A3-
Duplikation wurden im Zellkulturmodell und durch bildgebende Verfahren untersucht. Für die
SLC2A3-Duplikation konnte eine populationsspezifische Assoziation mit ADHS gezeigt
werden (Merker et al. 2017). SLC2A3 kodiert für den neuronalen Glukosetransporter GLUT3,
der u.a. Prozesse der Neurotransmitterfreisetzung und Synaptogenese vermittelt und daher
wichtig für die Hirnreifung ist. Mögliche Endpunkte für Endophänotypen, die auf einem
alterierten Glukosemetabolismus basieren, sind dysfunktionale Hungerregulationsmechanismen
ebenso wie eine veränderte neurale Reaktivität gegenüber emotionalen Stimuli
und Belohnungsreizen.
In zwei peripheren Zellmodellen konnte gezeigt werden, dass die SLC2A3-Duplikation
Gen-Dosis-abhängig zu einer Steigerung der basalen SLC2A3-mRNA Expression führt. Ein
Expressionsunterschied auf Proteinebene konnte jedoch nicht gefunden werden. Metabolischer
Zellstress durch Aushungern der Zellkulturen und eine niedrige Glukosekonzentration im
Zellkulturmedium führten zu einer signifikanten Erhöhung des schon unter basalen
Bedingungen vorhandenen SLC2A3-Expressionsunterschiedes zwischen Duplikations- und
Kontrollzelllinien. Dies deutet darauf hin, dass die SLC2A3-Duplikation bei verminderter
zellulärer Energiezufuhr zu einer Überkompensation der Glukoseaufnahme führt.
In einer fMRT-Untersuchung wurden erwachsene ADHS-Patienten mit SLC2A3-
Duplikation mit ADHS-Patienten und gesunden Kontrollen mit jeweils 2 Genkopien
hinsichtlich ereigniskorrelierter neuraler Aktivität als Antwort auf emotionale Stimuli und
Essensreize verglichen. Es konnte gezeigt werden, dass die SLC2A3-Duplikation zu einer
veränderten Reaktivität gegenüber hochkalorischen Essensreizen führt, was sich in einem durch
maschinelles Lernen identifizierten multivariaten neuralen Antwortmuster und einer relativen
Unterschätzung des Kaloriengehaltes hochkalorischer Nahrung zeigt. Bei der univariaten
Gesamthirn-Analyse der Bilddaten wurden keine signifikanten Gruppenunterschiede gefunden,
was darauf hinweist, dass unter den gewählten Versuchsbedingungen keine fokal
umschriebenen Gruppenunterschiede der Hirnaktivierung bestehen.
Diese Arbeit zeigt, dass die SLC2A3-Duplikation zu einer Erhöhung der SLC2A3-
Genexpression mit bisher unbekannten Auswirkungen auf nachgeschaltete Stoffwechselwege
und zu einem komplex veränderten neuralen Antwortmuster führt, das durch einen linearen
Zusammenhang nicht zu beschreiben ist. Weitere Untersuchungen auf Zellebene und eine
Erweiterung der bildgebenden Verfahren könnten zu einer besseren Einordnung der SLC2A3-
Duplikation bezüglich ihres Anteils an der endophänotypischen Varianz der ADHS führen.