@phdthesis{Lueffe2023, author = {L{\"u}ffe, Teresa Magdalena}, title = {Behavioral and pharmacological validation of genetic zebrafish models for ADHD}, doi = {10.25972/OPUS-25716}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-257168}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Attention-deficit/hyperactivity disorder (ADHD) is the most prevalent neurodevelopmental disorder described in psychiatry today. ADHD arises during early childhood and is characterized by an age-inappropriate level of inattention, hyperactivity, impulsivity, and partially emotional dysregulation. Besides, substantial psychiatric comorbidity further broadens the symptomatic spectrum. Despite advances in ADHD research by genetic- and imaging studies, the etiopathogenesis of ADHD remains largely unclear. Twin studies suggest a heritability of 70-80 \% that, based on genome-wide investigations, is assumed to be polygenic and a mixed composite of small and large, common and rare genetic variants. In recent years the number of genetic risk candidates is continuously increased. However, for most, a biological link to neuropathology and symptomatology of the patient is still missing. Uncovering this link is vital for a better understanding of the disorder, the identification of new treatment targets, and therefore the development of a more targeted and possibly personalized therapy. The present thesis addresses the issue for the ADHD risk candidates GRM8, FOXP2, and GAD1. By establishing loss of function zebrafish models, using CRISPR/Cas9 derived mutagenesis and antisense oligonucleotides, and studying them for morphological, functional, and behavioral alterations, it provides novel insights into the candidate's contribution to neuropathology and ADHD associated phenotypes. Using locomotor activity as behavioral read-out, the present work identified a genetic and functional implication of Grm8a, Grm8b, Foxp2, and Gad1b in ADHD associated hyperactivity. Further, it provides substantial evidence that the function of Grm8a, Grm8b, Foxp2, and Gad1b in activity regulation involves GABAergic signaling. Preliminary indications suggest that the three candidates interfere with GABAergic signaling in the ventral forebrain/striatum. However, according to present and previous data, via different biological mechanisms such as GABA synthesis, transmitter release regulation, synapse formation and/or transcriptional regulation of synaptic components. Intriguingly, this work further demonstrates that the activity regulating circuit, affected upon Foxp2 and Gad1b loss of function, is involved in the therapeutic effect mechanism of methylphenidate. Altogether, the present thesis identified altered GABAergic signaling in activity regulating circuits in, presumably, the ventral forebrain as neuropathological underpinning of ADHD associated hyperactivity. Further, it demonstrates altered GABAergic signaling as mechanistic link between the genetic disruption of Grm8a, Grm8b, Foxp2, and Gad1b and ADHD symptomatology like hyperactivity. Thus, this thesis highlights GABAergic signaling in activity regulating circuits and, in this context, Grm8a, Grm8b, Foxp2, and Gad1b as exciting targets for future investigations on ADHD etiopathogenesis and the development of novel therapeutic interventions for ADHD related hyperactivity. Additionally, thigmotaxis measurements suggest Grm8a, Grm8b, and Gad1b as interesting candidates for prospective studies on comorbid anxiety in ADHD. Furthermore, expression analysis in foxp2 mutants demonstrates Foxp2 as regulator of ADHD associated gene sets and neurodevelopmental disorder (NDD) overarching genetic and functional networks with possible implications for ADHD polygenicity and comorbidity. Finally, with the characterization of gene expression patterns and the generation and validation of genetic zebrafish models for Grm8a, Grm8b, Foxp2, and Gad1b, the present thesis laid the groundwork for future research efforts, for instance, the identification of the functional circuit(s) and biological mechanism(s) by which Grm8a, Grm8b, Foxp2, and Gad1b loss of function interfere with GABAergic signaling and ultimately induce hyperactivity.}, language = {en} } @phdthesis{Raab2018, author = {Raab, Annette}, title = {The role of Rgs2 in animal models of affective disorders}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-152550}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2018}, abstract = {Anxiety and depressive disorders result from a complex interplay of genetic and environmental factors and are common mutual comorbidities. On the level of cellular signaling, regulator of G protein signaling 2 (Rgs2) has been implicated in human and rodent anxiety as well as rodent depression. Rgs2 negatively regulates G protein-coupled receptor (GPCR) signaling by acting as a GTPase accelerating protein towards the Gα subunit. The present study investigates, whether mice with a homozygous Rgs2 deletion (Rgs2-/-) show behavioral alterations as well as an increased susceptibility to stressful life events related to human anxiety and depressive disorders and tries to elucidate molecular underlying's of these changes. To this end, Rgs2-/- mice were characterized in an aversive-associative learning paradigm to evaluate learned fear as a model for the etiology of human anxiety disorders. Spatial learning and reward motivated spatial learning were evaluated to control for learning in non-aversive paradigms. Rgs2 deletion enhanced learning in all three paradigms, rendering increased learning upon deletion of Rgs2 not specific for aversive learning. These data support reports indicating increased long-term potentiation in Rgs2-/- mice and may predict treatment response to conditioning based behavior therapy in patients with polymorphisms associated with reduced RGS2 expression. Previous reports of increased innate anxiety were corroborated in three tests based on the approach-avoidance conflict. Interestingly, Rgs2-/- mice showed novelty-induced hypo-locomotion suggesting neophobia, which may translate to the clinical picture of agoraphobia in humans and reduced RGS2 expression in humans was associated with a higher incidence of panic disorder with agoraphobia. Depression-like behavior was more distinctive in female Rgs2-/- mice. Stress resilience, tested in an acute and a chronic stress paradigm, was also more distinctive in female Rgs2-/- mice, suggesting Rgs2 to contribute to sex specific effects of anxiety disorders and depression. Rgs2 deletion was associated with GPCR expression changes of the adrenergic, serotonergic, dopaminergic and neuropeptide Y systems in the brain and heart as well as reduced monoaminergic neurotransmitter levels. Furthermore, the expression of two stress-related microRNAs was increased upon Rgs2 deletion. The aversive-associative learning paradigm induced a dynamic Rgs2 expression change. The observed molecular changes may contribute to the anxious and depressed phenotype as well as promote altered stress reactivity, while reflecting an alter basal stress level and a disrupted sympathetic tone. Dynamic Rgs2 expression may mediate changes in GPCR signaling duration during memory formation. Taken together, Rgs2 deletion promotes increased anxiety-like and depression-like behavior, altered stress reactivity as well as increased cognitive function.}, subject = {Angst}, language = {en} } @phdthesis{Post2014, author = {Post, Antonia}, title = {Snap25 heterozygous knockout mice as a potential model for attention deficit/hyperactivity disorder (ADHD)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-122899}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2014}, abstract = {SNAP25 (Synaptosomal-Associated Protein of 25 kDa; part of the SNARE complex) is involved in the docking and fusion of synaptic vesicles in presynaptic neurons necessary for the regulation of neurotransmitter release, as well as in axonal growth and synaptic plasticity. In humans, different single nucleotide polymorphisms of SNAP25 have repeatedly been associated with attention deficit/hyperactivity disorder (ADHD). Thus, in this study heterozygous Snap25 knockout mice were investigated as a model of ADHD. Heterozygous (+/-) Snap25 knockout mice as well as their wild-type (+/+) littermates were reared under control conditions or underwent a Maternal Separation (MS) procedure. Starting at the age of 2 months, mice were tested for locomotor activity in a repeated long-term Open Field (OF) task, for attention deficits and impulsive behavior in the 5 Choice Serial Reaction Time Task (5CSRTT), for anxiety-like behavior in the Light-Dark Box (LDB) and for depression-like behavior in the Porsolt Forced Swim Test (FST). The brains of these mice were subsequently tested for the expression of several ADHD related genes in a quantitative Real-Time PCR (qRT-PCR) study. Another group of female mice (+/+; +/-) underwent a one hour OF test after oral administration of 45 mg/kg Methylphenidate (MPH) or placebo. To find an optimized dosage for this MPH challenge, a pilot study was performed. Wild-type C57BL/6 mice were tested in a long-term OF with several dosages of MPH both intraperitoneally (i.p.) and orally. The brains of these animals were afterwards investigated for neurotransmitter concentrations. In this pilot study the dosages of MPH that were similarly behaviorally effective without causing symptoms of overdosing were 7.5-15 mg/kg intraperitoneally and 30-60 mg/kg orally. However, even though it was possible to find intraperitoneal and oral doses that correlate behaviorally, the neurochemistry was mostly different. In the study on Snap25-deficient mice, unstressed controls showed a hyperactive phenotype in the second of two long-term OF sessions (60 min) spaced three weeks apart. Considering all groups, there was a significant interaction of stress and genotype in the second session, with animals subjected to MS being overall hyperactive with no genotype differences. In the training phase of the 5CSRTT only effects of stress were found, with MS animals finding and consuming fewer rewards. In the single test trial, several genotype effects became apparent, with tendencies for the number of correct nose pokes and the number of rewards eaten, and a significant effect for the number of rewards eaten directly after the correct response. In all of these variables +/- mice performed worse than their wild-type littermates. In the LDB +/- mice entered the lit compartment of the arena earlier than the controls, thus showing attenuated anxiety-like behavior. Regarding depressive-like behavior in the FST, male +/- mice spent significantly less time struggling than male +/+ mice. In the gene expression study, +/- mice had lower expression levels of Maoa and Comt, and higher expression levels of Nos1 than wild-types. Finally, the locomotor activity response to MPH was exaggerated in +/- mice as compared to controls. Heterozygous Snap25 knockout mice show some of the behavioral characteristics of ADHD, as for example a mild hyperactivity in a familiar environment, difficulties in the correct execution of a given task and even some behavior that can be interpreted as delay aversion. Additionally, expression levels of three ADHD related genes were changed in these animals. Although the exaggerated locomotor activity response to MPH is not to be expected of an ADHD model, the difference in the response between +/+ and +/- mice nonetheless implicates a potential dysfunction of the brain dopaminergic system.}, subject = {Aufmerksamkeitsdefizit-Syndrom}, language = {en} } @phdthesis{Houserek2003, author = {Houserek, Sven}, title = {Photodynamische Lasertherapie zur Behandlung der rheumatoiden Arthritis im Tiermodell}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-10990}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {Die vorliegende Studie untersucht die photodynamische Wirkung des Photosensibilisators Benzoporphyrinderivat (BPD-MA) im Tiermodell der chronischen Polyarthritis. Ziel der Arbeit war die Darstellung der Effekte unterschiedlicher Licht- und Sensibilisatordosen auf die Synovialmembran und die umliegenden Strukturen sowie die Entwicklung eines Konzeptes zur intraartikul{\"a}ren Dosimetrie. Als Tiermodell diente die Antigeninduzierte Arthritis des Kaninchens. In die Studie waren 38 Versuchstiere eingeschlossen. F{\"u}r die photodynamische Therapie wurde den Tieren 2 mg/kg BPD-MA intraven{\"o}s injiziert. Nach drei Stunden erfolgte die Bestrahlung mit einem Diodenlaser der Wellenl{\"a}nge 690 nm bei zwei unterschiedlichen Bestrahlungsdosen (180 J und 470 J), wobei die Applikatoren entweder nach Punktion durch ein Kan{\"u}lenlumen intraartikul{\"a}r platziert oder nach Mini-Arthrotomie am er{\"o}ffneten Kniegelenk positioniert wurden. Als Kontrolle dienten 14 Tiere, die im Anschluss an die Arthritisinduktion entweder keine BPD-MA-Injektion erhielten oder nicht bestrahlt wurden. W{\"a}hrend der Bestrahlung wurden semiquantitative Messungen der Sensibilisatorfluoreszenz mit einer neuentwickelten Fluoreszenzmessfaser durchgef{\"u}hrt. Zur quantitativen Bestimmung der Sensibilisatoranreicherung in den unterschiedlichen Gelenkstrukturen wurden bei einem Tier drei Stunden nach intraven{\"o}ser BPD-MA-Injektion Gewebeproben f{\"u}r spektroskopische Messungen entnommen. Nach Opferung der {\"u}brigen Kaninchen am 14. postoperativen Tag wurden Gewebeproben entnommen und f{\"u}r die histologische Untersuchung aufbereitet. Die mikroskopische Untersuchung der arthritisinduzierten, aber nicht photodynamisch behandelten Gelenke zeigte bei allen Tieren eine ausgepr{\"a}gte Proliferation des synovialen Deckzellayers auf 15-30 Zellagen, eine deutliche Hypervaskularisation sowie ein dichtes lymphoplasmazellul{\"a}res Infiltrat. Bei den Versuchen zur photodynamischen Therapie korrelierte der histologische Effekt mit der Lichtdosis. Die Gesamtlichtdosis von 470 J f{\"u}hrte bei sechs von neun behandelten Tieren zu einer teilweisen oder vollst{\"a}ndigen Abl{\"o}sung der Synovialis vom darunter liegenden Gewebe mit ausgepr{\"a}gter synovialer Nekrose. In einem Fall reichte die Nekrose in die angrenzende Muskulatur. Bei den {\"u}brigen drei Tieren dieses Kollektivs wurden entsprechende Ver{\"a}nderungen beobachtet, allerdings von geringerem Ausmaß. Die Behandlung mit der niedrigeren Gesamtdosis von 180 J f{\"u}hrte bei neun von 15 Tieren ebenfalls zu synovialen Nekrosen. Im Gegensatz zur hohen Dosis war der synoviale Zellschaden hierbei jedoch weit geringer ausgepr{\"a}gt. Bei sechs Tieren dieser Behandlungsgruppe f{\"u}hrte die photodynamische Therapie zu keinen signifikanten Ver{\"a}nderungen im Vergleich zu den Kontrolltieren. An den bradytrophen Gelenkstrukturen wurde unter allen oben genannten Behandlungsregimen keinerlei Sch{\"a}digung beobachtet. Der Vergleich zwischen Bestrahlung am er{\"o}ffneten Kniegelenk und der intraartikul{\"a}ren Lichtapplikation ergab keinen signifikanten Unterschied. Die fluoreszenzspektroskopischen Messungen zeigten vor Bestrahlungsbeginn einen f{\"u}r BPD-MA charakteristischen Fluoreszenzpeak bei 690 nm, der sich im Bestrahlungsverlauf proportional zur Lichtdosis verringerte. W{\"a}hrend die Gesamtlichtdosis von 490 J zu einem vollst{\"a}ndigen Verschwinden der Fluoreszenz f{\"u}hrte, war bei der niedrigeren Dosis (180 J) ebenfalls eine sukzessive Reduktion der Fluoreszenz nachweisbar, allerdings in geringerem Ausmaß und mit niedrigem Fluoreszenzgipfel am Bestrahlungsende. Die photodynamische Therapie stellt ein neues Verfahren zur Behandlung chronisch-entz{\"u}ndlicher Gelenkerkrankungen dar. Ihre Vorteile sind Effektivit{\"a}t und maximale Selektivit{\"a}t bei gleichzeitig minimaler Invasivit{\"a}t. BPD-MA zeichnet sich gegen{\"u}ber den Photosensibilisatoren der ersten Generation durch ein h{\"o}heres Absorptionsmaximum (690 nm) und der damit verbundenen gr{\"o}ßeren Penetrationstiefe des Anregungslichtes aus. Dar{\"u}ber hinaus verspricht die deutlich verk{\"u}rzte Hautsensibilisierung eine h{\"o}here Akzeptanz in der klinischen Anwendung. Ein Hauptproblem der lokalen photodynamischen Therapie in der Behandlung der chronischen Polyarthritis ist die kontrollierte und homogene Bestrahlung der intraartikul{\"a}ren Strukturen. Wie unsere Versuche zeigen, kann das Ausbleichen des Sensibilisators bei therapeutischen Lichtdosen in vivo gemessen werden und korreliert mit dem histologischen Effekt. Dieses sogenannte „photobleaching" bietet damit einerseits einen Schutz vor Unter- oder {\"U}berbehandlung, andererseits ist auf dieser Grundlage die Etablierung einer Online-Dosimetrie, etwa in Form eines in den Lichtapplikator integrierten Fluoreszenzdetektors denkbar.}, language = {de} }