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Weiss</field><field name="mods.name.top">Prof. Dr. Dieter G. Weiss</field></doc><doc><field name="id">rosdok_disshab_0000000502-d510303e74</field><field name="mods.name">Prof. Dr. Ernest Arenas</field><field name="mods.name.top">Prof. Dr. Ernest Arenas</field></doc><doc><field name="id">rosdok_disshab_0000000502-d510303e87</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field></doc><field name="mods.name">Benjamin Bader</field><field name="mods.name">Prof. Dr. Dieter G. Weiss</field><field name="mods.name">Prof. Dr. Ernest Arenas</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Benjamin Bader</field><field name="mods.name.top">Prof. Dr. Dieter G. Weiss</field><field name="mods.name.top">Prof. Dr. Ernest Arenas</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.author">Benjamin Bader</field><field name="mods.place">Rostock</field><field name="mods.publisher">Universität Rostock</field><field name="mods.genre">epub.dissertation</field><field name="mods.identifier">10.18453/rosdok_id00000713</field><field name="mods.identifier">http://purl.uni-rostock.de/rosdok/id00000713</field><field name="mods.identifier">urn:nbn:de:gbv:28-diss2010-0135-6</field><field name="mods.subject">neuronale Differerenzierung</field><field name="mods.subject">quantitative Bildanalyse</field><field name="mods.subject">neuronal differentiation</field><field name="mods.subject">quantitative image cytometry</field><field name="mods.subject">development</field><field name="mods.subject">Morbus Parkinson</field><field name="mods.subject">Parkinson's disease</field><field name="mods.subject">ReNcell VM</field><field name="mods.abstract">The Wnt/beta-catenin pathway is involved in neural stem cell self-renewal and neuronal differentiation. 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In diesem Kontext wurde der Wnt-Signalweg in dieser Arbeit studiert, welche das zur Zeit limitierte Wissen über die Differenzierung in humanen Stammzellmodellen erweitert und Parallelen zwischen den bekannten Mechanismen aus Tiermodellen und dem menschlichen System aufzeigt - Wissen, was für verbesserte und zielgenauere Ansätze in Zellersatztherapien notwenig ist.</field><field name="mods.dateIssued">2010</field><field name="mods.yearIssued">2010</field><field name="mods.type">epub.dissertation</field><field name="search_result_link_text">1
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        rosdok/id00000713639568327MODS updated during RosDok migration in June 2021DissertationHochschulschrift142476501BenjaminBader1981-VerfasserInautSpatio-temporal control of Wnt/beta-catenin signaling during fate commitment of human neural progenitor cellsDie räumliche und zeitliche Kontrolle des Wnt/beta-Catenin Signalweges während der frühen Differenzierungsphase von humanen neuralen VorläuferzellenenProf. Dr.Dieter G.WeissAkademischeR BetreuerIndgsProf. Dr.ErnestArenasAkademischeR BetreuerIndgs2147083-2Universität RostockMathematisch-Naturwissenschaftliche FakultätGrad-verleihende Institutiondgg10.18453/rosdok_id00000713http://purl.uni-rostock.de/rosdok/id00000713urn:nbn:de:gbv:28-diss2010-0135-6570 Biowissenschaften, BiologieMathematisch-Naturwissenschaftliche Fakultätfrei zugänglich (Open Access)Lizenz Metadaten: CC0Nutzungsrechte erteiltalle Rechte vorbehaltenUniversität RostockRostock2010monographic20102010Universitätsbibliothek RostockRostock20102010The Wnt/beta-catenin pathway is involved in neural stem cell self-renewal and neuronal differentiation. Further understanding of these processes is a prerequisite of cell replacement therapies in neurodegenerative diseases such as Parkinson's disease. In this context, the role of Wnt/beta-catenin signaling was studied in this thesis which substantiates the presently limited knowledge about neurogenesis in human cell models and shows parallels between the mechanistic knowledge based on rodent models and the use of human neural stem cells for cell replacement strategies in neurodegenerative diseases.Der Wnt-Signalweg beeinflusst die Differenzierung von Stammzellen und die Neurogenese. Eine genaue Kenntnis über diese Vorgänge ist maßgeblich für erfolgreiche Zellersatztherapien neuro-degenerativer Erkrankungen wie M. Parkinson. In diesem Kontext wurde der Wnt-Signalweg in dieser Arbeit studiert, welche das zur Zeit limitierte Wissen über die Differenzierung in humanen Stammzellmodellen erweitert und Parallelen zwischen den bekannten Mechanismen aus Tiermodellen und dem menschlichen System aufzeigt - Wissen, was für verbesserte und zielgenauere Ansätze in Zellersatztherapien notwenig ist.neuronale Differerenzierungquantitative Bildanalyseneuronal differentiationquantitative image cytometrydevelopmentMorbus ParkinsonParkinson's diseaseReNcell VMUniversitätsbibliothek Rostockhttp://purl.uni-rostock.de/rosdok/id00000713
      
    
  
  
    
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