TY - THES A1 - Klaus, Laura-Christin T1 - Generierung und Charakterisierung eines neuen Mausmodells des Morbus Parkinson durch AAV1/2 vermittelte Überexpression von humanem mutiertem A53T-α-Synuclein in der Substantia nigra T1 - Generation and characterization of a new mouse model for Parkinson’s disease by AAV1/2 induced overexpression of human mutated A53T-α-synuclein in the substantia nigra N2 - Auch wenn die Ätiopathogenese von Morbus Parkinson bis heute nicht vollständig geklärt ist, scheint α-Synuclein (α-Syn) eine zentrale Rolle zu spielen. Die Entdeckung als genetische Ursache der Erkrankung, als Hauptbestandteil der Lewy-Körper (LK) und seine Assoziation mit verschiedenen anderen potenziellen ätiologischen Faktoren verdeutlichen dies. Bei Ratten und Affen führte eine AAV1/2-vermittelte Überexpression von A53T-α-Syn zu einer Degeneration dopaminerger Neurone in der Substantia nigra (SN), einem striatalen dopaminergen Defizit sowie Verhaltensauffälligkeiten. In Anbetracht bestimmter Vorteile der Mausspezies, war es das Ziel dieser Dissertation - die im Rahmen eines kollaborativen Projektes mit dem Toronto Western Research Institut in Ontario, Kanada entstanden ist - dieses auf AAV1/2-A53T-α-Syn basierende Parkinson-Modell auf Mäuse zu übertragen. Dazu wurde AAV1/2-A53T-α-Syn oder leerer AAV1/2-Vektor in einer Dosis von 1,5 µl mit einer Konzentration von 5,16 x 10^12 gp/ml stereotaktisch einseitig in die rechte SN von C57BL/6-wt-Mäusen injiziert. Über einen Zeitraum von 11 Wochen wurden verschiedene Verhaltensexperimente durchgeführt und die beiden Versuchstiergruppen miteinander verglichen. Post-mortem erfolgten verschiedene immunhistochemische Untersuchungen. Es konnte gezeigt werden, dass die einseitige Injektion von AAV1/2-A53T-α-Syn in die SN bei Mäusen eine weit verbreitete Überexpression von A53T-α-Syn in dopaminergen Neuronen der SN induzierte, die innerhalb von 10 Wochen zu signifikanten frühen und persistierenden motorischen Verhaltensauffälligkeiten, nigrostriataler Degeneration und Entwicklung einer Lewy-ähnlichen Pathologie führte. Durch die Generierung und Charakterisierung dieses neuen Parkinson-Mausmodells, das klinische und histopathologische Merkmale der menschlichen Erkrankung widerspiegelt, besteht nun die Möglichkeit es weiterzuentwickeln und z.B. auf transgene Mäuse zu übertragen, um u.a. molekulare Mechanismen der Parkinson-Krankheit zu entschlüsseln und präklinische Tests von krankheitsmodifizierenden Therapien durchzuführen. N2 - Although the etiopathogenesis of Parkinson’s disease (PD) has not been fully elucidated to date, α-synuclein (α-syn) seems to play a central role. Its discovery as a genetic cause of the disease, as the major component of the Lewy bodies (LB) and its association with other potential etiological factors illustrate this. In rats and monkeys, AAV1/2-mediated overexpression of A53T-α-syn resulted in degeneration of dopaminergic neurons of the substantia nigra (SN), a striatal dopaminergic deficit and behavioral deficits. Given certain advantages of the mouse species, the aim of this doctoral thesis - which was part of a collaborative project with the Toronto Western Research Institute in Ontario, Canada - was to transfer this AAV1/2-A53T-α-syn based PD model to mice. For this purpose, 1.5 µl of AAV1/2-A53T-α-syn or AAV1/2 empty vector at a concentration of 5.16 x 10^12 gp/ml were stereotactically injected unilaterally into the right SN of C57BL/6-wt-mice. Several behavioral experiments were performed over a period of 11 weeks and the two groups of mice were compared. Post-mortem measures included different immunohistochemical studies. It was shown that unilateral injection of AAV1/2-A53T-α-syn into the mouse SN induced a widespread overexpression of A53T-α-syn in dopaminergic SN neurons, that led to significant early and persistent motor deficits, nigrostriatal degeneration and development of Lewy-like pathology within 10 weeks. By generating and characterizing this novel PD mouse model, which reflects clinical and histopathological hallmarks of human PD, there is now the opportunity to further develop it and to transfer it e.g. to transgenic mice for unravelling molecular mechanisms of PD and preclinical testing of disease modifying therapies. KW - Parkinson-Krankheit KW - Synuclein KW - Tiermodell KW - Morbus Parkinson KW - α-Synuclein KW - Mausmodell KW - Lewy-Pathologie KW - A53T-Mutation KW - Parkinson’s disease KW - α-synuclein KW - mouse model KW - A53T mutation KW - Lewy-like pathology Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-239217 ER - TY - JOUR A1 - Wang Ip, Chi A1 - Klaus, Laura-Christin A1 - Karikari, Akua A. A1 - Visanji, Naomi P. A1 - Brotchie, Jonathan M. A1 - Lang, Anthony E. A1 - Volkmann, Jens A1 - Koprich, James B. T1 - AAV1/2-induced overexpression of A53T-α-synuclein in the substantia nigra results in degeneration of the nigrostriatal system with Lewy-like pathology and motor impairment: a new mouse model for Parkinson’s disease JF - Acta Neuropathologica Communications N2 - α-Synuclein is a protein implicated in the etiopathogenesis of Parkinson’s disease (PD). AAV1/2-driven overexpression of human mutated A53T-α-synuclein in rat and monkey substantia nigra (SN) induces degeneration of nigral dopaminergic neurons and decreases striatal dopamine and tyrosine hydroxylase (TH). Given certain advantages of the mouse, especially it being amendable to genetic manipulation, translating the AAV1/2-A53T α-synuclein model to mice would be of significant value. AAV1/2-A53T α-synuclein or AAV1/2 empty vector (EV) at a concentration of 5.16 x 10\(^{12}\) gp/ml were unilaterally injected into the right SN of male adult C57BL/6 mice. Post-mortem examinations included immunohistochemistry to analyze nigral α-synuclein, Ser129 phosphorylated α-synuclein and TH expression, striatal dopamine transporter (DAT) levels by autoradiography and dopamine levels by high performance liquid chromatography. At 10 weeks, in AAV1/2-A53T α-synuclein mice there was a 33% reduction in TH+ dopaminergic nigral neurons (P < 0.001), 29% deficit in striatal DAT binding (P < 0.05), 38% and 33% reductions in dopamine (P < 0.001) and DOPAC (P < 0.01) levels and a 60% increase in dopamine turnover (homovanilic acid/dopamine ratio; P < 0.001). Immunofluorescence showed that the AAV1/2-A53T α-synuclein injected mice had widespread nigral and striatal expression of vector-delivered A53T-α-synuclein. Concurrent staining with human PD SN samples using gold standard histological methodology for Lewy pathology detection by proteinase K digestion and application of specific antibody raised against human Lewy body α-synuclein (LB509) and Ser129 phosphorylated α-synuclein (81A) revealed insoluble α-synuclein aggregates in AAV1/2-A53T α-synuclein mice resembling Lewy-like neurites and bodies. In the cylinder test, we observed significant paw use asymmetry in the AAV1/2-A53T α-synuclein group when compared to EV controls at 5 and 9 weeks post injection (P < 0.001; P < 0.05). These data show that unilateral injection of AAV1/2-A53T α-synuclein into the mouse SN leads to persistent motor deficits, neurodegeneration of the nigrostriatal dopaminergic system and development of Lewy-like pathology, thereby reflecting clinical and pathological hallmarks of human PD. KW - Lewy-like pathology KW - Parkinson’s disease KW - α-synuclein KW - A53T KW - mutation KW - mouse model Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159429 VL - 5 IS - 11 ER -