TY - GEN N2 - Oxidative stress and neuroinflammation are widespread in the Parkinson’s disease (PD) brain and contribute to the synaptic degradation and dopaminergic cell loss that result in cognitive impairment and motor dysfunction. The compound Gardenin A (GA) has been shown to activate the NRF2-regulated antioxidant pathway and inhibit the NFkB-regulated pro-inflammatory pathway in a Drosophila model of PD.  Here, we evaluate the effects of GA on A53T alpha-synuclein overexpressing (A53TSyn) mice. DO - 10.6083/bpxhc41333 DO - doi AB - Oxidative stress and neuroinflammation are widespread in the Parkinson’s disease (PD) brain and contribute to the synaptic degradation and dopaminergic cell loss that result in cognitive impairment and motor dysfunction. The compound Gardenin A (GA) has been shown to activate the NRF2-regulated antioxidant pathway and inhibit the NFkB-regulated pro-inflammatory pathway in a Drosophila model of PD.  Here, we evaluate the effects of GA on A53T alpha-synuclein overexpressing (A53TSyn) mice. AD - Oregon Health and Science University AD - Oregon Health and Science University AD - The University of Alabama AD - The University of Alabama AD - Oregon Health and Science University T1 - Gardenin A decreases neuroinflammation, activates antioxidant response and improves cognitive and motor function in A53T alpha synuclein overexpressing mice DA - 2023-07-21 AU - Gladen Kolarsky, Noah AU - Hack, Wyatt AU - Maitra, Urmila AU - Ciesla, Lukasz AU - Gray, Nora L1 - https://digitalcollections.ohsu.edu/record/41333/files/ResearchWeek.2023.GladenKolarsky.Noah.pdf PB - Oregon Health and Science University LA - eng PY - 2023-07-21 ID - 41333 L4 - https://digitalcollections.ohsu.edu/record/41333/files/ResearchWeek.2023.GladenKolarsky.Noah.pdf KW - Neurobiology KW - Cell Biology KW - Molecular Biology KW - Parkinson Disease KW - Cognition KW - Cognitive Dysfunction KW - Parkinsonian Disorders KW - Neuroinflammatory Diseases KW - drosophila model KW - motor function KW - gardenin a TI - Gardenin A decreases neuroinflammation, activates antioxidant response and improves cognitive and motor function in A53T alpha synuclein overexpressing mice Y1 - 2023-07-21 L2 - https://digitalcollections.ohsu.edu/record/41333/files/ResearchWeek.2023.GladenKolarsky.Noah.pdf LK - https://digitalcollections.ohsu.edu/record/41333/files/ResearchWeek.2023.GladenKolarsky.Noah.pdf UR - https://digitalcollections.ohsu.edu/record/41333/files/ResearchWeek.2023.GladenKolarsky.Noah.pdf ER -