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  Disturbed brain energy metabolism in a rodent model of DYT-TOR1A dystonia

Knorr, S., Rauschenberger, L., Muthuraman, M., McFleder, R., Ott, T., Grundmann-Hauser, K., Higuchi, T., Volkmann, J., & Wang Ip, C. (2024). Disturbed brain energy metabolism in a rodent model of DYT-TOR1A dystonia. Neurobiology of Disease, 194:. doi:10.1016/j.nbd.2024.106462.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-000E-A376-5 版のパーマリンク: https://hdl.handle.net/21.11116/0000-000E-B2AB-8
資料種別: 学術論文

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 作成者:
Knorr, S, 著者
Rauschenberger, L, 著者
Muthuraman, M, 著者
McFleder, R, 著者
Ott, T1, 著者           
Grundmann-Hauser, K, 著者
Higuchi, T, 著者
Volkmann, J, 著者
Wang Ip, C, 著者
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1Animal Core Facility, Max Planck Institute for Biological Cybernetics, Max Planck Society, ou_3470798              

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 要旨: DYT-TOR1A (DYT1) dystonia, characterized by reduced penetrance and suspected environmental triggers, is explored using a "second hit" DYT-TOR1A rat model. We aim to investigate the biological mechanisms driving the conversion into a dystonic phenotype, focusing on the striatum's role in dystonia pathophysiology. Sciatic nerve crush injury was induced in ∆ETorA rats, lacking spontaneous motor abnormalities, and wild-type (wt) rats. Twelve weeks post-injury, unbiased RNA-sequencing was performed on the striatum to identify differentially expressed genes (DEGs) and pathways. Fenofibrate, a PPARα agonist, was introduced to assess its effects on gene expression. 18F-FDG autoradiography explored metabolic alterations in brain networks. Low transcriptomic variability existed between naïve wt and ∆ETorA rats (17 DEGs). Sciatic nerve injury significantly impacted ∆ETorA rats (1009 DEGs) compared to wt rats (216 DEGs). Pathway analyses revealed disruptions in energy metabolism, specifically in fatty acid β-oxidation and glucose metabolism. Fenofibrate induced gene expression changes in wt rats but failed in ∆ETorA rats. Fenofibrate increased dystonia-like movements in wt rats but reduced them in ∆ETorA rats. 18F-FDG autoradiography indicated modified glucose metabolism in motor and somatosensory cortices and striatum in both ∆ETorA and wt rats post-injury. Our findings highlight perturbed energy metabolism pathways in DYT-TOR1A dystonia, emphasizing compromised PPARα agonist efficacy in the striatum. Furthermore, we identify impaired glucose metabolism in the brain network, suggesting a potential shift in energy substrate utilization in dystonic DYT-TOR1A rats. These results contribute to understanding the pathophysiology and potential therapeutic targets for DYT-TOR1A dystonia.

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 日付: 2024-032024-05
 出版の状態: 出版
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 識別子(DOI, ISBNなど): DOI: 10.1016/j.nbd.2024.106462
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出版物名: Neurobiology of Disease
  その他 : Neurobiol. Dis.
種別: 学術雑誌
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出版社, 出版地: Oxford : Academic Press
ページ: 12 巻号: 194 通巻号: 106462 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): ISSN: 0969-9961
CoNE: https://pure.mpg.de/cone/journals/resource/954922649144