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Research Article

Changes in skeletal muscle iron metabolism outpace amyotrophic lateral sclerosis onset in transgenic rats bearing the G93A hmSOD1 gene mutation

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Pages 1363-1370 | Received 28 Apr 2014, Accepted 12 Aug 2014, Published online: 11 Sep 2014

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Scott L.M. Johns, Abdullah Ishaque, Muhammad Khan, Yee-Hong Yang, Alan H. Wilman & Sanjay Kalra. (2019) Quantifying changes on susceptibility weighted images in amyotrophic lateral sclerosis using MRI texture analysis. Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration 20:5-6, pages 396-403.
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Pierre Jésus, Hélène Blasco, Franck Patin, Salah Eddine Bakkouche, Stéphane Beltran, Christian R. Andrés, Patrick Vourc’h, François Maillot & Philippe Corcia. (2019) Ferritin and LDL-cholesterol as biomarkers of fat-free mass loss in ALS. Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration 20:5-6, pages 441-444.
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Articles from other publishers (18)

Yumin Wang, Shuang Wu, Qiang Li, Huiyan Sun & Hongquan Wang. (2023) Pharmacological Inhibition of Ferroptosis as a Therapeutic Target for Neurodegenerative Diseases and Strokes. Advanced Science.
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Francesca M Alves, Scott Ayton, Ashley I Bush, Gordon S Lynch & René Koopman. (2023) Age-Related Changes in Skeletal Muscle Iron Homeostasis. The Journals of Gerontology: Series A 78:1, pages 16-24.
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Pedro Soares, Catia Silva, Daniel Chavarria, Filomena S.G. Silva, Paulo J. Oliveira & Fernanda Borges. (2023) Drug discovery and amyotrophic lateral sclerosis: Emerging challenges and therapeutic opportunities. Ageing Research Reviews 83, pages 101790.
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Karol Cieminski, Damian Jozef Flis, Katarzyna Dzik, Jan Jacek Kaczor, Emilia Czyrko, Malgorzata Halon-Golabek, Mariusz Roman Wieckowski, Jedrzej Antosiewicz & Wieslaw Ziolkowski. (2021) Swim training affects Akt signaling and ameliorates loss of skeletal muscle mass in a mouse model of amyotrophic lateral sclerosis. Scientific Reports 11:1.
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Maria Puigdomenech-Poch, Anna Martínez-Muriana, Pol Andrés-Benito, Isidre Ferrer, Jerold Chun & Rubèn López-Vales. (2021) Dual Role of Lysophosphatidic Acid Receptor 2 (LPA2) in Amyotrophic Lateral Sclerosis. Frontiers in Cellular Neuroscience 15.
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David Devos, Z. Ioav Cabantchik, Caroline Moreau, Véronique Danel, Laura Mahoney-Sanchez, Hind Bouchaoui, Flore Gouel, Anne-Sophie Rolland, James A. Duce & Jean-Christophe Devedjian. (2020) Conservative iron chelation for neurodegenerative diseases such as Parkinson’s disease and amyotrophic lateral sclerosis. Journal of Neural Transmission 127:2, pages 189-203.
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Malgorzata Halon-Golabek, Andzelika Borkowska, Anna Herman-Antosiewicz & Jedrzej Antosiewicz. (2019) Iron Metabolism of the Skeletal Muscle and Neurodegeneration. Frontiers in Neuroscience 13.
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Camille Petillon, Rudolf Hergesheimer, Hervé Puy, Philippe Corcia, Patrick Vourc’h, Christian Andres, Zoubida Karim & Hélène Blasco. (2019) The Relevancy of Data Regarding the Metabolism of Iron to Our Understanding of Deregulated Mechanisms in ALS; Hypotheses and Pitfalls. Frontiers in Neuroscience 12.
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Damian Jozef Flis, Katarzyna Dzik, Jan Jacek Kaczor, Karol Cieminski, Malgorzata Halon-Golabek, Jedrzej Antosiewicz, Mariusz Roman Wieckowski & Wieslaw Ziolkowski. (2019) Swim Training Modulates Mouse Skeletal Muscle Energy Metabolism and Ameliorates Reduction in Grip Strength in a Mouse Model of Amyotrophic Lateral Sclerosis. International Journal of Molecular Sciences 20:2, pages 233.
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Driton Vela. (2018) Hepcidin, an emerging and important player in brain iron homeostasis. Journal of Translational Medicine 16:1.
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Malgorzata Halon-Golabek, Andzelika Borkowska, Jan J. Kaczor, Wieslaw Ziolkowski, Damian J. Flis, Narcyz Knap, Kajetan Kasperuk & Jedrzej Antosiewicz. (2018) hmSOD1 gene mutation-induced disturbance in iron metabolism is mediated by impairment of Akt signalling pathway. Journal of Cachexia, Sarcopenia and Muscle 9:3, pages 557-569.
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Damian Jozef Flis, Katarzyna Dzik, Jan Jacek Kaczor, Malgorzata Halon-Golabek, Jedrzej Antosiewicz, Mariusz Roman Wieckowski & Wieslaw Ziolkowski. (2018) Swim Training Modulates Skeletal Muscle Energy Metabolism, Oxidative Stress, and Mitochondrial Cholesterol Content in Amyotrophic Lateral Sclerosis Mice. Oxidative Medicine and Cellular Longevity 2018, pages 1-12.
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Bart J. Crielaard, Twan Lammers & Stefano Rivella. (2017) Targeting iron metabolism in drug discovery and delivery. Nature Reviews Drug Discovery 16:6, pages 400-423.
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Sagit Golko-Perez, Tamar Amit, Orit Bar-Am, Moussa B.H. Youdim & Orly Weinreb. (2016) A Novel Iron Chelator-Radical Scavenger Ameliorates Motor Dysfunction and Improves Life Span and Mitochondrial Biogenesis in SOD1G93A ALS Mice. Neurotoxicity Research 31:2, pages 230-244.
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F. Bozzo, A. Mirra & M.T. Carrì. (2017) Oxidative stress and mitochondrial damage in the pathogenesis of ALS: New perspectives. Neuroscience Letters 636, pages 3-8.
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Jean‐Philippe Loeffler, Gina Picchiarelli, Luc Dupuis & Jose‐Luis Gonzalez De Aguilar. (2016) The Role of Skeletal Muscle in Amyotrophic Lateral Sclerosis. Brain Pathology 26:2, pages 227-236.
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Anna Gajowiak, Agnieszka Styś, Rafał R. Starzyński, Aleksandra Bednarz, Małgorzata Lenartowicz, Robert Staroń & Paweł Lipiński. (2016) Mice Overexpressing Both Non-Mutated Human SOD1 and Mutated SOD1G93A Genes: A Competent Experimental Model for Studying Iron Metabolism in Amyotrophic Lateral Sclerosis. Frontiers in Molecular Neuroscience 8.
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Raddy L. Ramos, Sarah E. Van Dine, Mary E. Gilbert, Joerg R. Leheste & German Torres. (2015) Neurodevelopmental Malformations of the Cerebellar Vermis in Genetically Engineered Rats. The Cerebellum 14:6, pages 624-631.
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