Release Date: 2022-03-15

Neuronal Regeneration

Release Date: 2022-03-15

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Work TypeBook Chapter
Published inA Handbook on Chemobrain with Molecular and Clinical Background
First Page75
Last Page79
DOIhttps://doi.org/10.69860/nobel.9786053358985.11
ISBN978-605-335-898-5 (PDF)
LanguageENG
Page Count5
Copyright HolderNobel Tıp Kitabevleri
Licensehttps://nobelpub.com/publish-with-us/copyright-and-licensing
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  • Keirstead HS, Ben-Hur T, Rogister B, et al. Polysialylated neural cell adhesion molecule-positive CNS precursors generate both oligodendrocytes and Schwann cells to remyelinate the CNS after transplantation. J Neurosci. 1999; 19: 7529-36.

  • Livesey FJ, O’Brien J, Li M, et al. A Schwann cell mitogen accompanying regeneration of motor neurons. Nature. 1997; 390: 614-8.

  • Mukhopadhyay G, Doherty P, Walsh FS, et al. A novel role for myelin-associated glycoprotein as an inhibitor of axonal regeneration. Neuron. 1994; 13: 757–67.

  • Ribas VT, Costa MR. Gene Manipulation Strategies to Identify Molecular Regulators of Axon Regeneration in the Central Nervous System. Front Cell Neurosci. 2017; 11: 231.

  • Schnell L, Schwab M.E. Axonal regeneration in the rat spinal cord produced by an antibody against myelin-associated neurite growth inhibitors. Nature. 1990;343: 269-72.

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  • Sun MK, Nelson TJ, Alkon DL. Towards universal therapeutics for memory disorders. Trends Pharmacol Sci. 2015; 36: 384–94.

  • Weidner N, Blesch A, Grill RJ, et al. Nerve growth factor-hypersecreting Schwann cell grafts augment and guide spinal cord axonal growth and remyelinate central nervous systen axons in a phenotypically appropriate manner that correlates with expression of L1. J Comp Neurol. 1999; 413: 495–506.

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