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Spinal Cord
Mustacich DJ, Vo AT, Elias VD, Payne K, Sullivan L, Leonard SW, Traber MG.  2007.  Regulatory mechanisms to control tissue alpha-tocopherol.. Free Radic Biol Med. 43(4):610-8.
Hilton JBW, Kysenius K, Liddell JR, Mercer SW, Paul B, Beckman JS, McLean CA, White AR, Donnelly PS, Bush AI et al..  2024.  Evidence for disrupted copper availability in human spinal cord supports Cu(atsm) as a treatment option for sporadic cases of ALS.. Sci Rep. 14(1):5929.
Kovacs M, Trias E, Varela V, Ibarburu S, Beckman JS, Moura IC, Hermine O, King PH, Si Y, Kwon Y et al..  2019.  CD34 Identifies a Subset of Proliferating Microglial Cells Associated with Degenerating Motor Neurons in ALS.. Int J Mol Sci. 20(16)
Hilton JB, Mercer SW, Lim NKH, Faux NG, Buncic G, Beckman JS, Roberts BR, Donnelly PS, White AR, Crouch PJ.  2017.  Cu(atsm) improves the neurological phenotype and survival of SOD1 mice and selectively increases enzymatically active SOD1 in the spinal cord.. Sci Rep. 7:42292.
Trias E, Ibarburu S, Barreto-Núñez R, Babdor J, Maciel TT, Guillo M, Gros L, Dubreuil P, Díaz-Amarilla P, Cassina P et al..  2016.  Post-paralysis tyrosine kinase inhibition with masitinib abrogates neuroinflammation and slows disease progression in inherited amyotrophic lateral sclerosis.. J Neuroinflammation. 13(1):177.
Williams JR, Trias E, Beilby PR, Lopez NI, Labut EM, C Bradford S, Roberts BR, McAllum EJ, Crouch PJ, Rhoads TW et al..  2016.  Copper delivery to the CNS by CuATSM effectively treats motor neuron disease in SOD(G93A) mice co-expressing the Copper-Chaperone-for-SOD.. Neurobiol Dis. 89:1-9.

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