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1. Evidence for decreased copper associated with demyelination in the corpus callosum of cuprizone-treated mice

2. Microglial ferroptotic stress causes non-cell autonomous neuronal death

3. Evidence for disrupted copper availability in human spinal cord supports CuII(atsm) as a treatment option for sporadic cases of ALS.

4. Fundamental Neurochemistry Review: Copper availability as a potential therapeutic target in progressive supranuclear palsy: Insight from other neurodegenerative diseases.

5. Proteome-wide systems genetics identifies UFMylation as a regulator of skeletal muscle function

6. Sex-dependent effects of amyloid precursor-like protein 2 in the SOD1-G37R transgenic mouse model of MND

7. Copper-ATSM as a Treatment for ALS: Support from Mutant SOD1 Models and Beyond

8. Decreased spinal cord motor neuron numbers in mice depleted of central nervous system copper.

9. Integrated elemental analysis supports targeting copper perturbations as a therapeutic strategy in multiple sclerosis.

10. Evidence for disrupted copper availability in human spinal cord supports Cu II (atsm) as a treatment option for sporadic cases of ALS.

11. Microglial ferroptotic stress causes non-cell autonomous neuronal death.

12. Evidence for decreased copper associated with demyelination in the corpus callosum of cuprizone-treated mice.

13. Fundamental Neurochemistry Review: Copper availability as a potential therapeutic target in progressive supranuclear palsy: Insight from other neurodegenerative diseases.

15. Transdermal Application of Soluble Cu II (atsm) Increases Brain and Spinal Cord Uptake Compared to Gavage with an Insoluble Suspension.

16. Proteome-wide systems genetics identifies UFMylation as a regulator of skeletal muscle function.

17. Sex-dependent effects of amyloid precursor-like protein 2 in the SOD1-G37R transgenic mouse model of MND.

18. Copper-ATSM as a Treatment for ALS: Support from Mutant SOD1 Models and Beyond.

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