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3. C-type lectin receptors Mcl and Mincle control development of multiple sclerosis-like neuroinflammation

6. Integration of small RNAs from plasma and cerebrospinal fluid for classification of multiple sclerosis

7. Immunopathogenesis of multiple sclerosis : big roles for small RNAs

8. Profiling of small non-coding RNAs across cellular and biofluid compartments: implications for multiple sclerosis immunopathology

9. C-type lectin receptors Mcl and Mincle control development of multiple sclerosis–like neuroinflammation

10. Additional file 1: of Neuronal methylome reveals CREB-associated neuro-axonal impairment in multiple sclerosis

13. Hypermethylation of MIR21 in CD4+ T cells from patients with relapsing-remitting multiple sclerosis associates with lower miRNA-21 levels and concomitant up-regulation of its target genes

15. Hypermethylation of MIR21 in CD4+ T cells from patients with relapsing-remitting multiple sclerosis associates with lower miRNA-21 levels and concomitant up-regulation of its target genes.

16. Methylome characterization of CD4+ T cells in multiple sclerosis — Establishing a role for miR-21 in autoimmune disease

17. Hypermethylation of MIR21 in CD4+ T cells from patients with relapsing-remitting multiple sclerosis associates with lower miRNA-21 levels and concomitant up-regulation of its target genes

18. Hypermethylation of MIR21 in CD4+ T cells from patients with relapsing-remitting multiple sclerosis associates with lower miRNA-21 levels and concomitant up-regulation of its target genes.

19. Circulating miR-150 in CSF is a novel candidate biomarker for multiple sclerosis.

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