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Results: 1 to 20 of 100

1.

Dynamics of sodium channel Nav1.5 expression in astrocytes in mouse models of multiple sclerosis.

Pappalardo LW, Liu S, Black JA, Waxman SG.

Neuroreport. 2014 Oct 22;25(15):1208-15. doi: 10.1097/WNR.0000000000000249.

PMID:
25144393
[PubMed - in process]
2.

Astrocytes within multiple sclerosis lesions upregulate sodium channel Nav1.5.

Black JA, Newcombe J, Waxman SG.

Brain. 2010 Mar;133(Pt 3):835-46. doi: 10.1093/brain/awq003. Epub 2010 Feb 10.

PMID:
20147455
[PubMed - indexed for MEDLINE]
Free Article
3.

Voltage-gated sodium channel Nav 1.5 contributes to astrogliosis in an in vitro model of glial injury via reverse Na+ /Ca2+ exchange.

Pappalardo LW, Samad OA, Black JA, Waxman SG.

Glia. 2014 Jul;62(7):1162-75. doi: 10.1002/glia.22671. Epub 2014 Apr 17.

PMID:
24740847
[PubMed - indexed for MEDLINE]
4.

Block of a subset of sodium channels exacerbates experimental autoimmune encephalomyelitis.

Stevens M, Timmermans S, Bottelbergs A, Hendriks JJ, Brône B, Baes M, Tytgat J.

J Neuroimmunol. 2013 Aug 15;261(1-2):21-8. doi: 10.1016/j.jneuroim.2013.04.012. Epub 2013 Jun 2.

PMID:
23735284
[PubMed - indexed for MEDLINE]
5.
6.

Abnormal Purkinje cell activity in vivo in experimental allergic encephalomyelitis.

Saab CY, Craner MJ, Kataoka Y, Waxman SG.

Exp Brain Res. 2004 Sep;158(1):1-8. Epub 2004 Apr 29.

PMID:
15118796
[PubMed - indexed for MEDLINE]
7.

A channelopathy contributes to cerebellar dysfunction in a model of multiple sclerosis.

Shields SD, Cheng X, Gasser A, Saab CY, Tyrrell L, Eastman EM, Iwata M, Zwinger PJ, Black JA, Dib-Hajj SD, Waxman SG.

Ann Neurol. 2012 Feb;71(2):186-94. doi: 10.1002/ana.22665.

PMID:
22367990
[PubMed - indexed for MEDLINE]
8.

Upregulation of voltage-gated Ca2+ channels in mouse astrocytes infected with Theiler's murine encephalomyelitis virus (TMEV).

Rubio N, Almanza A, Mercado F, Arévalo MÁ, Garcia-Segura LM, Vega R, Soto E.

Neuroscience. 2013 Sep 5;247:309-18. doi: 10.1016/j.neuroscience.2013.05.049. Epub 2013 Jun 3.

PMID:
23742846
[PubMed - indexed for MEDLINE]
9.

Upregulation and colocalization of p75 and Nav1.8 in Purkinje neurons in experimental autoimmune encephalomyelitis.

Damarjian TG, Craner MJ, Black JA, Waxman SG.

Neurosci Lett. 2004 Oct 21;369(3):186-90.

PMID:
15464262
[PubMed - indexed for MEDLINE]
10.

Sodium channel expression within chronic multiple sclerosis plaques.

Black JA, Newcombe J, Trapp BD, Waxman SG.

J Neuropathol Exp Neurol. 2007 Sep;66(9):828-37.

PMID:
17805013
[PubMed - indexed for MEDLINE]
11.

Mediation of protection and recovery from experimental autoimmune encephalomyelitis by macrophages expressing the human voltage-gated sodium channel NaV1.5.

Rahgozar K, Wright E, Carrithers LM, Carrithers MD.

J Neuropathol Exp Neurol. 2013 Jun;72(6):489-504. doi: 10.1097/NEN.0b013e318293eb08.

PMID:
23656992
[PubMed - indexed for MEDLINE]
12.

K+ channel alterations in the progression of experimental autoimmune encephalomyelitis.

Jukkola PI, Lovett-Racke AE, Zamvil SS, Gu C.

Neurobiol Dis. 2012 Aug;47(2):280-93. doi: 10.1016/j.nbd.2012.04.012. Epub 2012 Apr 24.

PMID:
22560931
[PubMed - indexed for MEDLINE]
Free PMC Article
13.

Central nervous system expression and PET imaging of the translocator protein in relapsing-remitting experimental autoimmune encephalomyelitis.

Mattner F, Staykova M, Berghofer P, Wong HJ, Fordham S, Callaghan P, Jackson T, Pham T, Gregoire MC, Zahra D, Rahardjo G, Linares D, Katsifis A.

J Nucl Med. 2013 Feb;54(2):291-8. doi: 10.2967/jnumed.112.108894. Epub 2013 Jan 15.

PMID:
23321458
[PubMed - indexed for MEDLINE]
Free Article
14.

Raloxifene suppresses experimental autoimmune encephalomyelitis and NF-κB-dependent CCL20 expression in reactive astrocytes.

Li R, Xu W, Chen Y, Qiu W, Shu Y, Wu A, Dai Y, Bao J, Lu Z, Hu X.

PLoS One. 2014 Apr 10;9(4):e94320. doi: 10.1371/journal.pone.0094320. eCollection 2014.

PMID:
24722370
[PubMed - indexed for MEDLINE]
Free PMC Article
15.

Lipocalin-2 protein deficiency ameliorates experimental autoimmune encephalomyelitis: the pathogenic role of lipocalin-2 in the central nervous system and peripheral lymphoid tissues.

Nam Y, Kim JH, Seo M, Kim JH, Jin M, Jeon S, Seo JW, Lee WH, Bing SJ, Jee Y, Lee WK, Park DH, Kook H, Suk K.

J Biol Chem. 2014 Jun 13;289(24):16773-89. doi: 10.1074/jbc.M113.542282. Epub 2014 May 7.

PMID:
24808182
[PubMed - indexed for MEDLINE]
16.

Abnormal sodium channel distribution in optic nerve axons in a model of inflammatory demyelination.

Craner MJ, Lo AC, Black JA, Waxman SG.

Brain. 2003 Jul;126(Pt 7):1552-61. Epub 2003 Apr 22.

PMID:
12805113
[PubMed - indexed for MEDLINE]
Free Article
17.

Nav1.5 sodium channels in macrophages in multiple sclerosis lesions.

Black JA, Newcombe J, Waxman SG.

Mult Scler. 2013 Apr;19(5):532-42. doi: 10.1177/1352458512460417. Epub 2012 Sep 4.

PMID:
22951351
[PubMed - indexed for MEDLINE]
18.

Lesional-targeting of neuroprotection to the inflammatory penumbra in experimental multiple sclerosis.

Al-Izki S, Pryce G, Hankey DJ, Lidster K, von Kutzleben SM, Browne L, Clutterbuck L, Posada C, Edith Chan AW, Amor S, Perkins V, Gerritsen WH, Ummenthum K, Peferoen-Baert R, van der Valk P, Montoya A, Joel SP, Garthwaite J, Giovannoni G, Selwood DL, Baker D.

Brain. 2014 Jan;137(Pt 1):92-108. doi: 10.1093/brain/awt324. Epub 2013 Nov 27.

PMID:
24287115
[PubMed - indexed for MEDLINE]
Free Article
19.

Acid-sensing ion channel 1 is involved in both axonal injury and demyelination in multiple sclerosis and its animal model.

Vergo S, Craner MJ, Etzensperger R, Attfield K, Friese MA, Newcombe J, Esiri M, Fugger L.

Brain. 2011 Feb;134(Pt 2):571-84. doi: 10.1093/brain/awq337. Epub 2011 Jan 13.

PMID:
21233144
[PubMed - indexed for MEDLINE]
Free Article
20.

Upregulation of sodium channel Nav1.3 and functional involvement in neuronal hyperexcitability associated with central neuropathic pain after spinal cord injury.

Hains BC, Klein JP, Saab CY, Craner MJ, Black JA, Waxman SG.

J Neurosci. 2003 Oct 1;23(26):8881-92.

PMID:
14523090
[PubMed - indexed for MEDLINE]
Free Article
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