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Journal Abstract Search


1496 related items for PubMed ID: 28192470

  • 1. Differentiation of oligodendrocyte progenitor cells from dissociated monolayer and feeder-free cultured pluripotent stem cells.
    Yamashita T, Miyamoto Y, Bando Y, Ono T, Kobayashi S, Doi A, Araki T, Kato Y, Shirakawa T, Suzuki Y, Yamauchi J, Yoshida S, Sato N.
    PLoS One; 2017; 12(2):e0171947. PubMed ID: 28192470
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  • 2. Embryonic stem cells differentiate into oligodendrocytes and myelinate in culture and after spinal cord transplantation.
    Liu S, Qu Y, Stewart TJ, Howard MJ, Chakrabortty S, Holekamp TF, McDonald JW.
    Proc Natl Acad Sci U S A; 2000 May 23; 97(11):6126-31. PubMed ID: 10823956
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  • 3. Transplantation of human oligodendrocyte progenitor cells in an animal model of diffuse traumatic axonal injury: survival and differentiation.
    Xu L, Ryu J, Hiel H, Menon A, Aggarwal A, Rha E, Mahairaki V, Cummings BJ, Koliatsos VE.
    Stem Cell Res Ther; 2015 May 14; 6(1):93. PubMed ID: 25971252
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  • 4. Development of glial restricted human neural stem cells for oligodendrocyte differentiation in vitro and in vivo.
    Biswas S, Chung SH, Jiang P, Dehghan S, Deng W.
    Sci Rep; 2019 Jun 21; 9(1):9013. PubMed ID: 31227736
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  • 5. NT-3 weakly stimulates proliferation of adult rat O1(-)O4(+) oligodendrocyte-lineage cells and increases oligodendrocyte myelination in vitro.
    Yan H, Wood PM.
    J Neurosci Res; 2000 Nov 01; 62(3):329-35. PubMed ID: 11054801
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  • 6. A method for deriving homogenous population of oligodendrocytes from mouse embryonic stem cells.
    Neman J, de Vellis J.
    Dev Neurobiol; 2012 Jun 01; 72(6):777-88. PubMed ID: 22234971
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  • 10. Human fetal oligodendrocyte progenitor cells from different gestational stages exhibit substantially different potential to myelinate.
    Cui QL, D'Abate L, Fang J, Leong SY, Ludwin S, Kennedy TE, Antel J, Almazan G.
    Stem Cells Dev; 2012 Jul 20; 21(11):1831-7. PubMed ID: 22122665
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  • 11. Enrichment of Oligodendrocyte Progenitors from Differentiated Neural Precursors by Clonal Sphere Preparations.
    Umebayashi D, Coles B, van der Kooy D.
    Stem Cells Dev; 2016 May 01; 25(9):712-28. PubMed ID: 26972950
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  • 13. Differentiation of induced pluripotent stem cells into functional oligodendrocytes.
    Czepiel M, Balasubramaniyan V, Schaafsma W, Stancic M, Mikkers H, Huisman C, Boddeke E, Copray S.
    Glia; 2011 Jun 01; 59(6):882-92. PubMed ID: 21438010
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  • 14. Drug-based modulation of endogenous stem cells promotes functional remyelination in vivo.
    Najm FJ, Madhavan M, Zaremba A, Shick E, Karl RT, Factor DC, Miller TE, Nevin ZS, Kantor C, Sargent A, Quick KL, Schlatzer DM, Tang H, Papoian R, Brimacombe KR, Shen M, Boxer MB, Jadhav A, Robinson AP, Podojil JR, Miller SD, Miller RH, Tesar PJ.
    Nature; 2015 Jun 11; 522(7555):216-20. PubMed ID: 25896324
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  • 17. Olig2 overexpression induces the in vitro differentiation of neural stem cells into mature oligodendrocytes.
    Copray S, Balasubramaniyan V, Levenga J, de Bruijn J, Liem R, Boddeke E.
    Stem Cells; 2006 Apr 11; 24(4):1001-10. PubMed ID: 16253982
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  • 20. Temporal and partial inhibition of GLI1 in neural stem cells (NSCs) results in the early maturation of NSC derived oligodendrocytes in vitro.
    Namchaiw P, Wen H, Mayrhofer F, Chechneva O, Biswas S, Deng W.
    Stem Cell Res Ther; 2019 Aug 27; 10(1):272. PubMed ID: 31455382
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