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Fumihiro Watanabe

Affiliations: 
Neurology Ohio State University Wexner Medical Center 
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"Fumihiro Watanabe"
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Publications

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Watanabe F, Hollingsworth EW, Bartley JM, et al. (2024) Patient-derived organoids recapitulate glioma-intrinsic immune program and progenitor populations of glioblastoma. Pnas Nexus. 3: pgae051
Imitola J, Hollingsworth EW, Watanabe F, et al. (2023) is an inducible transcriptional repressor of neural stem cells self-renewal program during neuroinflammation. Frontiers in Cellular Neuroscience. 17: 1156802
Suarez-Meade P, Watanabe F, Ruiz-Garcia H, et al. (2023) SARS-CoV2 entry factors are expressed in primary human glioblastoma and recapitulated in cerebral organoid models. Journal of Neuro-Oncology. 1-10
Ruiz-Garcia H, Zarco N, Watanabe F, et al. (2022) Development of Experimental Three-Dimensional Tumor Models to Study Glioblastoma Cancer Stem Cells and Tumor Microenvironment. Methods in Molecular Biology (Clifton, N.J.). 2572: 117-127
Watanabe F, Schoeffler A, Fair SR, et al. (2021) Generation of Neurosphere-Derived Organoid-Like-Aggregates (NEDAS) from Neural Stem Cells. Current Protocols. 1: e15
Starossom SC, Campo Garcia J, Woelfle T, et al. (2019) Chi3l3 induces oligodendrogenesis in an experimental model of autoimmune neuroinflammation. Nature Communications. 10: 217
Imitola J, Rasouli J, Watanabe F, et al. (2017) Elevated expression of granulocyte-macrophage colony-stimulating factor receptor in multiple sclerosis lesions. Journal of Neuroimmunology
Hollingsworth EW, Vaughn JE, Orack JC, et al. (2017) iPhemap: an atlas of phenotype to genotype relationships of human iPSC models of neurological diseases. Embo Molecular Medicine
Orack JC, Deleidi M, Pitt D, et al. (2015) Concise review: modeling multiple sclerosis with stem cell biological platforms: toward functional validation of cellular and molecular phenotypes in inflammation-induced neurodegeneration. Stem Cells Translational Medicine. 4: 252-60
Watanabe F, Miyazaki T, Takeuchi T, et al. (2008) Effects of FAK ablation on cerebellar foliation, Bergmann glia positioning and climbing fiber territory on Purkinje cells. The European Journal of Neuroscience. 27: 836-54
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