Yoshiho Ikeuchi, Ph.D.
Affiliations: | 2007-2013 | Neurobiology | Harvard Medical School, Boston, MA, United States |
2013-2014 | Anatomy and Neurobiology | Washington University, Saint Louis, St. Louis, MO | |
2014- | Institute of Industrial Science | The University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan |
Area:
Axon growth, protein synthesis, motor nerveGoogle:
"Yoshiho Ikeuchi"Mean distance: 16.16 (cluster 31) | S | N | B | C | P |
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Publications
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Martins-Costa C, Wiegers A, Pham VA, et al. (2024) ARID1B controls transcriptional programs of axon projection in an organoid model of the human corpus callosum. Cell Stem Cell |
Nettles SA, Ikeuchi Y, Lefton KB, et al. (2023) MeCP2 represses the activity of topoisomerase IIβ in long neuronal genes. Cell Reports. 42: 113538 |
Chow SYA, Nakayama K, Osaki T, et al. (2022) Human sensory neurons modulate melanocytes through secretion of RGMB. Cell Reports. 40: 111366 |
Chow SYA, Hu H, Osaki T, et al. (2022) Advances in construction and modeling of functional neural circuits in vitro. Neurochemical Research |
Mitsuzawa S, Suzuki N, Akiyama T, et al. (2021) Reduced PHOX2B stability causes axonal growth impairment in motor neurons with TARDBP mutations. Stem Cell Reports |
Shaik FA, Ihida S, Ikeuchi Y, et al. (2020) TFT sensor array for real-time cellular characterization, stimulation, impedance measurement and optical imaging of in-vitro neural cells. Biosensors & Bioelectronics. 169: 112546 |
Chanda A, Ikeuchi Y, Karve K, et al. (2020) Correction: PIAS1 and TIF1γ collaborate to promote SnoN SUMOylation and suppression of epithelial-mesenchymal transition. Cell Death and Differentiation |
Chanda A, Ikeuchi Y, Karve K, et al. (2020) PIAS1 and TIF1γ collaborate to promote SnoN SUMOylation and suppression of epithelial-mesenchymal transition. Cell Death and Differentiation |
Misawa R, Minami T, Okamoto A, et al. (2020) A light-inducible Hedgehog signaling activator modulates proliferation and differentiation of neural cells. Acs Chemical Biology |
Akiyama T, Suzuki N, Ishikawa M, et al. (2019) Aberrant axon branching via Fos-B dysregulation in FUS-ALS motor neurons. Ebiomedicine |