59 Publications (Page 1 of 3)
2023
Generating high-fidelity cochlear organoids from human pluripotent stem cells.Moore, Stephen T⋅Moore, Stephen T⋅Moore, Stephen T.⋅Nakamura, Takashi⋅Nakamura, Takashi⋅Nakamura, Takashi⋅Nie, Jing⋅Nie, Jing⋅Nie, Jing⋅Solivais, Alexander J⋅Solivais, Alexander J.⋅Solivais, Alexander J⋅Aristizábal-Ramírez, Isabel⋅Aristizábal-Ramírez, Isabel⋅Aristizábal-Ramı́rez, Isabel⋅Ueda, Yoshitomo⋅Ueda, Yoshitomo⋅Ueda, Yoshitomo⋅Manikandan, Mayakannan⋅Manikandan, Mayakannan⋅Manikandan, Mayakannan⋅Reddy, V Shweta⋅Reddy, V. Shweta⋅Reddy, V Shweta⋅Romano, Daniel R⋅Romano, Daniel R.⋅Romano, Daniel R⋅Hoffman, John R⋅Hoffman, John R.⋅Hoffman, John R⋅Perrin, Benjamin J.⋅Perrin, Benjamin J⋅Perrin, Benjamin J⋅Nelson, Rick F⋅Nelson, Rick F.⋅Nelson, Rick F⋅Frolenkov, Gregory I⋅Frolenkov, Gregory I⋅Frolenkov, Gregory I.⋅Chuva de Sousa Lopes, Susana M⋅Sousa Lopes, Susana M. Chuva⋅Chuva de Sousa Lopes, Susana M⋅Hashino, Eri⋅Hashino, Eri and Hashino, EriCell stem cell, vol. 30, (no. 7), pp. 950-961.e7, July 6, 2023.
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2021
Deafness-in-a-dish: modeling hereditary deafness with inner ear organoids.
Romano, Daniel R⋅Hashino, Eri and Nelson, Rick F
Human genetics, August 3, 2021. | Journal Article
Directed Differentiation of Human Pluripotent Stem Cells into Inner Ear Organoids.Ueda, Yoshitomo⋅Moore, Stephen T and Hashino, EriMethods in molecular biology (Clifton, N.J.), November 2, 2021.
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2020
Generation of inner ear organoids from human pluripotent stem cells.Nie, Jing⋅Nie, Jing⋅Hashino, Eri and Hashino, EriMethods in cell biology, vol. 159, pp. 303-321, 2020.
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Progress in Modeling and Targeting Inner Ear Disorders with Pluripotent Stem Cells.
Tang, Pei-Ciao⋅Hashino, Eri and Nelson, Rick F
Stem cell reports, May 6, 2020. | Journal Article
2019
Defective Tmprss3-Associated Hair Cell Degeneration in Inner Ear OrganoidsTang, Pei-Ciao⋅Tang, Pei Ciao⋅Tang, Pei-Ciao⋅Alex, Alpha L⋅Alex, Alpha L⋅Alex, Alpha L⋅Nie, Jing⋅Nie, Jing⋅Nie, Jing⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Roth, Adam A⋅Roth, Adam A⋅Roth, Adam A⋅Booth, Kevin T⋅Booth, Kevin T⋅Booth, Kevin T⋅Koehler, Karl R⋅Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri⋅Hashino, Eri⋅Hashino, Eri⋅Nelson, Rick F⋅Nelson, Rick F and Nelson, Rick FStem Cell Reports, vol. 13, (no. 1), pp. 162, 2019-07-09.
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2018
The histone demethylase LSD1 regulates inner ear progenitor differentiation through interactions with Pax2 and the NuRD repressor complexPatel, Dharmeshkumar⋅Patel, Dharmeshkumar⋅Shimomura, Atsushi⋅Shimomura, Atsushi⋅Majumdar, Sreeparna⋅Majumdar, Sreeparna⋅Holley, Matthew C⋅Holley, Matthew C⋅Hashino, Eri and Hashino, EriPLoS One, vol. 13, (no. 1), Jan 2018.
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2017
Directed Differentiation of Mouse Embryonic Stem Cells Into Inner Ear Sensory Epithelia in 3D Culture.Nie, Jing⋅Nie, Jing⋅Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri and Hashino, EriMethods in molecular biology (Clifton, N.J.), vol. 1597, pp. 67-83, 2017.
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Generation of inner ear organoids containing functional hair cells from human pluripotent stem cellsKoehler, Karl⋅Koehler, Karl R⋅Koehler, Karl R⋅Koehler, Karl R⋅Nie, Jing⋅Nie, Jing⋅Nie, Jing⋅Longworth-Mills, Emma⋅Longworth-mills, Emma⋅Longworth-Mills, Emma⋅Longworth-Mills, Emma⋅Liu, Xiao-Ping⋅Liu, Xiao-Ping⋅Liu, Xiao-Ping⋅Liu, Xiao-ping⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Holt, Jeffrey⋅Holt, Jeffrey R⋅Holt, Jeffrey R⋅Holt, Jeffrey R⋅Hashino, Eri⋅Hashino, Eri and Hashino, EriNature Biotechnology, vol. 35, (no. 6), pp. 583-589, Jun 2017.
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Organoid technologies meet genome engineering.Nie, Jing⋅Nie, Jing⋅Hashino, Eri and Hashino, EriEMBO reports, February 15, 2017.
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2016
Functional development of mechanosensitive hair cells in stem cell-derived organoids parallels native vestibular hair cells.Liu, Xiao-Ping⋅Koehler, Karl R⋅Mikosz, Andrew M⋅Hashino, Eri and Holt, Jeffrey RNature communications, vol. 7, pp. 11508, May 24, 2016.
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Generating Inner Ear Organoids from Mouse Embryonic Stem Cells.Longworth-Mills, Emma⋅Koehler, Karl R and Hashino, EriMethods in molecular biology (Clifton, N.J.), vol. 1341, pp. 391-406, 2016.
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Modulation of Wnt Signaling Enhances Inner Ear Organoid Development in 3D Culture.DeJonge, Rachel E⋅DeJonge, Rachel E⋅Liu, Xiao-Ping⋅Liu, Xiao-Ping⋅Deig, Christopher R⋅Deig, Christopher R⋅Heller, Stefan⋅Heller, Stefan⋅Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri and Hashino, EriPloS one, vol. 11, (no. 9), pp. e0162508.
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2015
Tlx3 promotes glutamatergic neuronal subtype specification through direct interactions with the chromatin modifier CBP.Shimomura, Atsushi⋅Patel, Dharmeshkumar⋅Wilson, Sarah M⋅Koehler, Karl R⋅Khanna, Rajesh and Hashino, EriPloS one, vol. 10, (no. 8), pp. e0135060, 2015.
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2014
3D mouse embryonic stem cell culture for generating inner ear organoids.Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri and Hashino, EriNature protocols, vol. 9, (no. 6), pp. 1229-1244, 2014.
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2013
Generation of inner ear sensory epithelia from pluripotent stem cells in 3D culture.Koehler, Karl R⋅Koehler, Karl R⋅Mikosz, Andrew M⋅Mikosz, Andrew M⋅Molosh, Andrei I⋅Molosh, Andrei I⋅Patel, Dharmeshkumar⋅Patel, Dharmeshkumar⋅Hashino, Eri and Hashino, EriNature, vol. 500, (no. 7461), pp. 217-221, August 8, 2013.
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Retinoic acid deficiency impairs the vestibular function.
Romand, Raymond⋅Krezel, Wojciech⋅Beraneck, Mathieu⋅Cammas, Laura⋅Fraulob, Valérie⋅Messaddeq, Nadia⋅Kessler, Pascal⋅Hashino, Eri and Dollé, Pascal
The Journal of neuroscience : the official journal of the Society for Neuroscience, vol. 33, (no. 13), pp. 5856-66, 2013/Mar/27. | Journal Article
2012
Class I(A) PI3Kinase regulatory subunit, p85α, mediates mast cell development through regulation of growth and survival related genes.Krishnan, Subha⋅Krishnan, Subha⋅Mali, Raghuveer Singh⋅Mali, Raghuveer Singh⋅Koehler, Karl R⋅Koehler, Karl R⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Chatterjee, Anindya⋅Chatterjee, Anindya⋅Ghosh, Joydeep⋅Ghosh, Joydeep⋅Ramdas, Baskar⋅Ramdas, Baskar⋅Ma, Peilin⋅Ma, Peilin⋅Hashino, Eri⋅Hashino, Eri⋅Kapur, Reuben and Kapur, ReubenPloS one, vol. 7, (no. 1), pp. e28979, 2012.
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Class IA PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related GenesKrishnan, Subha⋅Koehler, Karl⋅Vemula, Sasidhar⋅Chatterjee, Anindya⋅Ghosh, Joydeep⋅Ma, Peilin⋅Hashino, Eri and Kapur, ReubenPLoS One, vol. 7, (no. 1), Jan 2012.
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ROCK1 functions as a critical regulator of stress erythropoiesis and survival by regulating p53.Vemula, Sasidhar⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Shi, Jianjian⋅Shi, Jianjian⋅Shi, Jianjian⋅Mali, Raghuveer Singh⋅Mali, Raghuveer Singh⋅Mali, Raghuveer Singh⋅Ma, Peilin⋅Ma, Peilin⋅Ma, Peilin⋅Liu, Yan⋅Liu, Yan⋅Liu, Yan⋅Hanneman, Philip⋅Hanneman, Philip⋅Hanneman, Philip⋅Koehler, Karl R⋅Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri⋅Hashino, Eri⋅Hashino, Eri⋅Wei, Lei⋅Wei, Lei⋅Wei, Lei⋅Kapur, Reuben⋅Kapur, Reuben and Kapur, ReubenBlood, vol. 120, (no. 14), pp. 2868-2878, October 4, 2012.
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2011
Balanced interactions between Lyn, the p85alpha regulatory subunit of class I(A) phosphatidylinositol-3-kinase, and SHIP are essential for mast cell growth and maturation.Ma, Peilin⋅Ma, Peilin⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Munugalavadla, Veerendra⋅Munugalavadla, Veerendra⋅Chen, Jinbiao⋅Chen, Jinbiao⋅Sims, Emily⋅Sims, Emily⋅Borneo, Jovencio⋅Borneo, Jovencio⋅Kondo, Takako⋅Kondo, Takako⋅Ramdas, Baskar⋅Ramdas, Baskar⋅Mali, Raghuveer⋅Mali, Raghuveer S⋅Li, Shuo⋅Li, Shuo⋅Hashino, Eri⋅Hashino, Eri⋅Takemoto, Clifford⋅Takemoto, Clifford⋅Kapur, Reuben and Kapur, ReubenMolecular and cellular biology, vol. 31, (no. 19), pp. 4052-62, 2011/Oct.
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Extended passaging increases the efficiency of neural differentiation from induced pluripotent stem cells.Koehler, Karl R⋅Tropel, Philippe⋅Theile, Jonathan W⋅Kondo, Takako⋅Cummins, Theodore R⋅Viville, Stéphane and Hashino, EriBMC neuroscience, vol. 12, pp. 82, 2011.
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Wnt signaling promotes neuronal differentiation from mesenchymal stem cells through activation of Tlx3.Kondo, Takako⋅Matsuoka, Akihiro J⋅Shimomura, Atsushi⋅Koehler, Karl R⋅Chan, Rebecca J⋅Miller, Josef M⋅Srour, Edward F and Hashino, EriStem cells (Dayton, Ohio), vol. 29, (no. 5), pp. 836-46, 2011/May.
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2010
In‐vivo assessment of migration and engraftment of stem cells in the cochlea using a high‐resolution microscopic‐endoscopeMatsuoka, Akihiro J⋅Matsuoka, Akihiro J⋅Fritsch, Michael H⋅Fritsch, Michael H⋅Koehler, Karl R⋅Koehler, Karl R⋅Hashino, Eri and Hashino, EriThe Laryngoscope, vol. 120, (no. S4), pp. S212, 2010.
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Magnetic Resonance Imaging of Stem Cells in the Cochlea
Fritsch, Michael⋅Matsuoka, Akihiro and Hashino, Eri
Otolaryngology - Head and Neck Surgery, vol. 143, (no. 2), pp. P98, 2010. | Journal Article