Ahmet Hoke
Affiliations: | Neurology/neuroscience | Johns Hopkins University School of Medicine, Baltimore, MD, United States |
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Sign in to add traineeChristopher R Cashman | grad student | 2011-2018 | Johns Hopkins Medical School |
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Publications
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Moss KR, Mi R, Kawaguchi R, et al. (2024) hESC- and hiPSC-derived Schwann cells are molecularly comparable and functionally equivalent. Iscience. 27: 109855 |
Kim JH, Cetinkaya-Fisgin A, Zahn N, et al. (2024) Label-Free Visualization and Morphological Profiling of Neuronal Differentiation and Axonal Degeneration through Quantitative Phase Imaging. Advanced Biology. e2400020 |
Bharucha-Goebel DX, Todd JJ, Saade D, et al. (2024) Intrathecal Gene Therapy for Giant Axonal Neuropathy. The New England Journal of Medicine. 390: 1092-1104 |
Schmitd LB, Hafner H, Ward A, et al. (2024) Sarm1 is not necessary for activation of neuron-intrinsic growth programs yet required for the Schwann cell repair response and peripheral nerve regeneration. Biorxiv : the Preprint Server For Biology |
Fuentes-Flores A, Geronimo-Olvera C, Girardi K, et al. (2023) Senescent Schwann cells induced by aging and chronic denervation impair axonal regeneration following peripheral nerve injury. Embo Molecular Medicine. e17907 |
Park SB, Cetinkaya-Fisgin A, Argyriou AA, et al. (2023) Axonal degeneration in chemotherapy-induced peripheral neurotoxicity: clinical and experimental evidence. Journal of Neurology, Neurosurgery, and Psychiatry |
Moss KR, Johnson AE, Bopp TS, et al. (2022) SARM1 knockout does not rescue neuromuscular phenotypes in a Charcot-Marie-Tooth disease Type 1A mouse model. Journal of the Peripheral Nervous System : Jpns |
Höke A. (2022) cADPR induced calcium influx mediates axonal degeneration caused by paclitaxel. The Journal of Cell Biology. 221 |
Stewart SL, Thomas S, Höke E, et al. (2021) Vitamin B6 Levels Do Not Correlate with Severity of Neuropathy in Chronic Idiopathic Axonal Polyneuropathy. Journal of the Peripheral Nervous System : Jpns |
Hanwright PJ, Qiu C, Rath J, et al. (2021) Sustained IGF-1 delivery ameliorates effects of chronic denervation and improves functional recovery after peripheral nerve injury and repair. Biomaterials. 121244 |