Mark E. Warchol

Affiliations: 
Otolaryngology - HNS Washington University School of Medicine, St. Louis, MO, United States 
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"Mark Warchol"
Mean distance: 16.03 (cluster 52)
 
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Publications

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Lee DS, Schrader A, Zou J, et al. (2024) Cisplatin drives mitochondrial dysregulation in sensory hair cells. Biorxiv : the Preprint Server For Biology
Manickam V, Gawande DY, Stothert AR, et al. (2023) Macrophages Promote Repair of Inner Hair Cell Ribbon Synapses Following Noise-Induced Cochlear Synaptopathy. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Lee DS, Schrader A, Bell E, et al. (2022) Evaluation of Cisplatin-Induced Pathology in the Larval Zebrafish Lateral Line. International Journal of Molecular Sciences. 23
Saettele AL, Wong HC, Kindt KS, et al. (2022) Prolonged Dexamethasone Exposure Enhances Zebrafish Lateral-Line Regeneration But Disrupts Mitochondrial Homeostasis and Hair Cell Function. Journal of the Association For Research in Otolaryngology : Jaro
Borse V, Kaur T, Hinton A, et al. (2021) Programmed Cell Death Recruits Macrophages Into the Developing Mouse Cochlea. Frontiers in Cell and Developmental Biology. 9: 777836
Borse V, Barton M, Arndt H, et al. (2021) Author Correction: Dynamic patterns of YAP1 expression and cellular localization in the developing and injured utricle. Scientific Reports. 11: 23936
Holmgren M, Ravicz ME, Hancock KE, et al. (2021) Mechanical overstimulation causes acute injury and synapse loss followed by fast recovery in lateral-line neuromasts of larval zebrafish. Elife. 10
Borse V, Barton M, Arndt H, et al. (2021) Dynamic patterns of YAP1 expression and cellular localization in the developing and injured utricle. Scientific Reports. 11: 2140
Warchol ME, Schrader A, Sheets L. (2020) Macrophages Respond Rapidly to Ototoxic Injury of Lateral Line Hair Cells but Are Not Required for Hair Cell Regeneration. Frontiers in Cellular Neuroscience. 14: 613246
Gnedeva K, Wang X, McGovern MM, et al. (2020) Organ of Corti size is governed by Yap/Tead-mediated progenitor self-renewal. Proceedings of the National Academy of Sciences of the United States of America
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