Patrick C. Kerstein, Ph.D.

Affiliations: 
2021- School of Health Sciences Purdue University, West Lafayette, IN, United States 
Area:
neural development, sensory biology
Website:
https://www.purdue.edu/hhs/hsci/directory/faculty/kerstein_patrick.html
Google:
"https://scholar.google.com/citations?user=8XQvutYAAAAJ&hl=en"
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Publications

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Kerstein PC, Agreda YS, Curran BM, et al. (2023) Gbx2 controls amacrine cell dendrite stratification through Robo1/2 receptors. Biorxiv : the Preprint Server For Biology
Kerstein PC, Leffler J, Sivyer B, et al. (2020) Gbx2 Identifies Two Amacrine Cell Subtypes with Distinct Molecular, Morphological, and Physiological Properties. Cell Reports. 33: 108382
Schaser AJ, Stackhouse TL, Weston LJ, et al. (2020) Trans-synaptic and retrograde axonal spread of Lewy pathology following pre-formed fibril injection in an in vivo A53T alpha-synuclein mouse model of synucleinopathy. Acta Neuropathologica Communications. 8: 150
O'Sullivan ML, Puñal VM, Kerstein PC, et al. (2017) Astrocytes follow ganglion cell axons to establish an angiogenic template during retinal development. Glia
Kerstein PC, Patel KM, Gomez TM. (2017) Calpain-mediated proteolysis of Talin and FAK regulates adhesion dynamics necessary for axon guidance. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Kerstein PC, Nichol RH, Gomez TM. (2015) Mechanochemical regulation of growth cone motility. Frontiers in Cellular Neuroscience. 9: 244
Lehto SG, Weyer AD, Zhang M, et al. (2015) AMG2850, a potent and selective TRPM8 antagonist, is not effective in rat models of inflammatory mechanical hypersensitivity and neuropathic tactile allodynia. Naunyn-Schmiedeberg's Archives of Pharmacology. 388: 465-76
Kerstein PC, Jacques-Fricke BT, Rengifo J, et al. (2013) Mechanosensitive TRPC1 channels promote calpain proteolysis of talin to regulate spinal axon outgrowth. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 273-85
Hillery CA, Kerstein PC, Vilceanu D, et al. (2011) Transient receptor potential vanilloid 1 mediates pain in mice with severe sickle cell disease. Blood. 118: 3376-83
Kerstein PC, del Camino D, Moran MM, et al. (2009) Pharmacological blockade of TRPA1 inhibits mechanical firing in nociceptors. Molecular Pain. 5: 19
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