Christian A. Von Hehn, Ph.D.
Affiliations: | 2009 | Yale University, New Haven, CT |
Area:
Neuroscience BiologyGoogle:
"Christian Von Hehn"Mean distance: 30533.1
Parents
Sign in to add mentorSven E. Jordt | grad student | 2009 | Yale | |
(TRPA1 as a sensory neuronal target of chemical irritants and counterirritants.) | ||||
Sven-Eric Jordt | grad student | 2006-2009 | Biogen | |
(Medical Director) |
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Publications
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Talbot S, Abdulnour RE, Burkett PR, et al. (2015) Silencing Nociceptor Neurons Reduces Allergic Airway Inflammation. Neuron |
Chiu IM, Heesters BA, Ghasemlou N, et al. (2013) Bacteria activate sensory neurons that modulate pain and inflammation. Nature. 501: 52-7 |
Sisignano M, Park CK, Angioni C, et al. (2012) 5,6-EET is released upon neuronal activity and induces mechanical pain hypersensitivity via TRPA1 on central afferent terminals. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 6364-72 |
von Hehn CA, Baron R, Woolf CJ. (2012) Deconstructing the neuropathic pain phenotype to reveal neural mechanisms. Neuron. 73: 638-52 |
Bessac BF, Sivula M, von Hehn CA, et al. (2009) Transient receptor potential ankyrin 1 antagonists block the noxious effects of toxic industrial isocyanates and tear gases. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 23: 1102-14 |
Brown MR, Kronengold J, Gazula VR, et al. (2008) Amino-termini isoforms of the Slack K+ channel, regulated by alternative promoters, differentially modulate rhythmic firing and adaptation. The Journal of Physiology. 586: 5161-79 |
Escalera J, von Hehn CA, Bessac BF, et al. (2008) TRPA1 mediates the noxious effects of natural sesquiterpene deterrents. The Journal of Biological Chemistry. 283: 24136-44 |
Bessac BF, Sivula M, von Hehn CA, et al. (2008) TRPA1 is a major oxidant sensor in murine airway sensory neurons. The Journal of Clinical Investigation. 118: 1899-910 |
Kaczmarek LK, Bhattacharjee A, Desai R, et al. (2005) Regulation of the timing of MNTB neurons by short-term and long-term modulation of potassium channels. Hearing Research. 206: 133-45 |
Bhattacharjee A, von Hehn CA, Mei X, et al. (2005) Localization of the Na+-activated K+ channel Slick in the rat central nervous system. The Journal of Comparative Neurology. 484: 80-92 |