Abstract
Despite the widespread consumption of products containing chemicals that irritate the oral mucosa, little is known about the underlying neural mechanisms nor is there a corresponding animal model of oral irritation. We have developed a rodent model to assess aversion to capsaicin in drinking water, using a paired preference paradigm. This method was used to test the hypothesis that the neuromodulator substance P (SP) plays a role in the detection of intra-oral capsaicin. 'Knockout' (KO) mice completely lacking SP and neurokinin A due to a disruption of the preprotachykinin A gene and a matched population of wild-type (WT) mice had free access to two drinking bottles, one containing water and the other capsaicin at various concentrations. Both KO and WT mice showed a concentration-dependent aversion to capsaicin. KO mice consumed significantly more capsaicin than WT at a single near threshold (1.65 μM) concentration, indicating that SP plays a limited role in the detection and rejection of oral irritants.
Cite
CITATION STYLE
Simons, C. T., Dessirier, J. M., Jinks, S. L., & Carstens, E. (2001). An animal model to assess aversion to intra-oral capsaicin: Increased threshold in mice lacking substance P. Chemical Senses, 26(5), 491–497. https://doi.org/10.1093/chemse/26.5.491
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.