Dry eye sensitizes cool cells to capsaicin-induced changes in activity via TRPV1

Author:

Hatta Azusa12,Kurose Masayuki1ORCID,Sullivan Cara34,Okamoto Keiichiro1,Fujii Noritaka2,Yamamura Kensuke1,Meng Ian D.3

Affiliation:

1. Division of Oral Physiology, Department of Oral Biological Sciences, Niigata University, Graduate School of Medical and Dental Sciences, Niigata, Japan

2. General Dentistry and Clinical Education Unit, Niigata University Medical and Dental Hospital, Niigata, Japan

3. Department of Biomedical Sciences, College of Osteopathic Medicine, University of New England, Biddeford, Maine

4. Graduate Studies in Biomedical Sciences and Engineering, University of Maine, Orono, Maine

Abstract

Corneal cool cells are sensitive to the ocular fluid status of the corneal surface and may be responsible for the regulation of basal tear production. Previously, we have shown that dry eye, induced by lacrimal gland excision (LGE) in rats, sensitized corneal cool cells to the transient receptor potential melastatin 8 (TRPM8) agonist menthol and to cool stimulation. In the present study, we examined the effect of dry eye on the sensitivity of cool cells to the transient receptor potential vanilloid 1 (TRPV1) agonist capsaicin. Single-unit recordings in the trigeminal ganglion were performed 7–10 days after LGE. At a concentration of 0.3 μM, capsaicin did not affect ongoing or cool-evoked activity in control animals yet facilitated ongoing activity and suppressed cool-evoked activity in LGE animals. At higher concentrations (3 μM), capsaicin continued to facilitate ongoing activity in LGE animals but suppressed ongoing activity in control animals. Higher concentrations of capsaicin also suppressed cool-evoked activity in both groups of animals, with an overall greater effect in LGE animals. In addition to altering cool-evoked activity, capsaicin enhanced the sensitivity of cool cells to heat in LGE animals. Capsaicin-induced changes were prevented by the application of the TRPV1 antagonist capsazepine. With the use of fluorescent in situ hybridization, TRPV1 and TRPM8 expression was examined in retrograde tracer-identified corneal neurons. The coexpression of TRPV1 and TRPM8 in corneal neurons was significantly greater in LGE-treated animals when compared with sham controls. These results indicate that LGE-induced dry eye increases TRPV1-mediated responses in corneal cool cells at least in part through the increased expression of TRPV1. NEW & NOTEWORTHY Corneal cool cells are known to detect drying of the ocular surface. Our study is the first to report that dry eye induced alterations in cool cell response properties, including the increased responsiveness to noxious heat and activation by capsaicin. Along with the changes in cell response properties, it is possible these neurons also function differently in dry eye, relaying information related to the perception of ocular irritation in addition to regulating tearing and blinking.

Funder

HHS | NIH | National Institute of General Medical Sciences (NIGMS)

HHS | NIH | National Eye Institute (NEI)

Ministry of Education, Culture, Sports, Science, and Technology (MEXT)

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

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