PEER-REVIEWED PUBLICATION

2026

TRPV4 is present in chicken lenses and can be modulated to affect biomechanics

A tensile test divider icon

Gorla S, Choh V

Investigative Ophthalmology & Visual Science

University of Waterloo

RESEARCH SUMMARY
This ARVO 2026 conference abstract investigated whether the transient receptor potential vanilloid 4 channel is present in chicken lenses and whether modulating this channel affects lens biomechanics. White Leghorn hatchlings were raised for 14 days, after which the eyes were enucleated and lenses were analyzed for TRPV4 protein expression and mechanical response. Western blotting detected TRPV4 bands at approximately 98 kDa, indicating the presence of TRPV4 in chicken lenses. To test biomechanical effects, paired lenses were treated with either a TRPV4 agonist, GSK1016790A, or antagonist, RN-1734, while fellow control lenses were treated with vehicle in transport solution at 37 °C for the same duration. Compression testing showed that agonist-treated lenses had a significantly lower exponential b-coefficient than vehicle controls, indicating softening, while antagonist-treated lenses had a significantly higher b-coefficient, indicating stiffening. The findings suggest that TRPV4 activity influences lens biomechanics, possibly through calcium-mediated effects on gap junction opening, water efflux, microcirculation, and cytoskeletal regulation.
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CELLSCALE INSTRUMENT USED

MicroTester

Chicken lenses were mechanically tested using a CellScale MicroTester after pharmacological treatment with TRPV4 modulators. One lens from each chicken was treated for 2 hours with either the TRPV4 agonist GSK1016790A or the TRPV4 antagonist RN-1734, while the fellow lens was treated with vehicle in transport solution at 37 °C for the same duration. Treated and control lenses were then compressed under the MicroTester, and force-compression data were collected. The resulting data were fit to an exponential equation, y = y0 + ae^bx, where the unitless b-coefficient was used to estimate the rate of increase in force with compression. Higher b-coefficient values were interpreted as greater lens stiffening during compression. The MicroTester results showed that GSK1016790A significantly lowered the b-coefficient compared with vehicle controls, suggesting lens softening, while RN-1734 significantly increased the b-coefficient, suggesting lens stiffening. These measurements directly supported the conclusion that TRPV4 channel modulation can alter chicken lens mechanical behaviour.
PUBLICATION DETAILS
JOURNAL

Investigative Ophthalmology & Visual Science

YEAR

2026

INSTITUTIONS

University of Waterloo

COUNTRIES

Canada

INSTRUMENT USED

MicroTester

TESTING METHODS

Compression TestingMicro-Mechanical Testing

RESEARCH APPLICATIONS

Ophthalmic Biomechanics & Corneal Tissue Engineering

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