Related Experiment Video
Updated: Jan 20, 2026

Whole-Cell Recording of Calcium Release-Activated Calcium CRAC Currents in Human T Lymphocytes
Published on: December 21, 2010
Attenuated Amiloride-Sensitive Current and Augmented Calcium-Activated Chloride Current in Marsh Rice Rat (Oryzomys
Shin-Ping Kuan1, Yan-Shin J Liao1, Katelyn M Davis1
1Department of Physiological Sciences, University of Florida, Gainesville, FL 32610, USA.
Abstract:
Prolonged heat and sea salt aerosols pose a challenge for the mammalian airway, placing the protective airway surface liquid (ASL) at risk for desiccation. Thus, mammals inhabiting salt marshes might have acquired adaptations for ASL regulation. We studied the airways of the rice rat, a rodent that inhabits salt marshes. We discovered negligible Na+ transport through the epithelial sodium channel (ENaC). In contrast, carbachol induced a large Cl- secretory current that was blocked by the calcium-activated chloride channel (CaCC) inhibitor CaCCinhi-A01. Decreased mRNA expression of α, β, and γ ENaC, and increased mRNA expression of the CaCC transmembrane member 16A, distinguished the rice rat airway. Rice rat airway cultures also secreted fluid in response to carbachol and displayed an exaggerated expansion of the ASL volume when challenged with 3.5% NaCl. These data suggest that the rice rat airway might possess unique ion transport adaptations to facilitate survival in the salt marsh environment.
Related Concept Videos
15:29Whole-Cell Recording of Calcium Release-Activated Calcium (CRAC) Currents in Human T Lymphocytes
09:59GABA-activated Single-channel and Tonic Currents in Rat Brain Slices
06:01Transcranial Direct Current Stimulation for Online Gamers
03:21Trans-Spinal Direct Current Stimulation of a Rat's Spinal Motoneuron
Electrical Current
07:28Measurement of Bioelectric Current with a Vibrating Probe

