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Terahertz Waves Enhance the Permeability of Sodium Channels

Yan Zhao, Lei Wang, Yangmei Li, Zhi Zhu

2023Symmetry25 citationsDOIOpen Access PDF

Abstract

With the help of molecular dynamics simulations and an artificial sodium channel model, we corroborated that the application of terahertz stimulation at a characteristic frequency can largely increase the permeability of the sodium channel by a factor of 33.6. The mechanism is that the carboxylate groups in the filter region transfer the absorbed terahertz photon energy to the sodium ions, which increase the ions’ kinetic energy; this results in breaking the hydrated hydrogen bonding network between the hydrosphere layer of the ions and the carboxylate groups, thereby increasing their diffusion and reducing the energy barrier for them to cross the channel. This study on terahertz-driven particle transmembrane transport offers new ideas for targeted therapy of channel diseases and for developing novel integrated engineering systems in energy conversion and storage.

Topics & Concepts

Terahertz radiationMaterials scienceSodiumIonPermeability (electromagnetism)Chemical physicsChemistryMembraneOptoelectronicsBiochemistryMetallurgyOrganic chemistryNanopore and Nanochannel Transport StudiesAdvanced Thermoelectric Materials and Devicesthermodynamics and calorimetric analyses