Publication | Closed Access
Induction of Calcium Influx in Cortical Neural Networks by Nanomagnetic Forces
129
Citations
40
References
2016
Year
Magnetic ResonanceNeurotransmissionBiomedical EngineeringCellular NeurobiologyNanomagnetic ForcesNeurochipSocial SciencesCalcium InfluxNeurodynamicsNeuromodulationCortical Neural NetworksNanomagnetic Force StimulationBiophysicsPhysicsIon ChannelsNervous SystemBrain CircuitryNeurophysiologyComputational NeurosciencePhysiologyNeuronal NetworkNeuroscienceElectrophysiologyCentral Nervous SystemMedicineStimulated Neural Networks
Nanomagnetic force stimulation with ferromagnetic nanoparticles was found to trigger calcium influx in cortical neural networks without observable cytotoxicity. Stimulated neural networks showed an average of 20% increment in calcium fluorescence signals and a heightened frequency in calcium spiking. These effects were also confined spatially to areas with engineered high magnetic field gradients. Furthermore, blockage of N-type calcium channels inhibited the stimulatory effects of the nanomagnetic forces, suggesting the role of mechano-sensitive ion channels in mediating calcium influx.
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