Modulation of Calcium Signaling and Metabolic Pathways in Endothelial Cells with Magnetic Fields

Author:

Gorobets OksanaORCID,Gorobets SvitlanaORCID,Polyakova TatyanaORCID,Zablotskii VitaliiORCID

Abstract

AbstractCalcium signaling plays a crucial role in various physiological processes, including muscle contraction, cell division, and neurotransmitter release. Dysregulation of calcium levels and signaling has been linked to a range of pathological conditions such as neurodegenerative disorders, cardiovascular disease, and cancer. Here, we suggest that in the endothelium, calcium ion channel activity and calcium signaling can be modulated by applying either a time-varying or static gradient magnetic field (MF). This modulation is achieved by exerting magnetic forces or torques on either biogenic or non-biogenic magnetic nanoparticles that are bound to endothelial cell membranes. Since calcium signaling in endothelial cells induces neuromodulation and influences blood flow control, treatment with a magnetic field shows promise for regulating neurovascular coupling and treating vascular dysfunctions associated with aging and neurodegenerative disorders. Furthermore, magnetic treatment can enable control over the decoding of Ca signals, ultimately impacting protein synthesis. The ability to modulate calcium wave frequencies using MFsand the MF-controlled decoding of Ca signaling present promising avenues for treating diseases characterized by calcium dysregulation.

Publisher

Cold Spring Harbor Laboratory

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