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Ion Channels and Transporters in Muscle Cell Differentiation

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MDPI
DOI: 10.3390/ijms222413615

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bioelectricity; calcium signaling; cardiac differentiation; membrane potential; myoblast differentiation; stem cells; vascular remodeling

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This review focuses on the critical role of ion channels and transporters in developmental processes of muscle tissues, discussing their influence on myoblast differentiation, cardiac differentiation, and vascular smooth muscle cell differentiation. It highlights examples of model organisms or patients with mutations in ion channels, and proposes a potential underlying molecular mechanism involving hyperpolarization of the resting membrane potential and calcium signaling.
Investigations on ion channels in muscle tissues have mainly focused on physiological muscle function and related disorders, but emerging evidence supports a critical role of ion channels and transporters in developmental processes, such as controlling the myogenic commitment of stem cells. In this review, we provide an overview of ion channels and transporters that influence skeletal muscle myoblast differentiation, cardiac differentiation from pluripotent stem cells, as well as vascular smooth muscle cell differentiation. We highlight examples of model organisms or patients with mutations in ion channels. Furthermore, a potential underlying molecular mechanism involving hyperpolarization of the resting membrane potential and a series of calcium signaling is discussed.

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