Bioelectric Properties of Myogenic Progenitor Cells
Author(s) -
Colin Fennelly,
Shay Söker
Publication year - 2018
Publication title -
bioelectricity
Language(s) - English
Resource type - Journals
eISSN - 2576-3113
pISSN - 2576-3105
DOI - 10.1089/bioe.2018.0002
Subject(s) - microbiology and biotechnology , regenerative medicine , progenitor cell , transmembrane protein , biology , stem cell , ion channel , cell , neuroscience , cellular differentiation , cell polarity , tissue engineering , biochemistry , genetics , receptor , gene
Modern stem cell research has mainly focused on protein expression and transcriptional networks. However, transmembrane voltage gradients generated by ion channels and transporters have demonstrated to be powerful regulators of cellular processes. These physiological cues exert influence on cell behaviors ranging from differentiation and proliferation to migration and polarity. Bioelectric signaling is a fundamental element of living systems and an untapped reservoir for new discoveries. Dissecting these mechanisms will allow for novel methods of controlling cell fate and open up new opportunities in biomedicine. This review focuses on the role of ion channels and the resting membrane potential in the proliferation and differentiation of skeletal muscle progenitor cells. In addition, findings relevant to this topic are presented and potential implications for tissue engineering and regenerative medicine are discussed.
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