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Showing results for: self-renewal

Extremely low-frequency electromagnetic fields facilitate proliferation and functional differentiation in spinal neural stem cells.

Research RF Safe Research Library Jan 1, 2025

This in vitro study examined extremely low-frequency electromagnetic field (ELF-EMF) effects on spinal cord-derived neural stem cells (NSCs) from adult mice. The authors report that ELF-EMFs increase NSC proliferation and self-renewal with upregulation of Sox2. They also report activation of T-type calcium channels,…

The legacy effects of electromagnetic fields on bone marrow mesenchymal stem cell self-renewal and multiple differentiation potential.

Research RF Safe Research Library Jan 1, 2018

This animal study examined whether electromagnetic field (EMF) pretreatment has lasting (“legacy”) effects on rat bone marrow mesenchymal stem cells (BMSCs) and whether EMF-pretreated BMSC sheets improve fracture nonunion healing in rats. The authors report increased BMSC proliferation and enhanced…

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