Static electromagnetic field and recombinant human fibroblasts encoding miR-451 and miR-16 increased cell trans-differentiation to CD and CD erythroid like progenitor.
Research
RF Safe Research Library
Jan 1, 2024
This in vitro study tested whether daily exposure to a 10 mT ELF electromagnetic field, combined with miR-16 and miR-451 transfection, could enhance trans-differentiation of human dermal fibroblasts toward erythroid-like progenitors. The authors report increased erythroid-like differentiation with ELF-EMF exposure,…
Effect of Electromagnetic Field on Proliferation and Migration of Fibroblasts and Keratinocytes: Implications in Wound Healing and Regeneration.
Research
RF Safe Research Library
Jan 1, 2024
This narrative review discusses reported effects of EMF, including low-frequency EMF (LF-EMF), on cell behaviors relevant to wound healing and on recovery processes after traumatic brain injury (TBI). It summarizes literature suggesting EMF can promote migration and proliferation of fibroblasts, keratinocytes, and…
Improved osteogenic differentiation by extremely low electromagnetic field exposure: possible application for bone engineering.
Research
RF Safe Research Library
Jan 1, 2022
This in vitro study examined intermittent extremely low-frequency electromagnetic field (ELF-EMF) exposure (6 h/day) in human periodontal ligament mesenchymal stem cells during osteogenic differentiation. After 10 days, ELF-EMF-exposed cells showed increased proliferation and calcium deposition versus sham.…
Electromagnetic Fields Generated by the IteraCoil Device Differentiate Mesenchymal Stem Progenitor Cells Into the Osteogenic Lineage.
Research
RF Safe Research Library
Jan 1, 2022
This in vitro study exposed human adipose-derived mesenchymal stem progenitor cells to an alternating EMF generated by the IteraCoil device at 0.05 and 1 kHz. The authors report that EMF exposure was associated with osteoblastic differentiation in the absence of exogenous pro-osteogenic supplements, assessed by…
Effects of electromagnetic fields treatment on rat critical-sized calvarial defects with a 3D-printed composite scaffold.
Research
RF Safe Research Library
Jan 1, 2020
This animal and in vitro study evaluated electromagnetic fields (EMF) treatment combined with a 3D-printed PLA/HA scaffold seeded with rat bone marrow mesenchymal stem cells (BMSCs) for cranial defect repair. The authors report that EMF enhanced BMSC proliferation and osteogenic differentiation and was partly…
Low-frequency electromagnetic fields promote hair follicles regeneration by injection a mixture of epidermal stem cells and dermal papilla cells.
Research
RF Safe Research Library
Jan 1, 2020
This animal study evaluated whether low-frequency EMF exposure affects bioengineered hair follicle generation in nude mice injected with a mixture of epidermal stem cells and dermal papilla cells. Histology (H&E) at 7 or 14 days suggested more hair follicle eruption and higher density of hair follicle-like structures…
Non-Ionizing Radiation for Cardiac Human Amniotic Mesenchymal Stromal Cell Commitment: A Physical Strategy in Regenerative Medicine.
Research
RF Safe Research Library
Jan 1, 2018
This in vitro study exposed human amniotic mesenchymal stromal cells to an ELF-EMF stimulus (7 Hz, 2.5 µT) and compared responses with a nitric oxide chemical treatment. The authors report reduced cell proliferation with no change in metabolic activity, vitality, or apoptosis after ELF-EMF exposure. They also report…
Efficacy of 50 Hz electromagnetic fields on human epidermal stem cell transplantation seeded in collagen sponge scaffolds for wound healing in a murine model.
Research
RF Safe Research Library
Jan 1, 2017
This animal study evaluated whether 50 Hz EMF exposure enhances wound healing after transplantation of human epidermal stem cells (ESC) seeded in collagen sponge scaffolds. Thirty-six nude mice with full-thickness wounds were assigned to control, ESC-only, or ESC+EMF groups (50 Hz, 5 mT, 60 min/day for 20 days). The…
Electromagnetic fields counteract IL-1β activity during chondrogenesis of bovine mesenchymal stem cells.
Research
RF Safe Research Library
Jan 1, 2015
This in vitro study examined whether electromagnetic fields (EMFs) influence chondrogenic differentiation of bovine mesenchymal stem cell pellets, with and without the inflammatory cytokine IL-1β. The authors report EMFs had limited effects on chondrogenesis in the absence of inflammation, but in the presence of…