<div><p>Exogenous application of an electric field can direct cell migration and improve wound healing; however clinical application of the therapy remains elusive due to lack of a suitable device and hence, limitations in understanding the molecular mechanisms. Here we report on a novel FDA approved redox-active Ag/Zn bioelectric dressing (BED) which generates electric fields. To develop a mechanistic understanding of how the BED may potentially influence wound re-epithelialization, we direct emphasis on understanding the influence of BED on human keratinocyte cell migration. Mapping of the electrical field generated by BED led to the observation that BED increases keratinocyte migration by three mechanisms: (i) generating hydrogen peroxid...
Upon cutaneous injury, the human body naturally forms an electric field (EF) that acts as a guidance...
Wounds may be acute, subacute, or chronic and are the common clinical life entities. It is a complex...
Many cell types respond to electric fields (EFs) through cell migration, a process termed galvanotax...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
Repair to damaged tissue requires directional cell migration to heal the wound. Immediately upon wou...
Currents that leak out of wounds generate electric fields lateral to the wound. These fields induce ...
Endogenous electric fields induced during wound healing seem to be one of the most relevant cues fo...
<p>(<b>A</b>) HaCaT cells were treated with Ag/Zn BED or polyester printer printed with only silver ...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Naturally occurring electric fields are known to be morphogenetic cues and associated with growth an...
Outwardly directed ionic currents have been measured leaving skin wounds in vivo. These currents gen...
<p>(<b>A</b>) After 24 h of treatment with Ag/Zn BED, HaCaT cells were stained with JC-1 dye and ana...
Abstract Naturally occurring electric fields are known to be morphogenetic cues and associated with ...
Upon cutaneous injury, the human body naturally forms an electric field (EF) that acts as a guidance...
Wounds may be acute, subacute, or chronic and are the common clinical life entities. It is a complex...
Many cell types respond to electric fields (EFs) through cell migration, a process termed galvanotax...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
Repair to damaged tissue requires directional cell migration to heal the wound. Immediately upon wou...
Currents that leak out of wounds generate electric fields lateral to the wound. These fields induce ...
Endogenous electric fields induced during wound healing seem to be one of the most relevant cues fo...
<p>(<b>A</b>) HaCaT cells were treated with Ag/Zn BED or polyester printer printed with only silver ...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Naturally occurring electric fields are known to be morphogenetic cues and associated with growth an...
Outwardly directed ionic currents have been measured leaving skin wounds in vivo. These currents gen...
<p>(<b>A</b>) After 24 h of treatment with Ag/Zn BED, HaCaT cells were stained with JC-1 dye and ana...
Abstract Naturally occurring electric fields are known to be morphogenetic cues and associated with ...
Upon cutaneous injury, the human body naturally forms an electric field (EF) that acts as a guidance...
Wounds may be acute, subacute, or chronic and are the common clinical life entities. It is a complex...
Many cell types respond to electric fields (EFs) through cell migration, a process termed galvanotax...