. It has long been assumed that wound electric fields are produced by passive ion leakage from damaged tissue. Could these fields be actively maintained and regulated as an active wound response? What are the molecular, ionic and cellular mechanisms underlying the wound electric currents? channel CLC2. flux appears to be largely due to leakage. The dynamic changes of electric currents and specific ion fluxes after wounding suggest that electrical signaling is an active response to injury and offers potential novel approaches to modulate wound healing, for example eye-drops targeting ion transport to aid in the challenging management of non-healing corneal ulcers
A direct current (DC) endogenous electric field (EF) is induced in the wound following skin injury. ...
Electrical fields have been suggested to be important in promoting wound healing. Electrical current...
We studied the effects of direct electric current supplied by an energized silver-coated electrode o...
. It has long been assumed that wound electric fields are produced by passive ion leakage from damag...
BackgroundEndogenous electric fields and currents occur naturally at wounds and are a strong signal ...
Significance: Natural, endogenous electric fields (EFs) and currents arise spontaneously after wound...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Epithelia of the cornea, lens and retina contain a vast array of ion channels and pumps. Together th...
Wounds naturally produce electric signals which serve as powerful cues that stimulate and guide cell...
Endogenous electric fields induced during wound healing seem to be one of the most relevant cues fo...
Naturally occurring electric fields are known to be morphogenetic cues and associated with growth an...
Abstract Naturally occurring electric fields are known to be morphogenetic cues and associated with ...
Repair to damaged tissue requires directional cell migration to heal the wound. Immediately upon wou...
AbstractEndogenous electric fields (EFs) have been detected at wounds and damaged tissues. The poten...
<p><b>Cl<sup>−</sup> concentration.</b> Unwounded cornea had a slighly higher Cl<sup>−</sup> concent...
A direct current (DC) endogenous electric field (EF) is induced in the wound following skin injury. ...
Electrical fields have been suggested to be important in promoting wound healing. Electrical current...
We studied the effects of direct electric current supplied by an energized silver-coated electrode o...
. It has long been assumed that wound electric fields are produced by passive ion leakage from damag...
BackgroundEndogenous electric fields and currents occur naturally at wounds and are a strong signal ...
Significance: Natural, endogenous electric fields (EFs) and currents arise spontaneously after wound...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Epithelia of the cornea, lens and retina contain a vast array of ion channels and pumps. Together th...
Wounds naturally produce electric signals which serve as powerful cues that stimulate and guide cell...
Endogenous electric fields induced during wound healing seem to be one of the most relevant cues fo...
Naturally occurring electric fields are known to be morphogenetic cues and associated with growth an...
Abstract Naturally occurring electric fields are known to be morphogenetic cues and associated with ...
Repair to damaged tissue requires directional cell migration to heal the wound. Immediately upon wou...
AbstractEndogenous electric fields (EFs) have been detected at wounds and damaged tissues. The poten...
<p><b>Cl<sup>−</sup> concentration.</b> Unwounded cornea had a slighly higher Cl<sup>−</sup> concent...
A direct current (DC) endogenous electric field (EF) is induced in the wound following skin injury. ...
Electrical fields have been suggested to be important in promoting wound healing. Electrical current...
We studied the effects of direct electric current supplied by an energized silver-coated electrode o...