Current treatments for wound healing engage in passive healing processes and rarely participate in stimulating skin cell behaviors for active wound healing. Electric potential difference-derived electrical fields (EFs) are known to modulate skin cell behaviors. Here, a piezoelectric dermal patch is developed that can be applied on skin wound site and EF is generated to promote wound healing. The one-directionally aligned zinc oxide nanorod-based piezoelectric patch generates piezoelectric potential upon mechanical deformations induced by animal motion, and induces EF at the wound bed. In vitro and in vivo data demonstrate that the piezoelectric patch promotes the wound healing process through enhanced cellular metabolism, migration, and pro...
© 2014 John Wiley & Sons Ltd. Ability of electromagnetic fields (EMF) to stimulate cell proliferatio...
Significance: Natural, endogenous electric fields (EFs) and currents arise spontaneously after wound...
Electrical stimulation (ES) is known to affect the wound healing process by modulating skin cell beh...
Wound healing is a highly orchestrated biological process characterized by sequential phases involvi...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
<div><p>Exogenous application of an electric field can direct cell migration and improve wound heali...
Bioactive materials that communicate with bio-tissues via simultaneous chemical and electrical infor...
Tendon disease caused by trauma, illness or age-related degeneration constitutes an unmet clinical n...
Upon cutaneous injury, the human body naturally forms an electric field (EF) that acts as a guidance...
Tendon disease constitutes an unmet clinical need and remains a critical challenge in the field of o...
SUMMARY: Wound healing is a complex biological process that involves proliferation, migration, and d...
Electrical stimulation (ES) is an attractive field among clinicians in the topic of wound healing, w...
Clinicians involved in the conservative care of chronic wounds have many treatment interventions fro...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
© 2014 John Wiley & Sons Ltd. Ability of electromagnetic fields (EMF) to stimulate cell proliferatio...
Significance: Natural, endogenous electric fields (EFs) and currents arise spontaneously after wound...
Electrical stimulation (ES) is known to affect the wound healing process by modulating skin cell beh...
Wound healing is a highly orchestrated biological process characterized by sequential phases involvi...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
<div><p>Exogenous application of an electric field can direct cell migration and improve wound heali...
Bioactive materials that communicate with bio-tissues via simultaneous chemical and electrical infor...
Tendon disease caused by trauma, illness or age-related degeneration constitutes an unmet clinical n...
Upon cutaneous injury, the human body naturally forms an electric field (EF) that acts as a guidance...
Tendon disease constitutes an unmet clinical need and remains a critical challenge in the field of o...
SUMMARY: Wound healing is a complex biological process that involves proliferation, migration, and d...
Electrical stimulation (ES) is an attractive field among clinicians in the topic of wound healing, w...
Clinicians involved in the conservative care of chronic wounds have many treatment interventions fro...
Exogenous application of an electric field can direct cell migration and improve wound healing; howe...
© 2014 John Wiley & Sons Ltd. Ability of electromagnetic fields (EMF) to stimulate cell proliferatio...
Significance: Natural, endogenous electric fields (EFs) and currents arise spontaneously after wound...
Electrical stimulation (ES) is known to affect the wound healing process by modulating skin cell beh...