Electric field (EF) stimulation can play a vital role in eliciting appropriate stem cell response. Such an approach is recently being established to guide stem cell differentiation through osteogenesis/neurogenesis/cardiomyogenesis. Despite significant recent efforts, the biophysical mechanisms by which stem cells sense, interpret and transform electrical cues into biochemical and biological signals still remain unclear. The present review critically analyses the variety of EF stimulation approaches that can be employed to evoke appropriate stem cell response and also makes an attempt to summarize the underlying concepts of this notion, placing special emphasis on stem cell based tissue engineering and regenerative medicine. This review als...
Exogenous electrical fields have been explored in regenerative medicine to increase cellular express...
The strategy of using electrical stimulation (ES) to promote the neural differentiation and regenera...
Background Electrical stimulation (ES) has been successfully used to treat bone defects clinically. ...
Electric field (EF) stimulation can play a vital role in eliciting appropriate stem cell response. S...
Directing differential cellular response by manipulating the physical characteristics of the materia...
Mesenchymal stem cells (MSCs) have a great potential in the field of tissue engineering and regenera...
AbstractCellular mechanics is known to play an important role in the cell homeostasis including prol...
Electrical stimulation (ES) has potential to be an effective tool for bone injury treatment in clini...
The intrinsic piezoelectric nature of collagenous-rich tissues, such as bone and cartilage, can resu...
Electric fields are involved in numerous physiological processes, including directional embryonic de...
In tissue engineering, several factors play key roles in providing adequate stimuli for cells differ...
From PubMed via Jisc Publications RouterHistory: received 2021-02-27, revised 2021-07-06, accepted 2...
BACKGROUND: Stem cell culture medium is garnering attention because it comprises growth factors and ...
A prominent feature of the skeleton is its ability to remodel in response to biophysical stimuli and...
Nerve injuries and neurodegenerative disorders remain serious challenges, owing to the poor treatmen...
Exogenous electrical fields have been explored in regenerative medicine to increase cellular express...
The strategy of using electrical stimulation (ES) to promote the neural differentiation and regenera...
Background Electrical stimulation (ES) has been successfully used to treat bone defects clinically. ...
Electric field (EF) stimulation can play a vital role in eliciting appropriate stem cell response. S...
Directing differential cellular response by manipulating the physical characteristics of the materia...
Mesenchymal stem cells (MSCs) have a great potential in the field of tissue engineering and regenera...
AbstractCellular mechanics is known to play an important role in the cell homeostasis including prol...
Electrical stimulation (ES) has potential to be an effective tool for bone injury treatment in clini...
The intrinsic piezoelectric nature of collagenous-rich tissues, such as bone and cartilage, can resu...
Electric fields are involved in numerous physiological processes, including directional embryonic de...
In tissue engineering, several factors play key roles in providing adequate stimuli for cells differ...
From PubMed via Jisc Publications RouterHistory: received 2021-02-27, revised 2021-07-06, accepted 2...
BACKGROUND: Stem cell culture medium is garnering attention because it comprises growth factors and ...
A prominent feature of the skeleton is its ability to remodel in response to biophysical stimuli and...
Nerve injuries and neurodegenerative disorders remain serious challenges, owing to the poor treatmen...
Exogenous electrical fields have been explored in regenerative medicine to increase cellular express...
The strategy of using electrical stimulation (ES) to promote the neural differentiation and regenera...
Background Electrical stimulation (ES) has been successfully used to treat bone defects clinically. ...