In the context of the role of multiple physical factors in dictating stem cell fate, the present paper demonstrates the effectiveness of the intermittently delivered external electric field stimulation towards switching the stem cell fate to specific lineage, when cultured in the absence of biochemical growth factors. In particular, our findings present the ability of human mesenchymal stem cells (hMSCs) to respond to the electric stimuli by adopting extended neural-like morphology on conducting polymeric substrates. Polyaniline (PANI) is selected as the model system to demonstrate this effect, as the electrical conductivity of the polymeric substrates can be systematically tailored over a broad range (10(-9) to 10 S/cm) from highly insulat...
Conductive polymers (CPs) are organic materials that hold great promise for biomedicine. Potential a...
The present investigation details the development of model systems for growing two- and three-dimens...
Electric field is known as an important regulator to guide the development and regeneration of many ...
In the context of the role of multiple physical factors in dictating stem cell fate, the present pap...
Directing differential cellular response by manipulating the physical characteristics of the materia...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
The organization and composition of the extracellular matrix (ECM) have been shown to impact the pro...
Electrical stimulation is increasingly being used to modulate human cell behaviour for biotechnologi...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
Nerve injuries and neurodegenerative disorders remain serious challenges, owing to the poor treatmen...
The use of non-chemical methods to differentiate stem cells has attracted researchers from multiple ...
In tissue engineering, several factors play key roles in providing adequate stimuli for cells differ...
This commentary discusses and summarizes the key highlights of our recently reported work entitled `...
This work surveyed the potential of using exogenous pulsed electrical field stimuli to guide the dif...
Conductive polymers (CPs) are organic materials that hold great promise for biomedicine. Potential a...
The present investigation details the development of model systems for growing two- and three-dimens...
Electric field is known as an important regulator to guide the development and regeneration of many ...
In the context of the role of multiple physical factors in dictating stem cell fate, the present pap...
Directing differential cellular response by manipulating the physical characteristics of the materia...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
The organization and composition of the extracellular matrix (ECM) have been shown to impact the pro...
Electrical stimulation is increasingly being used to modulate human cell behaviour for biotechnologi...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
Nerve injuries and neurodegenerative disorders remain serious challenges, owing to the poor treatmen...
The use of non-chemical methods to differentiate stem cells has attracted researchers from multiple ...
In tissue engineering, several factors play key roles in providing adequate stimuli for cells differ...
This commentary discusses and summarizes the key highlights of our recently reported work entitled `...
This work surveyed the potential of using exogenous pulsed electrical field stimuli to guide the dif...
Conductive polymers (CPs) are organic materials that hold great promise for biomedicine. Potential a...
The present investigation details the development of model systems for growing two- and three-dimens...
Electric field is known as an important regulator to guide the development and regeneration of many ...