Understanding the mechanism of cell migration and interaction with the microenvironment is not only of critical significance to the function and biology of cells, but also has extreme relevance and impact on physiological processes and diseases such as morphogenesis, wound healing, neuron guidance, and cancer metastasis. External guidance factors such as topography and physical cues of the microenvironment promote directional migration and can target specific changes in cell motility and signalling mechanisms. Recent studies have shown that cells can directionally respond to applied electric fields (EFs), in both in vitro and in vivo settings, a phenomenon called electrotaxis. However, the exact cellular mechanisms for sensing electrical si...
Cells undergo a variety of physiological processes, including division, migration and differentiatio...
The ability of cells to sense and respond to endogenous electric fields is important in processes su...
ABSTRACT Cell motility in response to environmental cues forms the basis of many developmental proce...
Directed cell migration is essential in both physiological and pathological situations. Many guidanc...
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 ...
Cell motility is important in embryonic development, wound-healing, and the metastasis of cancer. Th...
Cells have the ability to detect electric fields and respond to them with directed migratory movemen...
Cells have the ability to detect electric fields and respond to them with directed migratory movemen...
Environmental Stimulus of Electric Fields on Stem Cell Migration. The movement of cells in response ...
AbstractBone marrow-derived cells are thought to participate and enhance the healing process contrib...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Endogenous direct-current electric fields (EFs) play significant roles in biological and pathologica...
Neural stem cells showed strong electrotaxis, evidenced by highly directed migration towards the cat...
Proper control of cell migration is critically important in many biologic processes, such as wound h...
Cells undergo a variety of physiological processes, including division, migration and differentiatio...
The ability of cells to sense and respond to endogenous electric fields is important in processes su...
ABSTRACT Cell motility in response to environmental cues forms the basis of many developmental proce...
Directed cell migration is essential in both physiological and pathological situations. Many guidanc...
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 ...
Cell motility is important in embryonic development, wound-healing, and the metastasis of cancer. Th...
Cells have the ability to detect electric fields and respond to them with directed migratory movemen...
Cells have the ability to detect electric fields and respond to them with directed migratory movemen...
Environmental Stimulus of Electric Fields on Stem Cell Migration. The movement of cells in response ...
AbstractBone marrow-derived cells are thought to participate and enhance the healing process contrib...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Endogenous direct-current electric fields (EFs) play significant roles in biological and pathologica...
Neural stem cells showed strong electrotaxis, evidenced by highly directed migration towards the cat...
Proper control of cell migration is critically important in many biologic processes, such as wound h...
Cells undergo a variety of physiological processes, including division, migration and differentiatio...
The ability of cells to sense and respond to endogenous electric fields is important in processes su...
ABSTRACT Cell motility in response to environmental cues forms the basis of many developmental proce...