Over the past decade, microfluidic techniques have been established as a versatile platform to perform live cell experiments under well-controlled conditions. To investigate the directional responses of cells, stable concentration profiles of chemotactic factors can be generated in microfluidic gradient mixers that provide a high degree of spatial control. However, the times for built-up and switching of gradient profiles are in general too slow to resolve the intracellular protein translocation events of directional sensing of eukaryotes. Here, we review an example of a conventional microfluidic gradient mixer as well as the novel flow photolysis technique that achieves an increased temporal resolution by combining the photo-activation of ...
Cell-cell interactions play an important role in the development and function of multicellular organ...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
For better translation from basic science to everyday clinical practice, biomedical research must at...
Over the past decade, microfluidic techniques have been established as a versatile platform to perfo...
Chemotactic motion in a chemical gradient is an essential cellular function that controls many proce...
Quantitative studies of cellular systems require experimental techniques that can expose single cell...
AbstractThe extracellular availability of growth factors, hormones, chemokines, and neurotransmitter...
Local concentration patterns of certain compounds can direct the migration of animal cells and bacte...
We report on the development of an experimental platform where epi-fluorescence microscopy and optic...
Chemotaxis is the migration of cells in response to a chemical stimulus. This phenomenon is a part o...
In this chapter, we will discuss a method for the generation of gradients that can be quantitatively...
<div><p>Cell migration is crucial for both physiological and pathological processes. Current <em>in ...
Cells naturally exist in a dynamic chemical environment, and therefore it is necessary to study cell...
Microfluidics is a quickly expanding field with numerous applications. The advent of rapid-prototypi...
Systems biology has grown immensely in the wake of human genome project. In recent years, there has ...
Cell-cell interactions play an important role in the development and function of multicellular organ...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
For better translation from basic science to everyday clinical practice, biomedical research must at...
Over the past decade, microfluidic techniques have been established as a versatile platform to perfo...
Chemotactic motion in a chemical gradient is an essential cellular function that controls many proce...
Quantitative studies of cellular systems require experimental techniques that can expose single cell...
AbstractThe extracellular availability of growth factors, hormones, chemokines, and neurotransmitter...
Local concentration patterns of certain compounds can direct the migration of animal cells and bacte...
We report on the development of an experimental platform where epi-fluorescence microscopy and optic...
Chemotaxis is the migration of cells in response to a chemical stimulus. This phenomenon is a part o...
In this chapter, we will discuss a method for the generation of gradients that can be quantitatively...
<div><p>Cell migration is crucial for both physiological and pathological processes. Current <em>in ...
Cells naturally exist in a dynamic chemical environment, and therefore it is necessary to study cell...
Microfluidics is a quickly expanding field with numerous applications. The advent of rapid-prototypi...
Systems biology has grown immensely in the wake of human genome project. In recent years, there has ...
Cell-cell interactions play an important role in the development and function of multicellular organ...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
For better translation from basic science to everyday clinical practice, biomedical research must at...