(Chemical Equation Presented) Intercellular signalling has been identified as a highly complex process, responsible for orchestrating many physiological functions. While conventional methods of investigation have been useful, their limitations are impeding further development. Microfluidics offers an opportunity to overcome some of these limitations. Most notably, microfluidic systems can emulate the in-vivo environments. Further, they enable exceptionally precise control of the microenvironment, allowing complex mechanisms to be selectively isolated and studied in detail. There has thus been a growing adoption of microfluidic platforms for investigation of cell signalling mechanisms. This review provides an overview of the different signal...
ABSTRACT: Understanding how biological systems trans-duce dynamic, soluble chemical cues into physio...
Living cells encounter many stimuli from the immediate environment. Receptors recognize these enviro...
In this paper we present the integration of protein arrays with a microfluidic device for analysis o...
Intercellular signalling has been identified as a highly complex process, responsible for orchestrat...
For better translation from basic science to everyday clinical practice, biomedical research must at...
Systems biology seeks to develop a complete understanding of cellular mechanisms by studying the fun...
Neutrophil chemotaxis and intercellular signaling via diffusible molecules are vital physiological p...
Several methods for extending the functionality of a commercially available microfluidic system have...
The use of microfluidics has transformed research in cell biology. Microfluidics manipulates fluids ...
Cell-cell interactions play an important role in the development and function of multicellular organ...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Orchestration of cellular operations often requires faithful conversion of chemical signals from the...
Observations of material and cellular systems in response to time-varying chemical stimuli can aid t...
We present a novel microfluidic platform for probing cellular signaling networks, combining a progra...
This thesis presents the development, characterization and suggested applications of a platform for ...
ABSTRACT: Understanding how biological systems trans-duce dynamic, soluble chemical cues into physio...
Living cells encounter many stimuli from the immediate environment. Receptors recognize these enviro...
In this paper we present the integration of protein arrays with a microfluidic device for analysis o...
Intercellular signalling has been identified as a highly complex process, responsible for orchestrat...
For better translation from basic science to everyday clinical practice, biomedical research must at...
Systems biology seeks to develop a complete understanding of cellular mechanisms by studying the fun...
Neutrophil chemotaxis and intercellular signaling via diffusible molecules are vital physiological p...
Several methods for extending the functionality of a commercially available microfluidic system have...
The use of microfluidics has transformed research in cell biology. Microfluidics manipulates fluids ...
Cell-cell interactions play an important role in the development and function of multicellular organ...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Orchestration of cellular operations often requires faithful conversion of chemical signals from the...
Observations of material and cellular systems in response to time-varying chemical stimuli can aid t...
We present a novel microfluidic platform for probing cellular signaling networks, combining a progra...
This thesis presents the development, characterization and suggested applications of a platform for ...
ABSTRACT: Understanding how biological systems trans-duce dynamic, soluble chemical cues into physio...
Living cells encounter many stimuli from the immediate environment. Receptors recognize these enviro...
In this paper we present the integration of protein arrays with a microfluidic device for analysis o...