Cell migration plays a key role in many physiological and pathological conditions during which cells migrate primarily in the 3D environments formed by tissues. Microfluidics enables the design of simple devices that can mimic in a highly controlled manner the geometry and dimensions of the interstices encountered by cells in the body. Here we describe the design, fabrication, and implementation of an array of channels with a range of cross sections to investigate migration of cells and cell clusters through confined spaces. By combining this assay with a motorized microscope stage, image data can be acquired with high throughput to determine the physical limits of migration in confined environments and their biological origin
Directed migration of cells relies on their ability to sense directional guidance cues and to intera...
Arrayed three-dimensional (3D) micro-sized tissues with encapsulated cells (microtissues) have been ...
Microfluidic systems are attracting increasing interest for the high-throughput measurement of cellu...
Cells in our body mostly exist in confined environments. They are surrounded by neighboring cells, t...
During metastasis, cancerous cells leave the primary tumour, pass into the circulatory system, and i...
Understanding cell migration is a key step in unraveling many physiological phenomena and predicting...
Microfluidic systems have evolved significantly over the past decade to offer biologists in vitro en...
Microfluidic technologies and devices now provide powerful tools for many biological studies to gain...
ABSTRACT For multicellular organisms, cell migration can act as a double-edged sword. While being vi...
In vivo, immune cells migrate through a wide variety of tissues, including confined and constricting...
Metastasis, the process by which cancer cells spread from a primary tumor to other parts of the body...
Cells communicate through the extracellular matrix (ECM) in many physiological and pathological proc...
Directed migration of cells relies on their ability to sense directional guidance cues and to intera...
Cell migration has gained attention over the last years due to its key role in different physiologic...
Directed migration of cells relies on their ability to sense directional guidance cues and to intera...
Arrayed three-dimensional (3D) micro-sized tissues with encapsulated cells (microtissues) have been ...
Microfluidic systems are attracting increasing interest for the high-throughput measurement of cellu...
Cells in our body mostly exist in confined environments. They are surrounded by neighboring cells, t...
During metastasis, cancerous cells leave the primary tumour, pass into the circulatory system, and i...
Understanding cell migration is a key step in unraveling many physiological phenomena and predicting...
Microfluidic systems have evolved significantly over the past decade to offer biologists in vitro en...
Microfluidic technologies and devices now provide powerful tools for many biological studies to gain...
ABSTRACT For multicellular organisms, cell migration can act as a double-edged sword. While being vi...
In vivo, immune cells migrate through a wide variety of tissues, including confined and constricting...
Metastasis, the process by which cancer cells spread from a primary tumor to other parts of the body...
Cells communicate through the extracellular matrix (ECM) in many physiological and pathological proc...
Directed migration of cells relies on their ability to sense directional guidance cues and to intera...
Cell migration has gained attention over the last years due to its key role in different physiologic...
Directed migration of cells relies on their ability to sense directional guidance cues and to intera...
Arrayed three-dimensional (3D) micro-sized tissues with encapsulated cells (microtissues) have been ...
Microfluidic systems are attracting increasing interest for the high-throughput measurement of cellu...