Cell migration assays for different chemical environments are important for both scientists and clinicians searching for new therapeutics. In this study, we developed a multi-well-based microfluidic chip that has multiple units for different conditions. In each unit, cells can be patterned and then released to observe their migration. Automatic image analysis and model-based data processing were developed to describe the integrated cell migration assay precisely and quickly. As a demonstration, the migration behaviors of two types of cells in eight chemical conditions were studied. The results showed that supplementation with transforming growth factor-beta(TGF-beta) significantly promoted the migration of MCF-7 and MCF-10 A cells compared ...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
Studying the rate of cell migration provides insight into fundamental cell biology as well as a tool...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
Cell migration refers to the directional movement of cells to the surrounding cell-free zone in resp...
Microfluidic devices have been widely used for cell migration research over the last two decades, ow...
Microfluidic devices have been widely used for cell migration research over the last two decades, ow...
In vitro scratch wound assays are commonly used strategies to measure cell repair rate, facilitating...
<p>(<b>A</b>) Time-lapse images of MSCs migration under a PDGF-BB gradient for 24 hours. Images were...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
There is a lack of experimental model to study the interactions of tumor versus normal cells. There ...
Cell migration is a cellular fate process essential for embryogenesis, tissue regeneration and wound...
Highly migratory cancer cells often lead to metastasis and recurrence and are responsible for the hi...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
Studying the rate of cell migration provides insight into fundamental cell biology as well as a tool...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
Cell migration refers to the directional movement of cells to the surrounding cell-free zone in resp...
Microfluidic devices have been widely used for cell migration research over the last two decades, ow...
Microfluidic devices have been widely used for cell migration research over the last two decades, ow...
In vitro scratch wound assays are commonly used strategies to measure cell repair rate, facilitating...
<p>(<b>A</b>) Time-lapse images of MSCs migration under a PDGF-BB gradient for 24 hours. Images were...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
There is a lack of experimental model to study the interactions of tumor versus normal cells. There ...
Cell migration is a cellular fate process essential for embryogenesis, tissue regeneration and wound...
Highly migratory cancer cells often lead to metastasis and recurrence and are responsible for the hi...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
Studying the rate of cell migration provides insight into fundamental cell biology as well as a tool...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...