We present here a screening method based on a microfluidic platform, which can generate four orthogonal and overlapping concentration gradients of soluble compounds over a monolayer of cells, in combination with automated and in situ image analysis, for use in regenerative medicine research. The device includes a square chamber in which cells are grown, and four independent supply channels along the sides of the chamber, which are connected through an array of small diffusion channels. Compounds flown through the supply channels diffuse through diffusion channels into the chamber to create a gradient over the cell culture area. Further, the chamber is connected to two channels intended for introduction of cells and in situ staining. In this...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
We propose here a microfluidics-based platform for screening trace elements for bone tissue engineer...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
The aim of regenerative medicine (RM) is to restore normal function of damaged tissues or organs, us...
The aim of regenerative medicine (RM) is to restore normal function of damaged tissues or organs, us...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
We propose a microfluidics-based cell-culture platform for the screening of trace elements in bone t...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
We propose here a microfluidics-based platform for screening trace elements for bone tissue engineer...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
We present here a screening method based on a microfluidic platform, which can generate four orthogo...
The aim of regenerative medicine (RM) is to restore normal function of damaged tissues or organs, us...
The aim of regenerative medicine (RM) is to restore normal function of damaged tissues or organs, us...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
We propose a microfluidics-based cell-culture platform for the screening of trace elements in bone t...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
We propose here a microfluidics-based platform for screening trace elements for bone tissue engineer...