Recently, microparticles have been used as nanoporous membranes in microfluidic devices, contributing to various bioassays on a chip. Here, we report a self-assembled particle membrane (SAPM) integrated microfluidic device that concentrates particles into an aimed microchamber array by using evaporation-driven capillary forces, and manipulates the chemical environment of the microchamber array by sequentially introducing different solutions. We demonstrate that the SAPM-integrated microchamber array can concentrate microparticles and microbial cells up to 120-fold for 2 h and 35-fold for 1 h, respectively, resulting in remarkably high concentration factors. Additionally, we demonstrate that the microchamber array has high potential as a che...
We designed a microfluidic chemostat consisting of 600 sub-micron trapping/growth channels connected...
The miniaturization afforded by the integration of microfluidic technologies within lab-on-a-chip de...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
We present a versatile microfluidic device for chemostat-like and chemo-programmable cell culture, s...
We present a novel microfluidic device with a self-assembled particle membrane (SAPM) that not only ...
In the field of bio engineering, microfluidic bioreactor systems play a key role for screening of ta...
Various microfluidic devices have overcome many disadvantages common to conventional bioreactor syst...
Various microfluidic devices have overcome many disadvantages common to conventional bioreactor syst...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
Studying biological phenomena of individual cells is enabled by matching the scales of microbes and ...
Reporter-gene-based microbial biosensors have high potential for detecting small molecules, includin...
Culture conditions including pH, nutrient concentration and temperature strongly influence the prope...
A compartmentalized microfluidic chamber array that offers not only separate cell culture environmen...
Controlled patterning of microorganisms into defined spatial arrangements offers unique possibilitie...
In this work we describe a novel and simple self-assembly process of colloidal silica beads to creat...
We designed a microfluidic chemostat consisting of 600 sub-micron trapping/growth channels connected...
The miniaturization afforded by the integration of microfluidic technologies within lab-on-a-chip de...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
We present a versatile microfluidic device for chemostat-like and chemo-programmable cell culture, s...
We present a novel microfluidic device with a self-assembled particle membrane (SAPM) that not only ...
In the field of bio engineering, microfluidic bioreactor systems play a key role for screening of ta...
Various microfluidic devices have overcome many disadvantages common to conventional bioreactor syst...
Various microfluidic devices have overcome many disadvantages common to conventional bioreactor syst...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
Studying biological phenomena of individual cells is enabled by matching the scales of microbes and ...
Reporter-gene-based microbial biosensors have high potential for detecting small molecules, includin...
Culture conditions including pH, nutrient concentration and temperature strongly influence the prope...
A compartmentalized microfluidic chamber array that offers not only separate cell culture environmen...
Controlled patterning of microorganisms into defined spatial arrangements offers unique possibilitie...
In this work we describe a novel and simple self-assembly process of colloidal silica beads to creat...
We designed a microfluidic chemostat consisting of 600 sub-micron trapping/growth channels connected...
The miniaturization afforded by the integration of microfluidic technologies within lab-on-a-chip de...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...