This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse, portable microtissues, each in an individual drop. We use water-water-oil double emulsions as templates and spatially assemble hepatocytes in the core and fibroblasts in the shell, forming a 3D liver model in a drop.Peer-reviewed manuscript: [http://cherry.chem.bg.ac.rs/handle/123456789/2820]Supplementary material: [http://cherry.chem.bg.ac.rs/handle/123456789/3427
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
Droplet microfluidics is an active multidisciplinary area of research that evolved out of the larger...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
<p>High-throughput processing technologies hold critical position in biomedical research. These incl...
Microfluidics combines principles of science and technology, and enables the user to handle, process...
<p>Droplet microfluidics is a powerful platform for both fundamental and applied biomedical research...
Three-dimensional (3D) assembly of microstructures encapsulating co-cultured multiple cells can high...
In recent years there has been an increasing interest in using lipid vesicles and related membrane s...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
Droplet microfluidics is an active multidisciplinary area of research that evolved out of the larger...
In this work, we describe the rapid prototyping of a microfluidic device for the surfactant free enc...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
Droplet microfluidics is an active multidisciplinary area of research that evolved out of the larger...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
This paper reports a droplet-based microfluidic approach to fabricate a large number of monodisperse...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
<p>High-throughput processing technologies hold critical position in biomedical research. These incl...
Microfluidics combines principles of science and technology, and enables the user to handle, process...
<p>Droplet microfluidics is a powerful platform for both fundamental and applied biomedical research...
Three-dimensional (3D) assembly of microstructures encapsulating co-cultured multiple cells can high...
In recent years there has been an increasing interest in using lipid vesicles and related membrane s...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
Droplet microfluidics is an active multidisciplinary area of research that evolved out of the larger...
In this work, we describe the rapid prototyping of a microfluidic device for the surfactant free enc...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...
Droplet microfluidics is an active multidisciplinary area of research that evolved out of the larger...
Microfluidic droplet generators excel in generating monodisperse micrometer-sized droplets and parti...