Herein we demonstrate the segmentation of alginate solution streams to generate alginate fibers of precisely controllable lengths between 200 and 1000 μm. Moreover, we demonstrate the subsequent encapsulation of the formed fibers within pL-volume microdroplets, produced within the same microfluidic device, in a direct manner. Finally, we show immediate and complete on-chip gelation of alginate fibers in a rapid and reproducible fashion.</p
We report a simple method for forming monodispersed, uniformly shaped gel microbeads with precisely ...
To fully exploit the potential of hydrogel micro-fibers in the design of regenerative medicinal mate...
Tissue engineering is focusing on processing tissue micro-structures for a variety of applications i...
Herein we demonstrate the segmentation of alginate solution streams to generate alginate fibers of p...
This work describes a convenient microfluidic strategy with a simple and minimal-requirement design ...
Alginate is used extensively in microfluidic devices to produce discrete beads or fibres at the micr...
Fabrication of micro- and nanofibers are critical for a wide range of applications from microelectro...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
International audienceThis review examines the preparation of alginate hydrogel microparticles by us...
Natural biopolymers such as alginate have become important materials for a variety of biotechnology ...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
This study proposes a microfluidic spinning method to form alginate microfibers with branched and ch...
A unified microfluidic approach is presented for flexible fabrication of oil-encapsulated calcium al...
A novel method to fabricate shape controllable alginate/pNIPAAm complex microgels is reported. Monod...
Fibers loaded with either particles or cells are widely employed across a variety of fields, includi...
We report a simple method for forming monodispersed, uniformly shaped gel microbeads with precisely ...
To fully exploit the potential of hydrogel micro-fibers in the design of regenerative medicinal mate...
Tissue engineering is focusing on processing tissue micro-structures for a variety of applications i...
Herein we demonstrate the segmentation of alginate solution streams to generate alginate fibers of p...
This work describes a convenient microfluidic strategy with a simple and minimal-requirement design ...
Alginate is used extensively in microfluidic devices to produce discrete beads or fibres at the micr...
Fabrication of micro- and nanofibers are critical for a wide range of applications from microelectro...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
International audienceThis review examines the preparation of alginate hydrogel microparticles by us...
Natural biopolymers such as alginate have become important materials for a variety of biotechnology ...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
This study proposes a microfluidic spinning method to form alginate microfibers with branched and ch...
A unified microfluidic approach is presented for flexible fabrication of oil-encapsulated calcium al...
A novel method to fabricate shape controllable alginate/pNIPAAm complex microgels is reported. Monod...
Fibers loaded with either particles or cells are widely employed across a variety of fields, includi...
We report a simple method for forming monodispersed, uniformly shaped gel microbeads with precisely ...
To fully exploit the potential of hydrogel micro-fibers in the design of regenerative medicinal mate...
Tissue engineering is focusing on processing tissue micro-structures for a variety of applications i...