Polymer- and/or protein-based nanofibers that promote stable cell adhesion have drawn increasing attention as well-defined models of the extracellular matrix. In this study, we fabricated two classes of stimulus-responsive fibers containing gelatin and supramolecular crosslinks to emulate the dynamic cellular microenvironment in vivo. Gelatin enabled cells to adhere without additional surface functionalization, while supramolecular crosslinks allowed for the reversible switching of the Young’s modulus through changes in the concentration of guest molecules in culture media. The first class of nanofibers was prepared by coupling the host–guest inclusion complex to gelatin before electrospinning (pre-conjugation), while the second class of na...
Gelatin has been widely used to develop tissue engineering scaffolds because it has many attractive ...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
[[abstract]]Gelatin nanofibers (GNs) prepared by electrospinning were cross-linked with glutaraldehy...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
In this study, we investigated whether the nanofibers produced by natural-synthetic polymers can pro...
Due to its intrinsic similarity to the extracellular matrix, gelatin electrospun nanofibrous meshes ...
none6The development of suitable biomimetic three-dimensional scaffolds is a fundamental requirement...
International audienceCells perceive their microenvironment through physical and mechanical cues, su...
Developing biomaterial scaffolds to elicit specific cell responses is important in many tissue engin...
Nanofibers are thought to enhance cell adhesion, growth, and function. We demonstrate that the choic...
Gelatin nanofibers have gained significant attention for different biomedical applications, as they ...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Hydrogels are a popular choice as a cell culture platform for various biomedical applications. Howev...
Gelatin has been widely used to develop tissue engineering scaffolds because it has many attractive ...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
[[abstract]]Gelatin nanofibers (GNs) prepared by electrospinning were cross-linked with glutaraldehy...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
In this study, we investigated whether the nanofibers produced by natural-synthetic polymers can pro...
Due to its intrinsic similarity to the extracellular matrix, gelatin electrospun nanofibrous meshes ...
none6The development of suitable biomimetic three-dimensional scaffolds is a fundamental requirement...
International audienceCells perceive their microenvironment through physical and mechanical cues, su...
Developing biomaterial scaffolds to elicit specific cell responses is important in many tissue engin...
Nanofibers are thought to enhance cell adhesion, growth, and function. We demonstrate that the choic...
Gelatin nanofibers have gained significant attention for different biomedical applications, as they ...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Hydrogels are a popular choice as a cell culture platform for various biomedical applications. Howev...
Gelatin has been widely used to develop tissue engineering scaffolds because it has many attractive ...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...