Contains fulltext : 172557.PDF (publisher's version ) (Open Access)Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold great potential as models to study cellular processes under controlled conditions. The natural ECM is a 3D structure composed of a fibrous hydrogel that provides both mechanical and biochemical cues to instruct cell behavior. Here we present an ECM-mimicking genetically engineered protein-based hydrogel as a 3D cell culture system that combines several key features: (1) Mild and straightforward encapsulation meters (1) ease of ut I am not so sure.encapsulation of the cells, without the need of an external crosslinker. (2) Supramolecular assembly resulting in...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
The extracellular matrix (ECM) is known to play an important role in the health of cells and tissues...
Historically, cell behavior has been investigated by removing cells from their native environment an...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
The extracellular matrix (ECM) is known to play an important role in the health of cells and tissues...
Historically, cell behavior has been investigated by removing cells from their native environment an...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...
The design of scaffolds which mimic the stiffness, nanofiber structure, and biochemistry of the nati...