As scaffolds for neuron cell guiding in vitro, gel fibers with a bundle structure, comprising multiple microfibrils, were fabricated using a microfluidic device system by casting a phase-separating polymer blend solution comprising hydroxypropyl cellulose (HPC) and sodium alginate (Na-Alg). The topology and stiffness of the obtained bundle gel fibers depended on their microstructure derived by the polymer blend ratio of HPC and Na-Alg. High concentrations of Na-Alg led to the formation of small microfibrils in a one-bundle gel fiber and stiff characteristics. These bundle gel fibers permitted for the elongation of the neuron cells along their axon orientation with the long axis of fibers. In addition, human-induced pluripotent-stem-cell-der...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...
During the development of the neural tissue of the nervous system, supporting neuroglial cells and t...
CNS damages are often irreversible since neurons of the central nervous system are unable to regener...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Cortical neurons, in their native state, are organized in six different cell layers; and the thickne...
Fibrous scaffolds have shown promise in tissue engineering due to their ability to improve cell alig...
Implementing patterned fibrous matrices can offer a highly valuable platform for spatially orchestra...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
In this work, we demonstrated that the hydrogel obtained from a very simple and single synthetic mol...
In this work, we demonstrated that the hydrogel obtained from a very simple and single synthetic mol...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...
During the development of the neural tissue of the nervous system, supporting neuroglial cells and t...
CNS damages are often irreversible since neurons of the central nervous system are unable to regener...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Cortical neurons, in their native state, are organized in six different cell layers; and the thickne...
Fibrous scaffolds have shown promise in tissue engineering due to their ability to improve cell alig...
Implementing patterned fibrous matrices can offer a highly valuable platform for spatially orchestra...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
In this work, we demonstrated that the hydrogel obtained from a very simple and single synthetic mol...
In this work, we demonstrated that the hydrogel obtained from a very simple and single synthetic mol...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
A grid micropattern of neuronal cells was formed on a free-standing collagen film (35 μm thickness) ...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...
During the development of the neural tissue of the nervous system, supporting neuroglial cells and t...
CNS damages are often irreversible since neurons of the central nervous system are unable to regener...