Neurological disease is one of the devastating diseases worldwide. Limited regeneration capability of central nervous system has greatly hindered the functional recovery of neural tissues. Bioprinting, offers a promising method to deposit cells, materials and instructive biomolecules in a precise arrangement simultaneously, which is possible to achieve the construction of multicellular functional neural tissues. In this review, we have 1) identified the essential design parameters of neural tissue constructs based on native tissue contexts 2) reviewed the updated studies of bioprinting for neural tissue applications 3) discussed the challenges and prospects of bioprinting for neural tissue development.NRF (Natl Research Foundation...
This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials f...
Due to increasing life expectancy incidence of neurological disorders is rapidly rising, thus adding...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
Three-dimensional (3D) in vitro neural tissue models provide a better recapitulation of in vivo cell...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
Spinal cord injury (SCI) is a disease of the central nervous system (CNS) that has not yet been trea...
Neurodegenerative diseases affect millions of individuals in North America and cost the health-care ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
Tissue engineers have made great strides in the past decade thanks to the advent of three-dimensiona...
Unlike other tissue types, the nervous tissue extends to a wide and complex environment that provide...
This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials f...
Due to increasing life expectancy incidence of neurological disorders is rapidly rising, thus adding...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
Three-dimensional (3D) in vitro neural tissue models provide a better recapitulation of in vivo cell...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
Spinal cord injury (SCI) is a disease of the central nervous system (CNS) that has not yet been trea...
Neurodegenerative diseases affect millions of individuals in North America and cost the health-care ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
Tissue engineers have made great strides in the past decade thanks to the advent of three-dimensiona...
Unlike other tissue types, the nervous tissue extends to a wide and complex environment that provide...
This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials f...
Due to increasing life expectancy incidence of neurological disorders is rapidly rising, thus adding...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...