Neural regeneration research is designed in part to develop strategies for therapy after nerve damage due to injury or disease. In this study, a new gelatine-based biomimetic scaffold was fabricated for brain tissue engineering applications. A technique combining thermally induced phase separation and porogen leaching was used to create interconnected macropores and nanofibrous structure. To promote tissue regeneration processes, the scaffolds were integrated with nerve growth factor (NGF)-loaded alginate microspheres. The results showed that nanofibrous matrix could only be obtained when gelatine concentration was at least 7.5% (w/v). The scaffold with a modulus value (1.2kPa) similar to that of brain tissue (0.5-1kPa) was obtained by opti...
Background: Electrospun nanofibrous scaffolds are considered as promising candidates in neural tissu...
Neural injuries, particularly spinal cord injuries, are considered critical global health priorities...
Promoting nerve regeneration requires engineering cellular carriers to physically and biochemically ...
Neural regeneration research is designed in part to develop strategies for therapy after nerve damag...
[[abstract]]Neural regeneration is a great clinical challenge in both the central nervous system (CN...
Neural tissue engineering provides enormous potential for restoring and improving the function of di...
State-of-the-art neuroprosthetic devices rely on stiff metallic electrodes to communicate with neura...
Electrospun fibrous scaffolds capable of providing growth factor delivery and contact guidance have ...
Schwann cells play a critical role in the repair of the peripheral nerve. The goal of this study was...
The prospects for successful peripheral nerve repair using fibre guides are considered to be enhance...
To address the need to biodegradable, electroactive conduits accelerating nerve regeneration, here w...
The use of nanofibrous scaffolds for tissue engineering applications is emerging as an important are...
Restoration of brain functions following trauma or degenerative neural diseases is considered among ...
In this study, we designed and fabricated a multilayered fibrous scaffold capable of the controlled ...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Background: Electrospun nanofibrous scaffolds are considered as promising candidates in neural tissu...
Neural injuries, particularly spinal cord injuries, are considered critical global health priorities...
Promoting nerve regeneration requires engineering cellular carriers to physically and biochemically ...
Neural regeneration research is designed in part to develop strategies for therapy after nerve damag...
[[abstract]]Neural regeneration is a great clinical challenge in both the central nervous system (CN...
Neural tissue engineering provides enormous potential for restoring and improving the function of di...
State-of-the-art neuroprosthetic devices rely on stiff metallic electrodes to communicate with neura...
Electrospun fibrous scaffolds capable of providing growth factor delivery and contact guidance have ...
Schwann cells play a critical role in the repair of the peripheral nerve. The goal of this study was...
The prospects for successful peripheral nerve repair using fibre guides are considered to be enhance...
To address the need to biodegradable, electroactive conduits accelerating nerve regeneration, here w...
The use of nanofibrous scaffolds for tissue engineering applications is emerging as an important are...
Restoration of brain functions following trauma or degenerative neural diseases is considered among ...
In this study, we designed and fabricated a multilayered fibrous scaffold capable of the controlled ...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Background: Electrospun nanofibrous scaffolds are considered as promising candidates in neural tissu...
Neural injuries, particularly spinal cord injuries, are considered critical global health priorities...
Promoting nerve regeneration requires engineering cellular carriers to physically and biochemically ...