Current and novel polymeric biomaterials for neural tissue engineering

R Boni, A Ali, A Shavandi, AN Clarkson - Journal of biomedical science, 2018 - Springer
The nervous system is a crucial component of the body and damages to this system, either
by of injury or disease, can result in serious or potentially lethal consequences. Restoring …

Electrospinning: An enabling nanotechnology platform for drug delivery and regenerative medicine

S Chen, R Li, X Li, J Xie - Advanced drug delivery reviews, 2018 - Elsevier
Electrospinning provides an enabling nanotechnology platform for generating a rich variety
of novel structured materials in many biomedical applications including drug delivery …

Cross-linking strategies for electrospun gelatin scaffolds

CE Campiglio, N Contessi Negrini, S Farè, L Draghi - Materials, 2019 - mdpi.com
Electrospinning is an exceptional technology to fabricate sub-micrometric fiber scaffolds for
regenerative medicine applications and to mimic the morphology and the chemistry of the …

Poly (lactic acid) nanofibrous scaffolds for tissue engineering

M Santoro, SR Shah, JL Walker, AG Mikos - Advanced drug delivery …, 2016 - Elsevier
Abstract Poly (lactic acid)(PLA) is a synthetic polyester that has shown extensive utility in
tissue engineering. Synthesized either by ring opening polymerization or polycondensation …

Electrospinning versus microfluidic spinning of functional fibers for biomedical applications

J Cheng, Y Jun, J Qin, SH Lee - Biomaterials, 2017 - Elsevier
Micro-or nanofiber-based materials have extensive applications in biomedical fields due to
their capability to mimic many aspects of physiological microenvironment in vivo. Fabricating …

Applications of nanomaterials in tissue engineering

X Zheng, P Zhang, Z Fu, S Meng, L Dai, H Yang - RSC advances, 2021 - pubs.rsc.org
Recent advancement in nanotechnology has brought prominent benefits in tissue
engineering, which has been used to repair or reconstruct damaged tissues or organs and …

Current advances in electrospun gelatin-based scaffolds for tissue engineering applications

AA Aldana, GA Abraham - International journal of pharmaceutics, 2017 - Elsevier
The development of biomimetic highly-porous scaffolds is essential for successful tissue
engineering. Electrospun nanofibers are highly versatile platforms for a broad range of …

Recent advances and remaining challenges for polymeric nanocomposites in healthcare applications

S Kumar, M Nehra, N Dilbaghi, K Tankeshwar… - Progress in polymer …, 2018 - Elsevier
Remarkable advancements in material technologies have accelerated the use of many new
materials and their hybrids and composites in diverse applications. Among such available …

Spinning and applications of bioinspired fiber systems

L Shang, Y Yu, Y Liu, Z Chen, T Kong, Y Zhao - ACS nano, 2019 - ACS Publications
Natural fiber systems provide inspirations for artificial fiber spinning and applications.
Through a long process of trial and error, great progress has been made in recent years …

Biomaterials for neural tissue engineering

LR Doblado, C Martínez-Ramos… - Frontiers in …, 2021 - frontiersin.org
The therapy of neural nerve injuries that involve the disruption of axonal pathways or axonal
tracts has taken a new dimension with the development of tissue engineering techniques …