Biodegradable Nerve Guidance Conduit with Microporous and Micropatterned Poly(lactic-co-glycolic acid)-Accelerated Sciatic Nerve Regeneration.
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Summary
It is confirmed that the inner surface of micro-grooves can modulate neurite orientation and length of mouse neural stem cell compared to porous flat NGC (PF-NGC) in vitro.
- Type
- article
- Published
- 2018-11-08
- Cited by
- 43
- References
- 46
- OpenAlex
- https://openalex.org/W2900210500
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:53207381
Keywords
Glycolic acid, Materials science, Regeneration (biology), Nerve guidance conduit, Neurite
References
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- Effect of hydroxyapatite-containing microspheres embedded into three-dimensional magnesium phosphate scaffolds on the controlled release of lysozyme and in vitro biodegradation
- Sciatic nerve repair by microgrooved nerve conduits made of chitosan-gold nanocomposites.
- Repairing injured peripheral nerves: Bridging the gap.
- Fabrication of engineered heart tissue grafts from alginate/collagen barium composite microbeads
Cited by
- Novel 3-D helix-flexible nerve guide conduits repair nerve defects.
- Synthetic bioresorbable poly-α-hydroxyesters as peripheral nerve guidance conduits; a review of material properties, design strategies and their efficacy to date.
- A scaffold‐free Bio 3D nerve conduit for repair of a 10‐mm peripheral nerve defect in the rats
- Chitosan composites nerve conduits
- Restoration of Neurological Function Following Peripheral Nerve Trauma
- Elastomeric Polyurethane Porous Film Functionalized with Gastrodin for Peripheral Nerve Regeneration.
- Micro-grooved nerve guidance conduits combined with microfiber for rat sciatic nerve regeneration
- Efficacy of Large Groove Texture on Rat Sciatic Nerve Regeneration In Vivo Using Polyacrylonitrile Nerve Conduits
- Cyclic tensile stimulation enrichment of Schwann cell-laden auxetic hydrogel scaffolds towards peripheral nerve tissue engineering
- Bioinspired Multichannel Nerve Guidance Conduit Based on Shape Memory Nanofibers for Potential Application in Peripheral Nerve Repair.
- Electrically Conductive Hydrogel Nerve Guidance Conduits for Peripheral Nerve Regeneration
- Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
- Milestones and current achievements in development of multifunctional bioscaffolds for medical application
- Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
- Biomaterials for Neural Tissue Engineering
- Nerve Guidance Conduit Development for Primary Treatment of Peripheral Nerve Transection Injuries: A Commercial Perspective.
- Implantable nerve guidance conduits: Material combinations, multi-functional strategies and advanced engineering innovations
- Biodegradable polymeric conduits: Platform materials for guided nerve regeneration and vascular tissue engineering
- Multi-Factorial Nerve Guidance Conduit Engineering Improves Outcomes in Inflammation, Angiogenesis and Large Defect Nerve Repair.
- Microporous Spongy Scaffolds Based on Biodegradable Elastic Polyurethanes for the Migration and Growth of Host Cells
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