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Selective removal of photoreceptor cells in vivo using the biodegradable elastomer poly(glycerol sebacate).
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In vivo degradation characteristics of poly(glycerol sebacate).
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Human retinal development in an in situ whole eye culture system.
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Nanotherapy for Neural Retinal Regeneration.
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Nano-Biomaterials for Retinal Regeneration.
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Bio-inspired chiral self-assemblies promoted neuronal differentiation of retinal progenitor cells through activation of metabolic pathway.
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Nanotechnology in regenerative ophthalmology.
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Collective adhesion and displacement of retinal progenitor cells upon extracellular matrix substrates of transplantable biomaterials.
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Tyramine functionalization of poly(glycerol sebacate) increases the elasticity of the polymer.
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Bioactive Glass Fiber-Reinforced PGS Matrix Composites for Cartilage Regeneration.
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Thin-film enhanced nerve guidance channels for peripheral nerve repair.
Biomaterials. 2009 Aug;30(23-24):3834-46. doi: 10.1016/j.biomaterials.2009.04.022. Epub 2009 May 15.
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Selective removal of photoreceptor cells in vivo using the biodegradable elastomer poly(glycerol sebacate).
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Human neural cell interactions with orientated electrospun nanofibers in vitro.
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Laminin nanofiber meshes that mimic morphological properties and bioactivity of basement membranes.
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The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps.
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Aligned electrospun nanofibers specify the direction of dorsal root ganglia neurite growth.
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Retinal repair by transplantation of photoreceptor precursors.
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Delivery of neurotrophic factors and therapeutic proteins for retinal diseases.
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