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Engineering electrospun nanofibrillar surfaces for spinal cord repair: a discussion
Authors:Sally Meiners  Ijaz Ahmed  Abdul S Ponery  Nathan Amor  Suzan L Harris  Virginia Ayres  Yuan Fan  Qian Chen  Roberto Delgado‐Rivera  Ashwin N Babu
Affiliation:1. Department of Pharmacology, UMDNJ‐Robert Wood Johnson Medical School, Piscataway, NJ 08854, USADepartment of Pharmacology, UMDNJ‐Robert Wood Johnson Medical School, 675 Hoes Lane, Piscataway, NJ 08854, USA;2. Department of Pharmacology, UMDNJ‐Robert Wood Johnson Medical School, Piscataway, NJ 08854, USA;3. Department of Electrical and Computer Engineering, Michigan State University, East Lansing, MI 48824, USA;4. Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA
Abstract:BACKGROUND: The design of implants comprised of biodegradable electrospun nanofibers for the purpose of bridging injuries in damaged spinal cord is discussed. Electrospun nanofibers structurally mimic the extracellular matrix on which neurons and other cell types grow in vivo. This property has created great interest for their use in tissue engineering applications. However, their employment as biomimetic surfaces for such in vivo applications is still in its infancy. RESULTS: A nonwoven fabric comprised of electrospun polyamide nanofibers supported modest axonal regeneration in injured adult rat spinal cord. Covalent modification of the nanofibers with a bioactive peptide derived from the neuroregulatory extracellular matrix molecule tenascin‐C enhanced the ability of the nanofibers to facilitate axonal regrowth. However, the random orientation of the nanofibrillar fabric folds was an impediment to the forward movement of axons. CONCLUSIONS: Polyamide nanofibers covalently modified with neuroactive molecules provide a promising material for grafts to promote spinal cord regeneration. However, for the proper guidance of regrowing axons, attention must be paid to the engineering of ordered nanofibrillar structures. Copyright © 2007 Society of Chemical Industry
Keywords:nanofiber  neuron  tenascin‐C  peptide  extracellular matrix  spinal cord
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