1,165
Views
9
CrossRef citations to date
0
Altmetric
ORIGINAL ARTICLE

Functional Recovery of Carbon Nanotube/Nafion Nanocomposite in Rat Model of Spinal Cord Injury

, , , &
Pages 144-149 | Received 13 Jan 2015, Accepted 26 Feb 2015, Published online: 10 Apr 2015

References

  • Ambrozaitis KV, Kontautas E, Spakauskas B, Vaitkaitis D. 2006. [Pathophysiology of acute spinal cord injury]. Medicina (Kaunas). 42:255–261.
  • Bunge MB, Pearse DD. 2003. Transplantation strategies to promote repair of the injured spinal cord. J Rehabil Res Dev. 40:55–62.
  • Chang WC, Kliot M, Sretavan DW. 2008. Microtechnology and nanotechnology in nerve repair. Neurol Res. 30:1053–1062.
  • Chaplan SR, Bach FW, Pogrel JW, Chung JM, Yaksh TL. 1994. Quantitative assessment of tactile allodynia in the rat paw. J Neurosci Methods. 53:55–63.
  • Chauhan NB, Figlewicz HM, Khan T. 1999. Carbon filaments direct the growth of postlesional plastic axons after spinal cord injury. Int J Dev Neurosci. 17:255–264.
  • Clements IP, Kim YT, English AW, Lu X, Chung A, Bellamkonda RV. 2009. Thin-film enhanced nerve guidance channels for peripheral nerve repair. Biomaterials. 30:3834–3846.
  • Dalbayrak S, Yaman O, Yilmaz T. 2015. Current and future surgery strategies for spinal cord injuries. World J Orthop. 6:34–41.
  • Guo J, Su H, Zeng Y, Liang YX, Wong WM, Ellis-Behnke RG, et al. 2007. Reknitting the injured spinal cord by self-assembling peptide nanofiber scaffold. Nanomedicine. 3:311–321.
  • Hamers FP, Koopmans GC, Joosten EA. 2006. CatWalk-assisted gait analysis in the assessment of spinal cord injury. J Neurotrauma. 23:537–548.
  • Hulsebosch CE. 2002. Recent advances in pathophysiology and treatment of spinal cord injury. Adv Physiol Educ. 26:238–255.
  • Hurtado A, Cregg JM, Wang HB, Wendell DF, Oudega M, Gilbert RJ, Mcdonald JW. 2011. Robust CNS regeneration after complete spinal cord transection using aligned poly-L-lactic acid microfibers. Biomaterials. 32:6068–6079.
  • Kwon BK, Tetzlaff W, Grauer JN, Beiner J, Vaccaro AR. 2004. Pathophysiology and pharmacologic treatment of acute spinal cord injury. Spine J. 4:451–464.
  • Lu P, Tuszynski MH. 2008. Growth factors and combinatorial therapies for CNS regeneration. Exp Neurol. 209:313–320.
  • Malarkey EB, Fisher KA, Bekyarova E, Liu W, Haddon RC, Parpura V. 2009. Conductive single-walled carbon nanotube substrates modulate neuronal growth. Nano Lett. 9:264–268.
  • Malarkey EB, Parpura V. 2007. Applications of carbon nanotubes in neurobiology. Neurodegener Dis. 4:292–299.
  • McLean AN. 2013. The spinal cord-injured patient in the medical ward. Clin Med. 13:549–552.
  • Moore DL, Blackmore MG, Hu Y, Kaestner KH, Bixby JL, Lemmon VP, Goldberg JL. 2009. KLF family members regulate intrinsic axon regeneration ability. Science. 326:298–301.
  • Novikova LN, Novikov LN, Kellerth JO. 2003. Biopolymers and biodegradable smart implants for tissue regeneration after spinal cord injury. Curr Opin Neurol. 16:711–715.
  • Panseri S, Cunha C, Lowery J, Del Carro U, Taraballi F, Amadio S, et al. 2008. Electrospun micro- and nanofiber tubes for functional nervous regeneration in sciatic nerve transections. BMC Biotechnol. 8:39.
  • Roman JA, Niedzielko TL, Haddon RC, Parpura V, Floyd CL. 2011. Single-walled carbon nanotubes chemically functionalized with polyethylene glycol promote tissue repair in a rat model of spinal cord injury. J Neurotrauma. 28:2349–2362.
  • Sheng L, Dajing C, Yuquan C. 2011. A surface acoustic wave humidity sensor with high sensitivity based on electrospun MWCNT/Nafion nanofiber films. Nanotechnology. 22:265504.
  • Silva GA. 2006. Neuroscience nanotechnology: progress, opportunities and challenges. Nat Rev Neurosci. 7:65–74.
  • Silva GA, Czeisler C, Niece KL, Beniash E, Harrington DA, Kessler JA, Stupp SI. 2004. Selective differentiation of neural progenitor cells by high-epitope density nanofibers. Science. 303:1352–1355.
  • Sucapane A, Cellot G, Prato M, Giugliano M, Parpura V, Ballerini L. 2009. Interactions between cultured neurons and carbon nanotubes: a nanoneuroscience vignette. J Nanoneurosci. 1:10–16.
  • Tabesh H, Amoabediny G, Nik NS, Heydari M, Yosefifard M, Siadat SO, Mottaghy K. 2009. The role of biodegradable engineered scaffolds seeded with Schwann cells for spinal cord regeneration. Neurochem Int. 54:73–83.
  • Wouterlood FG, Goede PH, Groenewegen HJ. 1990. The in situ detectability of the neuroanatomical tracer Phaseolus vulgaris- leucoagglutinin (PHA-L). J Chem Neuroanat. 3:11–18.
  • Yang F, Murugan R, Wang S, Ramakrishna S. 2005. Electrospinning of nano/micro scale poly(L-lactic acid) aligned fibers and their potential in neural tissue engineering. Biomaterials. 26:2603–2610.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.