Journal:
:مجله علوم اعصاب شفای خاتم
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shima tavakol a. department of medical nanotechnology, school of advanced technologies in medicine, tehran university of medical sciences, tehran, iran. b. razi drug research center, iran university of medical sciences, tehran, iran. c. student’s scientific research center, tehran university of medical sciences, tehran, iran. d. shefa neuroscience research center, khatam alanbia hospital, tehran, iran.
reza saber department of medical nanotechnology, school of advanced technologies in medicine, tehran university of medical sciences, tehran, iran.
elham hoveizi department of biology, faculty of sciences, shahid chamran university of ahvaz, ahvaz, iran.
hadi aligholi a. shefa neuroscience research center, khatam alanbia hospital, tehran, iran. b. department of neurosciences, school of advanced technologies in medicine, tehran university of medical sciences, tehran, iran.
jafar ai a. department of tissue engineering, school of advanced technologies in medicine, tehran university of medical sciences, tehran, iran. b. brain and spinal injury research center, imam hospital, tehran university of medical sciences, tehran, iran.
mahdi rezayat a. department of medical nanotechnology, school of advanced technologies in medicine, tehran university of medical sciences, tehran, iran. b. department of toxicology & pharmacology, school of pharmacy, pharmaceutical sciences branch, islamic azad university (iaups), tehran, iran. c. department of pharmacology, school of medicine, tehran university of medical sciences, tehran, iran.
spinal cord injury (sci) in humans remains a devastating and incurable disorder. a very important obstacle in axonal regeneration after spinal cord injury is astroglial scaring. the use of self-assembling peptide nanofiber, a hydrogel mimicking extracellular matrix, has been suggested as a scaffold for spinal cord regeneration and inhibition of astrogliosis. however, neurogenesis potential of l...