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1000 Titel
  • Improvement of Rat Spinal Cord Injury Following Lentiviral Vector-Transduced Neural Stem/Progenitor Cells Derived from Human Epileptic Brain Tissue Transplantation with a Self-assembling Peptide Scaffold
1000 Autor/in
  1. Abdolahi, Sara |
  2. Aligholi, Hadi |
  3. Khodakaram-Tafti, Azizollah |
  4. Khaleghi Ghadiri, Maryam |
  5. Stummer, Walter |
  6. Gorji, Ali |
1000 Erscheinungsjahr 2021
1000 Publikationstyp
  1. Artikel |
1000 Online veröffentlicht
  • 2021-01-14
1000 Erschienen in
1000 Quellenangabe
  • 58(6):2481-2493
1000 Copyrightjahr
  • 2021
1000 Lizenz
1000 Verlagsversion
  • https://doi.org/10.1007/s12035-020-02279-5 |
  • https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8128971/ |
1000 Publikationsstatus
1000 Sprache der Publikation
1000 Abstract/Summary
  • Spinal cord injury (SCI) is a disabling neurological disorder that causes neural circuit dysfunction. Although various therapies have been applied to improve the neurological outcomes of SCI, little clinical progress has been achieved. Stem cell-based therapy aimed at restoring the lost cells and supporting micromilieu at the site of the injury has become a conceptually attractive option for tissue repair following SCI. Adult human neural stem/progenitor cells (hNS/PCs) were obtained from the epileptic human brain specimens. Induction of SCI was followed by the application of lentiviral vector-mediated green fluorescent protein-labeled hNS/PCs seeded in PuraMatrix peptide hydrogel (PM). The co-application of hNS/PCs and PM at the SCI injury site significantly enhanced cell survival and differentiation, reduced the lesion volume, and improved neurological functions compared to the control groups. Besides, the transplanted hNS/PCs seeded in PM revealed significantly higher migration abilities into the lesion site and the healthy host tissue as well as a greater differentiation into astrocytes and neurons in the vicinity of the lesion as well as in the host tissue. Our data suggest that the transplantation of hNS/PCs seeded in PM could be a promising approach to restore the damaged tissues and improve neurological functions after SCI.
1000 Sacherschließung
lokal Cell therapy
lokal Cell Survival [MeSH]
lokal Brain Tissue Transplantation [MeSH]
lokal Glial Fibrillary Acidic Protein/metabolism [MeSH]
lokal Green Fluorescent Proteins/metabolism [MeSH]
lokal Neuropeptides/metabolism [MeSH]
lokal Microtubule-Associated Proteins/metabolism [MeSH]
lokal Male [MeSH]
lokal Peptides/chemistry [MeSH]
lokal Genetic Vectors/metabolism [MeSH]
lokal Tissue Scaffolds/chemistry [MeSH]
lokal Lentivirus/metabolism [MeSH]
lokal Brain/pathology [MeSH]
lokal Recovery of Function [MeSH]
lokal Neural Stem Cells/metabolism [MeSH]
lokal Disability
lokal Humans [MeSH]
lokal Bioengineering
lokal Scaffold
lokal Trauma
lokal Animals [MeSH]
lokal Rats, Wistar [MeSH]
lokal Article
lokal Epilepsy/pathology [MeSH]
lokal Spinal Cord Injuries/pathology [MeSH]
lokal Transduction, Genetic [MeSH]
1000 Liste der Beteiligten
  1. https://frl.publisso.de/adhoc/uri/QWJkb2xhaGksIFNhcmE=|https://frl.publisso.de/adhoc/uri/QWxpZ2hvbGksIEhhZGk=|https://frl.publisso.de/adhoc/uri/S2hvZGFrYXJhbS1UYWZ0aSwgQXppem9sbGFo|https://frl.publisso.de/adhoc/uri/S2hhbGVnaGkgR2hhZGlyaSwgTWFyeWFt|https://frl.publisso.de/adhoc/uri/U3R1bW1lciwgV2FsdGVy|https://orcid.org/0000-0002-4557-3270
1000 Hinweis
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1000 Erstellt am 2023-04-28T10:53:00.276+0200
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1000 Zuletzt bearbeitet 2023-10-20T15:58:25.871+0200
1000 Objekt bearb. Fri Oct 20 15:58:25 CEST 2023
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