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Showing 1 to 4 of 4 for “"neurocan"”.

  1. hepatocyte growth factor inhibits glial scar formation and

    … HGF also inhibited TGFβ1-induced upregulation of neurocan, one of CSPG species. To explore whether glial scar formation is inhibited by HGF in vivo spinal cord injury model, HGF overexpressing mesenchymal stem cells (HGF-MSCs) were transplanted into hemisected spinal cord lesions at T8. The …

    ajou Repository record for hepatocyte growth factor inhibits glial scar formation and (opens in a new tab)

  2. Engineering hiPSCs to enhance neural progenitor transplantation in degenerative cervical myelopathy

    … revealed maturity-dependent increases in neurocan expression, a transient increase in brevican, and no significant increases in aggrecan expression, suggesting that the lectican responsible for WFA immunopositivity in these cells is likely neurocan. Finally, inducible expression of GDNF …

    cambridge Repository record for Engineering hiPSCs to enhance neural progenitor transplantation in degenerative cervical myelopathy (opens in a new tab)

  3. Restoring bladder function by promoting neuronal regeneration

    … effect on the post-injury increase in the CSPGs neurocan or NG2 in the DREZ. However, there was a delay in the post injury increase in phosphacan in the DREZ in the artemin treatment group. There was a rightward shift in the expression profile of phosphacan in the DREZ as a result of artemin …

    utmb Repository record for Restoring bladder function by promoting neuronal regeneration (opens in a new tab)

  4. Towards cell replacement therapy in Parkinson’s disease. Proteoglycans and Nogo-A as modulators of axonal growth in midbrain dopaminergic neurons

    … proteoglycan-related genes, we identified two (neurocan and HS3ST5) that potentially could enhance the differentiation efficiency of DNs from stem cells. Our results can serve as a starting point for the further functional studies. After transplantation, the grafted DNs have to survive, and also …

    lund Repository record for Towards cell replacement therapy in Parkinson’s disease. Proteoglycans and Nogo-A as modulators of axonal growth in midbrain dopaminergic neurons (opens in a new tab)