High molecular weight hyaluronic acid limits astrocyte activation and scar formation after spinal cord injury

ZZ Khaing, BD Milman, JE Vanscoy… - Journal of Neural …, 2011 - iopscience.iop.org
A major hurdle for regeneration after spinal cord injury (SCI) is the ability of axons to
penetrate and grow through the scar tissue. After SCI, inflammatory cells, astrocytes and …

High molecular weight hyaluronic acid limits astrocyte activation and scar formation after spinal cord injury

ZZ Khaing, BD Milman, JE Vanscoy… - Journal of neural …, 2011 - pubmed.ncbi.nlm.nih.gov
A major hurdle for regeneration after spinal cord injury (SCI) is the ability of axons to
penetrate and grow through the scar tissue. After SCI, inflammatory cells, astrocytes and …

High molecular weight hyaluronic acid limits astrocyte activation and scar formation after spinal cord injury

ZZ Khaing, BD Milman, JE Vanscoy… - Journal of Neural …, 2011 - ui.adsabs.harvard.edu
A major hurdle for regeneration after spinal cord injury (SCI) is the ability of axons to
penetrate and grow through the scar tissue. After SCI, inflammatory cells, astrocytes and …

High molecular weight hyaluronic acid limits astrocyte activation and scar formation after spinal cord injury.

ZZ Khaing, BD Milman, JE Vanscoy… - Journal of Neural …, 2011 - europepmc.org
A major hurdle for regeneration after spinal cord injury (SCI) is the ability of axons to
penetrate and grow through the scar tissue. After SCI, inflammatory cells, astrocytes and …

[PDF][PDF] High molecular weight hyaluronic acid limits astrocyte activation and scar formation after spinal cord injury

ZZ Khaing, BD Milman, JE Vanscoy, SK Seidlits… - J. Neural …, 2011 - researchgate.net
A major hurdle for regeneration after spinal cord injury (SCI) is the ability of axons to
penetrate and grow through the scar tissue. After SCI, inflammatory cells, astrocytes and …