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Publication : Inhibition of CSPG receptor PTP΃ promotes migration of newly born neuroblasts, axonal sprouting, and recovery from stroke.

First Author  Luo F Year  2022
Journal  Cell Rep Volume  40
Issue  4 Pages  111137
PubMed ID  35905716 Mgi Jnum  J:328784
Mgi Id  MGI:7329686 Doi  10.1016/j.celrep.2022.111137
Citation  Luo F, et al. (2022) Inhibition of CSPG receptor PTPsigma promotes migration of newly born neuroblasts, axonal sprouting, and recovery from stroke. Cell Rep 40(4):111137
abstractText  In addition to neuroprotective strategies, neuroregenerative processes could provide targets for stroke recovery. However, the upregulation of inhibitory chondroitin sulfate proteoglycans (CSPGs) impedes innate regenerative efforts. Here, we examine the regulatory role of PTPsigma (a major proteoglycan receptor) in dampening post-stroke recovery. Use of a receptor modulatory peptide (ISP) or Ptprs gene deletion leads to increased neurite outgrowth and enhanced NSCs migration upon inhibitory CSPG substrates. Post-stroke ISP treatment results in increased axonal sprouting as well as neuroblast migration deeply into the lesion scar with a transcriptional signature reflective of repair. Lastly, peptide treatment post-stroke (initiated acutely or more chronically at 7 days) results in improved behavioral recovery in both motor and cognitive functions. Therefore, we propose that CSPGs induced by stroke play a predominant role in the regulation of neural repair and that blocking CSPG signaling pathways will lead to enhanced neurorepair and functional recovery in stroke.
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