4.6 Article

Transplantation of Human-Fetal-Spinal-Cord-Derived NPCs Primed with a Polyglutamate-Conjugated Rho/Rock Inhibitor in Acute Spinal Cord Injury

期刊

CELLS
卷 11, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/cells11203304

关键词

human fetal neural precursor; NPC transplantation; Rho; ROCK kinase inhibition; cell priming; spinal cord injury

资金

  1. Fundacio Marato TV3 2017 [20172230, 20172231]
  2. Agencia Valenciana de Innovacion (AVI) - MCIN/AEI [INNVAL10/19/047, RTI2018-095872-B-C21, PDI20211243590B-I00]
  3. ERDF A way of making Europe
  4. H2020 FetOpen program [964562]

向作者/读者索取更多资源

Neural precursor cell transplantation is a promising therapy for spinal cord injuries, but its clinical translation remains challenging. A study found that priming human-fetal-spinal-cord-derived NPCs with PGA-SS-FAS improved neuronal differentiation and enhanced migration and survival of transplanted cells in the spinal cord.
Neural precursor cell (NPC) transplantation represents a promising therapy for treating spinal cord injuries (SCIs); however, despite successful results obtained in preclinical models, the clinical translation of this approach remains challenging due, in part, to the lack of consensus on an optimal cell source for human neuronal cells. Depending on the cell source, additional limitations to NPC-based therapies include high tumorigenic potential, alongside poor graft survival and engraftment into host spinal tissue. We previously demonstrated that NPCs derived from rat fetal spinal cords primed with a polyglutamate (PGA)-conjugated form of the Rho/Rock inhibitor fasudil (PGA-SS-FAS) displayed enhanced neuronal differentiation and graft survival when compared to non-primed NPCs. We now conducted a similar study of human-fetal-spinal-cord-derived NPCs (hfNPCs) from legal gestational interruptions at the late gestational stage, at 19-21.6 weeks. In vitro, expanded hfNPCs retained neural features, multipotency, and self-renewal, which supported the development of a cell banking strategy. Before transplantation, we established a simple procedure to prime hfNPCs by overnight incubation with PGA-SS-FAS (at 50 mu M FAS equiv.), which improved neuronal differentiation and overcame neurite-like retraction after lysophosphatidic-acid-induced Rho/Rock activation. The transplantation of primed hfNPCs into immune-deficient mice (NU(NCr)-Foxn1(nu)) immediately after the eighth thoracic segment compression prompted enhanced migration of grafted cells from the dorsal to the ventral spinal cord, increased preservation of GABAergic inhibitory Lbx1-expressing and glutamatergic excitatory Tlx3-expressing somatosensory interneurons, and elevated the numbers of preserved, c-Fos-expressing, activated neurons surrounding the injury epicenter, all in a low percentage. Overall, the priming procedure using PGA-SS-FAS could represent an alternative methodology to improve the capabilities of the hfNPC lines for a translational approach for acute SCI treatment.

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