Combination of Engineered Expression of Polysialic Acid on Transplanted Schwann Cells and in Injured Rat Spinal Cord Promotes Significant Axonal Growth and Functional Recovery

Fangyou Gao, Yi Zhang, Dongsheng Wu, Juan Luo, Svetlana Gushchina, Xuenong Bo
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Abstract

Providing cellular support and modifying the glial scar around the lesion are two key strategies for promoting axonal regeneration after spinal cord injury. We showed previously that over-expressing polysialic acid (PSA) on Schwann cells (SCs) by lentiviral vector (LV)-mediated expression of polysialyltransferase (PST) facilitated their integration and migration in the injured spinal cord. We also showed that PSA over-expression in the injured spinal cord modified the glial scar and promoted the growth of ascending sensory axons. In this study, we combined the PST/SC transplantation with LV/PST injection in spinal cords after dorsal column transection and found the combined treatments led to faster and more profound locomotor functional recovery compared with animals receiving combined GFP/SC transplantation with LV/GFP injection. Histological examination showed significantly more injured corticospinal axons growing close to the lesion/transplant borders and into the caudal spinal cord in the PST group than in the GFP group. We also found over -expressing PSA around the lesion site did not cause allodynia and hyperalgesia in our injury model. These results demonstrate the promising therapeutic benefit of over-expressing PSA in transplanted SCs and spinal cord in promoting axonal growth and restoring motor function.
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在移植雪旺细胞和损伤大鼠脊髓中工程表达聚唾液酸可显著促进轴突生长和功能恢复
提供细胞支持和修复损伤周围的胶质瘢痕是促进脊髓损伤后轴突再生的两个关键策略。我们之前的研究表明,通过慢病毒载体(LV)介导的多唾液酸转移酶(PST)的表达,在雪旺细胞(SCs)上过表达多唾液酸(PSA),促进了它们在受损脊髓中的整合和迁移。我们还发现,受损脊髓中PSA的过表达改变了胶质瘢痕,促进了上行感觉轴突的生长。在本研究中,我们将脊髓背柱横切后的PST/SC移植与LV/GFP注射联合治疗,发现与GFP/SC联合移植与LV/GFP注射相比,联合治疗能更快、更深入地恢复动物的运动功能。组织学检查显示,与GFP组相比,PST组损伤的皮质脊髓轴突生长在靠近病变/移植边界的地方,并进入脊髓尾端。我们还发现,在我们的损伤模型中,病变部位周围过表达的PSA不会引起异常性疼痛和痛觉过敏。这些结果表明,在移植的SCs和脊髓中过表达PSA在促进轴突生长和恢复运动功能方面具有良好的治疗效果。
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