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Early regenerative effects of NGF-transduced Schwann cells in peripheral nerve repair

机译:NGF转化的雪旺细胞在周围神经修复中的早期再生作用

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摘要

Peripheral nerve injury leads to a rapid and robust increase in the synthesis of neurotrophins which guide and support regenerating axons. To further optimize neurotrophin supply at the earliest stages of regeneration, we over-expressed NGF in Schwann cells (SCs) by transducing these cells with a lentiviral vector encoding NGF (NGF-SCs). Transplantation of NGF-SCs in a rat sciatic nerve transection/repair model led to significant increase of NGF levels 2. weeks after injury and correspondingly to substantial improvement in axonal regeneration. Numbers of NF200, ChAT and CGRP-positive axon profiles, as well as the gastrocnemius muscle weights, were significantly higher in the NGF-Schwann cell group compared to the animals that received control SCs transduced with a lentiviral vector encoding GFP (GFP-SCs). Comparison with other models of NGF application signifies the important role of this neurotrophin during the early stages of regeneration, and supports the importance of developing combined gene and cell therapy for peripheral nerve repair.
机译:周围神经损伤导致引导和支持再生轴突的神经营养蛋白合成迅速而强劲地增加。为了在再生的最早阶段进一步优化神经营养蛋白的供应,我们通过用编码NGF的慢病毒载体(NGF-SCs)转导这些细胞,在雪旺细胞(SCs)中过表达NGF。在大鼠坐骨神经横切/修复模型中,NGF-SCs的移植导致损伤后2周的NGF水平显着增加,并相应地显着改善了轴突再生。与接受用编码GFP的慢病毒载体转导的对照SC的动物相比,NGF-Schwann细胞组中NF200,ChAT和CGRP阳性轴突分布的数量以及腓肠肌的重量明显更高。 。与其他NGF应用模型的比较表明,这种神经营养蛋白在再生的早期阶段起着重要的作用,并支持开发联合基因和细胞疗法治疗周围神经的重要性。

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