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Nerve conduit filled with GDNF gene-modified Schwann cells enhances regeneration of the peripheral nerve.

机译:充满GDNF基因修饰的雪旺细胞的神经导管可增强周围神经的再生。

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摘要

A recombinant retrovirus vector containing the glial cell line-derived neurotrophic factor (GDNF) gene was constructed and transfected into Schwann cells (SCs) to investigate the possibility of GDNF transfection and functional expression of transfected SCs, including GDNF secretion and its mRNA expression. We found that transfection of the GDNF gene into SCs led to significantly enhanced expression of GDNF mRNA. The rate of GDNF secretion by GDNF-SCs was also increased. Functionally, more surviving motoneurons were seen when they were cocultured in GDNF-SC-conditioned medium than when they were in normal SC-conditioned medium. When bridging a rat sciatic nerve defect with a conduit filled with GDNF-transfected SCs, nerve regeneration was better than that of the control. In conclusion, transfection of SCs with the GDNF gene could enhance SC function. Application of genetically modified SCs could be a better way to promote nerve regeneration.
机译:构建了包含神经胶质细胞源性神经营养因子(GDNF)基因的重组逆转录病毒载体,并将其转染到雪旺细胞(SCs)中,以研究GDNF转染的可能性以及转染的SCs的功能表达,包括GDNF分泌及其mRNA表达。我们发现将GDNF基因转染到SC中会导致GDNF mRNA的表达显着增强。 GDNF-SCs分泌GDNF的比率也增加了。在功能上,与在普通SC条件培养基中共培养时,在GDNF-SC条件培养基中共培养时发现存活的运动神经元更多。用填充有GDNF转染的SC的导管弥合大鼠坐骨神经缺损时,神经再生优于对照组。总之,用GDNF基因转染SC可以增强SC功能。转基因SC的应用可能是促进神经再生的更好方法。

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