首页> 外文期刊>Tissue engineering, Part A >The effect of pulse-released nerve growth factor from genipin-crosslinked gelatin in schwann cell-seeded polycaprolactone conduits on large-gap peripheral nerve regeneration.
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The effect of pulse-released nerve growth factor from genipin-crosslinked gelatin in schwann cell-seeded polycaprolactone conduits on large-gap peripheral nerve regeneration.

机译:舒尼恩细胞接种的聚己酸内酯导管中Genipin交联明胶的脉冲释放神经生长因子对大间隙周围神经再生的影响。

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Different lag-time of pulse-released nerve growth factor (NGF) from genipin-crosslinked gelatin within polycaprolactone (PCL) conduits was evaluated in large-gap peripheral nerve repair. In this study, 10% (w/v) gelatin was mixed with NGF, crosslinked with 0%, 0.1%, 0.5%, and 1% (w/v) genipin, and then sucked into the wall of PCL conduits. These controlled-release nerve conduits were named NCL (non-crosslink), LCL (low crosslink), MCL (medium crosslink), and HCL (high crosslink), respectively. The NGF releasing character showed four distinctive curves, including initial burst within 5 days, pulse releasing at 5-20 days, pulse releasing at 10-25 days, and steadily releasing. The bioactivity of the released NGF was shown by neurite outgrowth of PC12 cells after culturing in all groups. Finally, the controlled-release conduits were seeded with 9 x 10(3) Schwann cells. Conduits were used to bridge a 15-mm rat sciatic nerve defect, and the results were compared with the isografts (control group). Eight weeks after implantation, morphological analysis revealed that LCL, MCL, and HCL groups were similar to autograft treatment in the numbers and area of myelinated axons. The LCL group, although insignificant, showed a trend to have the highest myelinated axon counts of the conduit-treated groups. Thus, comparing the different NGF release characteristics among NCL, MCL, and LCL groups, we concluded that a high concentration of NGF at 5-10 days in LCL groups is needed in bridging a 15-mm peripheral nerve injury.
机译:在大间隙周围神经修复中,评估了聚己内酯(PCL)导管中Genipin交联明胶的脉冲释放神经生长因子(NGF)的不同滞后时间。在这项研究中,将10%(w / v)的明胶与NGF混合,与0%,0.1%,0.5%和1%(w / v)的京尼平交联,然后吸入PCL导管壁中。这些控释神经导管分别命名为NCL(非交联),LCL(低交联),MCL(中交联)和HCL(高交联)。 NGF释放特征显示出四个独特的曲线,包括5天内的初始爆发,5-20天的脉冲释放,10-25天的脉冲释放以及稳定释放。在所有组中培养后,通过PC12细胞的神经突增生来显示释放的NGF的生物活性。最后,将控释导管接种9 x 10(3)雪旺细胞。使用导管弥合15毫米大鼠坐骨神经缺损,并将结果与​​同种异体移植物(对照组)进行比较。植入后八周,形态分析表明,LCL,MCL和HCL组在髓鞘轴突的数量和面积上与自体移植相似。 LCL组虽然微不足道,但显示出导管治疗组髓鞘轴突数量最高的趋势。因此,通过比较NCL,MCL和LCL组之间不同的NGF释放特性,我们得出结论,桥接15毫米周围神经损伤需要LCL组在5-10天时高浓度的NGF。

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