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A composite poly-hydroxybutyrate–glial growth factor conduit for long nerve gap repairs

机译:复合聚羟基丁酸酯-神经胶质生长因子导管用于长神经间隙修复

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摘要

There is considerable evidence that peripheral nerves have the potential to regenerate in an appropriate microenvironment. We have developed a novel artificial nerve guide composed of poly 3-hydroxybutyrate (PHB) filled with glial growth factor (GGF) suspended in alginate hydrogel. Gaps of 2–4 cm in rabbit common peroneal nerve were bridged using a PHB conduit containing either GGF in alginate hydrogel (GGF) or alginate alone (Alginate), or with an empty PHB conduit (Empty). Tissues were harvested 21, 42 and 63 days post-operatively. Schwann cell and axonal regeneration were assessed using quantitative immunohistochemistry. At 21 days, addition of GGF increased significantly the distance of axonal and Schwann cells regeneration in comparison with that observed in Alginate and Empty conduits for both gap lengths. The axons bridged the 2-cm GGF conduits gap by 63 days, with a comparable rate of regeneration seen in 4-cm conduits. Schwann cells and axonal regeneration quantity was similar for both gap lengths in each group. However, at all time points the quantity of axonal and Schwann cells regeneration in GGF grafts was significantly greater than in both Alginate and Empty conduits, the latter showing better regeneration than Alginate conduits. The results indicate an inhibitory effect of alginate on regeneration, which is partially reversed by the addition of GGF to the conduits. In conclusion, GGF stimulates a progressive and sustainable regeneration increase in long nerve gap conduits.
机译:有大量证据表明,周围神经在适当的微环境中具有再生的潜力。我们已经开发了一种新型的人工神经向导,它由悬浮在藻酸盐水凝胶中的神经胶质生长因子(GGF)填充的聚3-羟基丁酸酯(PHB)组成。使用含有藻酸盐水凝胶(GGF)中的GGF或仅藻酸盐(Alginate)的PHB导管或空PHB导管(Empty)桥接兔腓总神经中2–4 cm的间隙。术后21、42和63天收集组织。使用定量免疫组织化学评估雪旺细胞和轴突再生。与在两个间隙长度的藻酸盐和空导管中观察到的相比,添加GGF在21天时显着增加了轴突和雪旺氏细胞再生的距离。轴突弥合了2厘米GGF导管间隙63天,在4厘米导管中可见相当的再生速率。对于每组间隙长度,雪旺氏细胞和轴突再生量相似。但是,在所有时间点上,GGF移植物中轴突和雪旺氏细胞的再生量均显着大于藻酸盐和空导管,后者显示出比藻酸盐导管更好的再生。结果表明藻酸盐对再生的抑制作用,其通过在导管中添加GGF而部分逆转。总之,GGF刺激长神经间隙导管的进行性和持续性再生增加。

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