Bryan David J, Tang Jin Bo, Doherty Stephen A, Hile David D, Trantolo Debra J, Wise Donald L, Summerhayes Ian C
Tissue Engineering Laboratory, Robert E Wise MD Research and Education Institute, Lahey Clinic Medical Center, 31 Mall Road, Burlington, MA 01805, USA.
J Neural Eng. 2004 Jun;1(2):91-8. doi: 10.1088/1741-2560/1/2/004. Epub 2004 Jun 14.
In this study we investigated the effects of materials prepared with electrical poling on neurite outgrowth in vitro and nerve regeneration in vivo. Neuro-2a cells were seeded on poled and unpoled poly(lactic-co-glycolic) (PLGA) films and observed at time periods 24, 48 and 72 h post-seeding. The percentage of cells with neurites and the neurites per cell were quantified using light microscopy. At 48 and 72 h post-seeding, both the number of cells with neurites and the neurites per cell were significantly increased on the poled films compared to those on unpoled films. An established rat sciatic nerve model was used for in vivo studies to assess the effects of PLGA guides, poled for two different periods, on peripheral nerve regeneration. Guides were inserted in rats to bridge a 1.0 cm gap created in the right sciatic nerve. After four weeks, nerves regenerated through poled guides displayed a significant increase in conduction velocity and significantly increased numbers of axons across the guides, as compared to nerves regenerating through an unpoled guidance channel. Electrical poling was shown to promote neurite growth, axon regeneration and the conduction rate of the repaired nerve. We concluded that guides prepared with electrical poling enhance peripheral nerve regeneration.
在本研究中,我们调查了经电场极化处理的材料对体外神经突生长及体内神经再生的影响。将Neuro-2a细胞接种于经极化和未经极化的聚乳酸-乙醇酸共聚物(PLGA)薄膜上,并在接种后24、48和72小时进行观察。使用光学显微镜对有神经突的细胞百分比和每个细胞的神经突数量进行定量分析。接种后48和72小时,与未经极化的薄膜相比,经极化处理的薄膜上有神经突的细胞数量和每个细胞的神经突数量均显著增加。使用已建立的大鼠坐骨神经模型进行体内研究,以评估经两个不同时间段极化处理的PLGA导管对周围神经再生的影响。将导管插入大鼠体内,以桥接右侧坐骨神经中形成的1.0厘米间隙。四周后,与通过未经极化的引导通道再生的神经相比,通过经极化处理的导管再生的神经传导速度显著提高,穿过导管的轴突数量也显著增加。结果表明,电场极化可促进神经突生长、轴突再生及修复神经的传导速率。我们得出结论,经电场极化处理制备的导管可增强周围神经再生。