首页> 外文会议>2011 IEEE 37th Annual Northeast Bioengineering Conference >Physiologically compatible electrical stimulation of schwann cells enhances primary neurite outgrowth
【24h】

Physiologically compatible electrical stimulation of schwann cells enhances primary neurite outgrowth

机译:对雪旺细胞的生理相容性电刺激可增强原发性神经突生长

获取原文

摘要

This study investigates neuron response to electrically stimulated Schwann cells (SC) for neural engineering applications. Following injury, regenerating axons must navigate the injury and restore connections with distal targets. Previous results show moderate electrical stimulation (50 mV/mm) of SC-neuron co-cultures increases neurite outgrowth. To isolate the effect of any electrically mediate changes in Schwann cell phenotype, DC field of 50 mV/mm was applied to primary neonatal rat SC for 8 hours. Following stimulation, electrically stimulated SC conditioned medium was collected and the electrically stimulated SC recovered in new media for 12 hours. Primary dissociated neurons were seeded on 1) the electrically-stimulated SC or 2) in the electrically-stimulated SC conditioned medium and allowed to grow 12 hours. Results indicate that neurons grown on electrically stimulated SC exhibited a 3.2× increase in neurite outgrowth and a 2.8× increase in longest neurite compared to unstimulated SC controls. We observed increases in outgrowth in the conditioned medium. Neurons cultured in electrically stimulated SC conditioned media exhibit a 1.18× increase relative to their unstimulated SC controls. Appropriate application of electrical stimulation in vivo may contribute to the repair of injured nerves via electrically mediated changes to the neural and non-neural cells.
机译:这项研究调查了神经元对电刺激的雪旺细胞(SC)的反应,以用于神经工程应用。受伤后,再生轴突必须在伤口上导航并恢复与远端靶标的连接。先前的结果表明,SC-神经元共培养物中适度的电刺激(50 mV / mm)会增加神经突的长出。为了隔离雪旺氏细胞表型的任何电学介导变化的影响,将50 mV / mm的DC场施加于新生新生大鼠SC 8小时。刺激后,收集电刺激的SC条件培养基,并将电刺激的SC在新培养基中恢复12小时。将原代解离的神经元接种在1)电刺激的SC或2)电刺激的SC条件培养基中,使其生长12小时。结果表明,与未刺激的SC对照相比,在电刺激的SC上生长的神经元神经突生长增加3.2倍,最长的神经突生长2.8倍。我们观察到条件培养基中产物的增加。相对于未刺激的SC对照,在电刺激的SC条件培养基中培养的神经元表现出1.18倍的增加。体内电刺激的适当应用可能会通过电介导的神经细胞和非神经细胞的变化来促进受损神经的修复。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号