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Motile membrane protrusions regulate cell-cell adhesion and migration of olfactory ensheathing glia

机译:动机膜突起调节细胞 - 细胞粘附和嗅鞘胶的迁移

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摘要

Olfactory ensheathing cells (OECs) are candidates for therapeutic approaches for neural regeneration due to their ability to assist axon regrowth in central nervous system lesion models. However, little is understood about the processes and mechanisms underlying migration of these cells. We report here that novel lamellipodial protrusions, termed lamellipodial waves, are integral to OEC migration. Time-lapse imaging of migrating OECs revealed that these highly dynamic waves progress along the shaft of the cells and are crucial for mediating cell-cell adhesion. Without these waves, cell-cell adhesion does not occur and migrational rates decline. The activity of waves is modulated by both glial cell line-derived neurotrophic factor and inhibitors of the JNK and SRC kinases. Furthermore, the activity of lamellipodial waves can be modulated by Mek1, independently of leading edge activity. The ability to selectively regulate cell migration via lamellipodial waves has implications for manipulating the migratory behavior of OECs during neural repair
机译:由于能够在中枢神经系统病变模型中提供轴突再生的能力,嗅鞘细胞(OECs)是治疗性抗性的治疗方法的候选方法。然而,关于这些细胞迁移的过程和机制很少。我们在此报告,新型层叠突起,称为层层波,与OEC迁移是一体的。迁移OEC的延时成像显示,这些高度动态的波沿着细胞的轴进展,并且对于介导细胞 - 细胞粘附至关重要。没有这些波,不会发生细胞 - 细胞粘附,并且迁移率下降。通过胶质细胞系衍生的神经营养因子和JNK和SRC激酶的抑制剂来调节波的活性。此外,层叠波的活性可以由MEK1调节,独立于前缘活性。通过层叠波选择性地调节细胞迁移的能力具有在神经修复期间操纵OECs的迁徙行为的影响

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