Olfactory Ensheathing Cells for Spinal Cord Injury: The Cellular Superpowers for Nerve Repair

Francesca Oieni, Ronak Reshamwala, J. S. St John
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引用次数: 3

Abstract

Neurotrauma injuries are notoriously difficult to deal with both clinically as well as experimentally, as the cellular and molecular events ensuing after injury complicate the neuroinflammatory processes. Spinal cord injuries are further complicated by the formation of scars at the injury sites, which can provide a physical barrier to repair. The lack of effective clinical therapy for spinal cord injury underscores the need for experimental approaches to generate effective therapies. To repair the injury, cell transplantation offers the potential to replace lost cells and create a permissive bridge to promote neural regeneration across the injury site. Olfactory ensheathing cells (OECs), which are the glia of the olfactory nerve, stand apart from other candidate cell types due to their innate natural abilities to manage nerve injury and promote repair and regeneration. This is evidenced by their physiological role in the daily repair and maintenance of the olfactory nerve. Here, we explain their properties in relation to their physiological role and their most relevant cellular attributes, including cellular interactions, phagocytosis, migration, axonal guidance and support, and modulation of neuroinflammation. We highlight some critical drawbacks in the current approaches and identify some ways to address them.
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脊髓损伤的嗅鞘细胞:神经修复的细胞超能力
众所周知,神经创伤在临床和实验上都很难处理,因为损伤后发生的细胞和分子事件使神经炎症过程复杂化。脊髓损伤由于在损伤部位形成疤痕而变得更加复杂,这可以为修复提供物理屏障。脊髓损伤缺乏有效的临床治疗,这突出表明需要实验方法来产生有效的治疗方法。为了修复损伤,细胞移植提供了替换丢失细胞的潜力,并创造了一个允许的桥梁,促进整个损伤部位的神经再生。嗅鞘细胞(OECs)是嗅觉神经的胶质细胞,由于其固有的管理神经损伤和促进修复和再生的能力,与其他候选细胞类型不同。它们在嗅觉神经的日常修复和维护中的生理作用证明了这一点。在这里,我们解释了它们的生理作用及其最相关的细胞属性,包括细胞相互作用、吞噬作用、迁移、轴突引导和支持,以及神经炎症的调节。我们强调了当前方法中的一些关键缺陷,并确定了一些解决这些缺陷的方法。
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