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嗅神经胶质细胞促进新生轴突再生。

Olfactory glia enhance neonatal axon regeneration.

机构信息

National Centre for Adult Stem Cell Research, Griffith University, Nathan 4111, Brisbane, Queensland, Australia.

出版信息

Mol Cell Neurosci. 2010 Nov;45(3):277-88. doi: 10.1016/j.mcn.2010.07.002. Epub 2010 Jul 13.

Abstract

Olfactory ensheathing cells (OECs) migrate with olfactory axons that extend from the nasal epithelium into the olfactory bulb. Unlike other glia, OECs are thought to migrate ahead of growing axons instead of following defined axonal paths. However it remains unknown how the presence of axons and OECs influences the growth and migration of each other during regeneration. We have developed a regeneration model in neonatal mice to examine whether (i) the presence of OECs ahead of olfactory axons affects axonal growth and (ii) the presence of olfactory axons alters the distribution of OECs. We performed unilateral bulbectomy to ablate olfactory axons followed by methimazole administration to further delay neuronal growth. In this model OECs filled the cavity left by the bulbectomy before new axons extended into the cavity. We found that delaying axon growth increased the rate at which OECs filled the cavity. The axons subsequently grew over a significantly larger region and formed more distinct fascicles and glomeruli in comparison with growth in animals that had undergone only bulbectomy. In vitro, we confirmed (i) that olfactory axon growth was more rapid when OECs were more widely distributed than the axons and (ii) that OECs migrated faster in the absence of axons. These results demonstrate that the distribution of OECs can be increased by repressing by growth of olfactory axons and that olfactory axon growth is significantly enhanced if a permissive OEC environment is present prior to axon growth.

摘要

嗅鞘细胞(OECs)与从鼻腔上皮延伸到嗅球的嗅神经轴突一起迁移。与其他神经胶质不同,OECs 被认为是在生长轴突之前迁移,而不是沿着确定的轴突路径迁移。然而,目前尚不清楚轴突和 OECs 的存在如何在再生过程中影响彼此的生长和迁移。我们在新生小鼠中开发了一种再生模型,以研究(i)嗅神经轴突前存在 OECs 是否会影响轴突生长,以及(ii)嗅神经轴突的存在是否会改变 OECs 的分布。我们进行了单侧嗅球切除术以切除嗅神经轴突,然后用甲巯咪唑处理以进一步延迟神经元生长。在这个模型中,OECs 在新的轴突延伸到腔中之前填充了嗅球切除术留下的腔。我们发现,延迟轴突生长会增加 OECs 填充腔的速度。与仅进行嗅球切除术的动物相比,随后的轴突在更大的区域上生长,并形成更明显的束和肾小球。在体外,我们证实了(i)当 OECs 的分布比轴突更广泛时,嗅神经轴突的生长速度更快,以及(ii)在没有轴突的情况下,OECs 迁移得更快。这些结果表明,可以通过抑制嗅神经轴突的生长来增加 OECs 的分布,并且如果在轴突生长之前存在允许的 OEC 环境,则嗅神经轴突的生长会显著增强。

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