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通过细胞磁共振成像和免疫组织学表征的神经祖细胞运输的白质束:CXCL12/CXCR4信号传导的作用

White matter tracts for the trafficking of neural progenitor cells characterized by cellular MRI and immunohistology: the role of CXCL12/CXCR4 signaling.

作者信息

Chen Chiao-Chi V, Hsu Yi-Hua, Jayaseema D M, Chen Jeou-Yuan Joanne, Hueng Dueng-Yuan, Chang Chen

机构信息

N123, Institute of Biomedical Sciences, Academia Sinica, 128, Section 2, Academia Road, Nankang, Taipei, 11529, Taiwan.

出版信息

Brain Struct Funct. 2015 Jul;220(4):2073-85. doi: 10.1007/s00429-014-0770-4. Epub 2014 Apr 26.

Abstract

White matter tracts are important for the trafficking of neural progenitor cells (NPCs) in both normal and pathological conditions, but the underlying mechanism is not clear. The directionality of white matter is advantageous for molecules or cells to distribute over a long distance, but this feature is unlikely solely responsible for efficient migration. The present study hypothesizes that the efficient migration of NPCs into white matter is under the influences of neurochemical attraction—CXCL12/CXCR4 signaling, a major mechanism underlying the targeted migration of NPCs. To test this view, the present study investigated the effects of CXCL12 administration into the corpus callosum (CC) on the migratory behavior of transplanted NPCs. A living animal tracking platform based on MRI and a magnetic cell labeling technique was employed. The NPCs were magnetically labeled and then transplanted at the right end of the CC. CXCL12 was infused continuously at the left end. Migration of NPCs was monitored repeatedly over a 7-day course using 3D gradient echo T2*-weighted imaging. It was found that, CXCL12 induced NPCs to migrate up to 1,881 μm from the graft whereas the spontaneous migration was mere 200 μm. CXCL12 induced migration that was nine times as efficient in the speed. The results indicate that the CXCL12/CXCR4 signaling may be a mechanism via which NPCs efficiently migrate along the white matter tracts. The study also presents a potential strategy for facilitating the targeted migration in NPC therapy for brain disorders.

摘要

在正常和病理条件下,白质束对于神经祖细胞(NPCs)的运输都很重要,但其潜在机制尚不清楚。白质的方向性有利于分子或细胞在长距离内分布,但这一特征不太可能是有效迁移的唯一原因。本研究假设,NPCs向白质的有效迁移受神经化学吸引——CXCL12/CXCR4信号传导的影响,这是NPCs靶向迁移的主要机制。为了验证这一观点,本研究调查了向胼胝体(CC)注射CXCL12对移植的NPCs迁移行为的影响。采用了基于MRI和磁性细胞标记技术的活体动物追踪平台。对NPCs进行磁性标记,然后移植到CC的右端。在左端持续注入CXCL12。使用三维梯度回波T2*加权成像在7天的过程中反复监测NPCs的迁移情况。结果发现,CXCL12诱导NPCs从移植物迁移至1881μm,而自发迁移仅为200μm。CXCL12诱导的迁移速度提高了9倍。结果表明,CXCL12/CXCR4信号传导可能是NPCs沿白质束有效迁移的一种机制。该研究还提出了一种在治疗脑部疾病的NPC疗法中促进靶向迁移的潜在策略。

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