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利用磁共振显微成像技术对胚胎期小鼠大脑中神经元迁移进行三维映射。

3D mapping of neuronal migration in the embryonic mouse brain with magnetic resonance microimaging.

作者信息

Deans Abby E, Wadghiri Youssef Zaim, Aristizábal Orlando, Turnbull Daniel H

机构信息

Skirball Institute of Biomolecular Medicine, New York University School of Medicine, 540 First Ave, New York, NY 10016, USA.

Department of Radiology, New York University School of Medicine, 540 First Ave, New York, NY 10016, USA.

出版信息

Neuroimage. 2015 Jul 1;114:303-10. doi: 10.1016/j.neuroimage.2015.04.010. Epub 2015 Apr 11.

Abstract

A prominent feature of the developing mammalian brain is the widespread migration of neural progenitor (NP) cells during embryogenesis. A striking example is provided by NP cells born in the ventral forebrain of mid-gestation stage mice, which subsequently migrate long distances to their final positions in the cortex and olfactory bulb. Previous studies have used two-dimensional histological methods, making it difficult to analyze three-dimensional (3D) migration patterns. Unlike histology, magnetic resonance microimaging (micro-MRI) is a non-destructive, quantitative and inherently 3D imaging method for analyzing mouse embryos. To allow mapping of migrating NP cells with micro-MRI, cells were labeled in situ in the medial (MGE) and lateral (LGE) ganglionic eminences, using targeted in utero ultrasound-guided injection of micron-sized particles of iron-oxide (MPIO). Ex vivo micro-MRI and histology were then performed 5-6days after injection, demonstrating that the MPIO had magnetically labeled the migrating NP populations, which enabled 3D visualization and automated segmentation of the labeled cells. This approach was used to analyze the distinct patterns of migration from the MGE and LGE, and to construct rostral-caudal migration maps from each progenitor region. Furthermore, abnormal migratory phenotypes were observed in Nkx2.1(-/-) embryos, most notably a significant increase in cortical neurons derived from the Nkx2.1(-/-) LGE. Taken together, these results demonstrate that MPIO labeling and micro-MRI provide an efficient and powerful approach for analyzing 3D cell migration patterns in the normal and mutant mouse embryonic brain.

摘要

发育中的哺乳动物大脑的一个显著特征是神经祖细胞(NP)在胚胎发生过程中的广泛迁移。一个显著的例子是在妊娠中期小鼠腹侧前脑产生的NP细胞,这些细胞随后长途迁移到它们在皮质和嗅球中的最终位置。以往的研究使用二维组织学方法,难以分析三维(3D)迁移模式。与组织学不同,磁共振显微成像(显微MRI)是一种用于分析小鼠胚胎的无损、定量且本质上为三维的成像方法。为了能够用显微MRI绘制迁移的NP细胞图谱,利用子宫内超声引导下靶向注射微米级氧化铁颗粒(MPIO),在原位标记内侧(MGE)和外侧(LGE)神经节隆起中的细胞。然后在注射后5 - 6天进行离体显微MRI和组织学检查,结果表明MPIO已对迁移的NP群体进行了磁性标记,这使得能够对标记细胞进行三维可视化和自动分割。该方法用于分析来自MGE和LGE的不同迁移模式,并构建每个祖细胞区域的头 - 尾迁移图谱。此外,在Nkx2.1(- / -)胚胎中观察到异常的迁移表型,最显著的是源自Nkx2.1(- / -)LGE的皮质神经元显著增加。综上所述,这些结果表明MPIO标记和显微MRI为分析正常和突变小鼠胚胎大脑中的三维细胞迁移模式提供了一种高效且强大的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf73/4446241/374d2f45f7b0/nihms-680371-f0001.jpg

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本文引用的文献

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High-resolution MRI of early-stage mouse embryos.高分辨率 MRI 检测早期小鼠胚胎
NMR Biomed. 2013 Feb;26(2):224-31. doi: 10.1002/nbm.2843. Epub 2012 Aug 22.
2
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In vivo MRI of neural cell migration dynamics in the mouse brain.在体 MRI 研究小鼠大脑神经细胞迁移的动力学。
Neuroimage. 2010 Apr 1;50(2):456-64. doi: 10.1016/j.neuroimage.2009.12.107. Epub 2010 Jan 4.

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