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三维环境中骨髓基质细胞的迁移:四色法揭示了空间和时间上协调的事件。

Migration of bone marrow stromal cells in 3D: 4 color methodology reveals spatially and temporally coordinated events.

作者信息

Thibault Marc M, Buschmann Michael D

机构信息

Department of Chemical Engineering and Institute of Biomedical Engineering, Ecole Polytechnique, Montreal, Quebec, Canada.

出版信息

Cell Motil Cytoskeleton. 2006 Dec;63(12):725-40. doi: 10.1002/cm.20160.

Abstract

The cytoskeleton plays a central role in many cell processes including directed cell migration. Since most previous work has investigated cell migration in two dimensions (2D), new methods are required to study movement in three dimensions (3D) while preserving 3D structure of the cytoskeleton. Most previous studies have labeled two cytoskeletal networks simultaneously, impeding an appreciation of their complex and dynamic interconnections. Here we report the development of a 4 color method to simultaneously image vimentin, actin, tubulin and the nucleus for high-resolution confocal microscopy of bone-marrow stromal cells (BMSCs) migrating through a porous membrane. Several methods were tested for structural preservation and labeling intensity resulting in identification of an optimized simultaneous fixation and permeabilization method using glutaraldehyde, paraformaldehyde and Triton X-100 followed by a quadruple fluorescent labeling method. This procedure was then applied at a sequence of time points to migrating cells, allowing temporal progression of migration to be assessed by visualizing all three networks plus the nucleus, providing new insights into 3D directed cell migration including processes such as leading edge structure, cytoskeletal distribution and nucleokinesis. Colocalization of actin and microtubules with distinct spatial arrangements at the cellular leading edge during migration, together with microtubule axial polarization supports recent reports indicating the pivotal role of microtubules in directed cell migration. This study also provides a foundation for 3D migration studies versus 2D studies, providing precise and robust methods to attain new insights into the cellular mechanisms of motility.

摘要

细胞骨架在包括定向细胞迁移在内的许多细胞过程中发挥着核心作用。由于此前的大多数研究都在二维(2D)层面上探究细胞迁移,因此需要新的方法来研究三维(3D)空间中的细胞运动,同时保留细胞骨架的三维结构。此前的大多数研究同时标记了两个细胞骨架网络,这妨碍了对它们复杂且动态的相互连接的理解。在此,我们报告了一种四色方法的开发,该方法可同时对波形蛋白、肌动蛋白、微管蛋白和细胞核进行成像,用于对通过多孔膜迁移的骨髓基质细胞(BMSC)进行高分辨率共聚焦显微镜观察。我们测试了几种用于结构保存和标记强度的方法,最终确定了一种优化的同时固定和通透处理方法,即使用戊二醛、多聚甲醛和曲拉通X-100,随后采用四重荧光标记法。然后将该程序应用于一系列时间点的迁移细胞,通过可视化所有三个网络以及细胞核来评估迁移的时间进程,从而为三维定向细胞迁移提供了新的见解,包括前沿结构、细胞骨架分布和核运动等过程。迁移过程中,肌动蛋白和微管在细胞前沿具有不同的空间排列共定位,同时微管轴向极化支持了最近的报道,表明微管在定向细胞迁移中起关键作用。本研究还为三维迁移研究与二维研究提供了基础,提供了精确且可靠的方法,以深入了解细胞运动的机制。

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