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An ex vivo model to quantitatively analyze cell migration in tissue

机译:exvivo模型以定量分析组织中细胞迁移的

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Background: Within the developing central nervous system, the ability of cells to migrate throughout the tissue parenchyma to reach their target destination and undergo terminal differentiation is vital to normal central nervous system (CNS) development. To develop novel therapies to treat the injured CNS, it is essential that the migratory behavior of cell populations is understood. Many studies have examined the ability of individual neurons to migrate through the developing CNS, describing specific modes of migration including locomotion and somal translocation. Few studies have investigated the mass migration of large populations of neural progenitors, particularly in the developing the spinal cord. Here, we describe a method to robustly analyze large numbers of migrating cells using a co‐culture assay. Results: The ex vivo tissue model promotes the survival and differentiation of co‐cultured progenitor cells. Using this assay, we demonstrate that migrating neuroepithelial progenitor cells display region specific migration patterns within the dorsal and ventral spinal cord at defined developmental time points. Conclusions: The technique described here is a viable ex vivo model to quantitatively analyze cell migration and differentiation. We demonstrate the ability to detect changes in cell migration within distinct tissue region across tissue samples using the technique described here. Developmental Dynamics 247:201–211, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:背景:在发育中的中枢神经系统中,细胞迁移到整个组织实质以达到其目标并经历终末分化的能力对正常中枢神经系统(CNS)的发育至关重要。为了开发治疗受损中枢神经系统的新疗法,了解细胞群的迁移行为至关重要。许多研究检测了单个神经元在发育中的中枢神经系统中迁移的能力,描述了特定的迁移模式,包括运动和染色体易位。很少有研究调查大量神经祖细胞的大规模迁移,尤其是在脊髓发育过程中。在这里,我们描述了一种使用共培养法对大量迁移细胞进行稳健分析的方法。结果:体外组织模型促进了共培养祖细胞的存活和分化。通过这种分析,我们证明了在特定的发育时间点,迁移的神经上皮祖细胞在脊髓背侧和腹侧显示区域特异性迁移模式。结论:该技术是一种定量分析细胞迁移和分化的可行体外模型。我们展示了使用本文描述的技术检测组织样本中不同组织区域内细胞迁移变化的能力。发展动态247:201–211,2018?2017威利期刊公司。

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