Distasi Carla, Ariano Paolo, Zamburlin Pollyanna, Ferraro Mario
Dipartmento de Scienze Chimiche Alimentari, Farmaceutiche e Farmacologiche, Università del Piemonte Orientale, Novara, Italy.
Eur Biophys J. 2002 May;31(2):81-8. doi: 10.1007/s00249-001-0194-y. Epub 2001 Dec 19.
We used time-lapse microscopy to study the in vitro migration of neuronal cells from developing chick ciliary ganglion. These cells, when dissociated and cultured in a chemically defined medium, are able to migrate and to associate into clusters. We focused our attention on the study of the distribution of neuronal velocity components. Quantitative analysis of cell trajectories allowed us to demonstrate that, in many cells, velocities are well described by the Langevin equation, when deterministic components of the forces acting on the cells are taken into account. We also have shown that the majority of neurons whose movement is not purely random migrate in association with glial cells. We conclude that glial cells, by guiding neurons during migration, play an important role in the cell organization in vitro.
我们使用延时显微镜来研究发育中的鸡睫状神经节神经元细胞的体外迁移。这些细胞在化学限定培养基中解离并培养时,能够迁移并聚集成簇。我们将注意力集中在神经元速度分量分布的研究上。对细胞轨迹的定量分析使我们能够证明,当考虑作用于细胞的力的确定性分量时,在许多细胞中,速度可以很好地用朗之万方程来描述。我们还表明,大多数运动并非完全随机的神经元与神经胶质细胞一起迁移。我们得出结论,神经胶质细胞在迁移过程中引导神经元,在体外细胞组织中发挥重要作用。