Neuron Experts SAS, Faculté de Médecine Nord, 51 Boulevard Pierre Dramard, Marseille Cedex 20, France.
Exp Cell Res. 2011 Oct 1;317(16):2374-83. doi: 10.1016/j.yexcr.2011.07.002. Epub 2011 Jul 12.
Besides in vivo models, co-cultures systems making use of Rat dorsal root ganglion explants/Schwann cells (SC) are widely used to essentially study myelination in vitro. In the case of animal models of demyelinating diseases, it is expected to reproduce a pathological process; conversely the co-cultures are primarily developed to study the myelination process and in the aim to use them to replace animals in experiences of myelin destruction or functional disturbances. We describe (in terms of protein expression kinetic) a new in vitro model of sensory neurons/SC co-cultures presenting the following advantages: both sensory neurons and SC originate from the same individual; sensory neurons and SC being dissociated, they can be co-cultured in monolayer, allowing an easier microscope observation; the co-culture can be maintained in a serum-free medium for at less three months, allowing kinetic studies of myelin formation both at a molecular and cellular level. Optimizing culture conditions permits to use 96-well culture plates; image analyses conducted with an automatic image analyzer allows rapid, accurate and quantitative expression of results. Finally, this system was proved by measuring the apparition of myelin protein to mimic in vitro the physiological process of in vivo myelination.
除了体内模型,利用大鼠背根神经节外植体/施万细胞(SCs)的共培养系统也被广泛用于体外髓鞘形成的基础研究。在脱髓鞘疾病的动物模型中,预期可复制出病理过程;相反,共培养系统主要是为了研究髓鞘形成过程,并希望用它们来代替动物,以进行髓鞘破坏或功能障碍的实验。我们描述了一种新的感觉神经元/SC 共培养体外模型(从蛋白表达动力学方面),具有以下优点:感觉神经元和SCs 均来源于同一个体;感觉神经元和SCs 被解离后,可单层共培养,便于显微镜观察;共培养可在无血清培养基中维持至少三个月,允许在分子和细胞水平上进行髓鞘形成的动力学研究。优化培养条件可使用 96 孔培养板;使用自动图像分析仪进行图像分析可快速、准确和定量地表达结果。最后,该系统通过测量髓鞘蛋白的出现来模拟体外生理的髓鞘形成过程,从而得到验证。