Gingras Marie, Gagnon Vicky, Minotti Sandra, Durham Heather D, Berthod François
Laboratoire d'Organogénèse Expérimentale (LOEX), Centre hospitalier affilié universitaire de Québec, Hôpital du Saint-Sacrement and Département de chirurgie, Faculté de médecine, Université Laval, Québec, Canada G1S 4L8.
J Neurosci Methods. 2007 Jun 15;163(1):111-8. doi: 10.1016/j.jneumeth.2007.02.024. Epub 2007 Mar 7.
Neuron-glial interactions are important in development of the nervous system and pathogenesis of disease. Primary cell cultures prepared from nervous tissue are often used to study the properties of individual cell types and how they interact with each other. Isolation of pure populations of cells and their culture is challenging, particularly from murine spinal cord. The purpose of this study was to optimize various protocols to achieve efficient, parallel isolation and purification of primary motor neurons, microglia and astrocytes from the same mouse embryonic spinal cord sample. Following dissociation of E12 embryonic spinal cords, motor neurons were isolated at 97% purity by a single step centrifugation of the cell suspension through multiple discontinuous density gradients of NycoPrep. The residual mixed cell pellet was resuspended and cultured for 2 weeks. Mixed cultures were then shaken to release microglia, which were then harvested from the medium and subjected to another round of differential adhesion to achieve 99% purity. The astrocytes remaining in the mixed cultures were culled to 98% purity by treatment with leucine methyl ester and a subsequent vigorous shaking step to remove any remaining microglia and neurons. Furthermore, no cross contamination was observed in the glial cultures. This technique provides a simple, convenient, and reliable method of obtaining highly purified preparations of motor neurons, microglia and astrocytes from embryonic spinal cord for the study of spinal cord cell biology and motor neuron diseases.
神经元与神经胶质细胞的相互作用在神经系统发育和疾病发病机制中具有重要意义。从神经组织制备的原代细胞培养物常用于研究单个细胞类型的特性以及它们之间的相互作用方式。分离纯细胞群体并进行培养具有挑战性,尤其是从小鼠脊髓中分离。本研究的目的是优化各种方案,以实现从同一小鼠胚胎脊髓样本中高效、并行地分离和纯化初级运动神经元、小胶质细胞和星形胶质细胞。在解离E12胚胎脊髓后,通过将细胞悬液通过多个不连续的NycoPrep密度梯度进行一步离心,以97%的纯度分离出运动神经元。将剩余的混合细胞沉淀重悬并培养2周。然后摇晃混合培养物以释放小胶质细胞,接着从小胶质细胞培养基中收获,并进行另一轮差异黏附以达到99%的纯度。通过用亮氨酸甲酯处理并随后剧烈摇晃步骤以去除任何残留的小胶质细胞和神经元,将混合培养物中剩余的星形胶质细胞纯度提高到98%。此外,在胶质细胞培养物中未观察到交叉污染。该技术提供了一种简单、方便且可靠的方法,可从胚胎脊髓中获得高度纯化的运动神经元、小胶质细胞和星形胶质细胞制剂,用于脊髓细胞生物学和运动神经元疾病的研究。