Marek Ryan, Caruso Michael, Rostami Abdolmohamad, Grinspan Judith B, Das Sarma Jayasri
Department of Neurology, School of Medicine, Thomas Jefferson University, Philadelphia, PA 19107, USA.
J Neurosci Methods. 2008 Oct 30;175(1):108-18. doi: 10.1016/j.jneumeth.2008.08.016. Epub 2008 Aug 20.
Pathologically altered functions of astrocytes and microglia play a pivotal role in diseases of the central nervous system (CNS). The complexity of the CNS makes it difficult to determine the function of individual glial cells in vivo. Insight into the role of individual glial cell function lies in their successful isolation and purification to maintain phenotype and realistically mimic in vivo conditions. To facilitate such experiments we have designed a single-step glial cell isolation procedure based on antigen antibody-mediated magnetic cell sorting whereby individual glial cell populations are enriched by positive selection or by depletion from the same mixed glial culture. We removed oligodendroglial contamination from mixed glial culture by antibody-mediated cytolysis, and applied the remaining cells to CD11b MicroBeads in a magnetic field. From the CD11b column we isolated microglia by positive selection and astrocytes by depleting microglia. Microglia isolated by positive selection were >99% pure and free from astrocytes, while astrocytes collected by negative selection were 95-97% pure and completely free from microglia. This modified technique is simple, fast, versatile, convenient and reliable for the isolation of individual glial cell populations from single mixed glial cultures based on cell-specific antigen-antibody interaction. Subsequently, these cultures can be applied to study the function of individual glial cells at the morphological and molecular level during normal and pathological condition.
星形胶质细胞和小胶质细胞的病理功能改变在中枢神经系统(CNS)疾病中起关键作用。CNS的复杂性使得在体内确定单个胶质细胞的功能变得困难。深入了解单个胶质细胞功能的关键在于成功分离和纯化它们,以维持其表型并逼真地模拟体内条件。为便于进行此类实验,我们设计了一种基于抗原抗体介导的磁性细胞分选的单步胶质细胞分离程序,通过阳性选择或从同一混合胶质细胞培养物中去除细胞来富集单个胶质细胞群体。我们通过抗体介导的细胞溶解从混合胶质细胞培养物中去除少突胶质细胞污染,并将剩余细胞置于磁场中的CD11b微珠上。我们通过阳性选择从CD11b柱中分离出小胶质细胞,并通过去除小胶质细胞来分离星形胶质细胞。通过阳性选择分离的小胶质细胞纯度>99%,且无星形胶质细胞污染,而通过阴性选择收集的星形胶质细胞纯度为95-97%,且完全无小胶质细胞污染。这种改良技术基于细胞特异性抗原-抗体相互作用,从单一混合胶质细胞培养物中分离单个胶质细胞群体,具有简单、快速、通用、方便和可靠的特点。随后,这些培养物可用于在正常和病理条件下研究单个胶质细胞在形态和分子水平上的功能。