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Novel Applications of Magnetic Cell Sorting to Analyze Cell-Type Specific Gene and Protein Expression in the Central Nervous System

机译:磁性细胞分选技术在中枢神经系统中分析细胞类型特异性基因和蛋白质表达的新应用

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摘要

The isolation and study of cell-specific populations in the central nervous system (CNS) has gained significant interest in the neuroscience community. The ability to examine cell-specific gene and protein expression patterns in healthy and pathological tissue is critical for our understanding of CNS function. Several techniques currently exist to isolate cell-specific populations, each having their own inherent advantages and shortcomings. Isolation of distinct cell populations using magnetic sorting is a technique which has been available for nearly 3 decades, although rarely used in adult whole CNS tissue homogenate. In the current study we demonstrate that distinct cell populations can be isolated in rodents from early postnatal development through adulthood. We found this technique to be amendable to customization using commercially available membrane-targeted antibodies, allowing for cell-specific isolation across development and animal species. This technique yields RNA which can be utilized for downstream applications—including quantitative PCR and RNA sequencing—at relatively low cost and without the need for specialized equipment or fluorescently labeled cells. Adding to its utility, we demonstrate that cells can be isolated largely intact, retaining their processes, enabling analysis of extrasomatic proteins. We propose that magnetic cell sorting will prove to be a highly useful technique for the examination of cell specific CNS populations.
机译:中枢神经系统(CNS)中细胞特异性种群的分离和研究已引起神经科学界的极大兴趣。检查健康和病理组织中细胞特异性基因和蛋白质表达模式的能力对于我们对中枢神经系统功能的理解至关重要。当前存在几种分离细胞特异性种群的技术,每种技术都有其固有的优点和缺点。使用磁选法分离不同细胞群的技术已经使用了近3年,尽管很少在成人的整个CNS组织匀浆中使用。在当前的研究中,我们证明了从出生后早期到成年的啮齿动物中可以分离出不同的细胞群。我们发现该技术可修改为使用可商购的膜靶向抗体进行定制,从而实现跨发育和动物物种的细胞特异性分离。这项技术可以以较低的成本生产出可用于下游应用的RNA,包括定量PCR和RNA测序,而无需专门的设备或荧光标记的细胞。除了其实用性外,我们还展示了可以在很大程度上保持完整的细胞分离过程,保留了其过程,从而能够分析胞外蛋白。我们提出磁性细胞分选将被证明是一种用于检查细胞特异性中枢神经系统种群的非常有用的技术。

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