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Whose Gene Is It Anyway? The Effect of Preparation Purity on Neutrophil Transcriptome Studies

机译:反正是谁的基因?制备纯度对中性粒细胞转录组研究的影响

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摘要

Protocols for the isolation of neutrophils from whole blood often result in neutrophil preparations containing low numbers (~5%) of contaminating leukocytes, and it is possible that these contaminating cells contribute to highly sensitive assays that measure neutrophil gene expression (e.g. qPCR). We investigated the contribution of contaminating leukocytes on the transcriptome profile of human neutrophils following stimulation with inflammatory cytokines (GM-CSF, TNFα), using RNA-Seq. Neutrophils were isolated using Polymorphprep or the StemCell untouched neutrophil isolation kit (negative selection of “highly pure” neutrophils). The level of contamination was assessed by morphology and flow cytometry. The major source of contamination in Polymorphprep neutrophil preparations was from eosinophils and was highly donor dependent. Contaminating cells were largely, but not completely, absent in neutrophil suspensions prepared using negative selection, but the overall yield of neutrophils was decreased by around 50%. RNA-seq analysis identified only 25 genes that were significantly differentially-expressed between Polymorphprep and negatively-selected neutrophils across all three treatment groups (untreated, GM-CSF, TNFα). The expression levels of 34 cytokines/chemokines both before and after GM-CSF or TNFα treatment were not significantly different between neutrophil isolation methods and therefore not affected by contributions from non-neutrophil cell types. This work demonstrates that low numbers (<5%) of contaminating leukocytes in neutrophil preparations contribute very little to the overall gene expression profile of cytokine-stimulated neutrophils, and that protocols for the isolation of highly pure neutrophils result in significantly lower yields of cells which may hinder investigations where large numbers of cells are required or where volumes of blood are limited.
机译:从全血中分离嗜中性粒细胞的方案通常会导致嗜中性粒细胞制剂中含有少量(〜5%)污染白细胞,这些污染细胞可能有助于测量嗜中性粒细胞基因表达的高灵敏度检测(例如qPCR)。我们使用RNA-Seq研究了炎症细胞因子(GM-CSF,TNFα)刺激后,污染的白细胞对人类嗜中性粒细胞转录组谱的影响。使用Polymorphprep或StemCell未接触的嗜中性粒细胞分离试剂盒(“高纯度”嗜中性粒细胞的阴性选择)分离嗜中性粒细胞。通过形态学和流式细胞仪评估污染水平。 Polymorphprep中性粒细胞制剂的主要污染来源是嗜酸性粒细胞,并且高度依赖供体。使用阴性选择制备的嗜中性粒细胞悬液中大部分(但不完全)不存在污染细胞,但嗜中性粒细胞的总产率降低了约50%。 RNA-seq分析仅鉴定了在所有三个治疗组(未治疗,GM-CSF,TNFα)中,Polymorphprep和阴性选择的嗜中性粒细胞之间显着差异表达的25个基因。 GM-CSF或TNFα治疗前后34种细胞因子/趋化因子的表达水平在嗜中性粒细胞分离方法之间无显着差异,因此不受非嗜中性细胞类型的影响。这项工作表明,嗜中性粒细胞制剂中的污染白细胞数量少(<5%)对细胞因子刺激的嗜中性粒细胞的整体基因表达谱的贡献很小,并且分离高纯度嗜中性粒细胞的方案导致细胞产量显着降低,在需要大量细胞或血液有限的地方,可能会妨碍研究。

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