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Autofluorescence contributes to False-positive intracellular Foxp3 staining in Macrophages: A lesson learned from flow cytometry

机译:自体荧光有助于假阳性Foxp3表达对巨噬细胞染色:一节课从流式细胞学

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摘要

Forkhead box P3 (Foxp3) is well known for its highly restricted expression in T regulatory cells (Tregs). A recent study suggested the existence of a Foxp3 positive macrophage subpopulation in mouse bone marrow, spleen, liver, lymph nodes, and thymus that exhibited immune regulatory effect similar to Tregs. Before this report was retracted, we attempted to study the function of this macrophage subpopulation in a mouse model of hyperlipidemia. Bone marrow and spleen cells isolated from C57BL/6 apo E−/− mice were stained with anti-CD11b, anti-F4/80 and anti-Foxp3 and analyzed by flow cytometry. Our results showed that 3.06–8.08% of CD11b+F4/80+ macrophages from bone marrow cells and 0.24–2.21% from splenic were Foxp3-positive. Unexpectedly, unstained or isotype stained controls also showed strong autofluorescence and similar percentages of these cells fell within the same FL1 channel that counted the anti-Foxp3 stained population. Back gating of the autofluorescent population onto a SSC/FSC plot showed that this population of cells had a higher side scatter. The peritoneal macrophages (PMø) exhibited similar autofluorescence. We used qPCR to further evaluate the expression of Foxp3 mRNA in PMø that were treated with M-CSF, M-CSF+IL-4, M-CSF+TGFβ1 or in BMDM treated with TGFβ1 in the presence of anti-CD3 and CD28 antibody co-stimulators. No expression of Foxp3 mRNA was detected in either cell culture systems, whereas robust Foxp3 gene expression was induced in naïve CD4+ cells stimulated with TGFβ1. Consistent with these findings, fluorescence microscopy showed no Foxp3 protein expression in PMø, however Foxp3 expression was easily detected in induced Tregs. We conclude that the reported expression of Foxp3 in macrophages is likely an artifact and that a stringent multimodality approach is critical to demonstrate candidate gene expression in any cell type.
机译:叉头盒P3(Foxp3)以其在T调节细胞(Tregs)中的高度受限表达而闻名。最近的一项研究表明,小鼠骨髓,脾脏,肝脏,淋巴结和胸腺中存在Foxp3阳性巨噬细胞亚群,其免疫调节作用类似于Tregs。在本报告被撤消之前,我们试图在高脂血症小鼠模型中研究这种巨噬细胞亚群的功能。从C57BL / 6 apo E -/-小鼠分离的骨髓和脾细胞用抗CD11b,抗F4 / 80和抗Foxp3染色,并通过流式细胞仪进行分析。我们的结果表明,来自骨髓细胞的CD11b + F4 / 80 + 巨噬细胞的3.06–8.08%和脾脏的CD11b <0.24–2.21%是Foxp3阳性的。出乎意料的是,未染色或同种型染色的对照还显示出强烈的自发荧光,并且这些细胞的相似百分比落在计数抗Foxp3染色种群的同一FL1通道内。将自发荧光群体的反向选通显示在SSC / FSC图上,表明该细胞群体具有较高的侧向散射。腹膜巨噬细胞(PMø)表现出相似的自发荧光。我们使用qPCR进一步评估了在用抗CD3和CD28抗体存在的情况下,经M-CSF,M-CSF + IL-4,M-CSF +TGFβ1处理的PMø中或经TGFβ1处理的BMDM中Foxø中Foxp3 mRNA的表达。共同刺激者。在两种细胞培养系统中均未检测到Foxp3 mRNA的表达,而在TGFβ1刺激的幼稚CD4 +细胞中诱导了健壮的Foxp3基因表达。与这些发现一致,荧光显微镜显示PMø中没有Foxp3蛋白表达,但是在诱导的Tregs中很容易检测到Foxp3表达。我们得出的结论是,报道的Foxp3在巨噬细胞中的表达可能是人工产物,并且严格的多模态方法对于证明候选基因在任何细胞类型中的表达都至关重要。

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