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细胞分离后白细胞上趋化因子受体表达的选择性丧失。

Selective loss of chemokine receptor expression on leukocytes after cell isolation.

机构信息

Department of Immunology, Institut Recerca Hospital de Sant Pau, Barcelona, Spain.

出版信息

PLoS One. 2012;7(3):e31297. doi: 10.1371/journal.pone.0031297. Epub 2012 Mar 5.

Abstract

Chemokine receptors are distinctively exposed on cells to characterize their migration pattern. However, little is known about factors that may regulate their expression. To determine the optimal conditions for an accurate analysis of chemokine receptors, we compared the expression of CCR2, CCR4, CCR5, CCR6, CXCR3 and CXCR4 on different leukocyte subsets using whole blood (WB) plus erythrocyte lysis and density gradient isolation (Ficoll). Most WB monocytes were CCR2+ (93.5 ± 2.9%) whereas 32.8 ± 6.0% of monocytes from Ficoll-PBMC expressed CCR2 (p<0.001). Significant reductions of CCR6 and CXCR3 on monocytes were also observed after Ficoll isolation (WB: 46.4 ± 7.5% and 57.1 ± 5.5%; Ficoll: 29.5 ± 2.2% and 5.4 ± 4.3% respectively) (p<0.01). Although comparable percentages of WB and Ficoll-PBMC monocytes expressed CCR4, CCR5 and CXCR4, Ficoll isolation significantly reduced the levels of CXCR4 (WB: MFI 5 ± 0.4 and Ficoll: MFI 3.3 ± 0.1) (p<0.05). Similarly to monocytes, CCR2, CXCR3 and CXCR4 were also reduced on lymphocytes. In addition, Ficoll isolation significantly reduced the percentage of CCR4 positive lymphocytes (WB: 90.2 ± 4.5% and Ficoll: 55 ± 4.1%) (p<0.01). The loss of expression of chemokine receptors after isolation of monocytes was not dependent on either the anticoagulant or the density gradient method. It was irreversible and could not be restored by LPS activation or in vitro macrophage differentiation. Experiments tagged with anti-CCR2 antibodies prior to density gradient isolation demonstrated that Ficoll internalized chemokine receptors. The method for cell isolation may alter not only the expression of certain chemokine receptors but also the respective functional migration assay. The final choice to analyze their expression should therefore depend on the receptor to be measured.

摘要

趋化因子受体在细胞表面的独特表达模式决定了其迁移特征。然而,调控其表达的因素仍知之甚少。为了确定准确分析趋化因子受体的最佳条件,我们比较了全血(WB)加红细胞裂解和密度梯度分离(Ficoll)后不同白细胞亚群上 CCR2、CCR4、CCR5、CCR6、CXCR3 和 CXCR4 的表达。大多数 WB 单核细胞为 CCR2+(93.5±2.9%),而 Ficoll-PBMC 中的单核细胞有 32.8±6.0%表达 CCR2(p<0.001)。Ficoll 分离后也观察到 CCR6 和 CXCR3 在单核细胞上的显著减少(WB:46.4±7.5%和 57.1±5.5%;Ficoll:29.5±2.2%和 5.4±4.3%)(p<0.01)。虽然 WB 和 Ficoll-PBMC 单核细胞上表达 CCR4、CCR5 和 CXCR4 的百分比相当,但 Ficoll 分离显著降低了 CXCR4 的水平(WB:MFI 5±0.4,Ficoll:MFI 3.3±0.1)(p<0.05)。与单核细胞类似,CCR2、CXCR3 和 CXCR4 在淋巴细胞上也减少了。此外,Ficoll 分离显著降低了 CCR4 阳性淋巴细胞的百分比(WB:90.2±4.5%,Ficoll:55±4.1%)(p<0.01)。单核细胞分离后趋化因子受体表达的丧失既不依赖于抗凝剂,也不依赖于密度梯度方法。这种丧失是不可逆的,不能通过 LPS 激活或体外巨噬细胞分化来恢复。在密度梯度分离前用抗 CCR2 抗体标记的实验表明,Ficoll 内化了趋化因子受体。细胞分离方法不仅会改变某些趋化因子受体的表达,还会改变各自的功能迁移试验。因此,分析其表达的最终选择应取决于要测量的受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f59f/3293867/9efb2e050b6d/pone.0031297.g001.jpg

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