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An efficient method to isolate Kupffer cells eliminating endothelial cell contamination and selective bias

机译:一种有效的分离库普弗细胞的方法可消除内皮细胞污染和选择性偏倚

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摘要

Multicolor flow cytometry and cell sorting are powerful immunologic tools for the study of hepatic mϕ, yet there is no consensus on the optimal method to prepare liver homogenates for these analyses. Using a combination of mϕ and endothelial cell reporter mice, flow cytometry, and confocal imaging, we have shown that conventional flow‐cytometric strategies for identification of Kupffer cells (KCs) leads to inclusion of a significant proportion of CD31hi endothelial cells. These cells were present regardless of the method used to prepare cells for flow cytometry and represented endothelium tightly adhered to remnants of KC membrane. Antibodies to endothelial markers, such as CD31, were vital for their exclusion. This result brings into focus recently published microarray datasets that identify high expression of endothelial cell‐associated genes by KCs compared with other tissue‐resident mϕ. Our studies also revealed significant and specific loss of KCs among leukocytes with commonly used isolation methods that led to enrichment of proliferating and monocyte‐derived mϕ. Hence, we present an optimal method to generate high yields of liver myeloid cells without bias for cell type or contamination with endothelial cells.
机译:多色流式细胞术和细胞分选是研究肝mϕ的强大免疫学工具,但对于制备用于这些分析的肝匀浆的最佳方法尚无共识。通过结合使用mϕ和内皮细胞报告基因小鼠,流式细胞术和共聚焦成像,我们已经发现,用于鉴定库普弗细胞(KCs)的常规流式细胞术策略会导致包含大量CD31 hi 内皮细胞。这些细胞的存在与使用流式细胞术制备细胞的方法无关,都表示内皮细胞紧密粘附在KC膜的残留物中。内皮标记物(例如CD31)的抗体对其排斥至关重要。该结果成为近期发表的微阵列数据集的焦点,该数据集可确定与其他组织驻留mϕ相比,KCs可以高效表达内皮细胞相关基因。我们的研究还显示,通过常用的分离方法,白细胞中KC的显着和特定损失可导致增殖和单核细胞来源的mϕ富集。因此,我们提出了一种最佳方法来产生高产量的肝髓样细胞,而不会偏向细胞类型或被内皮细胞污染。

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