Christian Doppler Laboratory for Innovative Therapy Approaches in Sepsis, Department for Biomedical Research, Danube University Krems, Krems, Austria.
Core Facility Flow Cytometry & Surgical Research Laboratories, Medical University of Vienna, Vienna, Austria.
Biochem Biophys Res Commun. 2019 Oct 1;517(4):709-714. doi: 10.1016/j.bbrc.2019.07.120. Epub 2019 Aug 3.
Human monocytes include CD14CD16 (classical), CD14CD16 (intermediate), and CD14CD16 (non-classical) subsets with divergent roles in immune regulation and inflammation. Since the functional characterization of monocyte subsets is most commonly performed using isolated monocytes, we investigated the influence of different monocyte isolation protocols on the relative abundance of monocyte subsets. Using flow cytometric subset characterization directly in whole blood as a reference, we found that monocyte isolation by enrichment of peripheral blood mononuclear cells and subsequent depletion of non-monocytes by magnetic labeling did not alter the distribution of monocyte subsets. Particularly, we failed to detect a loss of CD16 subsets upon monocyte isolation, although one of the negative depletion protocols used contained an anti-CD16 antibody to label granulocytes. Overnight storage of isolated monocytes induced a significant repartition of monocyte subsets towards CD14CD16 intermediate monocytes, which was barely seen in stored whole blood. We identified intermediate monocytes as main binding partners of platelet-derived extracellular vesicles (EVs) and propose that residual platelets contained in isolated monocyte preparations release EVs that induce the expression of the IgG receptor FcγRIII (CD16) on monocytes.
人类单核细胞包括 CD14CD16(经典型)、CD14CD16(中间型)和 CD14CD16(非经典型)亚群,它们在免疫调节和炎症中具有不同的作用。由于单核细胞亚群的功能特征通常是使用分离的单核细胞来进行表征的,因此我们研究了不同的单核细胞分离方案对单核细胞亚群相对丰度的影响。我们使用流式细胞术直接在全血中对亚群特征进行了分类,作为参考,发现通过富集外周血单核细胞并随后通过磁性标记去除非单核细胞来分离单核细胞不会改变单核细胞亚群的分布。特别是,尽管使用的一种阴性去除方案包含标记粒细胞的抗 CD16 抗体,但我们未能检测到单核细胞分离后 CD16 亚群的丢失。分离的单核细胞的过夜储存会导致单核细胞亚群向 CD14CD16 中间型单核细胞显著重新分布,而在储存的全血中几乎看不到这种情况。我们将中间型单核细胞鉴定为血小板衍生的细胞外囊泡(EVs)的主要结合伴侣,并提出分离的单核细胞制剂中残留的血小板释放 EVs,诱导单核细胞上 IgG 受体 FcγRIII(CD16)的表达。