Department of Plastic and Hand Surgery, Medical Center - University of Freiburg, Medical Faculty of the University of Freiburg, Freiburg, Germany.
Department of Traumatology, Hand, Plastic, and Reconstructive Surgery, Center of Surgery, University of Ulm, Ulm, Germany.
Front Immunol. 2021 Apr 26;12:641224. doi: 10.3389/fimmu.2021.641224. eCollection 2021.
Monocytes are the third most frequent type of leukocytes in humans, linking innate and adaptive immunity and are critical drivers in many inflammatory diseases. Based on the differential expression of surface antigens, three monocytic subpopulations have been suggested in humans and two in rats with varying inflammatory and phenotype characteristics. Potential intervention strategies that aim to manipulate these cells require an in-depth understanding of monocyte behavior under different conditions. However, monocytes are highly sensitive to their specific activation state and expression of surface markers, which can change during cell isolation and purification. Thus, there is an urgent need for an unbiased functional analysis of activation in monocyte subtypes, which is not affected by the isolation procedure. Here, we present a flow cytometry-based protocol for evaluating subset-specific activation and cytokine expression of circulating blood monocytes both in humans and rats using small whole blood samples (50 - 100 μL). In contrast to previously described monocyte isolation and flow cytometry visualization methods, the presented approach virtually leaves monocyte subsets in a resting state or fixes them in their current state and allows for an unbiased functional endpoint analysis without prior cell isolation. This protocol is a comprehensive tool for studying differential monocyte regulation in the inflammatory and allogeneic immune response and .
单核细胞是人类第三大常见白细胞类型,连接先天免疫和适应性免疫,是许多炎症性疾病的关键驱动因素。基于表面抗原的差异表达,已经在人类中提出了三种单核细胞亚群,在大鼠中提出了两种,具有不同的炎症和表型特征。旨在操纵这些细胞的潜在干预策略需要深入了解不同条件下单核细胞的行为。然而,单核细胞对其特定的激活状态和表面标志物的表达非常敏感,这些标志物在细胞分离和纯化过程中会发生变化。因此,迫切需要一种不受分离程序影响的、对单核细胞亚型激活进行无偏倚功能分析的方法。在这里,我们提出了一种基于流式细胞术的方案,用于使用小全血样本(50-100 μL)评估人类和大鼠循环血液单核细胞的亚群特异性激活和细胞因子表达。与之前描述的单核细胞分离和流式细胞术可视化方法相比,所提出的方法实际上使单核细胞亚群处于静止状态或固定在其当前状态,并允许进行无偏倚的功能终点分析,而无需事先进行细胞分离。该方案是研究炎症和同种异体免疫反应中差异调节单核细胞的综合工具。