Laboratory of Immunoengineering, Department Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Eindhoven, The Netherlands.
Sci Rep. 2021 Aug 24;11(1):17084. doi: 10.1038/s41598-021-96609-9.
Cytotoxicity is a vital effector mechanism used by immune cells to combat pathogens and cancer cells. While conventional cytotoxicity assays rely on averaged end-point measures, crucial insights on the dynamics and heterogeneity of effector and target cell interactions cannot be extracted, emphasizing the need for dynamic single-cell analysis. Here, we present a fully automated droplet-based microfluidic platform that allowed the real-time monitoring of effector-target cell interactions and killing, allowing the screening of over 60,000 droplets identifying 2000 individual cellular interactions monitored over 10 h. During the course of incubation, we observed that the dynamics of cytotoxicity within the Natural Killer (NK) cell population varies significantly over the time. Around 20% of the total NK cells in droplets showed positive cytotoxicity against paired K562 cells, most of which was exhibited within first 4 h of cellular interaction. Using our single cell analysis platform, we demonstrated that the population of NK cells is composed of individual cells with different strength in their effector functions, a behavior masked in conventional studies. Moreover, the versatility of our platform will allow the dynamic and resolved study of interactions between immune cell types and the finding and characterization of functional sub-populations, opening novel ways towards both fundamental and translational research.
细胞毒性是免疫细胞用来对抗病原体和癌细胞的一种重要效应机制。虽然传统的细胞毒性测定依赖于平均终点测量,但无法提取关于效应器和靶细胞相互作用的动态和异质性的关键见解,这强调了需要进行动态单细胞分析。在这里,我们提出了一种完全自动化的基于液滴的微流控平台,允许实时监测效应器-靶细胞相互作用和杀伤,从而能够筛选超过 60000 个液滴,识别出在 10 小时内监测到的 2000 个单独的细胞相互作用。在孵育过程中,我们观察到自然杀伤 (NK) 细胞群体中的细胞毒性动力学随时间显著变化。在液滴中的总 NK 细胞中约有 20%对配对的 K562 细胞表现出阳性细胞毒性,其中大部分在细胞相互作用的前 4 小时内表现出来。使用我们的单细胞分析平台,我们证明了 NK 细胞群体由具有不同效应功能强度的单个细胞组成,这种行为在常规研究中被掩盖了。此外,我们平台的多功能性将允许对免疫细胞类型之间的相互作用进行动态和解析研究,并发现和表征功能亚群,为基础研究和转化研究开辟新途径。