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Novel Microchip-Based Tools Facilitating Live Cell Imaging and Assessment of Functional Heterogeneity within NK Cell Populations

机译:基于Microchip的新型工具可促进活细胞成像以及NK细胞群体内功能异质性的评估

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摘要

Each individual has a heterogeneous pool of NK cells consisting of cells that may be specialized towards specific functional responses such as secretion of cytokines or killing of tumor cells. Many conventional methods are not fit to characterize heterogeneous populations as they measure the average response of all cells. Thus, there is a need for experimental platforms that provide single cell resolution. In addition, there are transient and stochastic variations in functional responses at the single cell level, calling for methods that allow studies of many events over extended periods of time. This paper presents a versatile microchip platform enabling long-term microscopic studies of individual NK cells interacting with target cells. Each microchip contains an array of microwells, optimized for medium or high-resolution time-lapse imaging of single or multiple NK and target cells, or for screening of thousands of isolated NK-target cell interactions. Individual NK cells confined with target cells in small microwells is a suitable setup for high-content screening and rapid assessment of heterogeneity within populations, while microwells of larger dimensions are appropriate for studies of NK cell migration and sequential interactions with multiple target cells. By combining the chip technology with ultrasonic manipulation, NK and target cells can be forced to interact and positioned with high spatial accuracy within individual microwells. This setup effectively and synchronously creates NK-target conjugates at hundreds of parallel positions in the microchip. Thus, this facilitates assessment of temporal aspects of NK-target cell interactions, e.g., conjugation, immune synapse formation, and cytotoxic events. The microchip platform presented here can be used to effectively address questions related to fundamental functions of NK cells that can lead to better understanding of how the behavior of individual cells add up to give a functional response at the population level.
机译:每个人都有一个由细胞组成的异质性NK细胞池,这些细胞可能专门针对特定的功能反应,例如细胞因子的分泌或杀死肿瘤细胞。许多常规方法不适用于表征异质群体,因为它们测量了所有细胞的平均应答。因此,需要提供单细胞分辨率的实验平台。此外,在单个细胞水平上,功能性反应存在瞬时和随机变化,要求采用允许长时间研究许多事件的方法。本文提出了一种通用的微芯片平台,可以对与靶细胞相互作用的单个NK细胞进行长期的微观研究。每个微芯片均包含微孔阵列,这些微孔针对单个或多个NK和靶细胞的中等或高分辨率延时成像进行了优化,或者用于筛选数千种分离的NK-靶细胞之间的相互作用。限制在小微孔中的靶细胞的单个NK细胞是用于高含量筛选和快速评估种群内异质性的合适设置,而较大尺寸的微孔则适合用于NK细胞迁移以及与多个靶细胞的顺序相互作用的研究。通过将芯片技术与超声操作相结合,可以迫使NK细胞和靶细胞相互作用,并在单个微孔内以高空间精度定位。这种设置可在微芯片中数百个平行位置上有效且同步地创建NK-target缀合物。因此,这有助于评估NK-靶细胞相互作用的时间方面,例如缀合,免疫突触形成和细胞毒性事件。此处介绍的微芯片平台可用于有效解决与NK细胞基本功能有关的问题,从而可以更好地理解单个细胞的行为加起来如何在群体水平上产生功能性反应。

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