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Studying Cell Rolling Trajectories on Asymmetric Receptor Patterns

机译:研究非对称受体模式下的细胞滚动轨迹

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摘要

Lateral displacement of cells orthogonal to a flow stream by rolling on asymmetric receptor patterns presents an opportunity for development of new devices for label-free separation and analysis of cells1. Such devices may use lateral displacement for continuous-flow separation, or receptor patterns that modulate adhesion to distinguish between different cell phenotypes or levels of receptor expression. Understanding the nature of cell rolling trajectories on receptor-patterned substrates is necessary for engineering of the substrates and design of such devices.Here, we demonstrate a protocol for studying cell rolling trajectories on asymmetric receptor patterns that support cell rolling adhesion2. Well-defined, μm-scale patterns of P-selectin receptors were fabricated using microcontact printing on gold-coated slides that were incorporated in a flow chamber. HL60 cells expressing the PSGL-1 ligand 3were flowed across a field of patterned lines and visualized on an inverted bright field microscope. The cells rolled and tracked along the inclined edges of the patterns, resulting in lateral deflection1. Each cell typically rolled for a certain distance along the pattern edges (defined as the edge tracking length), detached from the edge, and reattached to a downstream pattern. Although this detachment makes it difficult to track the entire trajectory of a cell from entrance to exit in the flow chamber, particle-tracking software was used to analyze and yield the rolling trajectories of the cells during the time when they were moving on a single receptor-patterned line. The trajectories were then examined to obtain distributions of cell rolling velocities and the edge tracking lengths for each cell for different patterns.This protocol is useful for quantifying cell rolling trajectories on receptor patterns and relating these to engineering parameters such as pattern angle and shear stress. Such data will be useful for design of microfluidic devices for label-free cell separation and analysis.
机译:通过在不对称的受体模式上滚动,使与流动流正交的细胞横向位移为开发新的设备提供了机会,该新设备用于无标记的细胞分离和分析 1 。这样的装置可以使用横向位移进行连续流分离,或者使用调节粘附的受体模式来区分不同的细胞表型或受体表达水平。了解受体图案基底上的细胞滚动轨迹的性质对于设计基底和设计此类设备是必不可少的。在这里,我们展示了一种研究不对称受体图案上的细胞滚动轨迹的协议,该协议支持细胞滚动粘附 2 < / sup>。 P-选择素受体的清晰定义的μm级图案是通过微接触印刷在并入流动室的镀金载玻片上制成的。表达PSGL-1配体 3 的HL60细胞流过图案化的线条区域,并在倒置的明场显微镜下可视化。单元格沿着图案的倾斜边缘滚动和跟踪,导致横向偏向 1 。每个单元通常沿图案边缘滚动一定距离(定义为边缘跟踪长度),从边缘分离,然后重新附着到下游图案。尽管这种分离使得很难跟踪细胞在流动室中从入口到出口的整个轨迹,但使用粒子跟踪软件来分析并得出细胞在单个受体上移动期间的滚动轨迹图案的线。然后检查轨迹,以获得不同模式下每个单元格的细胞滚动速度分布和边缘跟踪长度。该协议可用于量化受体模式上的细胞滚动轨迹,并将其与工程参数(例如模式角和剪切应力)相关联。这样的数据对于设计用于无标记细胞分离和分析的微流体装置将是有用的。

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