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DNA-Based Microparticle Tension Sensors (mu TS) for Measuring Cell Mechanics in Non-planar Geometries and for High-Throughput Quantification

机译:基于DNA的微粒张力传感器(MU TS),用于测量非平面几何形状中的电池力学和高通量量化

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摘要

Mechanotransduction, the interplay between physical and chemical signaling, plays vital roles in many biological processes. The state-of-the-art techniques to quantify cell forces employ deformable polymer films or molecular probes tethered to glass substrates. However, the applications of these assays in fundamental and clinical research are restricted by the planar geometry and low throughput of microscopy readout. Herein, we develop a DNA-based microparticle tension sensor, which features a spherical surface and thus allows for investigation of mechanotransduction at curved interfaces. The micron-scale of mu TS enables flow cytometry readout, which is rapid and high throughput. We applied the method to map and measure T-cell receptor forces and platelet integrin forces at 12 and 56 pN thresholds. Furthermore, we quantified the inhibition efficiency of two anti-platelet drugs providing a proof-of-concept demonstration of mu TS to screen drugs that modulate cellular mechanics.
机译:机械传递是物理和化学信号之间的相互作用,在许多生物过程中起着至关重要的作用。量化细胞力的最新技术采用可变形聚合物薄膜或固定在玻璃基板上的分子探针。然而,这些分析在基础和临床研究中的应用受到平面几何结构和显微镜读数低吞吐量的限制。在此,我们开发了一种基于DNA的微粒子张力传感器,该传感器具有球形表面,因此可以研究弯曲界面处的机械感应。微米级的mu-TS使流式细胞仪读数快速、高通量。我们应用该方法绘制并测量12和56 pN阈值下的T细胞受体力和血小板整合素力。此外,我们还量化了两种抗血小板药物的抑制效率,为筛选调节细胞力学的药物提供了概念证明。

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