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High-throughput single-cell rheology in complex samples by dynamic real-time deformability cytometry

机译:动态实时可变形流式细胞仪检测复杂样品中的高通量单细胞流变学

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摘要

In life sciences, the material properties of suspended cells have attained significance close to that of fluorescent markers but with the advantage of label-free and unbiased sample characterization. Until recently, cell rheological measurements were either limited by acquisition throughput, excessive post processing, or low-throughput real-time analysis. Real-time deformability cytometry expanded the application of mechanical cell assays to fast on-the-fly phenotyping of large sample sizes, but has been restricted to single material parameters as the Young’s modulus. Here, we introduce dynamic real-time deformability cytometry for comprehensive cell rheological measurements at up to 100 cells per second. Utilizing Fourier decomposition, our microfluidic method is able to disentangle cell response to complex hydrodynamic stress distributions and to determine viscoelastic parameters independent of cell shape. We demonstrate the application of our technology for peripheral blood cells in whole blood samples including the discrimination of B- and CD4+ T-lymphocytes by cell rheological properties.
机译:在生命科学中,悬浮细胞的材料特性已接近荧光标记物,但具有无标记和无偏见样品表征的优势。直到最近,细胞流变学测量还是受到采集通量,过多的后处理或低通量实时分析的限制。实时可变形流式细胞术将机械细胞分析的应用扩展到了大样本量的快速动态表型化,但仅限于单一材料参数,如杨氏模量。在这里,我们介绍动态实时可变形性细胞术,以每秒100个细胞的速度进行全面的细胞流变学测量。利用傅立叶分解,我们的微流体方法能够解开细胞对复杂流体动力应力分布的响应,并确定与细胞形状无关的粘弹性参数。我们展示了我们的技术在全血样品中外周血细胞中的应用,包括通过细胞流变学性质区分B-和CD4 + T淋巴细胞。

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