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用于非接触式和无光学元件红细胞变形性分析的拉伸流阻抗细胞仪

Extensional-Flow Impedance Cytometer for Contactless and Optics-Free Erythrocyte Deformability Analysis.

作者信息

Reale Riccardo, De Ninno Adele, Nepi Tiziana, Bisegna Paolo, Caselli Federica

出版信息

IEEE Trans Biomed Eng. 2023 Feb;70(2):565-572. doi: 10.1109/TBME.2022.3197214. Epub 2023 Jan 19.

Abstract

OBJECTIVE

Deformability is an essential feature of red blood cells (RBCs), enabling them to undergo significant shape change in response to external forces. Impaired erythrocyte deformability is associated with several pathologic conditions, and quantitative measurement of RBC deformability is critical to understanding and diagnosing RBC related diseases. Whereas traditional approaches to cell mechanical characterization generally have limited throughput, emerging microscale technologies are opening new opportunities for high-throughput deformability cytometry at the single-cell level.

METHODS

In this work, we propose an innovative microfluidic system based on (i) a hyperbolic microchannel to induce erythrocyte deformation by extensional flow, and (ii) an electrical sensing zone with coplanar electrodes to evaluate the deformed cell shape.

RESULTS

RBC deformation under extensional flow is achieved, and the deformed cell shape is quantified by means of an electrical anisotropy index, at a throughput of 300 cell/s. Measurements of healthy and chemically stiffened RBCs demonstrate that the anisotropy index can be used to characterize RBC deformability, as an alternative to deformation indices based on high-speed image processing.

CONCLUSION

A contactless and optics-free approach for RBC deformability analysis has been presented.

SIGNIFICANCE

Due to its simplicity and potential for integration, the proposed approach holds promises for fast and low-cost erythrocyte deformability assays, especially in point-of-care and resource-limited settings.

摘要

目的

可变形性是红细胞(RBC)的一个基本特征,使其能够在外部力的作用下发生显著的形状变化。红细胞可变形性受损与多种病理状况相关,对红细胞可变形性进行定量测量对于理解和诊断与红细胞相关的疾病至关重要。传统的细胞力学特性表征方法通常通量有限,而新兴的微尺度技术为单细胞水平的高通量可变形性细胞术带来了新机遇。

方法

在这项工作中,我们提出了一种创新的微流控系统,该系统基于(i)一个双曲线微通道,通过拉伸流诱导红细胞变形,以及(ii)一个带有共面电极的电传感区,以评估变形后的细胞形状。

结果

在拉伸流下实现了红细胞变形,并通过电各向异性指数对变形后的细胞形状进行了量化,通量为每秒300个细胞。对健康和化学硬化的红细胞的测量表明,各向异性指数可用于表征红细胞可变形性,作为基于高速图像处理的变形指数的替代方法。

结论

提出了一种用于红细胞可变形性分析的非接触且无光学的方法。

意义

由于其简单性和集成潜力,所提出的方法有望实现快速且低成本的红细胞可变形性检测,特别是在即时护理和资源有限的环境中。

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