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评估细胞大小脂质体的阻抗流式细胞术的准确性。

Evaluating the Accuracy of Impedance Flow Cytometry with Cell-Sized Liposomes.

机构信息

State Key Laboratory of Precision Measurement Technology and Instrument, Department of Precision Instrument, Tsinghua University, Beijing 100084, P. R. China.

School of Pharmaceutical Sciences, Tsinghua University, Beijing 100084, P. R. China.

出版信息

ACS Sens. 2023 Jul 28;8(7):2681-2690. doi: 10.1021/acssensors.3c00533. Epub 2023 Jun 22.

Abstract

Electrical properties of single cells are important label-free biomarkers of disease and immunity. At present, impedance flow cytometry (IFC) provides important means for high throughput characterization of single-cell electrical properties. However, the accuracy of the spherical single-shell electrical model widely used in IFC has not been well evaluated due to the lack of reliable and reproducible single-shell model particles with true-value electrical parameters as benchmarks. Herein, a method is proposed to evaluate the accuracy of the single-cell electrical model with cell-sized unilamellar liposomes synthesized through double emulsion droplet microfluidics. The influence of three key dimension parameters (i.e., the measurement channel width , height , and electrode gap ) in the single-cell electrical model were evaluated through experiment. It was found that the relative error of the electrical intrinsic parameters measured by IFC is less than 10% when the size of the sensing zone is close to the measured particles. It further reveals that has the greatest influence on the measurement accuracy, and the maximum relative error can reach ∼30%. Error caused by is slightly larger than . This provides a solid guideline for the design of IFC measurement system. It is envisioned that this method can advance further improvement of IFC and accurate electrical characterization of single cells.

摘要

细胞的电学特性是疾病和免疫的重要无标记生物标志物。目前,阻抗流动细胞术(IFC)为高通量表征单细胞电学特性提供了重要手段。然而,由于缺乏具有真实电学参数的可靠且可重复的单壳模型颗粒作为基准,IFC 中广泛使用的球形单壳电模型的准确性尚未得到很好的评估。本文提出了一种通过双乳液液滴微流控技术合成细胞大小的单分子层脂质体来评估单细胞电模型准确性的方法。通过实验评估了单细胞电模型中的三个关键尺寸参数(即测量通道宽度、高度和电极间隙)的影响。结果发现,当传感区尺寸接近被测颗粒时,IFC 测量的电学固有参数的相对误差小于 10%。进一步表明 对测量精度的影响最大,最大相对误差可达约 30%。 引起的误差略大于 。这为 IFC 测量系统的设计提供了坚实的指导。可以预见,该方法将进一步推动 IFC 的改进和单细胞的精确电学特性分析。

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