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三维细胞电旋转和成像技术用于测量多种细胞生物物理特性。

3D cell electrorotation and imaging for measuring multiple cellular biophysical properties.

机构信息

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

出版信息

Lab Chip. 2018 Aug 7;18(16):2359-2368. doi: 10.1039/c8lc00407b.

Abstract

3D rotation is one of many fundamental manipulations to cells and imperative in a wide range of applications in single cell analysis involving biology, chemistry, physics and medicine. In this article, we report a dielectrophoresis-based, on-chip manipulation method that can load and rotate a single cell for 3D cell imaging and multiple biophysical property measurements. To achieve this, we trapped a single cell in constriction and subsequently released it to a rotation chamber formed by four sidewall electrodes and one transparent bottom electrode. In the rotation chamber, rotating electric fields were generated by applying appropriate AC signals to the electrodes for driving the single cell to rotate in 3D under control. The rotation spectrum for in-plane rotation was used to extract the cellular dielectric properties based on a spherical single-shell model, and the stacked images of out-of-plane cell rotation were used to reconstruct the 3D cell morphology to determine its geometric parameters. We have tested the capabilities of our method by rotating four representative mammalian cells including HeLa, C3H10, B lymphocyte, and HepaRG. Using our device, we quantified the area-specific membrane capacitance and cytoplasm conductivity for the four cells, and revealed the subtle difference of geometric parameters (i.e., surface area, volume, and roughness) by 3D cell imaging of cancer cells and normal leukocytes. Combining microfluidics, dielectrophoresis, and microscopic imaging techniques, our electrorotation-on-chip (EOC) technique is a versatile method for manipulating single cells under investigation and measuring their multiple biophysical properties.

摘要

3D 旋转是对细胞进行的众多基本操作之一,在涉及生物学、化学、物理学和医学的单细胞分析的广泛应用中是必不可少的。在本文中,我们报告了一种基于介电泳的、片上的操纵方法,该方法可以加载和旋转单个细胞,用于 3D 细胞成像和多种生物物理特性测量。为了实现这一点,我们将单个细胞捕获在收缩区域中,然后将其释放到由四个侧壁电极和一个透明底部电极形成的旋转室中。在旋转室中,通过向电极施加适当的交流信号来产生旋转电场,以控制单个细胞在 3D 中旋转。基于球形单壳模型,使用平面内旋转的旋转频谱来提取细胞介电特性,并且使用细胞旋转的离轴堆叠图像来重建 3D 细胞形态以确定其几何参数。我们通过旋转包括 HeLa、C3H10、B 淋巴细胞和 HepaRG 在内的四种代表性哺乳动物细胞来测试我们方法的能力。使用我们的设备,我们量化了四种细胞的面积特异性膜电容和细胞质电导率,并通过对癌细胞和正常白细胞进行 3D 细胞成像,揭示了几何参数(即表面积、体积和粗糙度)的细微差异。结合微流控、介电泳和显微镜成像技术,我们的片上电旋转(EOC)技术是一种用于操纵研究中的单个细胞和测量其多种生物物理特性的多功能方法。

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