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一种微流控分析仪的仪器装置,可用于表征单细胞的比膜电容、细胞质电导率和瞬时杨氏模量。

The Instrumentation of a Microfluidic Analyzer Enabling the Characterization of the Specific Membrane Capacitance, Cytoplasm Conductivity, and Instantaneous Young's Modulus of Single Cells.

作者信息

Wang Ke, Zhao Yang, Chen Deyong, Huang Chengjun, Fan Beiyuan, Long Rong, Hsieh Chia-Hsun, Wang Junbo, Wu Min-Hsien, Chen Jian

机构信息

State Key Laboratory of Transducer Technology, Institute of Electronics, Chinese Academy of Sciences, Beijing 100190, China.

School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Int J Mol Sci. 2017 Jun 19;18(6):1158. doi: 10.3390/ijms18061158.

Abstract

This paper presents the instrumentation of a microfluidic analyzer enabling the characterization of single-cell biophysical properties, which includes seven key components: a microfluidic module, a pressure module, an imaging module, an impedance module, two LabVIEW platforms for instrument operation and raw data processing, respectively, and a Python code for data translation. Under the control of the LabVIEW platform for instrument operation, the pressure module flushes single cells into the microfluidic module with raw biophysical parameters sampled by the imaging and impedance modules and processed by the LabVIEW platform for raw data processing, which were further translated into intrinsic cellular biophysical parameters using the code developed in Python. Based on this system, specific membrane capacitance, cytoplasm conductivity, and instantaneous Young's modulus of three cell types were quantified as 2.76 ± 0.57 μF/cm², 1.00 ± 0.14 S/m, and 3.79 ± 1.11 kPa for A549 cells ( = 202); 1.88 ± 0.31 μF/cm², 1.05 ± 0.16 S/m, and 3.74 ± 0.75 kPa for 95D cells ( = 257); 2.11 ± 0.38 μF/cm², 0.87 ± 0.11 S/m, and 5.39 ± 0.89 kPa for H460 cells ( = 246). As a semi-automatic instrument with a throughput of roughly 1 cell per second, this prototype instrument can be potentially used for the characterization of cellular biophysical properties.

摘要

本文介绍了一种用于表征单细胞生物物理特性的微流控分析仪的仪器装置,它包括七个关键组件:一个微流控模块、一个压力模块、一个成像模块、一个阻抗模块、分别用于仪器操作和原始数据处理的两个LabVIEW平台,以及一个用于数据转换的Python代码。在用于仪器操作的LabVIEW平台的控制下,压力模块将单细胞冲洗到微流控模块中,成像和阻抗模块对原始生物物理参数进行采样,并由用于原始数据处理的LabVIEW平台进行处理,然后使用Python开发的代码将这些参数进一步转换为细胞内在生物物理参数。基于该系统,对三种细胞类型的比膜电容、细胞质电导率和瞬时杨氏模量进行了量化,A549细胞(n = 202)为2.76±0.57 μF/cm²、1.00±0.14 S/m和3.79±1.11 kPa;95D细胞(n = 257)为1.88±0.31 μF/cm²、1.05±0.16 S/m和3.74±0.75 kPa;H460细胞(n = 246)为2.11±0.38 μF/cm²、0.87±0.11 S/m和5.39±0.89 kPa。作为一种半自动仪器,该原型仪器的通量约为每秒1个细胞,可潜在地用于表征细胞生物物理特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eeb/5485982/21b90949514f/ijms-18-01158-g001.jpg

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