Recent Advances in Microfluidic Impedance Detection: Principle, Design and Applications

被引:0
作者
Shen, Yigang [1 ]
Wang, Zhenxiao [1 ]
Ren, Tingyu [1 ]
Wen, Jianming [1 ,2 ]
Li, Jianping [1 ]
Tang, Tao [3 ]
机构
[1] Zhejiang Normal Univ, Inst Precis Machinery & Smart Struct, Coll Engn, Jinhua 321004, Peoples R China
[2] Zhejiang Normal Univ, Coll Math Med, Jinhua 321004, Peoples R China
[3] Chongqing Univ, Chongqing Gen Hosp, Dept Neurosurg, Chongqing 401147, Peoples R China
基金
中国国家自然科学基金;
关键词
microfluidics; impedance; cell equivalent circuits; single cell; SYSTEMS; PCR;
D O I
10.3390/mi16060683
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Under the dual drivers of precision medicine development and health monitoring demands, the development of real-time biosensing technologies has emerged as a key breakthrough in the field of life science analytics. Microfluidic impedance detection technology, achieved through the integration of microscale fluid manipulation and bioimpedance spectrum analysis, has enabled the real-time monitoring of biological samples ranging from single cells to organ-level systems, now standing at the forefront of biological real-time detection research. This review systematically summarizes the core principles of microfluidic impedance detection technology, modeling methods for cell equivalent circuits, system optimization strategies, and recent research advancements in biological detection applications. We first elucidate the fundamental principles of microfluidic impedance detection technologies, followed by a comprehensive analysis of cellular equivalent circuit model construction and microfluidic system design optimization strategies. Subsequently, we categorize applications based on biological sample types, elaborating on respective research progress and existing challenges. This review concludes with prospective insights into future developmental trajectories. We hope this work will provide novel research perspectives for advancing microfluidic impedance detection technology while stimulating interdisciplinary collaboration among researchers in biology, medicine, chemistry, and physics to propel technological innovation collectively.
引用
收藏
页数:26
相关论文
共 76 条
[51]   Continuous 3D particles manipulation based on cooling thermal convection [J].
Shen, Yigang ;
Yuan, Yapeng ;
Tang, Tao ;
Ota, Nobutoshi ;
Tanaka, Nobuyuki ;
Hosokawa, Yoichiroh ;
Yalikun, Yaxiaer ;
Tanaka, Yo .
SENSORS AND ACTUATORS B-CHEMICAL, 2022, 358
[52]   Area cooling enables thermal positioning and manipulation of single cells [J].
Shen, Yigang ;
Yalikun, Yaxiaer ;
Aishan, Yusufu ;
Tanaka, Nobuyuki ;
Satob, Asako ;
Tanaka, Yo .
LAB ON A CHIP, 2020, 20 (20) :3733-3743
[53]   Recent advances in microfluidic cell sorting systems [J].
Shen, Yigang ;
Yalikun, Yaxiaer ;
Tanaka, Yo .
SENSORS AND ACTUATORS B-CHEMICAL, 2019, 282 :268-281
[54]   Analytical electric field and sensitivity analysis for two microfluidic impedance cytometer designs [J].
Sun, T. ;
Green, N. G. ;
Gawad, S. ;
Morgan, H. .
IET NANOBIOTECHNOLOGY, 2007, 1 (05) :69-79
[55]   Discrimination of tumor cell type based on cytometric detection of dielectric properties [J].
Tang, Dezhi ;
Jiang, Lin ;
Xiang, Nan ;
Ni, Zhonghua .
TALANTA, 2022, 246
[56]   Parallel Impedance Cytometry for Real-Time Screening of Bacterial Single Cells from Nano- to Microscale [J].
Tang, Tao ;
Liu, Xun ;
Yuan, Yapeng ;
Zhang, Tianlong ;
Kiya, Ryota ;
Yang, Yang ;
Yamazaki, Yoichi ;
Kamikubo, Hironari ;
Tanaka, Yo ;
Li, Ming ;
Hosokawa, Yoichiroh ;
Yalikun, Yaxiaer .
ACS SENSORS, 2022, 7 (12) :3700-3709
[57]   Dual-frequency impedance assays for intracellular components in microalgal cells [J].
Tang, Tao ;
Liu, Xun ;
Yuan, Yapeng ;
Kiya, Ryota ;
Shen, Yigang ;
Zhang, Tianlong ;
Suzuki, Kengo ;
Tanaka, Yo ;
Li, Ming ;
Hosokawa, Yoichiroh ;
Yalikun, Yaxiaer .
LAB ON A CHIP, 2022, 22 (03) :550-559
[58]   Microscopic impedance cytometry for quantifying single cell shape [J].
Tang, Tao ;
Liu, Xun ;
Kiya, Ryota ;
Shen, Yigang ;
Yuan, Yapeng ;
Zhang, Tianlong ;
Suzuki, Kengo ;
Tanaka, Yo ;
Li, Ming ;
Hosokawa, Yoichiroh ;
Yalikun, Yaxiaer .
BIOSENSORS & BIOELECTRONICS, 2021, 193
[59]   GAS-CHROMATOGRAPHIC AIR ANALYZER FABRICATED ON A SILICON-WAFER [J].
TERRY, SC ;
JERMAN, JH ;
ANGELL, JB .
IEEE TRANSACTIONS ON ELECTRON DEVICES, 1979, 26 (12) :1880-1886
[60]   A novel microfluidic chip based on an impedance-enhanced electrochemical immunoassay [J].
Tsai, Sung-Lin ;
Wey, Jiunn-Jye ;
Lai, Szu-Chia ;
Huang, Yu-Yin .
PHYSICS OF FLUIDS, 2025, 37 (01)