3D-Printed Hydrodynamic Focusing Lab-on-a-Chip Device for Impedance Flow Particle Analysis

被引:5
作者
Desagani, Dayananda [1 ]
Kleiman, Shani [1 ]
Zagardan, Teddy [1 ]
Ben-Yoav, Hadar [1 ]
机构
[1] Ben Gurion Univ Negev, Ilse Katz Inst Nanoscale Sci & Technol, Dept Biomed Engn, Nanobioelectron Lab, IL-8410501 Beer Sheva, Israel
关键词
lab-on-a-chip; 3D printing; point-of-care detection; electrochemical impedance spectroscopy; microfluidics; rapid prototyping; fused filament fabrication; flow cytometry; flow focusing; finite element method modeling; SPECTROSCOPY; ELECTRODES; CYTOMETRY;
D O I
10.3390/chemosensors11050283
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Particles analysis, such as cell counting and differentiation, are widely used for the diagnosis and monitoring of several medical conditions, such as during inflammation. Three-dimensional-printed lab-on-a-chip (LOC) devices, which can utilize one of the cell counting methods, can bring this technology to remote locations through its cost-efficient advantages and easy handling. We present a three-dimensional-printed LOC device with integrated electrodes. To overcome the limited resolution of a 3D printer, we utilized a flow-focusing design. We modeled and simulated the mass transfer and flow dynamics in the LOC by incorporating a flow-focusing design and reached an optimal channel diameter of 0.5 mm, resulting in a flow-focusing distance of <60 mu m. We also used electrochemical impedance spectroscopy to enable the dependence of the electrode-solution interface on the flow-focusing properties. Finally, we highlighted the proof-of-concept detection of microspheres (6 mu m diameter), which model biological cells that flow in the channel, by recording the electrochemical impedance at 10 kHz, thus showing the potential of a future point-of-care (POC) device.
引用
收藏
页数:12
相关论文
共 50 条
[1]   A portable 3D-printed lab-on-a-chip device for on-site monitoring of thiamethoxam residue in food samples [J].
Zou, Rubing ;
Yu, Qianyi ;
Wang, Zexiang ;
Yang, Peiyu ;
Zhao, Ying ;
Liu, Yihua ;
Fu, Yan ;
Guo, Yirong .
FOOD CHEMISTRY, 2025, 486
[2]   Biotinylated Photopolymers for 3D-Printed Unibody Lab-on-a-Chip Optical Platforms [J].
Credi, Caterina ;
Griffini, Gianmarco ;
Levi, Marinella ;
Turri, Stefano .
SMALL, 2018, 14 (01)
[3]   A low-cost 3D printed pumping system for generating oscillatory flow in a multicellular lab-on-a-chip device [J].
Sharon L. Truesdell ;
Marnie M. Saunders .
Microfluidics and Nanofluidics, 2023, 27
[4]   A low-cost 3D printed pumping system for generating oscillatory flow in a multicellular lab-on-a-chip device [J].
Truesdell, Sharon L. L. ;
Saunders, Marnie M. M. .
MICROFLUIDICS AND NANOFLUIDICS, 2023, 27 (06)
[5]   Design and Fabrication of 3D-Printed Lab-On-A-Chip Devices for Fiber-Based Optical Chromatography and Sorting [J].
Milark, Ole ;
Buttkewitz, Marc ;
Agocs, Emil ;
Legutko, Beate ;
Bergmann, Benjamin ;
Bahnemann, Janina ;
Heisterkamp, Alexander ;
Torres-Mapa, Maria Leilani .
ADVANCED PHOTONICS RESEARCH, 2024, 5 (10)
[6]   3D-Printed Lab-on-a-Chip Diagnostic Systems-Developing a Safe-by-Design Manufacturing Approach [J].
Karayannis, Panagiotis ;
Petrakli, Fotini ;
Gkika, Anastasia ;
Koumoulos, Elias P. .
MICROMACHINES, 2019, 10 (12)
[7]   Application of a Micro Free-Flow Electrophoresis 3D Printed Lab-on-a-Chip for Micro-Nanoparticles Analysis [J].
Barbaresco, Federica ;
Cocuzza, Matteo ;
Pirri, Candido Fabrizio ;
Marasso, Simone Luigi .
NANOMATERIALS, 2020, 10 (07)
[8]   Detection and sizing of single droplets flowing in a lab-on-a-chip device by measuring impedance fluctuations [J].
Yakdi, Nour Eddin ;
Huet, Francois ;
Ngo, Kieu .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 236 :794-804
[9]   A mobile lab-on-a-chip device for on-site soil nutrient analysis [J].
Smolka, M. ;
Puchberger-Enengl, D. ;
Bipoun, M. ;
Klasa, A. ;
Kiczkajlo, M. ;
Smiechowski, W. ;
Sowinski, P. ;
Krutzler, C. ;
Keplinger, F. ;
Vellekoop, M. J. .
PRECISION AGRICULTURE, 2017, 18 (02) :152-168
[10]   A Multi-Pump Magnetohydrodynamics Lab-On-A-Chip Device for Automated Flow Control and Analyte Delivery [J].
Cardoso, Rafael M. ;
dos Santos, Robson O. ;
Munoz, Rodrigo A. A. ;
Garcia, Carlos D. ;
Blanes, Lucas .
SENSORS, 2020, 20 (17) :1-9