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Microfluidic-based electrically driven particle manipulation techniques for biomedical applications
DOI:10.1039/d4ra05571c.png)
Abstract
En 中文
Microfluidic chips exhibit unique advantages in both economy and rapidity, particularly for the separation and detection of biomolecules. In this review, we first introduced the mechanisms of several electrically driven methods, such as electrophoresis, dielectrophoresis, electro-wetting and electro-rotation. We then discussed in detail the application of these methods in nucleic acid analysis, protein manipulation and cell treatment. In addition, we outlined the considerations for material selection, manufacturing processes and structural design of microfluidic chips based on electrically driven mechanisms.
Keywords:
INSULATOR-BASED DIELECTROPHORESIS
ON-A-CHIP
ELECTROWETTING-BASED ACTUATION
FREE-FLOW ELECTROPHORESIS
DIELECTRIC-PROPERTIES
CAPILLARY-ELECTROPHORESIS
MICROCHIP ELECTROPHORESIS
ZONE-ELECTROPHORESIS
SINGLE-CELL
ELECTRODELESS DIELECTROPHORESIS
Journal
IF:
4.6
Papers:
7.7K
Citations:
20.9W
Organization
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