Hydrodynamic Dielectrophoresis

Hydrodynamic dielectrophoresis (HDEP) is a microfluidic method that combines fluid-flow control with dielectrophoresis to manipulate, focus, separate, or enrich suspended particles and cells without physical contact. In a channel, sheath or carrier flows position particles within a defined region while a nonuniform electric field induces a frequency-dependent dipole force; the balance between dielectrophoretic force, drag, and particle properties directs different objects along distinct trajectories. HDEP supports label-free cell sorting, concentration, alignment, and characterization, with potential advantages in continuous processing and gentle handling. It is therefore useful in biomedical diagnostics, particle analysis, and lab-on-a-chip engineering.

Hydrodynamic Dielectrophoresis - Related Videos

Research

JoVE Journal - Bioengineering

A Microfluidic-based Hydrodynamic Trap for Single Particles

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Cited by 14 •

2011

In this article, we present a microfluidic-based method for particle confinement based on hydrodynamic flow. We demonstrate stable particle trapping at a fluid stagnation point using a feedback control mechanism, thereby enabling confinement and micromanipulation of arbitrary particles in an integrated microdevice.

Research

JoVE Journal - Medicine
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Label-free Isolation and Enrichment of Cells Through Contactless Dielectrophoresis

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Cited by 19 •

2013

Contactless dielectrophoresis (cDEP) achieves sorting and enrichment of particles via their intrinsic dielectric properties. Fluidic electrode channels replace metallic electrodes traditional to DEP, suiting cDEP to non-damaging sterile characterization and sorting of biological particles. We demonstrate how to prepare a cDEP microdevice and conduct cell characterization and sorting experiments.

Transient Expression of Proteins by Hydrodynamic Gene Delivery in Mice

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Cited by 26 •

2014

In vivo transfection of naked DNA by hydrodynamic gene delivery introduces genes into the tissue of an animal with minimal inflammatory response. Sufficient amounts of gene product are generated such that gene function and regulation as well as protein structure and function can be analyzed.

Protocol for Relative Hydrodynamic Assessment of Tri-leaflet Polymer Valves

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Cited by 5 •

2013

There has been renewed interest in developing polymer valves. Here, the objectives are to demonstrate the feasibility of modifying a commercial pulse duplicator to accommodate tri-leaflet geometries and to define a protocol to present polymer valve hydrodynamic data in comparison to native and prosthetic valve data collected under near-identical conditions.

Hydrodynamic Gene Delivery: A Technique for In Vivo Transfection of Exogenous DNA in Murine Hepatocytes via Tail Vein Injection

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2025

This video describes the technique of genetic in vivo transfection of murine hepatocytes by hydrodynamic tail vein injection. This transfection system generates a long-term expression of the transgene in the hepatocytes.

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