4.5 Review

Electrically driven microfluidic platforms for exosome manipulation and characterization

Journal

ELECTROPHORESIS
Volume 43, Issue 1-2, Pages 327-339

Publisher

WILEY
DOI: 10.1002/elps.202100202

Keywords

Electrokinetics; Exosomes; Impedance; Lab on a chip; Microfluidics

Funding

  1. Nano-Sensors & Devices Research Group at Tecnologico de Monterrey [0020209I06]
  2. Federico Baur Endowed Chair in Nanotechnology at Tecnologico de Monterrey [0020240I03]
  3. Consejo Nacional de Ciencia y Tecnologia (SNI Grant) [62382]

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This review focuses on the state-of-the-art electrical techniques and methods for manipulating and detecting exosomes in microfluidic devices. While there are numerous reviews on exosome separation using benchtop equipment like ultracentrifugation, there is a lack of reviews specifically addressing the use of electrical phenomena in microfluidic devices for exosome manipulation and detection. Highlights from the past decade and future perspectives for this research field are presented, outlining challenges to be addressed in the coming years.
Exosomes are small extracellular vesicles that can be obtained from several body fluids such as blood and urine. Since these vesicles can carry biomarkers and other cargo, they have application in healthcare diagnostics and therapeutics, such as liquid biopsies and drug delivery. Yet, their identification and separation from a sample remain challenging due to their high degree of heterogeneity and their co-existence with other bioparticles. In this contribution, we review the state-of-the-art on electrical techniques and methods to displace, selectively trap/isolate, and detect/characterize exosomes in microfluidic devices. Although there are many reviews focused on exosome separation using benchtop equipment, such as ultracentrifugation, there are limited reviews focusing on the use of electrical phenomena in microfluidic devices for exosome manipulation and detection. Here, we highlight contributions published during the past decade and present perspectives for this research field for the near future, outlining challenges to address in years to come.

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