» Articles » PMID: 38509871

Effects of Tween 20 Addition on Electrokinetic Transport in a Polydimethylsiloxane Microchannel

Overview
Journal Electrophoresis
Specialty Chemistry
Date 2024 Mar 21
PMID 38509871
Authors
Affiliations
Soon will be listed here.
Abstract

Tween 20 is frequently added to particle suspensions for reducing the particle-wall adhesion and particle-particle aggregation in microfluidic devices. However, the influences of Tween 20 on the fluid and particle behaviors have been largely ignored. We present in this work the first experimental study of the effects of Tween 20 addition on the electrokinetic transport of fluids and particles in a polydimethylsiloxane microchannel. We find that adding 0.1% v/v Tween 20 to a buffer solution can significantly reduce the electroosmotic mobility as well as the electrokinetic and electrophoretic mobilities of polystyrene particles and yeast cells. Further increasing the Tween 20 concentration within the range typically used in microfluidic applications continues reducing these mobility values, but at a smaller rate. Our finding suggests that Tween 20 should be used with care in electrokinetic microdevices when the flow rate or particle/cell throughput is an important parameter.

Citing Articles

Conjugation of Antibodies and siRNA Duplexes to Polymer Nanoparticles via Maleimide-Thiol Chemistry.

Hoover E, Roy Chowdhury C, Ruggiero O, Day E ACS Omega. 2024; 9(48):47637-47646.

PMID: 39651074 PMC: 11618400. DOI: 10.1021/acsomega.4c07025.


Effects of Tween 20 addition on electrokinetic transport in a polydimethylsiloxane microchannel.

Tabarhoseini S, Bentor J, Johnson W, Tzeng T, Xuan X Electrophoresis. 2024; 45(23-24):2082-2086.

PMID: 38509871 PMC: 11707311. DOI: 10.1002/elps.202400024.

References
1.
Ruz-Cuen R, Santos-Ramirez J, Cardenas-Benitez B, Ramirez-Murillo C, Miller A, Hakim K . Amplification factor in DC insulator-based electrokinetic devices: a theoretical, numerical, and experimental approach to operation voltage reduction for particle trapping. Lab Chip. 2021; 21(23):4596-4607. DOI: 10.1039/d1lc00614b. View

2.
Cha H, Fallahi H, Dai Y, Yadav S, Hettiarachchi S, McNamee A . Tuning particle inertial separation in sinusoidal channels by embedding periodic obstacle microstructures. Lab Chip. 2022; 22(15):2789-2800. DOI: 10.1039/d2lc00197g. View

3.
Kirby B, Hasselbrink Jr E . Zeta potential of microfluidic substrates: 2. Data for polymers. Electrophoresis. 2004; 25(2):203-13. DOI: 10.1002/elps.200305755. View

4.
Yuan D, Yadav S, Ta H, Fallahi H, An H, Kashaninejad N . Investigation of viscoelastic focusing of particles and cells in a zigzag microchannel. Electrophoresis. 2021; 42(21-22):2230-2237. DOI: 10.1002/elps.202100126. View

5.
Bentor J, Malekanfard A, Raihan M, Wu S, Pan X, Song Y . Insulator-based dielectrophoretic focusing and trapping of particles in non-Newtonian fluids. Electrophoresis. 2021; 42(21-22):2154-2161. DOI: 10.1002/elps.202100005. View