» Articles » PMID: 39064443

Zweifach-Fung Microfluidic Device for Efficient Microparticle Separation: Cost-Effective Fabrication Using CO Laser-Ablated PMMA

Overview
Publisher MDPI
Date 2024 Jul 27
PMID 39064443
Authors
Affiliations
Soon will be listed here.
Abstract

Microfluidic separators play a pivotal role in the biomedical and chemical industries by enabling precise fluid manipulations. Traditional fabrication of these devices typically requires costly cleanroom facilities, which limits their broader application. This study introduces a novel microfluidic device that leverages the passive Zweifach-Fung principle to overcome these financial barriers. Through Lagrangian computational simulations, we optimized an eleven-channel Zweifach-Fung configuration that achieved a perfect 100% recall rate for particles following a specified normal distribution. Experimental evaluations determined 2 mL/h as the optimal total flow rate (TFR), under which the device showcased exceptional performance enhancements in precision and recall for micrometer-sized particles, achieving an overall accuracy of 94% ± 3%. Fabricated using a cost-effective, non-cleanroom method, this approach represents a significant shift from conventional practices, dramatically reducing production costs while maintaining high operational efficacy. The cost of each chip is less than USD 0.90 cents and the manufacturing process takes only 15 min. The development of this device not only makes microfluidic technology more accessible but also sets a new standard for future advancements in the field.

Citing Articles

Design, Characterization, and Evaluation of Textile Systems and Coatings for Sports Use: Applications in the Design of High-Thermal Comfort Wearables.

Orjuela-Garzon I, Rodriguez C, Cruz J, Briceno J ACS Omega. 2024; 9(50):49143-49162.

PMID: 39713610 PMC: 11656360. DOI: 10.1021/acsomega.4c05600.


Production and purification of outer membrane vesicles encapsulating green fluorescent protein from : a step towards scalable OMV technologies.

Torres-Vanegas J, Rincon-Tellez N, Guzman-Sastoque P, Valderrama-Rincon J, Cruz J, Reyes L Front Bioeng Biotechnol. 2024; 12:1436352.

PMID: 39610937 PMC: 11602331. DOI: 10.3389/fbioe.2024.1436352.


Recent Advances in Polymer Science and Fabrication Processes for Enhanced Microfluidic Applications: An Overview.

Alexandre-Franco M, Kouider R, Kassir Al-Karany R, Cuerda-Correa E, Al-Kassir A Micromachines (Basel). 2024; 15(9).

PMID: 39337797 PMC: 11433824. DOI: 10.3390/mi15091137.


Enhancing Magnetic Micro- and Nanoparticle Separation with a Cost-Effective Microfluidic Device Fabricated by Laser Ablation of PMMA.

Rodriguez C, Guzman-Sastoque P, Munoz-Camargo C, Reyes L, Osma J, Cruz J Micromachines (Basel). 2024; 15(8).

PMID: 39203709 PMC: 11356012. DOI: 10.3390/mi15081057.


Assessment of CRISPRa-mediated overexpression in an Parkinson's disease model.

Guzman-Sastoque P, Sotelo S, Esmeral N, Albarracin S, Sutachan J, Reyes L Front Bioeng Biotechnol. 2024; 12:1420183.

PMID: 39175618 PMC: 11338903. DOI: 10.3389/fbioe.2024.1420183.

References
1.
Ortegon S, Penaranda P, Rodriguez C, Noguera M, Florez S, Cruz J . Magnetic Torus Microreactor as a Novel Device for Sample Treatment via Solid-Phase Microextraction Coupled to Graphite Furnace Atomic Absorption Spectroscopy: A Route for Arsenic Pre-Concentration. Molecules. 2022; 27(19). PMC: 9572641. DOI: 10.3390/molecules27196198. View

2.
Ngum L, Matsushita Y, El-Mashtoly S, Fath El-Bab A, Abdel-Mawgood A . Separation of microalgae from bacterial contaminants using spiral microchannel in the presence of a chemoattractant. Bioresour Bioprocess. 2024; 11(1):36. PMC: 11016047. DOI: 10.1186/s40643-024-00746-8. View

3.
Mc Veigh M, Bellan L . Microfluidic synthesis of radiotracers: recent developments and commercialization prospects. Lab Chip. 2024; 24(5):1226-1243. DOI: 10.1039/d3lc00779k. View

4.
Nasser G, Fath El-Bab A, Abdel-Mawgood A, Mohamed H, Saleh A . CO Laser Fabrication of PMMA Microfluidic Double T-Junction Device with Modified Inlet-Angle for Cost-Effective PCR Application. Micromachines (Basel). 2019; 10(10). PMC: 6843704. DOI: 10.3390/mi10100678. View

5.
Ma D, Yang B, Zhao J, Yuan D, Li Q . Advances in protein-based microcapsules and their applications: A review. Int J Biol Macromol. 2024; 263(Pt 1):129742. DOI: 10.1016/j.ijbiomac.2024.129742. View