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Simple manual roller pump-driven valve-free microfluidic solution exchange system for urgent bioassay
Gokul Chandra Biswas1, Hiroaki Suzuki2
1School of Life Sciences, Shahjalal University of Science and Technology Sylhet-3114 Bangladesh gcbiswas-geb@sust.edu.
RSC Advances
|April 15, 2022
Summary
This study presents a simple, valve-free microfluidic device for sequential solution exchange and protein detection. The manual roller pump system enables rapid, low-cost bioassays, even in resource-limited settings.
Area of Science:
- Biomedical Engineering
- Analytical Chemistry
- Materials Science
Background:
- Microfluidic devices offer miniaturized platforms for various applications.
- Efficient sequential solution exchange is crucial for complex bioassays.
- Existing microfluidic systems can be complex and expensive to operate.
Purpose of the Study:
- To develop a simple, valve-free microfluidic system for sequential solution exchange.
- To demonstrate the system's utility in performing a protein bioassay.
- To create a low-cost, user-friendly platform for point-of-care diagnostics.
Main Methods:
- A polydimethylsiloxane (PDMS)/glass microfluidic device was fabricated with a reaction chamber and micro-flow channels.
- A manual roller pump (MRP) was used for sequential solution injection and withdrawal via air pressure manipulation.
- Surface hydrophobicity effects on solution exchange were investigated.
- A sandwich fluorescence immunoassay for human interleukin 2 (IL-2) was performed.
Main Results:
- The MRP-driven system enabled efficient sequential solution exchange without valves.
- Human interleukin 2 (IL-2) was detected within 20 minutes.
- The immunoassay achieved a detection limit of 80 pg mL⁻¹ and a dynamic range of 125 pg mL⁻¹ to 2.0 ng mL⁻¹.
- The system demonstrated suitability for analytical bioassays.
Conclusions:
- A simple, user-friendly, and valve-free microfluidic system was successfully developed.
- The device facilitates rapid and cost-effective protein detection.
- This technology holds potential for low-cost bioassays in emergency and resource-constrained situations.

