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Updated: Feb 22, 2026

Separation of Immune Cell Subpopulations in Peripheral Blood Samples from Children with Infectious Mononucleosis
Published on: September 7, 2022
Centrifugal microfluidics for sorting immune cells from whole blood
Zeta Tak For Yu1, Jophin George Joseph1,2, Shirley Xiaosu Liu1
1Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.
Insights
A novel Centrifugal Microfluidic Chip (CMC) efficiently sorts immune cells from blood. This technology offers a simple, portable solution for point-of-care diagnostics and disease monitoring.
Area of Science:
- Biomedical Engineering
- Microfluidics
- Cellular Biology
Background:
- Immune cell sorting and enumeration are vital for clinical applications.
- Conventional methods like flow cytometry are complex and unsuitable for point-of-care (POC) testing.
Purpose of the Study:
- To develop a microscale centrifugal technology (Centrifugal Microfluidic Chip - CMC) for efficient immune cell sorting and in situ analysis.
- To evaluate the CMC's performance in separating and analyzing immune cells from human whole blood.
Main Methods:
- Utilized microfluidic channels and density gradient centrifugation for immune cell separation based on density differentials.
- Investigated surface passivation techniques using various blocking molecules.
- Demonstrated multi-color imaging for analyzing immune cell distributions and enrichment.
Main Results:
- The CMC successfully sorted immune cell subpopulations from minimally processed human whole blood without compromising cell viability.
- Achieved high recovery and purity rates for peripheral blood mononuclear cells (PBMCs).
- Demonstrated the simplicity, portability, and efficiency of the CMC system.
Conclusions:
- The Centrifugal Microfluidic Chip (CMC) provides a promising platform for rapid blood-based diagnosis and disease monitoring.
- Its design facilitates point-of-care applications due to its simplicity, portability, and in situ analysis capabilities.
Abstract:
Sorting and enumeration of immune cells from blood are critical operations involved in many clinical applications. Conventional methods for sorting and counting immune cells from blood, such as flow cytometry and hemocytometers, are tedious, inaccurate, and difficult for implementation for point-of-care (POC) testing. Herein we developed a microscale centrifugal technology termed Centrifugal Microfluidic Chip (CMC) capable of sorting immune cells from blood and in situ cellular analysis in a laboratory setting. Operation of the CMC entailed a blood specimen layered on a density gradient medium and centrifuged in microfluidic channels where immune cell subpopulations could rapidly be sorted into distinct layers according to their density differentials. We systematically studied effects of different blocking molecules for surface passivation of the CMC. We further demonstrated the applicability of CMCs for rapid separation of minimally processed human whole blood without affecting immune cell viability. Multi-color imaging and analysis of immune cell distributions and enrichment such as recovery and purity rates of peripheral blood mononuclear cells (PBMCs) were demonstrated using CMCs. Given its design and operation simplicity, portability, blood cell sorting efficiency, and in situ cellular analysis capability, the CMC holds promise for blood-based diagnosis and disease monitoring in POC applications.
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