Integrative Magneto‐Microfluidic Separation of Immune Cells Facilitates Clinical Functional Assays

Author:

Shin Hee Sik1,Park Jeehun2,Lee Seung Yeop3,Yun Hyo Geun1,Kim Byeongyeon1,Kim Jinho4,Han Sangbin5,Cho Duck467,Doh Junsang28,Choi Sungyoung13ORCID

Affiliation:

1. Department of Electrical Engineering Hanyang University Seoul 04763 Republic of Korea

2. Soft Foundry Institute Seoul National University 1 Gwanak‐ro, Gwanak‐gu Seoul 08826 Republic of Korea

3. Department of Biomedical Engineering Hanyang University Seoul 04763 Republic of Korea

4. Department of Health Sciences and Technology SAIHST Sungkyunkwan University 25‐2, Seonggyungwan‐ro, Jongno‐gu Seoul 03063 Republic of Korea

5. Department of Anesthesiology and Pain Medicine Samsung Medical Center Sungkyunkwan University School of Medicine 81, Irwon‐Ro, Gangnam‐gu Seoul 06351 Republic of Korea

6. Department of Laboratory Medicine and Genetics Samsung Medical Center Sungkyunkwan University School of Medicine 81, Irwon‐Ro, Gangnam‐gu Seoul 06351 Republic of Korea

7. Cell and Gene Therapy Institute (CGTI) Samsung Medical Center 81, Irwon‐Ro, Gangnam‐gu Seoul 06351 Republic of Korea

8. Department of Materials Science and Engineering Institute of Engineering Research BioMAX Seoul National University 1 Gwanak‐ro, Gwanak‐gu Seoul 08826 Republic of Korea

Abstract

AbstractAccurately analyzing the functional activities of natural killer (NK) cells in clinical diagnosis remains challenging due to their coupling with other immune effectors. To address this, an integrated immune cell separator is required, which necessitates a streamlined sample preparation workflow including immunological cell isolation, removal of excess red blood cells (RBCs), and buffer exchange for downstream analysis. Here, a self‐powered integrated magneto‐microfluidic cell separation (SMS) chip is presented, which outputs high‐purity target immune cells by simply inputting whole blood. The SMS chip intensifies the magnetic field gradient using an iron sphere‐filled inlet reservoir for high‐performance immuno‐magnetic cell selection and separates target cells size‐selectively using a microfluidic lattice for RBC removal and buffer exchange. In addition, the chip incorporates self‐powered microfluidic pumping through a degassed polydimethylsiloxane chip, enabling the rapid isolation of NK cells at the place of blood collection within 40 min. This chip is used to isolate NK cells from whole blood samples of hepatocellular cancer patients and healthy volunteers and examined their functional activities to identify potential abnormalities in NK cell function. The SMS chip is simple to use, rapid to sort, and requires small blood volumes, thus facilitating the use of immune cell subtypes for cell‐based diagnosis.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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