Separation and Washing of Candida Cells from White Blood Cells Using Viscoelastic Microfluidics

Author:

Lim Hyunjung1ORCID,Kim Jae Young23ORCID,Choo Seunghee4,Lee Changseok5,Han Byoung Joe5,Lim Chae Seung6ORCID,Nam Jeonghun57ORCID

Affiliation:

1. School of Biomedical Engineering, Korea University, Seoul 02841, Republic of Korea

2. Research Institute for Skin Image, Korea University College of Medicine, Seoul 08308, Republic of Korea

3. Core Research & Development Center, Korea University Ansan Hospital, Ansan 15355, Republic of Korea

4. College of Life Sciences and Bio Engineering, Incheon National University, Incheon 22012, Republic of Korea

5. Department of AI Electrical and Electronic Engineering, Incheon Jaeneung University, Incheon 22573, Republic of Korea

6. Department of Laboratory Medicine, College of Medicine, Korea University, Seoul 08307, Republic of Korea

7. Artificial Intelligence(AI)-Bio Research Center, Incheon Jaeneung University, Incheon 21987, Republic of Korea

Abstract

An early and accurate diagnosis of Candida albicans is critical for the rapid antifungal treatment of candidemia, a mortal bloodstream infection. This study demonstrates viscoelastic microfluidic techniques for continuous separation, concentration, and subsequent washing of Candida cells in the blood. The total sample preparation system contains two-step microfluidic devices: a closed-loop separation and concentration device and a co-flow cell-washing device. To determine the flow conditions of the closed-loop device, such as the flow rate factor, a mixture of 4 and 13 μm particles was used. Candida cells were successfully separated from the white blood cells (WBCs) and concentrated by 74.6-fold in the sample reservoir of the closed-loop system at 800 μL/min with a flow rate factor of 3.3. In addition, the collected Candida cells were washed with washing buffer (deionized water) in the microchannels with an aspect ratio of 2 at a total flow rate of 100 μL/min. Finally, Candida cells at extremely low concentrations (Ct > 35) became detectable after the removal of WBCs, the additional buffer solution in the closed-loop system (Ct = 30.3 ± 1.3), and further removal of blood lysate and washing (Ct = 23.3 ± 1.6).

Funder

National Research Foundation of Korea

Korean Health Industry Development Institute

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

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