Issue 18, 2024

Humidity-enhanced microfluidic plasma separation on Chinese Xuan-papers

Abstract

The first step in blood testing necessitates blood separation to obtain an adequate volume of plasma. Traditional centrifugation is bulky, expensive and electricity-powered, which is not suitable for micro-scale blood plasma separation in point-of-care testing (POCT) cases. Microfluidic paper-based plasma separation devices present a promising alternative for plasma separation in such occasions. However, they are limited in terms of plasma yield, which hinders analyte detection. Herein, we proposed a humidity-enhanced paper-based microfluidic plasma separation method to address this issue. Specifically, paper was first treated by blood-typing antibodies, then samples of whole blood were introduced into the prepared paper. After waiting for 5 min for RBC agglutination and plasma wicking under high humidity, micro-scale plasma separation from whole blood was achieved. As a result, an extremely high plasma yield of up to 60.1% could be separated from whole blood through using Xuan-paper. Meanwhile, the purity of plasma could reach 99.99%. Finally, this innovative approach was effortlessly integrated into distance-based glucose concentration detection, enabling rapid determination of blood glucose levels through naked-eye observation. Considering the simplicity and inexpensiveness of this method, we believe that this technology could be integrated to more paper-based microfluidic analytical devices for rapid and accurate detection of plasma analytes in POCT.

Graphical abstract: Humidity-enhanced microfluidic plasma separation on Chinese Xuan-papers

Supplementary files

Article information

Article type
Paper
Submitted
05 May 2024
Accepted
05 Aug 2024
First published
06 Aug 2024

Lab Chip, 2024,24, 4379-4389

Humidity-enhanced microfluidic plasma separation on Chinese Xuan-papers

X. Wu, S. Min, T. Zhan, Y. Huang, H. Niu and B. Xu, Lab Chip, 2024, 24, 4379 DOI: 10.1039/D4LC00393D

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