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Integrated microfluidic system for electrochemical sensing of glycosylated hemoglobin
Journal article   Peer reviewed

Integrated microfluidic system for electrochemical sensing of glycosylated hemoglobin

Chao-June Huang, Hui-Ching Chien, Tse-Chuan Chou and Gwo-Bin Lee
Microfluidics and Nanofluidics, Vol.10(1), pp.37-45
01/2011

Abstract

Cell separation;Electrochemical sensing;Glycosylated hemoglobin;Microfluidics

This article reports a new miniature electrochemical detection system integrating a sample pretreatment device for fast detection of glycosylated hemoglobin (HbA 1C ), which is a common indicator for diabetes mellitus. In this system, circular micropumps, normally closed microvalves, dielectrophoretic (DEP) electrodes, and electrochemical sensing electrode are integrated to perform several crucial processes. These processes include separation of red blood cells (RBCs), sample/reagent transportation, mixing, cell lysis, and electrochemical sensing. For the HbA 1C measurement, the RBCs are separated and are collected from whole human blood by using a positive DEP force generated by the DEP electrodes. The collected RBCs are then lysed to release HbA 1C for the subsequent electrochemical detection processes. Experimental data show that the RBCs are successfully separated and are collected using the developed system with a RBCs capture rate of 84.2%. The subsequent detection of HbA 1C is automatically completed by utilizing electrochemical sensing electrode. The microfluidic system only consumes a sample volume of 200 μl. The entire process is automatically performed within a short period of time (10 min). The development of this integrated microfluidic system may be promising for the clinical monitoring of diabetes mellitus. © 2010 Springer-Verlag.

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