Performance Optimization of a Microfluidic Virus Detection Cartridge: A Numerical and Experimental Study

Author:

Şenel Enes Burak1,Kizilelma Bilal23,Tamdoğan Enes45,Yorulmaz Mustafa6

Affiliation:

1. Department of Mechanical Engineering, Middle East Technical University, Ankara 06800, Turkey

2. Department of Molecular Biology and Genetics, Gebze Technical University, Kocaeli 41400, Turkey ; Teknopark Istanbul, Istanbul 34906, Turkey

3. ASELSAN Research Center, ASELSAN Inc., Kocaeli 41400, Turkey ; Teknopark Istanbul, Istanbul 34906, Turkey

4. Department of Mechanical Engineering, Ostim Technical University , Ankara 06374, Turkey ; , Ankara 06200, Turkey

5. Aselsan Research Center , Ankara 06374, Turkey ; , Ankara 06200, Turkey

6. ASELSAN Research Center, ASELSAN Inc., Teknopark Istanbul, Istanbul 34906, Turkey

Abstract

Abstract Detection and imaging of viruses in a complex solution is particularly significant for virology and requires a comprehensive understanding of biosensors. While lab-on-a-chip systems are used in virus detection as biosensors, analysis and optimization of these systems are especially challenging due to the size of the system to be used in the certain application. The system of interest for virus detection is required to be cost efficient and is also needed to be able to easily operable with a simple setup. Moreover, the detailed analysis of these microfluidic systems should be made with precision in order to predict the capabilities and the efficiency of the system accurately. This paper reports on the use of a common commercial computational fluid dynamics (cfd) software for the analysis of a microfluidic lab-on-a-chip virus detection cartridge. This study evaluates the problems commonly encountered during microfluidic applications of cfd softwares particularly in the area of reaction modeling of the antigen–antibody interaction. cfd analysis is later validated and combined with experiments to optimize the amount of dilute solution used in the tests. Thereafter, the geometry of the microchannel is also optimized and optimal test conditions are set for a cost efficient and effective virus detection kit using light microscopy.

Publisher

ASME International

Subject

Physiology (medical),Biomedical Engineering

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