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PMID: 31845080 Published · ppublish English Journal Article

CFD simulations for paper-based DNA amplification reaction (LAMP) of Mycobacterium tuberculosis-point-of-care diagnostic perspective.

Medical & biological engineering & computing ·Vol. 58 ·No. 2 ·2020-02-00 ·页码 271-289

Das D, Panigrahi PK

Abstract

Loop-mediated isothermal amplification or LAMP has been identified to be an efficient technology for point-of-care diagnostics. Paper-based LAMP technique has tremendous potential in replacing the existing tube-based technology as the manufacturing cost of a paper-based device is comparatively lower and easy-to-use. LAMP-based paper diagnostic device for Mycobacterium tuberculosis (MTB) detection is of extreme importance as it will help in early and rapid diagnosis of the affected patients. The fabrication of these devices requires assessment of design parameters on the extent of LAMP amplification reaction. Hence, CFD studies would be extremely beneficial from the design perspective. The current work presents an insight into the CFD simulations for LAMP amplification reaction on a porous paper membrane (nitrocellulose membrane). The convection-diffusion-reaction model is solved on a COMSOL Multiphysics 5.0 platform. Studies on effect of pore size, aspect ratio and initial DNA concentration on the extent of DNA amplification reaction have been carried out. The current paper-based technique is effective in detecting a minimum of 5 copies of DNA contrasting the previous semi-quantitative technique which demonstrated the detection of minimum 98 copies. Overall, the simulation results displayed almost 96% enhancement in the DNA amplification rate on paper membrane. Graphical abstract Graphical abstract for the computational study of DNA amplification reaction via LAMP technique on a porous paper membrane.

Keywords
CFD simulation Convection–diffusion–reaction model LAMP Mycobacterium tuberculosis Point-of-care Porous membranes
MeSH 主题词
Computer Simulation DNA, Bacterial/genetics Diagnostic Tests, Routine Humans Hydrodynamics Mycobacterium tuberculosis/genetics Nucleic Acid Amplification Techniques Numerical Analysis, Computer-Assisted Paper Point-of-Care Systems Porosity Reproducibility of Results
化学物质
DNA, Bacterial
作者与单位
共 2 位作者,点击展开单位 / ORCID
Das Debayan ORCID
Department of Mechanical Engineering, Indian Institute of Technology Kanpur, Kanpur, 208016, India. [email protected].
Panigrahi P K
Department of Mechanical Engineering, Indian Institute of Technology Kanpur, Kanpur, 208016, India.
Article Info
Journal
Medical & biological engineering & computing
Abbr.
Med Biol Eng Comput
ISSN
1741-0444
Corresponding email
Published
2020-02-00
电子出版
2019-00-16
页码
271-289
Language
English
Country/Region
United States
NLM ID
7704869
基金资助
Department of Science and Technology, Ministry of Science and Technology · DST/INSPIRE/04/2018/001536
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