» Articles » PMID: 29185559

Quantitative Evaluation of Analyte Transport on Microfluidic Paper-based Analytical Devices (μPADs)

Overview
Journal Analyst
Specialty Chemistry
Date 2017 Nov 30
PMID 29185559
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

The transport efficiency during capillary flow-driven sample transport on microfluidic paper-based analytical devices (μPADs) made from filter paper has been investigated for a selection of model analytes (Ni, Zn, Cu, PO, bovine serum albumin, sulforhodamine B, amaranth) representing metal cations, complex anions, proteins and anionic molecules. For the first time, the transport of the analytical target compounds rather than the sample liquid, has been quantitatively evaluated by means of colorimetry and absorption spectrometry-based methods. The experiments have revealed that small paperfluidic channel dimensions, additional user operation steps (e.g. control of sample volume, sample dilution, washing step) as well as the introduction of sample liquid wicking areas allow to increase analyte transport efficiency. It is also shown that the interaction of analytes with the negatively charged cellulosic paper substrate surface is strongly influenced by the physico-chemical properties of the model analyte and can in some cases (Cu) result in nearly complete analyte depletion during sample transport. The quantitative information gained through these experiments is expected to contribute to the development of more sensitive μPADs.

Citing Articles

3D Paper-based milk adulteration detection device.

Patari S, Datta P, Sinha Mahapatra P Sci Rep. 2022; 12(1):13657.

PMID: 35953582 PMC: 9372070. DOI: 10.1038/s41598-022-17851-3.


Automated Immunoassay Performed on a 3D Microfluidic Paper-Based Device for Malaria Detection by Ambient Mass Spectrometry.

Jackson S, Lee S, Badu-Tawiah A Anal Chem. 2022; 94(12):5132-5139.

PMID: 35293204 PMC: 9022466. DOI: 10.1021/acs.analchem.1c05530.


Characterization methods in porous materials for the rational design of multi-step processing in the context of a paper microfluidic phenylalanine test.

Wentland L, Polaski R, Fu E Anal Methods. 2021; 12(6):768-780.

PMID: 34887944 PMC: 8654261. DOI: 10.1039/c9ay02500f.


Colorimetric paper-based sarcosine assay with improved sensitivity.

Masumoto M, Ohta S, Nakagawa M, Hiruta Y, Citterio D Anal Bioanal Chem. 2021; 414(1):691-701.

PMID: 34657964 DOI: 10.1007/s00216-021-03682-0.


Enhanced Sensing Behavior of Three-Dimensional Microfluidic Paper-Based Analytical Devices (3D-μPADs) with Evaporation-Free Enclosed Channels for Point-of-Care Testing.

Jeon J, Park C, Ponnuvelu D, Park S Diagnostics (Basel). 2021; 11(6).

PMID: 34071424 PMC: 8229230. DOI: 10.3390/diagnostics11060977.