Back to Search Start Over

Developing a Mickey-Mouse-Designed Microfluidic Paper-Based Analytical Device (?PAD) to Determine The Antioxidant Activity of Green Tea

Authors :
Fauziyah, ilah
Oktavia, Ika
Istiana, Meiria
Sulistyarti, Hermin
Sabarudin, Akhmad
Source :
IOP Conference Series: Materials Science and Engineering; June 2019, Vol. 546 Issue: 3 p032007-032007, 1p
Publication Year :
2019

Abstract

The determination of the antioxidant activity in green tea using FRAP essays developed in a Microfluidic Paper-Based Analytical Device (uPADs) was observed. uPAD was prepared on the chromatographic paper with a suitable pattern and then printed using a solid ink printer. The solid printing was intended to obtain a hydrophobic barrier and a hydrophilic channel on the chromatographic paper. A preliminary study was done to determine the optimum time and temperature used on the penetration of obtaining the hydrophobic barrier to avoid leakage in the channel. Optimization of temperature and time was calculated by the average velocity, the optimum condition was obtained at 120 degC for 90 seconds with an average speed of 0.1 mm.s[?]1. The green tea samples were prepared by extracting its active compound using demineralized water at 25 degC and 90 degC with 2 hours of immersion time. For the measurement of antioxidant activities, the analysis was carried out by placing 0.5 ul in the detection zone and 5 ul samples into the sample zone uPAD. Then, the color reaction product, which propagates from the sample zone to the detection zone, is processed by Image J software to measure color intensity in CMYK mode. Extracts of green tea samples at 25 degC and 90 degC has a significant difference in antioxidant activity. These results indicate that the method developed in this work can be used as an alternative method for analyzing antioxidant activity in green tea extract. The results of the average amount of antioxidant activity in green tea samples were shown with Fe2+ concentration. High-speed detection, low cost, high accuracy, and ease of use can be attributed to the advantages of our uPAD method.

Details

Language :
English
ISSN :
17578981 and 1757899X
Volume :
546
Issue :
3
Database :
Supplemental Index
Journal :
IOP Conference Series: Materials Science and Engineering
Publication Type :
Periodical
Accession number :
ejs51886078