Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines

Various synthetic dyes are artificially added to herbal medicines for the purpose of visual attraction. In order to monitor the illegal usage of synthetic dyes in herbal medication, a rapid and straightforward analysis method to determine synthetic dyes is required. The study aimed to develop and va...

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Main Authors: Kyung-Yuk Ko, Eun-Young Choi, Se-Hee Jeong, Sohwa Kim, Choon-Kil Lee, Chulhyun Lee, Sooyeul Cho
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/14/6641
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author Kyung-Yuk Ko
Eun-Young Choi
Se-Hee Jeong
Sohwa Kim
Choon-Kil Lee
Chulhyun Lee
Sooyeul Cho
author_facet Kyung-Yuk Ko
Eun-Young Choi
Se-Hee Jeong
Sohwa Kim
Choon-Kil Lee
Chulhyun Lee
Sooyeul Cho
author_sort Kyung-Yuk Ko
collection DOAJ
description Various synthetic dyes are artificially added to herbal medicines for the purpose of visual attraction. In order to monitor the illegal usage of synthetic dyes in herbal medication, a rapid and straightforward analysis method to determine synthetic dyes is required. The study aimed to develop and validate a high-performance liquid chromatography (HPLC) analysis to determine ten synthetic dyes in Hawthorn fruit, Cornus fruit, and Schisandra fruit. Ten synthetic dyes such as Tartrazine, Sunset yellow, Metanil yellow, Auramine O, Amaranth, Orange II, Acid red 73, Amaranth, New Coccine, Azorubine, and Erythrosine B, were extracted using 50 mM ammonium acetate in 70% MeOH; then separated by gradient elution with a mobile phase consisting of acetonitrile and 50 mM ammonium acetate in distilled water using a photodiode array detector (PDA) at 428 nm or 500 nm. In addition, this study established the LC-MS/MS method to confirm the existence of synthetic dyes in the positive sample solution. The HPLC analysis had good linearity (r<sup>2</sup> > 0.999). The recoveries of this method ranged from 74.6~132.1%, and the relative standard deviation (RSD) values were less than 6.9%. Most of the samples fulfilled the acceptance criteria of the AOAC guideline. This study demonstrates that the HPLC analysis can be applied to determine ten synthetic dyes in herbal medication.
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spelling doaj.art-cbf861b2513a4cc39bc06ad760d0d3f52023-11-22T03:13:14ZengMDPI AGApplied Sciences2076-34172021-07-011114664110.3390/app11146641Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal MedicinesKyung-Yuk Ko0Eun-Young Choi1Se-Hee Jeong2Sohwa Kim3Choon-Kil Lee4Chulhyun Lee5Sooyeul Cho6Herbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaHerbal Medicine Research Division, Ministry of Food and Drug Safety, Cheongju 28159, Chungbuk, KoreaVarious synthetic dyes are artificially added to herbal medicines for the purpose of visual attraction. In order to monitor the illegal usage of synthetic dyes in herbal medication, a rapid and straightforward analysis method to determine synthetic dyes is required. The study aimed to develop and validate a high-performance liquid chromatography (HPLC) analysis to determine ten synthetic dyes in Hawthorn fruit, Cornus fruit, and Schisandra fruit. Ten synthetic dyes such as Tartrazine, Sunset yellow, Metanil yellow, Auramine O, Amaranth, Orange II, Acid red 73, Amaranth, New Coccine, Azorubine, and Erythrosine B, were extracted using 50 mM ammonium acetate in 70% MeOH; then separated by gradient elution with a mobile phase consisting of acetonitrile and 50 mM ammonium acetate in distilled water using a photodiode array detector (PDA) at 428 nm or 500 nm. In addition, this study established the LC-MS/MS method to confirm the existence of synthetic dyes in the positive sample solution. The HPLC analysis had good linearity (r<sup>2</sup> > 0.999). The recoveries of this method ranged from 74.6~132.1%, and the relative standard deviation (RSD) values were less than 6.9%. Most of the samples fulfilled the acceptance criteria of the AOAC guideline. This study demonstrates that the HPLC analysis can be applied to determine ten synthetic dyes in herbal medication.https://www.mdpi.com/2076-3417/11/14/6641herbal medicineHPLCLC-MS/MSsynthetic dyeHawthorn fruitCornus fruit
spellingShingle Kyung-Yuk Ko
Eun-Young Choi
Se-Hee Jeong
Sohwa Kim
Choon-Kil Lee
Chulhyun Lee
Sooyeul Cho
Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
Applied Sciences
herbal medicine
HPLC
LC-MS/MS
synthetic dye
Hawthorn fruit
Cornus fruit
title Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
title_full Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
title_fullStr Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
title_full_unstemmed Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
title_short Simple HPLC-PDA Analysis to Determine Illegal Synthetic Dyes in Herbal Medicines
title_sort simple hplc pda analysis to determine illegal synthetic dyes in herbal medicines
topic herbal medicine
HPLC
LC-MS/MS
synthetic dye
Hawthorn fruit
Cornus fruit
url https://www.mdpi.com/2076-3417/11/14/6641
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