Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration

Melamine-ware is widely used around the world. There is a public health concern as regards the safety of melamine when exposed to food. This study was carried out to measure the level of melamine migration in melamine-ware products by HPLC method and the effect of food-type on the level of melamine...

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Main Authors: Haghi Ehsan, Alimohammadi Mahmood, Shakoori Attaollah, Razeghi Fariba, Sadighara Parisa
Format: Article
Language:English
Published: Sciendo 2018-12-01
Series:Interdisciplinary Toxicology
Subjects:
Online Access:https://doi.org/10.2478/intox-2018-0031
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spelling doaj-a429fd492afd450bafd7eab879630a9c2021-09-05T21:02:06ZengSciendoInterdisciplinary Toxicology1337-95692018-12-0111431632010.2478/intox-2018-0031intox-2018-0031Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migrationHaghi Ehsan0Alimohammadi Mahmood1Shakoori Attaollah2Razeghi Fariba3Sadighara Parisa4Environmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, IranEnvironmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, IranEnvironmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, IranEnvironmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, IranEnvironmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, IranMelamine-ware is widely used around the world. There is a public health concern as regards the safety of melamine when exposed to food. This study was carried out to measure the level of melamine migration in melamine-ware products by HPLC method and the effect of food-type on the level of melamine migration. In food control laboratories in Iran, there is no common method to measure and monitor melamine migration, hence a method using HPLC technique was adopted and validated to solve this problem. The validation results showed the reliability with 94.9% accuracy and 95.3% precision. Furthermore, the limit of detection (LOD) and quantification (LOQ) were 0.145 and 0.435 µg/ml, which for a new method were within acceptable ranges. Melamine migrations from 4 most available melamine wares were measured. Distilled water, 3% acetic acid and 15% ethanol were used as food simulant at 30 °C for 90 min. Although melamine migration occurred in all samples and acidic conditions had a significant effect, the values were not higher than the European standard (30 µg/ml). The study revealed that the HPLC method was valid and could be applied and developed to measure melamine migration. However, precautions should be considered while choosing melamine-ware utensil as long-term exposure to this substance has a negative effect on health, especially on the kidneys.https://doi.org/10.2478/intox-2018-0031melaminemigrationhplcfood type
collection DOAJ
language English
format Article
sources DOAJ
author Haghi Ehsan
Alimohammadi Mahmood
Shakoori Attaollah
Razeghi Fariba
Sadighara Parisa
spellingShingle Haghi Ehsan
Alimohammadi Mahmood
Shakoori Attaollah
Razeghi Fariba
Sadighara Parisa
Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
Interdisciplinary Toxicology
melamine
migration
hplc
food type
author_facet Haghi Ehsan
Alimohammadi Mahmood
Shakoori Attaollah
Razeghi Fariba
Sadighara Parisa
author_sort Haghi Ehsan
title Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
title_short Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
title_full Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
title_fullStr Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
title_full_unstemmed Measurement of melamine migration from melamine-ware products by designed HPLC method and the effect of food-type on the level of migration
title_sort measurement of melamine migration from melamine-ware products by designed hplc method and the effect of food-type on the level of migration
publisher Sciendo
series Interdisciplinary Toxicology
issn 1337-9569
publishDate 2018-12-01
description Melamine-ware is widely used around the world. There is a public health concern as regards the safety of melamine when exposed to food. This study was carried out to measure the level of melamine migration in melamine-ware products by HPLC method and the effect of food-type on the level of melamine migration. In food control laboratories in Iran, there is no common method to measure and monitor melamine migration, hence a method using HPLC technique was adopted and validated to solve this problem. The validation results showed the reliability with 94.9% accuracy and 95.3% precision. Furthermore, the limit of detection (LOD) and quantification (LOQ) were 0.145 and 0.435 µg/ml, which for a new method were within acceptable ranges. Melamine migrations from 4 most available melamine wares were measured. Distilled water, 3% acetic acid and 15% ethanol were used as food simulant at 30 °C for 90 min. Although melamine migration occurred in all samples and acidic conditions had a significant effect, the values were not higher than the European standard (30 µg/ml). The study revealed that the HPLC method was valid and could be applied and developed to measure melamine migration. However, precautions should be considered while choosing melamine-ware utensil as long-term exposure to this substance has a negative effect on health, especially on the kidneys.
topic melamine
migration
hplc
food type
url https://doi.org/10.2478/intox-2018-0031
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