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This study provides a comprehensive review of the latest developments in the electrochemical impressions of the important dyestuffs including amaranth and carminic acid. Food colors are organic substances that have important effects on human health and food safety. While these substances do not pose a problem when used in the daily intake (ADI) amounts, they harm human health when consumed excessively. Amaranth and carminic acid are synthetic and natural food colors ingredients, respectively. Analysis of these substances in food, pharmaceutical, cosmetic and textile samples is extremely important because of their genotoxicity, cytostatic and cytotoxic effects. Electroanalytical methods, which have great advantages over traditional analytical methods, shed light on the scientific world. Electrochemical monitoring modules, which are fast, simple, accurate, reliable, and highly selective, are promising for the determination of both substances. Until now, amaranth and carminic acid food determinations have been carried out successfully with electrochemical monitoring techniques in many numbers in the literature. Voltammetric techniques are the most widely used among these electroanalytical methods. In particular, square wave and differential pulse voltammetric techniques, which have extraordinary properties, have been heavily preferred. Limits of detection (LOD) comparable to the standard analytical method have been achieved using these methods, which have very quick analysis durations, high precision and accuracy, do not require long preprocessing, and have great selectivity. In addition, more sensitive and selective analyses of amaranth and carminic acid in natural samples were carried out with numerous indicator electrodes. The merits of powerful electrochemical monitoring studies for the determination of both food colors during the last decade are presented in this study. Moreover, parameters such as analytical applications, detection limits, electrochemical methods, selectivity, working electrodes, and working ranges are summarized in detail.
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http://dx.doi.org/10.1016/j.fct.2022.112929 | DOI Listing |
Int J Biol Macromol
August 2025
Research Group on Adsorptive and Catalytic Process Engineering (ENGEPAC), Federal University of Santa Maria, Av. Roraima, 1000-7, 97105-900 Santa Maria, RS, Brazil. Electronic address:
This work investigated the effect of structural characteristics of five food dyes on adsorption onto chitosan-based biopolymeric sponges, using statistical physics models, experimental results, and FT-IR analyses to propose a detailed adsorption mechanism. Statistical physics models showed high predictive capacity. The multilayer model was the most effective for predicting the adsorption isotherms of the Indigo carmine, Allura red, and Amaranth.
View Article and Find Full Text PDFToxics
June 2024
Department of Pharmacology, Faculty of Medicine, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
The toxicity of food additives is widely studied and concerns many consumers worldwide. Synthetic food colors are often considered an unnecessary risk to consumer health. Since the European Food Safety Authority's (EFSA) re-evaluation between 2009 and 2014, the body of scientific literature on food colors has grown, and new evaluations are being published by the Joint FAO/WHO Expert Committee on Food Additives (JECFA).
View Article and Find Full Text PDFJ Chromatogr A
January 2024
School of Pharmacy, Southwest Medical University, Luzhou, Sichuan, 646000, China. Electronic address:
A chitosan-alginate sponge (CAS) with multiple cross-linking networks was developed using chitosan, sodium alginate, polyvinyl alcohol, and glutaraldehyde to adsorb and enrich the anionic dyes form the food samples. The multiple networks in CAS refer to the electrostatic cross-linking network, hydrogen bonding cross-linking network, and covalent cross-linking network. Compared with pure chitosan and alginate sponges, the CAS showed better three-dimensional network structure, mechanical behavior, and stability, which is benefit by multiple cross-linking networks.
View Article and Find Full Text PDFFood Chem Toxicol
May 2022
Pharmaceutical Sciences Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
This study provides a comprehensive review of the latest developments in the electrochemical impressions of the important dyestuffs including amaranth and carminic acid. Food colors are organic substances that have important effects on human health and food safety. While these substances do not pose a problem when used in the daily intake (ADI) amounts, they harm human health when consumed excessively.
View Article and Find Full Text PDFJ Cosmet Dermatol
September 2022
Medicinal Plants Processing Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Introduction: Fibroblasts and fibroblast-like cells (FLCs) are highly distributed in the dermis layer of the skin and gastrointestinal tract. A few studies have investigated the effects of color additives of cosmetic products on human fibroblasts. Therefore, this in vitro study was conducted to investigate the effects of 9 synthetic and natural dyes (indigo carmine, carmine, sunset yellow, tropaeolin, acid green 25, chlorophyllin, tartrazine, lissamine, and amaranth) on human foreskin fibroblast cells.
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