1. Silva M. M., Reboredo F. H., Lidon F. C. Food colour additives: A synoptical overview on their chemical properties, applications in food products, and health side effects // Foods. 2022. V.11. Article 379. EDN: CBERDS
2. Food additives and hyperactive behaviour in 3-year-old and 8/9-year-old children in the community: a randomised, double-blinded, placebo-controlled trial / D. McCann [et al.] // Lancet. 2007. V. 370. P. 1560-1567.
3. Inetianbor J. E., Yakubu J. M., Ezeonu S. C. Effects of food additives and preservatives on man - A review // Asian J. Sci. Technol. 2015. V. 6, № 2. P. 1118-1135.
4. Safety evaluation of certain contaminants in food: prepared by the eighty fourth meeting of the joint FAO/WHO Expert Committee on Food Additives (JECFA). WHO Food additive series; 75, 2019. 234 p.
5. Simultaneous determination of synthetic dyes in foodstuffs and beverages by high-performance liquid chromatography coupled with diode-array detector / S. Bonan [et al.] // Dyes Pigm. 2013. V. 99, № 1. P. 36-40.
6. Mathiyalagan S., Kumar Mandal B., Ling Y.-C. Determination of synthetic and natural colorants in selected green colored foodstuffs through reverse phase-high performance liquid chromatography // Food Chem. 2019. V. 278. P. 381-387.
7. Sensitive simultaneous determination of synthetic food colorants in preserved fruit samples by capillary electrophoresis with contactless conductivity detection / J.Yi [et al.] // Food Anal. Methods. 2018. V. 11. P. 1608-1618. EDN: XFDZDT
8. Dispersive solid-phase microextraction and capillary electrophoresis separation of food colorants in beverages using diamino moiety functionalized silica nanoparticles as both extractant and pseudostationary phase / F. J. Liu [et al.] // Talanta. 2015. V. 132. P. 366-372.
9. He S. H., Jiang H. Qualitative and quantitative analysis of some co-existing colorants in some hard candies // J. Food Compos. Anal. 2022. V. 109. Article 104475. EDN: BDCOWE
10. Red-emitting carbon dots as fluorescent probes for the rapid detection of brilliant blue FCF in foods / Q. Wu [et al.] // Food Control. 2023. V. 149. Article 109719.
11. Dual-emission color-controllable nanoparticle based molecular imprinting ratiometric fluorescence sensor for the visual detection of Brilliant Blue / Q. Yang [et al.] // Sens. Actuators, B. 2019. V. 284. P. 428-436.
12. MWCNT-modified Electrode for Voltammetric Determination of Allura Red and Brilliant Blue FCF in Isotonic Sport Drinks / P. Sierra-Rosales [et al.] // Electroanalysis. 2019. V. 31, № 5. P. 1-9. EDN: TTKCOT
13. Khan K. A., Shah A., Nisar J. Electrochemical detection and removal of brilliant blue dye via photocatalytic degradation and adsorption using phyto-synthesized nanoparticles // RSC Adv. 2024. V. 14. P. 2504-2517. EDN: ENZNAF
14. Simultaneous voltammetric determination of Brilliant Blue FCF and Tartrazine for food quality control / Lipskikh O. I. [et al] // Talanta. 2020. V. 218. Article 121136. EDN: AGMNUN
15. Ghoreishi S. M., Behpour M., Golestaneh M. Simultaneous voltammetric determination of Brilliant Blue and Tartrazine in real samples at the surface of a multi-walled carbon nanotube paste electrode // Anal. Methods. 2011. V. 3, № 12. P. 2842-2847.
16. Electrochemical Determination of Brilliant Blue and Tartrazine Based on an Ionic Liquid-Modified Expanded Graphite Paste Electrode / W.Wang [et al.] // J. AOAC Int. 2015. V. 98, № 3. P. 817-821. EDN: VFNFCD
17. Development of a facile sensor for the determination of Brilliant Blue FCF in beverages / Wang M. [et al.] // Int. J. Environ. Anal. Chem. 2015. V. 95, № 11. P. 969-979.
18. An ultrasensitive electrochemical platform based on copper oxide nanoparticles and poly (crystal violet) for the detection of brilliant blue FCF from soft drinks / Ion B.-C. [et al.] // Food Chem. 2024. V. 437. Article 137751. EDN: WYRTAI
19. Gimadutdinova L., Ziyatdinova G., Davletshin R. Selective Voltammetric Sensor for the Simultaneous Quantification of Tartrazine and Brilliant Blue FCF // Sensors. 2023. V. 23. Article 1094. EDN: HINWKG
20. Carbon Paper Modified with Functionalized Poly(diallyldimethylammonium chloride) Graphene and Gold Phytonanoparticles as a Promising Sensing Material: Characterization and Electroanalysis of Ponceau 4R in Food Samples / N.Y. Stozhko [et al.] // Nanomater. 2022. V. 12, № 23. Article 4197. EDN: UHOHPN
21. Highly sensitive voltammetric determination of allura red (e129) food colourant on a planar carbon fiber sensor modified with shungite / M. A. Bukharinova [et al.] // Anal. Chim. Acta. 2023. V. 1272. Article. 341481. EDN: TONXXK
22. A review on biological synthesis of silver nanoparticles and their potential applications / A. Dhaka [et al.] // Results Chem. 2023. V. 6. Article 101108. EDN: QYQLPN
23. Potentiometry in antioxidant activity evaluation of microsuspensions, extracts and living plants / Kh. Z. Brainina [et al.] // J. Plant Biochem. Physiol. 2018. V. 6. P. 86-87.
24. Potentiometric method of plant microsuspensions antioxidant activity determination / K. Brainina [et al.] // Food Chem. 2019. V. 278. P. 653-658. EDN: NKVXSQ
25. Film Carbon Veil-Based Electrode Modified with Triton X-100 for Nitrite Determination / N. Y. Stozhko [et al.] // Chemosensors. 2020. V. 8. Article 78. EDN: SRCYDL
26. Spectrophotometry and Electrochemistry of Brilliant Blue FCF in Aqueous Solution of NaX / B. Tutunaru [et al.] // Int. J. Electrochem. Sci. 2017. V. 12, № 1. P. 396-412.
27. Flury M., Flühler H. Brilliant Blue FCF as a Dye Tracer for Solute Transport Studies - A Toxicological Overview // J. Environ. Qual. 1994. V. 23, № 5. P. 1108-1112.