Determination of synthetic colorants in cosmetic products by reversed-phase high-performance liquid chromatography coupled with diode-array detector

Determination of synthetic colorants in cosmetic products by reversed-phase high-performance liquid chromatography coupled with diode-array detector

This study aimed at developing and validating a reversed-phase (RP) high-performance liquid chromatography (HPLC) method, for simultaneous determination of five synthetic dyes called tartrazine (TRZ), sunset yellow (SY), allura red AC (AR), brilliant blue FCF (BB) and erythrosine B (EB) in cosmetic samples. The separation was performed by a C18 reverse phase analytical column (4.6 x 250 mm, 5 µm) at 30°C with gradient elution and the mobile phase contained 20 mM ammonium acetate buffer, acetonitrile and methanol. Flow was 1.0 mL/min. Detection wavelengths of diode array detector (DAD) were set at 420, 480, 510, 634 and 530 nm for TRZ, SY, AR, BB and EB, respectively. The dyes were analysed in 24 min. The limits of detection (LOD) was ≤ 0.18 µg/mL. The recovery was between 88.7 and 103.0%. Precision was ≤ .7.33 (RSD%) and accuracy was ≤ 3.0 (RE%). It was determined that 7 different cosmetic samples analyzed, consisting of soap, shower gel, eyeshadow, mouthwash, and lip pencil contained synthetic dyes at a concentration of 0.29 to 10.81 mg/g.

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  • Lores M, Llompart M, Alvarez-Rivera G, Guerra E, Vila M, Celeiro M, Lamas JP, Garcia-Jares C. Positive lists of cosmetic ingredients: Analytical methodology for regulatory and safety control – A review. Anal Chim Acta. 2016; 915: 1–26. [CrossRef]
  • Lee M, Nam KT, Kim J, Lim SE, Yeon SH, Lee B, Lee JY, Lim KM. Evaluation of ocular irritancy of coal-tar dyes used in cosmetics employing reconstructed human cornea-like epithelium and short time exposure tests. Food Chem Toxicol. 2017; 108: 236–243. [CrossRef]
  • Guerra E, Alvarez-Rivera G, Llompart M, Garcia-Jares C. Simultaneous determination of preservatives and synthetic dyes in cosmetics by single-step vortex extraction and clean-up followed by liquid chromatography coupled to tandem mass spectrometry. Talanta. 2018; 188: 251-258. [CrossRef]
  • Guerra E, Celeiro M, Lamas JP, Llompart M, Garcia-Jares C. Determination of dyes in cosmetic products by micromatrix solid phase dispersion and liquid chromatography coupled to tandem mass spectrometry. J Chromatogr A. 2015; 1415: 27–37. [CrossRef]
  • Allam KV, Kumar GP. Colorants - the cosmetics for the pharmaceutical dosage forms. Int J Pharm Pharm Sci. 2011; 3(3): 13–21.
  • de Boer L. Biotechnological production of colorants. In: Zorn H, Czermak P. (Eds) Biotechnology of Food and Feed Additives. Advances in Biochemical Engineering/Biotechnology 143, Springer, Berlin, 2013, pp.51–89. [CrossRef]
  • Vlase L, Muntean D, Codruta CS, Lorena F. Development and validation of an HPLC UV method for determination of synthetic food colorants. Rev Roum Chim. 2014; 59(9): 719–725.
  • Minioti KS, Sakellariou CF, Thomaidis NS. Determination of 13 synthetic food colorants in water-soluble foods by reversed-phase high-performance liquid chromatography coupled with diode-array detector. Anal Chim Acta. 2007; 583(1): 103–110. [CrossRef]
  • Mathiyalagan S, Mandal BK, Ling YC. Determination of synthetic and natural colorants in selected green colored foodstuffs through reverse phase-high performance liquid chromatography. Food Chem. 2019; 278: 381-387. [CrossRef]
  • de Andrade FI, Florindo Guedes MI, Pinto Vieira ÍG, Pereira Mendes FN, Salmito Rodrigues PA, Costa Maia CS, Marques Avila MM, De Matos Ribeiro L. Determination of synthetic food dyes in commercial soft drinks by TLC and ion-pair HPLC. Food Chem. 2014; 157: 193–198. [CrossRef]
  • Qin P, Yang Y, Li W, Zhang J, Zhou Q, Lu M. Amino-functionalized mesoporous silica nanospheres (MSN-NH2) as sorbent for extraction and concentration of synthetic dyes from foodstuffs prior to HPLC analysis. Anal Methods. 2019; 11(1): 105–112. [CrossRef]
  • Iammarino M, Mentana A, Centonze D, Palermo C, Mangiacotti M, Chiaravalle AE. Simultaneous determination of twelve dyes in meat products: Development and validation of an analytical method based on HPLC-UV-diode array detection. Food Chem. 2019; 285: 1–9. [CrossRef]
  • Mpountoukas P, Pantazaki A, Kostareli E, Christodoulou P, Kareli D, Poliliou S, Mourelatos C, Lambropoulou V, Lialiaris T. Cytogenetic evaluation and DNA interaction studies of the food colorants amaranth, erythrosine and tartrazine. Food Chem Toxicol. 2010; 48(10): 2934–2944. [CrossRef]
  • Sasaki YF, Sekihashi K, Izumiyama F, Nishidate E, Saga A, Ishida K, Tsuda S. The comet assay with multiple mouse organs: comparison of comet assay results and carcinogenicity with 208 chemicals selected from the IARC monographs and U.S. NTP Carcinogenicity Database. Crit Rev Toxicol. 2000; 30(6): 629–799. [CrossRef]
  • Mehedi N, Ainad-Tabet S, Mokrane N, Addou S, Zaoui C, Kheroua O, Saidi D. Reproductive toxicology of tartrazine (FD and C Yellow No. 5) in Swiss Albino Mice. Am J Pharmacol Toxicol. 2009; 4(4): 130–135. [CrossRef]
  • Kamel MM, El-Lethey HS. The potential health hazard of tartrazine and levels of hyperactivity, anxiety-like symptoms, depression and anti-social behaviour in rats. J Am Sci. 2011; 7(6): 1211-1218.
  • Jabeen HS, ur Rahman S, Mahmood S, Anwer S. Genotoxicity assessment of amaranth and allura red using Saccharomyces cerevisiae. Bull Environ Contam Toxicol. 2013; 90(1): 22–26. [CrossRef]
  • Shimada C, Kano K, Sasaki YF, Sato I, Tsudua S. Differential colon DNA damage induced by azo food additives between rats and mice. J Toxicol Sci. 2010; 35(4): 547–554. [CrossRef]
  • EFSA, 2012c, Scientific opinion on the safety and efficacy of Allura Red AC (E129) in feed for cats and dogs. EFSA J. 2012; 10(5): 2675. [CrossRef]
  • Rovina K, Siddiquee S, Shaarani SM. Extraction, analytical and advanced methods for detection of allura red AC (E129) in food and beverages products. Front. Microbiol. 2016; 27(7): 798. [CrossRef]
  • Lakdawalla AA, Netrawali MS. Mutagenicity, comutagenicity, and antimutagenicity of erythrosine (FD and C red 3), a food dye, in the Ames/Salmonella assay. Mutat Res. 1988; 204(2): 131–139. [CrossRef]
  • Matula TI, Downie RH. Genetic toxicity of erythrosine in yeast. Mutat Res. 1984; 138(2-3): 153–156. [CrossRef]
  • Chequer FM, Venâncio VP, Bianchi ML, Antunes LM. Genotoxic and mutagenic effects of erythrosine B, a xanthene food dye, on HepG2 cells. Food Chem Toxicol. 2012; 50(10): 3447–3451. [CrossRef]
  • Rogers CG, Boyes BG, Matula TI, Héroux-Metcalf C, Clayson DB. A case report: A multiple end-point approach to evaluation of cytotoxicity and genotoxicity of erythrosine (FD and C Red No. 3) in a V79 hepatocyte-mediated mutation assay. Mutat Res. 1988; 205(1-4): 415–423. [CrossRef]
  • Borzelleca JF, Capen CC, Hallagan JB. Lifetime toxicity/carcinogenicity study of FD & C Red No. 3 (erythrosine) in rats. Food Chem Toxicol. 1987; 25(10): 723–733. [CrossRef]
  • Abdel Aziz AH, Shouman SA, Attia AS, Saad SF. A study on the reproductive toxicity of erythrosine in male mice. Pharmacol Res. 1997; 35(5): 457–462. [CrossRef]
  • Vivekanandhi J, Anitha Devi CP, Jayaraman K, Raghavan L. Effects of erythrosine on testicular function of mice. Toxicol. Int. 2006; 13(2): 119–125.
  • Zhong Z, Li G, Luo Z, Zhu B. Microwave-assisted dispersive liquid-liquid microextraction coupling to solidification of floating organic droplet for colorants analysis in selected cosmetics by liquid chromatography. Talanta. 2019; 194: 46–54. [CrossRef]
  • Adlnasab L, Ezoddin M, Karimi MA, Hatamikia N. MCM-41@Cu–Fe–LDH magnetic nanoparticles modified with cationic surfactant for removal of Alizarin Yellow from water samples and its determination with HPLC. Res Chem Intermed. 2018; 44(5): 3249–3265. [CrossRef]
  • Mijin DŽ, Tomić VD, Grgur BN. Electrochemical decolorization of the Reactive Orange 16 dye using a dimensionally stable Ti/PtOx anode. J. Serb. Chem. Soc. 2015; 80(7): 903–915. [CrossRef]
  • Sadeghi S, Nasehi Z. Simultaneous determination of Brilliant Green and Crystal Violet dyes in fish and water samples with dispersive liquid-liquid micro-extraction using ionic liquid followed by zero crossing first derivative spectrophotometric analysis method. Spectrochim Acta A Mol Biomol Spectrosc. 2018; 201: 134–142. [CrossRef]
  • Watanabe T, Terabe S. Analysis of natural food pigments by capillary electrophoresis. J Chromatogr A. 2000; 880(12): 311–322. [CrossRef]
  • Huang HY, Shih YC, Chen YC. Determining eight colorants in milk beverages by capillary electrophoresis. J Chromatogr A. 2002; 959(1-2): 317–325. [CrossRef]
  • Yoon J, Kim Y, Kim KB, Park EJ, Na DH. Reversed-phase high-performance liquid chromatographic method for the determination of permaton red (D&C Red No. 36) in cosmetics. Bull Korean Chem Soc. 2018; 39(10): 1219–1222. [CrossRef]
  • Brazeau J. Identification and quantitation of water-soluble synthetic colors in foods by liquid chromatography/ultraviolet-visible method development and validation. ACS Omega. 2018; 3: 6577–6586. [CrossRef]
  • Heidarizadi E, Tabaraki R. Simultaneous spectrophotometric determination of synthetic dyes in food samples after cloud point extraction using multiple response optimizations. Talanta. 2016; 148: 237–246. [CrossRef]
  • López‐ de‐ Alba, P. , López‐ Martínez, L. and De‐ León‐ Rodríguez, L. Simultaneous determination of synthetic dyes tartrazine, allura red and sunset yellow by differential pulse polarography and partial least squares. A multivariate calibration method. Electroanalysis. 2002; 14(3): 197–205. [CrossRef]
  • Florian M, Yamanaka H, Carneiro PA, Valnice Boldrin Zanoni M. Determination of brilliant blue FCF in the presence and absence of erythrosine and quinoline yellow food colours by cathodic stripping voltammetry. Food Addit Contam. 2002; 19(9): 803–809. [CrossRef]
  • Pochivalov A, Davletbaeva P, Cherkashina K, Lezov A, Vakh C, Bulatov A. Surfactant-mediated microextraction approach using switchable hydrophilicity solvent: HPLC-UV determination of Sudan dyes in solid food samples. J Mol Liq. 2018; 271: 807–814. [CrossRef]
  • Weisz A, Milstein SR, Scher AL. Colouring agents in cosmetic products (Excluding hair dyes): Regulatory aspects and analytical methods. In: Salvador A, Chisvert A. (Eds). Analysis of cosmetic products. Elsevier, Oxford, 2007, pp.153–189. [CrossRef]
  • International Conference on Harmonisation (ICH). In: Q2 (R1) Validation of analytical procedures: text and methodology. Geneva, 2005.
Journal of research in pharmacy (online)-Cover
  • Yayın Aralığı: Yılda 6 Sayı
  • Yayıncı: Marmara Üniversitesi
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