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Articles

Simultaneous formation of polycyclic aromatic hydrocarbons (PAHs) and heterocyclic aromatic amines (HCAs) in gas-grilled beef satay at different temperatures

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Pages 848-869 | Received 29 Sep 2017, Accepted 27 Dec 2017, Published online: 23 Feb 2018

References

  • Aaslyng MD, Deudahl-Olesen L, Jensen K, Meinert L. 2013. Content of heterocyclic amines and polycyclic aromatic hydrocarbons in pork, beef and chicken barbecued at home by Danish consumers. Meat Sci. 93:85–91.
  • Ahn J, Grün I. 2005. Heterocyclic amines: 1. Kinetics of formation of polar and nonpolar heterocyclic amines as a function of time and temperature. J Food Sci. 70(2):173–179.
  • Alomirah H, Al-Zenki S, Husain A, Sawaya W, Ahmed N, Gevao B, Kannan K. 2010. Benzo[a]pyrene and total polycyclic aromatic hydrocarbons (PAHs) levels in vegetable oils and fats do not reflect the occurrence of the eight genotoxic PAHs. Food Addit Contam Part A. 27(6):869–878.
  • Arvidsson P, van Boekel MAJS, Skog K, Solyakov A, Jagerstad M. 1999. Formation of heterocyclic amines in a meat juice model system. J Food Sci. 64(2):216–221.
  • Barnes WS, Maher JC, Weisburger JH. 1983. High-pressure liquid chromatographic method for the analysis of 2-amino-3-methylimidazo[4,5-f]quinoline, a mutagen formed during the cooking of food. J Agric Food Chem. 31:883–886.
  • Britt PF, Buchanan AC, Owens CV Jr, Skeen JT. 2004. Does glucose enhance the formation of nitrogen containing polycyclic aromatic compounds and polycyclic aromatic hydrocarbons in the pyrolysis of proline? Fuel. 83:1417–1432.
  • Camargo MCR, Antoniolli PR, Vicente E, Tfouni SAV. 2011. Polycyclic aromatic hydrocarbons in Brazillian commercial soybean oils and dietary exposure. Food Addit Contam Part B. 4(2):152–159.
  • Chen BH, Chen YC. 2001. Formation of polycyclic aromatic hydrocarbons in the smoke from heated model lipids and food lipids. J Agric Food Chem. 49:5238–5243.
  • Chen BH, Lin YS. 1997. Formation of polycyclic aromatic hydrocarbons during processing of duck meat. J Agric Food Chem. 45:1394–1403.
  • Chen D-W, Zhang M. 2007. Non-volatile taste active compounds in the meat of Chinese mitten crab (Eriocheir sinensis). Food Chem. 104:1200–1205.
  • Cheok CY, Chin NL, Yusof YA, Mustapa Kamal SM, Sazili AQ. 2011. Effect of marinating temperatures on physical change of traditionally marinated beef satay. J Food Process Preserv. 35:474–482.
  • Ciecierska M, Obiedzinski MW. 2013. Polycyclic aromatic hydrocarbons in the bakery chain. Food Chem. 141:1–9.
  • Damašius J, Venskutonis PR, Feerracane R, Fogliano V. 2011. Assessment of the influence of some spice extracts on the formation of heterocyclic amines in meat. Food Chem. 126:149–156.
  • Dennis C, Karim F, Smith S. 2015. Evaluation of Maillard reaction variables and their effect on heterocyclic amine formation in chemical model systems. J Food Sci. 80(2):472–478.
  • Deudahl-Olesen L, Aaslyng M, Meinert L, Christensen T, Jensen AH, Binderup ML. 2015. Polycyclic aromatic hydrocarbons (PAH) in Danish barbecued meat. Food Control. 57:168–176.
  • Domingo JL, Nadal M. 2015. Human dietary exposure to polycyclic aromatic hydrocarbons: a review of the scientific literature. Food Chem Toxicol. 86:144–153.
  • Dost K, Ideli C. 2012. Determination of polycyclic aromatic hydrocarbons in edible oils and barbecued food by HPLC/UV–vis detection. Food Chem. 133(1):193–199.
  • Farhadian A, Jinap S, Faridah A, Zaidul ISM. 2012. Effects of marinating on the formation of polycyclic aromatic hydrocarbons (benzo[a]pyrene, benzo[b]fluoranthene and fluoranthene) in grilled beef meat. Food Control. 28(2):420–425.
  • Farhadian A, Jinap S, Hanifah HN, Zaidul IS. 2011. Effects of meat preheating and wrapping on the levels of polycyclic aromatic hydrocarbons in charcoal-grilled meat. Food Chem. 124(1):141–146.
  • Felton JS, Knize MG, Wu RW, Colvin ME, Hatch FT, Malfatti MA. 2007. Mutagenic potency of food-derived heterocyclic amines. Mutat Res. 616:90–94.
  • Frederiksen H. 2005. Two food-borne heterocyclic amines: metabolism and DNA adduct formation of amino-alpha-carbolines. Mol Nutr Food Res. 49:263−273.
  • Gibis M. 2016. Heterocyclic aromatic amines in cooked meat products: causes, formation, occurrence, and risk assessment. Compr Rev Food Sci Food Saf. 15(2):269–302.
  • Gorji ME, Ahmadkhaniha R, Moazzen M, Yunesian M, Azari A, Rastkari N. 2016. Polycyclic aromatic hydrocarbons in Iranian Kebabs. Food Control. 60:57–63.
  • Gosetti F, Chiuminatto U, Mazzucco E, Robotti E, Calabrese G, Gennaro MC, Marengo E. 2011. Simultaneous determination of thirteen polycyclic aromatic hydrocarbons and twelve aldehydes in cooked food by an automated on-line solid phase extraction ultra high performance liquid chromatography tandem mass spectrometry. J Chromatogr A. 1218:6308–6318.
  • Gross GA, Grüter A. 1992. Quantitation of mutagegnic/carcinogenic heterocyclic aromatic amines in food products. J Chromatogr. 592(1–2):271–278.
  • Gu YS, Kim IS, Park JH, Lee SH, Park DC, Yeum DM, Ji CI, Kim SH, Wakabayashi K, Kim SB. 2001. Effects of seasoning and heating device on mutagenicity and heterocyclic amines in cooked beef. Biosci Biotechnol Biochem. 65(10):2284–2287.
  • Hasnol NDS, Jinap S, Sanny M. 2014. Effect of different types of sugars in a marinating formulation of heterocyclic amines in grilled chicken. Food Chem. 145:514–521.
  • Irnanda K, Meiftasari A, Nagadi S, Lukitaningsih E. 2012. Safety evaluation of chicken satay in Yogyakarta Indonesia based on benzo[a]pyrene content. Indonesian J Cancer Chemoprevent. 3(3):433–437.
  • Jahurul MHA, Jinap S, Zaidul ISM, Sahena F, Farhadian A, Hajeb P. 2013. Determination of fluoranthene, benzo[b]fluoranthene and benzo[a]pyrene in meat and fish products and their intake by Malaysian. Food Biosci. 1:73–80.
  • Janoszka B, Warzecha L, Blaszczyk U, Bodzek D. 2004. Organic compounds formed in thermally treated high protein food part 1: polycyclic aromatic hydrocarbons. Acta Chromatogr. 14:115–128.
  • Jinap S, Mohd-Mokhtar MS, Farhadian A, Hasnol NDS, Jaafar NS, Hajeb P. 2013. Effects of varying degrees of doneness on the formation of heterocyclic aromatic amines in chicken and beef satay. Meat Sci. 94(2):202–207.
  • Jinap S, Shahzad ZI, Selvam RMP. 2015. Effect of selected local spices marinades on the reduction of heterocyclic amines in grilled beef (satay). LWT-Food Sci Technol. 63:919–926.
  • Kao TS, Chen S, Chen CJ, Huang CW, Chen BH. 2012. Evaluation of analysis of polycyclic aromatic hydrocarbons by the QuEChERS method and gas chromatography–mass spectrometry and their formation in poultry meat as affected by marinating and frying. J Agric Food Chem. 60(6):1380–1389.
  • Kazerouni N, Sinha R, Hsu CH, Greenberg A, Rothman N. 2001. Analysis of 200 food items for benzo[a]pyrene and estimation of its intake in an epidemiologic study. Food Chem Toxicol. 39(5):423–436.
  • Kim HJ, Lee JS, Kim A, Koo S, Cha HJ, Han J-A, Do Y, Kim KM, Kwon BS, Mittler RS, et al. 2013. TLR2 signalling in tubular epithelial cells regulates NK cell recruitment in kidney ischemia-reperfusion injury. J Immunol. 191:2657–2664.
  • Kizil M, Oz F, Besler HT. 2011. A review on the formation of carcinogenic/mutagenic heterocyclic aromatic amines. J Food Process Technol. 2(5):120–125.
  • Larsson BK, Sahlberg GP, Eriksson AT, Busk LA. 1983. Polycyclic aromatic hydrocarbons in grilled food. J Agric Food Chem. 31(4):867–873.
  • Louis ED, Zheng W. 2010. β-carboline alkaloids and essential tremor: exploring the environmental determinants of one of the most prevalent neurological diseases. Sci World J. 10:1783–1794.
  • Messner C, Murkovic M. 2004. Evaluation of a new model system for studying the formation of heterocyclic amines. J Chromatogr B Analyt Technol Biomed Life Sci. 802(1):19–26.
  • Meurillion M, Engel E. 2016. Mitigation strategies to reduce the impact of heterocyclic aromatic amines in proteinaceous foods. Trends Food Sci Technol. 50:70–84.
  • Moazzen M, Ahmadkhaniha R, Gorji ME, Yunesian M, Rastkari N. 2013. Magnetic solid-phase extraction based on magnetic multi-walled carbon nanotubes for the determination of polycyclic aromatic hydrocarbons in grilled meat samples. Talanta. 115:957–965.
  • Mohammadi M, Valizadeh-Kakhki F. 2016. Polycyclic aromatic hydrocarbons determination in grilled beef and chicken. Polycycl Aromat Compd. 1–11. doi:10.1080/10406638.2016.1236824
  • Murkovic M. 2004. Chemistry, formation and occurrence of genotoxic heterocyclic aromatic amines in fried products. Eur J Lipid Sci Technol. 106(11):777–785.
  • Murkovic M. 2007. Analysis of heterocyclic aromatic amines. Anal Bioanal Chem. 389(1):139–146.
  • Nerurkar PV, Marchand LL, Cooney RV. 1999. Effects of marinating with Asian marinades or Western barbecue sauce on PhIP and MeIQx formation in barbecued beef. Nutr Cancer. 34(2):147–152.
  • Nozal MJ, Bernal JL, Toribio ML, Diego JC, Ruiz A. 2004. Rapid and sensitive method for determining free amino acids on honey by gas chromatography with flame ionization or mass spectrometric detection. J Chromatogr. 1047(1):137–146.
  • Onyango AA, Lalah JO, Wandiga SO. 2012. The effect of local cooking methods on polycyclic aromatic hydrocarbons (PAHs) contents in beef, goat meat, and pork as potential sources of human exposure in Kisumu City, Kenya. Polycycl Aromat Compd. 32:656–668.
  • Oz F, Yuzer MO. 2016. The effects of cooking on wire and stone barbecue at different cooking levels on the formation of heterocyclic aromatic amines and polycyclic aromatic hydrocarbons in beef steak. Food Chem. 203:59–66.
  • Ozden O. 2005. Changes in amino acid and fatty acid composition during shelf-life of marinated fish. J Sci Food Agr. 85:2015–2020.
  • Park J-H, Penning T. 2009. Polyaromatic hydrocarbons. In: Stadler RH, Lineback DR, editors. Process-induced food toxicants: occurrence, formation, mitigation, and health risks. New Jersey: Wiley; p. 243–282.
  • Perello G, Marti-Cid R, Castell V, Llobet JM, Domingo JL. 2009. Concentrations of polybrominated diphenyl ethers, hexachlorobenzene and polycyclic aromatic hydrocarbons in various foodstuffs before and after cooking. Food Chem Toxicol. 47:709–715.
  • Sanny M, Jinap S, Bakker EJ, Van Boekel MAJS, Luning PA. 2012. Possible causes of variation in acrylamide concentration in French fries prepared in food service establishments: an observational study. Food Chem. 132:134–143.
  • Sharma RK, Chan WG, Seeman JI, Hajaligol MR. 2003. Formation of low molecular weight heterocycles and polycyclic aromatic compounds (PACs) in the pyrolysis of α-amino acids. J Anal Appl Pyrolysis. 66:97–121.
  • Singh L, Varshney JG, Agarwal T. 2016. Polycyclic aromatic hydrocarbons formation and occurrence in processed food. Food Chem. 199:768–781.
  • Skog K, Steineck G, Augustsson K, Jӓgerstad M. 1995. Effect of cooking temperature on the formation of heterocoyclic amines in fried meat products and pan residues. Carcinogenesis. 16(4):861–867.
  • Suzuki A, Homma N, Fukuda A, Hirao K, Urya T, Ikeuchi Y. 1994. Effects of high pressure treatment on the flavour-related components in meat. Meat Sci. 37:369–379.
  • Szterk A. 2013. Chemical state of heterocyclic aromatic amines in grilled beef: evaluation by in vitro digestion model and comparison of alkali hydrolysis and organic solvent for extraction. Food Chem Toxicol. 62:653–660.
  • Szterk A. 2015a. Acridine derivatives (PANHs, azaarenes) in raw, fried or grilled pork from different origins, and PANH formation during pork thermal processing. J Food Compos Anal. 43:18–24.
  • Szterk A. 2015b. Heterocyclic aromatic amines in grilled beef: the influence of free amino acids, nitrogenous bases, nucleosides, protein and glucose on HAA content. J Food Compost Anal. 40:39–46.
  • Szterk A, Jesionkowska K. 2015. Influence of the cold storage time of raw beef meat grilling parameters on sensory quality and content of Heterocyclic Aromatic Amines. LWT-Food Sci Technol. 61(2):299–308.
  • Szterk A, Roszko M. 2014. Simultaneous determination of free amino acids, L-carnosine, purine, pyrimidine, and nucleosides in meat by liquid chromatography/single quadrupole mass spectrometry. J Liq Chromatogr Relat Technol. 37(5):664–680.
  • Szterk A, Roszko M, Cybulski A. 2012a. Determination of azaarenes in oils using the LC-APCI-MS/MS technique: new environmental toxicant in food oils. J Sep Sci. 35:2858–2865.
  • Szterk A, Roszko M, Malek K, Kurek M, Zbieć M, Waszkiewicz-Robak B. 2012b. Profiles and concentrations of heterocyclic aromatic amines formed in beef during various heat treatments depend on the time of ripening and muscle type. Meat Sci. 92(4):587–595.
  • Szterk A, Waszkiewicz-Robak B. 2014. Influenced of selected quality factors of beef on the profile and the quantity of heterocyclic aromatic amines during processing at high temperature. Meat Sci. 96:1177–1184.
  • Tang D, Liu JJ, Rundle A, Neslund-Dudas C, Savera AT, Bock CH, Nock NL, Yang JJ, Rybicki BA. 2007. Grilled meat consumption and PhIP-DNA adducts in prostate carcinogenesis. Cancer Epidemiol Biomarkers Prev. 16(4):803–808.
  • Teixeira VH, Casal S, Oliveira MBPP. 2007. PAHs content in sunflower, soybean and virgin olive oils: evaluation in commercial samples and during refining process. Food Chem. 104:106–112.
  • Totsuka Y, Ushiyama H, Ishihara J, Sinha R, Goto S, Sugimura T, Wakabayashi K. 1999. Quantification of the co-mutagenic β-carbolines, norharman and harman, in cigarette smoke condensates and cooked foods. Cancer Lett. 143(2):139–143.
  • Turesky RJ. 2009. Heterocyclic aromatic amines. In: Stadler RH, Lineback DR, editors. Process-induced food toxicants: occurrence, formation, mitigation, and health risks. New Jersey: Wiley; p. 75–116.
  • Turesky RJ, Le Marchand L. 2011. Metabolism and biomarkers of heterocyclic aromatic amines in molecular epidemiology studies: lessons learned from aromatic amines. Chem Res Toxicol. 24(8):1169–1214.
  • Viegas O, Novo P, Pinho O, Ferreira IMPIVO. 2012. Effect of charcoal types and grilling conditions on formation of heterocyclic aromatic amines (HAs) and polycyclic aromatic hydrocarbons (PAHs) in grilled muscle foods. Food Chem Toxicol. 50:2128–2134.
  • Vlahova-Vangelova D, Dragoev S. 2014. Marination: effect on meat safety and human health. A review. Bulg J Agric Sci. 20(3):503–509.
  • Zelinkova Z, Wenzl T. 2015. The occurrence of 16 EPA PAHs in food – a review. Polycycl Aromat Compd. 35:248–284.
  • Zeng M, He Z, Zheng Z, Qin F, Tao G, Zhang S, Gao Y, Chen J. 2014. Effect of six Chinese spices on heterocyclic amine profiles in roast beef patties by ultra-performance liquid chromatography-tandem mass spectrometry and principal component analysis. J Agric Food Chem. 62(40):9908–9915.
  • Zheng W, Lee S-A. 2009. Well-done meat intake, heterocyclic amine exposure, and cancer risk. Nutr Cancer. 61(4):437–446.

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