Abd-Elhakim YM, Moustafa GG, Hashem MM, Ali HA, Abo-El-Sooud K, El-Metwally AE. (2019). Influence of the long-term exposure to tartrazine and chlorophyll on the fibrogenic signalling pathway in liver and kidney of rats: the expression patterns of collagen 1-alpha, TGFbeta-1, fibronectin, and caspase-3 genes. Environ Sci Pollut Res Int 26:12368-12378. https://pubmed.ncbi.nlm.nih.gov/30847814/
Abd-Elhakim, Y.M., Behairy, A., Hashem, M.M.M. et al. Toll-like receptors and nuclear factor kappa B signaling pathway involvement in hepatorenal oxidative damage induced by some food preservatives in rats. Sci Rep 13, 5938 (2023). https://doi.org/10.1038/s41598-023-32887-9
Acero et al., 1998. Occupational asthma and food allergy due to Carmine. Allergy, 53, 897–901.
Adler GK, Hornik ES, Murray G, Bhandari S, Yadav Y, Heydarpour M, Basu R, Garg R, Tirosh A. Acute effects of the food preservative propionic acid on glucose metabolism in humans. BMJ Open Diabetes Res Care. 2021 Jul;9(1):e002336.
Aguayo-Guerrero JA, Méndez-García LA, Manjarrez-Reyna AN, Esquivel-Velázquez M, León-Cabrera S, Meléndez G, Zambrano E, Ramos-Martínez E, Fragoso JM, Briones-Garduño JC, Escobedo G (2023). Newborns from Mothers Who Intensely Consumed Sucralose during Pregnancy Are Heavier and Exhibit Markers of Metabolic Alteration and Low-Grade Systemic Inflammation: A Cross-Sectional, Prospective Study. Biomedicines. 2023 Feb 21;11(3):650. doi: 10.3390/biomedicines11030650. PMID: 36979631; PMCID: PMC10045555. https://pubmed.ncbi.nlm.nih.gov/36979631/
Ahangari H, Bahramian B, Khezerlou A, Tavassoli M, Kiani-Salmi N, Tarhriz V, Ehsani A. Association between monosodium glutamate consumption with changes in gut microbiota and related metabolic dysbiosis-A systematic review. Food Sci Nutr. 2024 Apr 29;12(8):5285-5295. doi: 10.1002/fsn3.4198. PMID: 39139924; PMCID: PMC11317663. https://onlinelibrary.wiley.com/doi/10.1002/fsn3.4198
Ali Noorafshan, Maedeh Hashemi, Saied Karbalay-Doust, Fatemeh Karimi, High dose Allura Red, rather than the ADI dose, induces structural and behavioral changes in the medial prefrontal cortex of rats and taurine can protect it, Acta Histochemica, Volume 120, Issue 6, 2018 https://doi.org/10.1016/j.acthis.2018.07.004
Ali, M. Y., Hassan, G. M., Hassan, A. M. S., Mohamed, Z. A., & Ramadan, M. F. (2019). In vivo genotoxicity assessment of sunset yellow and sodium benzoate in female rats. Drug and chemical toxicology, 1-10. https://pubmed.ncbi.nlm.nih.gov/30208729/
Alofe O, Kisanga E, Inayat-Hussain SH, Fukumura M, Garcia-Milian R, Perera L, Vasiliou V, Whirledge S (2019). Determining the endocrine disruption potential of industrial chemicals using an integrative approach: Public databases, in vitro exposure, and modeling receptor interactions. Environ Int. 2019 Oct;131:104969. doi: 10.1016/j.envint.2019.104969. Epub 2019 Jul 13. PMID: 31310931; PMCID: PMC6728168. https://pubmed.ncbi.nlm.nih.gov/31310931/
Amadasi A, Mozzarelli A, Meda C, Maggi A and Cozzini P, 2009. Identification of Xenoestrogens in Food Additives by an Integrated in Silico and in vitro Approach. Chemical Research in Toxicology, 22, 52-63 https://pubmed.ncbi.nlm.nih.gov/19063592/
American Society of Health-System Pharmacists 2014; Book Drug Information 2014. Bethesda, MD. 2014, p. 2777
Amin KA, Abdel Hameid H, Abd Elsttar AH. Effect of food azo dyes tartrazine and carmoisine on biochemical parameters related to renal, hepatic function and oxidative stress biomarkers in young male rats. Food Chem Toxicol 2010; 48: 2994–2999. https://pubmed.ncbi.nlm.nih.gov/20678534/
Anbara, H., Kian, M., Darya, G. H., & Sheibani, M. T. (2022). Long‐term intake of aspartame‐induced cardiovascular toxicity is reflected in altered histochemical parameters, evokes oxidative stress, and trigger P53‐dependent apoptosis in a mouse model. International Journal of Experimental Pathology, 103(6), 252-262. https://doi.org/10.1111/iep.12458
Anbara, H., Sheibani, M. T., & Razi, M. (2020). Long-term effect of aspartame on male reproductive system: Evidence for testicular histomorphometrics, Hsp70-2 protein expression and biochemical status. International journal of fertility & sterility, 14(2), 91. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382684/
Anbara, H., Sheibani, M. T., Razi, M., & Kian, M. (2021). Insight into the mechanism of aspartame‐induced toxicity in male reproductive system following long‐term consumption in mice model. Environmental toxicology, 36(2), 223-237. https://doi.org/10.1002/tox.23028
ANSES, 2005. Opinion of the Scientific Panel on Food Additives, Flavourings, Processing Aids and Materials in Contact with Food on a request from the Commission related to Semicarbazide in foods (2005) https://efsa.onlinelibrary.wiley.com/doi/pdf/10.2903/j.efsa.2005.219
ANSES, 2008. Avaliação dos riscos à saúde relacionados ao excesso dos limites de qualidade de bromatos em águas destinadas ao consumo humano. https://www.anses.fr/fr/content/fiche-20-evaluation-des-risques-sanitaires-lies-au-depassement-des-limites-de-qualite-des-0
ANSES, 2013. Parecer da Anses em resposta à consulta da Autoridade Europeia de Segurança Alimentar sobre seu projeto de parecer a respeito da reavaliação do aspartame (E951) como aditivo alimentar. Consulta n° 2013-SA-0016. https://www.anses.fr/fr/system/files/ERCA2013sa0016.pdf
ANSES, 2014. Exposição alimentar ao alumínio https://www.anses.fr/en/content/foodborne-exposure-aluminium
ANSES, 2015. Parecer de 19 de novembro de 2014, revisado em 9 de janeiro de 2015, relativo à avaliação dos benefícios e riscos nutricionais dos adoçantes intensos. Consulta n°2011-SA-0161. https://www.anses.fr/fr/system/files/NUT2011sa0161Ra.pdf
ANSES, 2015. Parecer relativo à avaliação da ingestão de vitaminas e minerais provenientes da alimentação não enriquecida, da alimentação enriquecida e de suplementos alimentares na população francesa. Consulta n°2012-SA-0142. https://www.anses.fr/fr/content/avis-de-lanses-relatif-%C3%A0-l%E2%80%99%C3%A9valuation-des-apports-en-vitamines-et-min%C3%A9raux-issus-de
ANSES, 2016. Parecer sobre os desreguladores endócrinos (SNPE): ATBC (acetilcitrato de tributila, n°CAS 77-90-7), TBC (citrato de tributila, n° CAS 77-94-1), BHT (hidroxitolueno butilado, n°CAS 128-37-0), ácido tereftálico (n° CAS 100-21-0), metil salicilato (n°CAS 119-36-8) e iprodiona (n° CAS 36734-19-7). https://www.anses.fr/fr/system/files/REACH2016RE0001.pdf
ANSES, 2017. Parecer relativo à exposição alimentar a nanopartículas de dióxido de titânio.
ANSES, 2019. Parecer da Agência Nacional de Segurança Sanitária da Alimentação, do Meio Ambiente e do Trabalho relativo aos riscos associados à ingestão do aditivo alimentar E171.
ANSES, 2020. Relatório de especialistas coletivos: Nanomateriais em produtos alimentícios https://www.anses.fr/en/content/nanomaterials-food-ansess-recommendations-improving-their-identification-and-better
ANSES, 2020. Relatório de especialistas coletivos, maio de 2020. Nanomateriais em produtos destinados à alimentação. https://www.anses.fr/fr/system/files/ERCA2016SA0226Ra.pdf
ANSES, 2021. Parecer da ANSES sobre um guia específico de avaliação de riscos à saúde para nanomateriais em produtos alimentícios https://www.anses.fr/en/system/files/ERCA2016SA0226EN.pdf
ANSES, 2022. Avaliação dos riscos relacionados ao consumo de nitratos e nitritos. https://www.anses.fr/fr/content/r%C3%A9duire-l%E2%80%99exposition-aux-nitrites-et-aux-nitrates-dans-l%E2%80%99alimentation
Aouey et al. Silica Nanoparticles Induce Hepatotoxicity by Triggering Oxidative Damage, Apoptosis, and Bax-Bcl2 Signaling Pathway. Biol Trace Elem Res. 2021 Jun 10.
Arnold et al., 2012. Artificial food colors and attention-deficit/hyperactivity symptoms: conclusions to dye for. Neurotherapeutics, 9(3), 599-609. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3441937/
Azad et al., 2017. Nonnutritive sweeteners and cardiometabolic health: a systematic review and meta-analysis of randomized controlled trials and prospective cohort studies. Cmaj, 189(28), E929-E939. https://www.ncbi.nlm.nih.gov/pubmed/28716847
Azad, M. B., Archibald, A., Tomczyk, M. M., Head, A., Cheung, K. G., de Souza, R. J., ... & Dolinsky, V. W. (2020). Nonnutritive sweetener consumption during pregnancy, adiposity, and adipocyte differentiation in offspring: evidence from humans, mice, and cells. International Journal of Obesity, 44(10), 2137-2148. https://doi.org/10.1038/s41366-020-0575-x
Baad‐Hansen et al. Effect of systemic monosodium glutamate (MSG) on headache and pericranial muscle sensitivity. Cephalalgia. 2010 Jan;30(1):68-76.
Baldwin JL, Chou AH and Solomon WR, 1997. Popsicle-induced anaphylaxis due to Carmine dye allergy. Annals of Allergy, Asthma and Immunology, 79, 415–419.
Bandyopadhyay, A., Ghoshal, S., & Mukherjee, A. (2008). Genotoxicity testing of low-calorie sweeteners: aspartame, acesulfame-K, and saccharin. Drug and chemical toxicology, 31(4), 447-457. https://doi.org/10.1080/01480540802390270
Barakat, H.; Al-Roug, K.; Algonaiman, R.; Althwab, S.A.; Alfheeaid, H.A.; Alhomaid, R.M.; Almujaydil, M.S.; Bushnaq, T.; Ebeid, T.A (2023). Biological Assessment of Stevioside and Sucralose as Sucrose Substitutes for Diabetics on STZ-Induced Diabetes in Rats. Molecules 2023, 28, 940. https://doi.org/10.3390/molecules28030940
Barciela, P., Perez-Vazquez, A., & Prieto, M. A. (2023). Azo dyes in the food industry: Features, classification, toxicity, alternatives, and regulation. Food and Chemical Toxicology, 178. https://doi.org/10.1016/j.fct.2023.113935
Beards, E., Tuohy, K., & Gibson, G. (2010). A human volunteer study to assess the impact of confectionery sweeteners on the gut microbiota composition. British Journal of Nutrition, 104(5),