Ana, F., Paula, F.A., Parabens paradoxes in cosmetic formulations: a review. Int J Med Res Pharm Sci, 8, 2016, 3.
Audigier, V., White, I., Jolani, S., Debray, T., Quartagno, M., Carpenter, J., Buuren, S., Resche-Rigon, M., Multiple imputation for multilevel data with continuous and binary variables. Stat. Sci., 33, 2017, 10.1214/18-STS646.
Azeredo, D.B.C., de Sousa Anselmo, D., Soares, P., Graceli, J.B., Magliano, D.C., Miranda-Alves, L., Environmental endocrinology: Parabens hazardous effects on hypothalamic-pituitary-thyroid axis. Int. J. Mol. Sci., 24(20), 2023, 10.3390/ijms242015246.
Bellavia, A., Chiu, Y.H., Brown, F.M., Minguez-Alarcon, L., Ford, J.B., Keller, M., Petrozza, J., Williams, P.L., Ye, X., Calafat, A.M., Hauser, R., James-Todd, T., Urinary concentrations of parabens mixture and pregnancy glucose levels among women from a fertility clinic. Environ. Res. 168 (2019), 389–396, 10.1016/j.envres.2018.10.009.
Birukov, A., Cuadrat, R., Polemiti, E., Eichelmann, F., Schulze, M.B., Advanced glycation end-products, measured as skin autofluorescence, associate with vascular stiffness in diabetic, pre-diabetic and normoglycemic individuals: a cross-sectional study. Cardiovasc. Diabetol., 20(1), 2021, 110, 10.1186/s12933-021-01296-5.
Casas, M., Basagaña, X., Sakhi, A.K., Haug, L.S., Philippat, C., Granum, B., Manzano-Salgado, C.B., Brochot, C., Zeman, F., de Bont, J., Andrusaityte, S., Chatzi, L., Donaire-Gonzalez, D., Giorgis-Allemand, L., Gonzalez, J.R., Gracia-Lavedan, E., Grazuleviciene, R., Kampouri, M., Lyon-Caen, S., Vrijheid, M., Variability of urinary concentrations of non-persistent chemicals in pregnant women and school-aged children. Environ. Int. 121 (2018), 561–573, 10.1016/j.envint.2018.09.046.
Cerami, C., Founds, H., Nicholl, I., Mitsuhashi, T., Giordano, D., Vanpatten, S., Lee, A., Al-Abed, Y., Vlassara, H., Bucala, R., Cerami, A., Tobacco smoke is a source of toxic reactive glycation products. Proc. Natl. Acad. Sci. USA 94:25 (1997), 13915–13920, 10.1073/pnas.94.25.13915.
Chen, C.Y., Zhang, J.Q., Li, L., Guo, M.M., He, Y.F., Dong, Y.M., Meng, H., Yi, F., Advanced glycation end products in the skin: molecular mechanisms, methods of measurement, and inhibitory pathways. Front. Med., 9, 2022, 837222, 10.3389/fmed.2022.837222.
Chen, Q., Huang, Q., Liu, W., Zhou, X., Advanced glycation end products via skin autofluorescence as a new biomarker for major adverse cardiovascular events: a meta-analysis of prospective studies. Nutr. Metabol. Cardiovasc. Dis. 32:5 (2022), 1083–1092, 10.1016/j.numecd.2022.01.032.
Cheng, G., Yu, Z., Huang, J.Z., The cluster bootstrap consistency in generalized estimating equations. J. Multivariate Anal. 115 (2013), 33–47.
Cheung, S., semhelpinghands: Helper Functions for Structural Equation Modeling. R package version 0.1.9.10. 2023 sfcheung.github.io/semhelpinghands.
Commission Regulation (EU). No 1004/2014 of 18 September 2014 amending annex V to regulation (EC) no 1223/2009 of the European Parliament and of the council on cosmetic products. 5-8 282 https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX:32014R1004.
Cook, N.R., Gillman, M.W., Rosner, B.A., Taylor, J.O., Hennekens, C.H., Prediction of young adult blood pressure from childhood blood pressure, height, and weight. J. Clin. Epidemiol. 50:5 (1997), 571–579, 10.1016/S0895-4356(97)00046-2.
Costa, C., Ozcagli, E., Gangemi, S., Schembri, F., Giambò, F., Androutsopoulos, V., Tsatsakis, A., Fenga, C., Molecular biomarkers of oxidative stress and role of dietary factors in gasoline station attendants. Food Chem. Toxicol. 90 (2016), 30–35, 10.1016/j.fct.2016.01.017.
Da Moura Semedo, C., Webb, M., Waller, H., Khunti, K., Davies, M., Skin autofluorescence, a non-invasive marker of advanced glycation end products: clinical relevance and limitations. Postgrad. Med. J. 93:1099 (2017), 289–294, 10.1136/postgradmedj-2016-134579.
Dewalque, L., Pirard, C., Dubois, N., Charlier, C., Simultaneous determination of some phthalate metabolites, parabens and benzophenone-3 in urine by ultra high pressure liquid chromatography tandem mass spectrometry. J. Chromatogr. B 949–950 (2014), 37–47, 10.1016/j.jchromb.2014.01.002.
Di Pietro, G., Forcucci, F., Chiarelli, F., Endocrine disruptor chemicals and children's health. Int. J. Mol. Sci., 24(3), 2023, 10.3390/ijms24032671.
Elder, R., 3 final report on the safety assessment of methylparaben, ethylparaben, propylparaben, and butylparaben. J. Am. Coll. Toxicol. 3:5 (1984), 147–209, 10.3109/10915818409021274.
Flynn, J.T., Kaelber, D.C., Baker-Smith, C.M., Blowey, D., Carroll, A.E., Daniels, S.R., de Ferranti, S.D., Dionne, J.M., Falkner, B., Flinn, S.K., Gidding, S.S., Goodwin, C., Leu, M.G., Powers, M.E., Rea, C., Samuels, J., Simasek, M., Thaker, V.V., Urbina, E.M., Clinical practice guideline for screening and management of high blood pressure in children and adolescents. Pediatrics, 140(3), 2017, 10.1542/peds.2017-1904.
Fox, J., Weisberg, S., An R Companion to Applied Regression/John Fox, McMaster University, Sanford Weisberg, University of Minnesota. third ed., 2019, SAGE Publications, Inc.
Hayes, A.F., Introduction to Mediation, Moderation, and Conditional Process Analysis : a Regression-based Approach. second ed., 2018, Guilford press, New York (N.Y. http://lib.ugent.be/catalog/rug01:002386794.
Hegab, Z., Gibbons, S., Neyses, L., Mamas, M.A., Role of advanced glycation end products in cardiovascular disease. World J. Cardiol. 4:4 (2012), 90–102, 10.4330/wjc.v4.i4.90.
Heindel, J.J., Vandenberg, L.N., Developmental origins of health and disease: a paradigm for understanding disease cause and prevention. Curr. Opin. Pediatr. 27:2 (2015), 248–253, 10.1097/mop.0000000000000191.
Herbers, J., Miller, R., Walther, A., Schindler, L., Schmidt, K., Gao, W., Rupprecht, F., How to deal with non-detectable and outlying values in biomarker research: best practices and recommendations for univariate imputation approaches. Compr. Psychoneuroendocrinol., 7, 2021, 100052, 10.1016/j.cpnec.2021.100052.
Hou, F.F., Boyce, J., Chertow, G.M., Kay, J., Owen, W.F. Jr., Aminoguanidine inhibits advanced glycation end products formation on beta2-microglobulin. J. Am. Soc. Nephrol. 9:2 (1998), 277–283, 10.1681/asn.V92277.
Janssen, B.G., Madlhoum, N., Gyselaers, W., Bijnens, E., Clemente, D.B., Cox, B., Hogervorst, J., Luyten, L., Martens, D.S., Peusens, M., Plusquin, M., Provost, E.B., Roels, H.A., Saenen, N.D., Tsamou, M., Vriens, A., Winckelmans, E., Vrijens, K., Nawrot, T.S., Cohort profile: the ENVIRonmental influence ON early AGEing (ENVIRONAGE): a birth cohort study. Int. J. Epidemiol., 2017, 10.1093/ije/dyw269.
Keil, A.P., Buckley, J.P., O'Brien, K.M., Ferguson, K.K., Zhao, S., White, A.J., A quantile-based g-Computation approach to addressing the effects of exposure mixtures. Environ. Health Perspect., 128(4), 2020, 047004 10.1289/EHP5838.
Lai, C.-H., Chou, C.-C., Chuang, H.-C., Lin, G.-J., Pan, C.-H., Chen, W.-L., Receptor for advanced glycation end products in relation to exposure to metal fumes and polycyclic aromatic hydrocarbon in shipyard welders. Ecotoxicol. Environ. Saf., 202, 2020, 110920, 10.1016/j.ecoenv.2020.110920.
Lamprea‐Montealegre, J.A., Arnold, A.M., McCLelland, R.L., Mukamal, K.J., Djousse, L., Biggs, M.L., Siscovick, D.S., Tracy, R.P., Beisswenger, P.J., Psaty, B.M., Ix, J.H., Kizer, J.R., Plasma levels of advanced glycation endproducts and risk of cardiovascular events: findings from 2 prospective cohorts. J. Am. Heart Assoc., 11(15), 2022, e024012, 10.1161/JAHA.121.024012.
Liang, J., Yang, X., Liu, Q.S., Sun, Z., Ren, Z., Wang, X., Zhang, Q., Ren, X., Liu, X., Zhou, Q., Jiang, G., Assessment of thyroid endocrine disruption effects of parabens using in vivo, in vitro, and in silico approaches. Environ. Sci. Technol. 56:1 (2022), 460–469, 10.1021/acs.est.1c06562.
Liao, Y.-Y., Ma, Q., Chu, C., Wang, Y., Zheng, W.-L., Hu, J.-W., Yan, Y., Wang, K.-K., Yuan, Y., Chen, C., Mu, J.-J., The predictive value of repeated blood pressure measurements in childhood for cardiovascular risk in adults: the Hanzhong adolescent hypertension study. Hypertens. Res. 43:9 (2020), 969–978, 10.1038/s41440-020-0480-7.
Liu, C.Y., Huang, Q.F., Cheng, Y.B., Guo, Q.H., Chen, Q., Li, Y., Wang, J.G., A comparative study on skin and plasma advanced glycation end products and their associations with arterial stiffness. Pulse 4:4 (2017), 208–218, 10.1159/000453581.
Maillard, L., Action des acides amines sur les sucres : Formation des melanoidines par voie methodique. 1912.
Martín, J.M.P., Peropadre, A., Herrero, Ó., Freire, P.F., Labrador, V., Hazen, M.J., Oxidative DNA damage contributes to the toxic activity of propylparaben in mammalian cells. Mutat. Res. Genet. Toxicol. Environ. Mutagen 702:1 (2010), 86–91.
McNulty, M., Mahmud, A., Feely, J., Advanced glycation end-products and arterial stiffness in hypertension. Am. J. Hypertens. 20:3 (2007), 242–247, 10.1016/j.amjhyper.2006.08.009.
Miyata, T., Wada, Y., Cai, Z., Iida, Y., Horie, K., Yasuda, Y., Maeda, K., Kurokawa, K., van Ypersele de Strihou, C., Implication of an increased oxidative stress in the formation of advanced glycation end products in patients with end-stage renal failure. Kidney Int. 51:4 (1997), 1170–1181, 10.1038/ki.1997.160.
Moldogazieva, N.T., Mokhosoev, I.M., Mel'nikova, T.I., Porozov, Y.B., Terentiev, A.A., Oxidative stress and advanced lipoxidation and glycation end products (ALEs and AGEs) in aging and age-related diseases. Oxid. Med. Cell. Longev., 2019, 2019, 3085756, 10.1155/2019/3085756.
Montazeri, P., Fossati, S., Warembourg, C., Casas, M., Clemente, D.B.P., Garcia-Esteban, R., Nawrot, T.S., Vrijheid, M., Prenatal exposure to phthalates and phenols and preclinical vascular health during early adolescence. Int. J. Hyg Environ. Health, 240, 2022, 113909, 10.1016/j.ijheh.2021.113909.
Nagar, Y., Thakur, R.S., Parveen, T., Patel, D.K., Ram, K.R., Satish, A., Toxicity assessment of parabens in Caenorhabditis elegans. Chemosphere, 246, 2020, 125730, 10.1016/j.chemosphere.2019.125730.
Nicholl, I.D., Bucala, R., Advanced glycation endproducts and cigarette smoking. Cell. Mol. Biol. (Noisy-Le-Grand) 44:7 (1998), 1025–1033.
Nie, Z., rcssci: Visualization of Restricted Cubic Splines. 2023 [(accessed on April 05, 2024)]. Available online: https://cran.r-project.org/web/packages/rcssci/index.html.
Noordzij, M., Lefrandt, J., Graaff, R., Smit, A., Dermal factors influencing measurement of skin autofluorescence. Diabetes Technol. Therapeut. 13 (2011), 165–170, 10.1089/dia.2010.0123.
Nowak, K., Ratajczak-Wrona, W., Gorska, M., Jablonska, E., Parabens and their effects on the endocrine system. Mol. Cell. Endocrinol. 474 (2018), 238–251, 10.1016/j.mce.2018.03.014.
Nowotny, K., Jung, T., Höhn, A., Weber, D., Grune, T., Advanced glycation end products and oxidative stress in type 2 diabetes mellitus. Biomolecules 5:1 (2015), 194–222, 10.3390/biom5010194.
Palacios Colón, L., Rascón, A.J., Ballesteros, E., Determination of parabens and phenolic compounds in dairy products through the use of a two-step continuous SPE system including an enhanced matrix removal sorbent in combination with UHPLC−MS/MS. Foods, 12(15), 2023, 2909 https://www.mdpi.com/2304-8158/12/15/2909.
Prasad, K., Mishra, M., Do advanced glycation end products and its receptor play a role in pathophysiology of hypertension?. Int. J. Angiol. 26:1 (2017), 1–11, 10.1055/s-0037-1598183.
Reimann, B., Sleurs, H., Dockx, Y., Rasking, L., De Boever, P., Pirard, C., Charlier, C., Nawrot, T.S., Plusquin, M., Exposure to endocrine disrupters and cardiometabolic health effects in preschool children: urinary parabens are associated with wider retinal venular vessels. Chemosphere, 328, 2023, 138570, 10.1016/j.chemosphere.2023.138570.
Reimann, B., Vrijens, K., Roels, H.A., Wang, C., Cosemans, C., Van Overmeire, I., Nawrot, T.S., Plusquin, M., In utero exposure to parabens and early childhood BMI z-scores - associations between placental ethyl paraben, longitudinal BMI trajectories and cord blood metabolic biomarkers. Environ. Int., 157, 2021, 106845, 10.1016/j.envint.2021.106845 106845.
Robinson, C.H., Chanchlani, R., High blood pressure in children and adolescents: current perspectives and strategies to improve future kidney and cardiovascular health. Kidney Int Rep 7:5 (2022), 954–970, 10.1016/j.ekir.2022.02.018.
Robinson, O., Basagaña, X., Agier, L., de Castro, M., Hernandez-Ferrer, C., Gonzalez, J.R., Grimalt, J.O., Nieuwenhuijsen, M., Sunyer, J., Slama, R., Vrijheid, M., The pregnancy exposome: multiple environmental exposures in the INMA-sabadell birth cohort. Environ. Sci. Technol. 49:17 (2015), 10632–10641, 10.1021/acs.est.5b01782.
Robles-Rivera, K., Rivera-Paredez, B., Quezada-Sanchéz, A.D., Velázquez-Cruz, R., Salmerón, J., Advanced glycation end products are associated with cardiovascular risk in the Mexican population. Nutr. Metabol. Cardiovasc. Dis. 33:4 (2023), 826–834, 10.1016/j.numecd.2022.12.028.
Roggeman, M., Gys, C., Klimowska, A., Bastiaensen, M., Wielgomas, B., Ait Bamai, Y., Covaci, A., Reviewing the variability in urinary concentrations of non-persistent organic chemicals: evaluation across classes, sampling strategies and dilution corrections. Environ. Res., 215, 2022, 114332, 10.1016/j.envres.2022.114332.
Rosofsky, A., Janulewicz, P., Thayer, K.A., McClean, M., Wise, L.A., Calafat, A.M., Mikkelsen, E.M., Taylor, K.W., Hatch, E.E., Exposure to multiple chemicals in a cohort of reproductive-aged Danish women. Environ. Res. 154 (2017), 73–85, 10.1016/j.envres.2016.12.011.
Rosseel, Y., lavaan: an R package for structural equation modeling. J. Stat. Software, 48, 2011, 10.18637/jss.v048.i02.
RStudio Team. RStudio. 2020, Integrated Development for R. RStudio, PBC, Boston, MA http://www.rstudio.com/.
Rubin, D.B., 2 Multiple Imputation for Nonresponse in Surveys, 2004, 2004, Wiley-Interscience 1 https://go.exlibris.link/XVFwMYgy.
Schmidt, A.M., Yan, S.D., Wautier, J.L., Stern, D., Activation of receptor for advanced glycation end products: a mechanism for chronic vascular dysfunction in diabetic vasculopathy and atherosclerosis. Circ. Res. 84:5 (1999), 489–497, 10.1161/01.res.84.5.489.
Schram, M.T., Schalkwijk, C.G., Bootsma, A.H., Fuller, J.H., Chaturvedi, N., Stehouwer, C.D., Advanced glycation end products are associated with pulse pressure in type 1 diabetes: the EURODIAB prospective complications study. Hypertension 46:1 (2005), 232–237, 10.1161/01.HYP.0000164574.60279.ba.
Shah, K.H., Verma, R.J., Butyl p-hydroxybenzoic acid induces oxidative stress in mice liver-an in vivo study. Acta Pol. Pharm. 68:6 (2011), 875–879.
Shin, M.-Y., Choi, J.W., Lee, S., Kim, S., Kho, Y., Choi, K., Kim, S., Pharmacokinetics of transdermal methyl-, ethyl-, and propylparaben in humans following single dermal administration. Chemosphere, 310, 2023, 136689, 10.1016/j.chemosphere.2022.136689.
Shiue, I., Higher urinary heavy metal, phthalate, and arsenic but not parabens concentrations in people with high blood pressure, U.S. NHANES, 2011-2012. Int. J. Environ. Res. Publ. Health 11:6 (2014), 5989–5999, 10.3390/ijerph110605989.
Song, P., Zhang, Y., Yu, J., Zha, M., Zhu, Y., Rahimi, K., Rudan, I., Global prevalence of hypertension in children: a systematic review and meta-analysis. JAMA Pediatr. 173:12 (2019), 1154–1163, 10.1001/jamapediatrics.2019.3310.
Sourris, K.C., Lyons, J.G., Dougherty, S.L., Chand, V., Straznicky, N.E., Schlaich, M.P., Grima, M.T., Cooper, M.E., Kingwell, B.A., de Courten, M.P., Forbes, J.M., de Courten, B., Plasma advanced glycation end products (AGEs) and NF-κB activity are independent determinants of diastolic and pulse pressure. Clin. Chem. Lab. Med. 52:1 (2014), 129–138, 10.1515/cclm-2012-0850.
Spatari, G., Saitta, S., Cimino, F., Sapienza, D., Quattrocchi, P., Carrieri, M., Barbaro, M., Saija, A., Gangemi, S., Increased serum levels of advanced oxidation protein products and glycation end products in subjects exposed to low-dose benzene. Int. J. Hyg Environ. Health 215:3 (2012), 389–392, 10.1016/j.ijheh.2011.11.001.
Staessen, J., Bulpitt, C.J., O'Brien, E., Cox, J., Fagard, R., Stanton, A., Thijs, L., Van Hulle, S., Vyncke, G., Amery, A., The diurnal blood pressure profile. A population study. Am. J. Hypertens. 5:6 Pt 1 (1992), 386–392, 10.1093/ajh/5.6.386.
Stergiou, G.S., Palatini, P., Parati, G., O'Brien, E., Januszewicz, A., Lurbe, E., Persu, A., Mancia, G., Kreutz, R., 2021 European Society of hypertension practice guidelines for office and out-of-office blood pressure measurement. J. Hypertens. 39:7 (2021), 1293–1302, 10.1097/hjh.0000000000002843.
Urbina, E.M., Khoury, P.R., Bazzano, L., Burns, T.L., Daniels, S., Dwyer, T., Hu, T., Jacobs, D.R. Jr., Juonala, M., Prineas, R., Raitakari, O., Steinberger, J., Venn, A., Woo, J.G., Sinaiko, A., Relation of blood pressure in childhood to self-reported hypertension in adulthood. Hypertension 73:6 (2019), 1224–1230, 10.1161/hypertensionaha.118.12334.
Uribarri, J., Woodruff, S., Goodman, S., Cai, W., Chen, X., Pyzik, R., Yong, A., Striker, G.E., Vlassara, H., Advanced glycation end products in foods and a practical guide to their reduction in the diet. J. Am. Diet. Assoc. 110:6 (2010), 911–916.e912, 10.1016/j.jada.2010.03.018.
van Buuren, S., Groothuis-Oudshoorn, K., Mice: multivariate imputation by chained equations in R. J. Stat. Software 45:3 (2011), 1–67, 10.18637/jss.v045.i03.
Velika, B., Kron, I., Antioxidant properties of benzoic acid derivatives against superoxide radical. Free Radic. Antioxid. 2:4 (2012), 62–67, 10.5530/ax.2012.4.11.
Ward, J.B., Casagrande, S.S., Cowie, C.C., Urinary phenols and parabens and diabetes among US adults, NHANES 2005-2014. Nutr. Metabol. Cardiovasc. Dis. 30:5 (2020), 768–776, 10.1016/j.numecd.2020.01.005.
Warembourg, C., Maitre, L., Tamayo-Uria, I., Fossati, S., Roumeliotaki, T., Aasvang, G.M., Andrusaityte, S., Casas, M., Cequier, E., Chatzi, L., Dedele, A., Gonzalez, J.-R., Gražulevičienė, R., Haug, L.S., Hernandez-Ferrer, C., Heude, B., Karachaliou, M., Krog, N.H., McEachan, R., Basagaña, X., Early-life environmental exposures and blood pressure in children. J. Am. Coll. Cardiol. 74:10 (2019), 1317–1328, 10.1016/j.jacc.2019.06.069.
Wei, M., Wang, P., Wan, Y., Jiang, Y., Song, W., He, Z., Wang, Q., Urinary parabens and their derivatives associated with oxidative stress biomarkers in children from South and Central China: repeated measures. Sci. Total Environ., 817, 2022, 152639, 10.1016/j.scitotenv.2021.152639.
Welch, B.M., Keil, A.P., Bommarito, P.A., van T' Erve, T.J., Deterding, L.J., Williams, J.G., Lih, F.B., Cantonwine, D.E., McElrath, T.F., Ferguson, K.K., Longitudinal exposure to consumer product chemicals and changes in plasma oxylipins in pregnant women. Environ. Int., 157, 2021, 106787, 10.1016/j.envint.2021.106787.
Yin, T., Zhu, X., Cheang, I., Zhou, Y., Liao, S., Lu, X., Zhou, Y., Yao, W., Li, X., Zhang, H., Urinary phenols and parabens metabolites associated with cardiovascular disease among adults in the United States. Environ. Sci. Pollut. Res. Int., 2021, 10.1007/s11356-021-15589-5.
Zamora, A.N., Jansen, E.C., Tamayo-Ortiz, M., Goodrich, J.M., Sánchez, B.N., Watkins, D.J., Tamayo-Orozco, J.A., Téllez-Rojo, M.M., Mercado-García, A., Baylin, A., Meeker, J.D., Peterson, K.E., Exposure to Phenols, Phthalates, and Parabens and Development of Metabolic Syndrome Among Mexican Women in Midlife [Brief Research Report]. Front. Public Health, 9, 2021, 10.3389/fpubh.2021.620769.
Zhang, X., Zhang, Y., Lu, H., Yu, F., Shi, X., Ma, B., Zhou, S., Wang, L., Lu, Q., Environmental exposure to paraben and its association with blood pressure: a cross-sectional study in China. Chemosphere, 339, 2023, 139656, 10.1016/j.chemosphere.2023.139656.
Zhao, Y., Liu, Y., Chen, Y., Wu, X., Xiao, Q., Li, C., Li, M., Hu, W., Gu, H., Lu, S., Exposure to parabens and associations with oxidative stress in adults from South China. Sci. Total Environ., 774, 2021, 144917, 10.1016/j.scitotenv.2020.144917.
Mark Myatt and Ernest Guevarra (2019). zscorer: An Anthropometric z-score Calculator. R package version 0.3.1. URL https://nutriverse.io/zscorer/.