TSH Mediated the Effect of Iodized Salt on Child Cognition in a Randomized Clinical Trial

1. Zimmermann, MB . Iodine deficiency in pregnancy and the effects of maternal iodine supplementation on the offspring: a review. Am J Clin Nutr. 2009;89:668S-672S.
Google Scholar | Crossref | Medline | ISI2. Glinoer, D, De Nayer, P, Delange, F, et al. A randomized trial for the treatment of excessive thyroid stimulation in pregnancy: maternal and neonatal effects. J Clin Endocrinol Metab. 1995;80:258-269.
Google Scholar | Medline3. Bougma, K, Aboud, FE, Harding, KB, Marquis, GS. Iodine and mental development of children 5 years old and under: a systematic review and meta-analysis. Nutrients. 2013;5:1384-1416.
Google Scholar | Crossref | Medline | ISI4. Zhou, SJ, Anderson, AJ, Gibson, RA, Makrides, M. Effect of iodine supplementation in pregnancy on child development and other clinical outcomes: a systematic review of randomized controlled trials. Am J Clin Nutr. 2003;98:1241-1254.
Google Scholar | Crossref5. Zimmermann, MB . The influence of iron status on iodine utilization and thyroid function. Annu Rev Nutr. 2006;26:367-389.
Google Scholar | Crossref | Medline6. Aburto, N, Abudou, M, Candeias, V, Wu, T. Effect and Safety of Salt Iodization to Prevent Iodine Deficiency Disorders: A Systematic Review with Meta-Analyses. WHO eLibrary of Evidence for Nutrition Actions (eLENA). Geneva: WHO.
Google Scholar7. Santiago, P, Velasco, I, Muela, JA, et al. Infant neurocognitive development is independent of the use of iodized salt or iodine supplements given during pregnancy. Br J Nutr. 2013;110:831-839.
Google Scholar | Crossref | Medline8. Zimmermann, MB . The effects of iodine deficiency in pregnancy and infancy. Paediatr Perinat Epidemiol. 2012;26:108-117.
Google Scholar | Crossref | Medline | ISI9. Aboud, FE, Bougma, K, Lemma, T, Marquis, GS. Evaluation of the effects of iodized salt on the mental development of preschool-aged children: a cluster randomized trial in northern Ethiopia. Matern Child Nutr. 2017;13:e12322.
Google Scholar | Crossref10. Mohammed, H, Marquis, GS, Aboud, F, Bougma, K, Samuel, A. Pre-pregnancy iodized salt improved children's cognitive development in randomized trial in Ethiopia. Matern Child Nutr. 2020;16:e12943.
Google Scholar | Crossref | Medline11. Berbel, P, Mestre, JL, Santamaria, A, et al. Delayed neurobehavioral development in children born to pregnant women with mild hypothyroxinemia during the first month of gestation: the importance of early iodine supplementation. Thyroid. 2009;19:511519.
Google Scholar | Crossref12. Velasco, I, Carreira, M, Santiago, P, et al. Effect of iodine prophylaxis during pregnancy on neurocognitive development of children during the first two years of life. J Clin Endocrinol Metab. 2009;94:3234-3241.
Google Scholar | Crossref | Medline13. Lenth, RV . Some practical guidelines for effective sample size determination. Am Stat. 2001;55:187-193.
Google Scholar | Crossref | ISI14. Hutton, LJ . Are distinctive ethical principles required for cluster randomized controlled trials. Stat Med. 2001;20:473-488.
Google Scholar | Crossref | Medline | ISI15. Bougma, K, Aboud, FE, Lemma, TM, Frongillo, EA, Marquis, GS. Introduction of iodised salt benefits infants’ mental development in a community-based cluster-randomised effectiveness trial in Ethiopia. Br J Nutr. 2018;119:801-809.
Google Scholar | Crossref | Medline16. Jooste, PL, Strydom, E. Methods for determination of iodine in urine and salt. Best Pract Res Clin Endocrinol Metab. 2010;24:77-88.
Google Scholar | Crossref | Medline17. Meers, PD, Chow, CK. Bacteriostatic and bactericidal actions of boric acid against bacteria and fungi commonly found in urine. J Clin Pathol. 1990;43:484-487.
Google Scholar | Crossref | Medline | ISI18. World Health Organization. Haemoglobin concentration for the diagnosis of anaemia and assessment of severity. Vitamins and Minerals Nutrition Information System . Accessed July 11, 2019. http://www.who.int/vmnis/indicators/haemoglobin.pdf
Google Scholar19. Bayley, N . Bayley Scales of Infant and Toddler Development. 3rd ed. Harcourt Assessment, Inc.
Google Scholar20. Sanchis-Gomar, F, Cortell-Ballester, J, Pareja-Galeano, H, Banfi, G, Lippi, G. Hemoglobin point-of-care testing: the HemoCue system. J Lab Autom. 2013;18:198-205.
Google Scholar | SAGE Journals | ISI21. CDC’s laboratory quality assurance and standardization programs . Ensuring the quality of urinary iodine procedures. Accessed July 11, 2019. https://www.cdc.gov/labstandards/equip.html
Google Scholar22. Mehari, A, Challa, F, Gebreyesus, G, Alemayehu, D, Seifu, D. Establishment of reference intervals of thyroid function tests from cord blood of neonates in two selected hospitals, Addis Ababa, Ethiopia. BMC Pediatr. 2016;16:1.
Google Scholar | Crossref | Medline23. World Health Organization. Ferritin concentration for the assessment of iron status and iron deficiency in populations . Vitamins and Minerals Nutrition Information System. Accessed July 11, 2019. http://www.who.int/vmnis/indicators/serum_ferritin.pdf
Google Scholar24. Kumar, R, Musoke, R, Macharia, WM, Revathi, G. Validation of c-reactive protein in the early diagnosis of neonatal .tifis in a tertiary care hospital in Kenya. East Afr Med J. 2010;87:255-261.
Google Scholar | Medline25. Phiri, KS, Calis, JC, Siyasiya, A, Bates, I, Brabin, B, van Hensbroek, MB. New cut-off values for ferritin and soluble transferrin receptor for the assessment of iron deficiency in children in a high infection pressure area. J Clin Pathol. 2009;62:1103-1106.
Google Scholar | Crossref26. Lockwood, CM, MacKinnon, DM. Bootstrapping the standard error of the mediated effect. In: Proceedings of the 23rd Annual Meeting of SAS Users Group International. 1998: 997-1002. © 1999-2021 Lex Jansen. Accessed July 11, 2019. http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.122.5447&rep=rep1&type=pdf
Google Scholar27. Knudsen, N, Bülow, I, Jørgensen, T, Perrild, H, Ovesen, L, Laurberg, P. Serum Tg—a sensitive marker of thyroid abnormalities and iodine deficiency in epidemiological studies. J Clin Endocrinol Metab. 2001;86:3599-3603.
Google Scholar | Medline28. World Health Organization. Trace elements in human nutrition and health . Accessed July 11, 2019. http://apps.who.int/iris/bitstream/10665/37931/2/9241561734_eng.pdf
Google Scholar29. Zimmermann, MB, Jooste, PL, Pandav, CS. Iodine-deficiency disorders. Lancet. 2008;372:1251-1262.
Google Scholar | Crossref | Medline | ISI30. Campos-Barros, A, Musa, A, Flechner, A, et al. Evidence for circadian variations of thyroid hormone concentrations and type II 5′-iodothyronine deiodinase activity in the rat central nervous system. J Neurochem. 1997;68:795-803.
Google Scholar | Crossref | Medline

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