A 10-Year Impact Evaluation of the Universal Salt Iodization (USI) Intervention in Sarawak, Malaysia, 2008–2018
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Sample
2.2. Assessment of Thyroid Volume
2.3. Urinary Iodine Determination
2.4. Salt Iodine Determination
2.5. Data Analysis
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Bertinato, J. Iodine nutrition: Disorders, monitoring and policies. In The Latest Research and Development of Minerals in Human Nutritio; Academic Press: Cambridge, MA, USA, 2021; pp. 365–415. [Google Scholar]
- Leung, A.; Braverman, L.; Pearce, E. History of U.S. iodine fortification and supplementation. Nutrients 2012, 4, 1740–1746. [Google Scholar] [CrossRef] [PubMed]
- Zimmermann, M.B.; Jooste, P.L.; Pandav, C.S. Iodine-deficiency disorders. Lancet 2008, 372, 1251–1262. [Google Scholar] [CrossRef]
- Andersson, M.; Karumbunathan, V.; Zimmerman, M.B. Global iodine status in 2011 and trends over the past decade. J. Nutr. 2012, 142, 744–750. [Google Scholar] [CrossRef]
- Menon, K.; Skeaff, S. Iodine: Iodine deficiency disorders (IDD). Encycl. Food Health 2016, 3, 437–443. [Google Scholar]
- WHO. Guideline: Fortification of Food-Grade Salt with Iodine for the Prevention and Control of Iodine Deficiency Disorders; World Health Organization: Geneva, Switzerland, 2014. [Google Scholar]
- UNICEF. Sustainable Elimination of Iodine Deficiency; United Nations Children’s Fund: New York, NY, USA, 2008. [Google Scholar]
- WHO/UNICEF/ICCIDDs. Assessment of Iodine Deficiency Disorders and Monitoring Their Elimination: A Guide for Programme Managers, 3rd ed.; World Health Organization: Geneva, Switzerland, 2007. [Google Scholar]
- Chen, P.C.; Lim, P.P. The prevalence of endemic goitre in Tinjar area, Sarawak. Med. J. Malaysia 1982, 37, 265–269. [Google Scholar]
- Maberly, G.F.; Eastman, C.J. Endemic goitre in Sarawak, Malaysia. Somatic growth and aetiology. Southeast Asian J. Trop. Med. Public Health 1976, 7, 434–442. [Google Scholar] [PubMed]
- Foo, L.C.; Zainab, T.; Letchuman, G.R.; Nafikudin, M.; Azriman, R.; Doraisingam, P.; Khalid, A.K. Endemic goitre in Lemanak and Ai River villages of Sarawak. Southeast Asian J. Trop. Med. Public Health 1994, 25, 575–578. [Google Scholar]
- Andrew, K.; Zainab, T.; Yahya, A. Iodine deficiency disorders in Sarawak, Malaysia. Asia Pac. J. Clin. Nutr. 1998, 7, 256–261. [Google Scholar]
- Foo, L.C.; Zainab, T.; Goh, S.Y.; Letchuman, G.R.; Nafikudin, M.; Doraisingam, P.; Khalid, B. Iodization of village water supply in the control of endemic iodine deficiency in rural Sarawak. Biomed. Environ. Sci. 1996, 9, 236–241. [Google Scholar]
- Rusidah, S.; Wan Nazaimoon, W.M.; Ahmad Ali, Z.; Nor Syamlina, C.A.R.; Suhaila, A.G.; Tahir, A. Iodine deficiency status and iodized salt consumption in Malaysia: Findings from a national iodine deficiency disorders survey. Asia Pac. J. Clin. Nutr. 2010, 19, 578–585. [Google Scholar]
- Government of Malaysia. Food Regulation. 1985. Available online: https://extranet.who.int/nutrition/gina/sites/default/filesstore/MYS%201985%20Food%20Regulations_0.pdf (accessed on 5 November 2021).
- Husniza, H.; Wan Nazaimoon, W.M. A cost effective modified micro method for measuring urine iodine. Trop. Med. 2006, 23, 109–115. [Google Scholar]
- Zimmermann, M.B.; Aeberli, I.; Andersson, M.; Assey, V.; Yorg, J.A.; Jooste, P.; Jukić, T.; Kartono, D.; Kusić, Z.; Pretell, E.; et al. Thyroglobulin is a sensitive measure of both deficient and excess iodine intakes in children and indicates no adverse effects on thyroid function in the UIC range of 100–299 mug/L: A UNICEF/ICCIDD study group report. J. Clin. Endocrinol. Metab. 2013, 98, 1271–1280. [Google Scholar] [CrossRef] [PubMed]
- UNICEF. Guidance on the Monitoring of Salt Iodization Programmes and Determination of Population Iodine Status; Iodine Global Network, United Nation Children Fund: Zurich, Switzerland, 2020. [Google Scholar]
- De Meyer, E.M.; Lowenstein, F.W.; Thilly, C.H. The Control of Endemic Goitre; World Health Organization: Geneva, Switzerland, 1979. [Google Scholar]
- Assey, V.D.; Peterson, S.; Kimboka, S.; Ngemera, D.; Mgoba, C.; Ruhiye, D.M. Tanzania national survey on iodine deficiency: Impact after twelve years of salt iodation. BMC Public Health 2009, 9, 319. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Çelmeli, G.; Çürek, Y.; Kücükçetin, I.O.; Gulten, Z.A.; Ozdem, S.; Akcurin, S.; Bircan, I. The results of 16 years of iodization: Assessment of iodine deficiency among school-age children in Antalya, Turkey. J. Clin. Res. Pediatr. Endocrinol. 2020, 12, 256–260. [Google Scholar] [CrossRef]
- Wang, Z.; Zang, J.; Shi, Z.; Zhu, Z.; Song, J.; Zou, S. Iodine status of 8 to 10 years old children within 20 years following compulsory salt iodization policy in Shanghai, China. Nutr. J. 2019, 18, 63. [Google Scholar] [CrossRef]
- Almeida Abudo, L.M.; Francilene, M.A.; Aline, C.C.; Mariana de Souza, M.; Silvia, E.P.; Sylvia do Carmo, C.F. Assessment of the impact of salt iodisation programme on urinary iodine concentrations and goitre rates: A systematic review. J. Nutr. Metab. 2021, 2021, 9971092. [Google Scholar]
- Doggui, R.; Ati-Hellal, M.; Traissac, P.; Lahmar, L.; Ati, J. Adequacy assessment of a universal salt iodization programme two decades after its implementation: A national cross-sectional study of iodine status among school-age children in Tunisia. Nutrients 2016, 9, 6. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Saeidlou, S.N.; Babaei, F.; Ayremlou, P.; Entezarmahdi, R. Has iodized salt reduced iodine-deficiency disorders among school-aged children in north-west Iran? A 9-year prospective study. Public Health Nutr. 2018, 21, 489–496. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Zou, Y.; Lou, X.; Ding, G.; Mo, Z.; Zhu, W.; Mao, G. Iodine nutritional status after the implementation of the new iodized salt concentration standard in Zhejiang Province, China. BMC Public Health 2014, 14, 836. [Google Scholar] [CrossRef] [Green Version]
- Zygmunt, A.; Adamczewski, Z.; Wojciechowska-Durczynska, K.; Krawczyk-Rusiecka, K.; Bieniek, E.; Stasiak, M.; Zygmunt, A.; Purgat, K.; Zakrzewski, R.; Brzezinski, J.; et al. Evaluation of the effectiveness of iodine prophylaxis in Poland based on over 20 years of observations of iodine supply in school-aged children in the central region of the country. Arch. Med. Sci. 2019, 15, 1468–1474. [Google Scholar] [CrossRef]
- Kuay, L.K.; Endu, J.; Chan, Y.Y.; Huey, T.C.; Ismail, H.; Hock, L.K.; Cheong, K.C. Iodine status after a 3-year universal salt iodisation in Sarawak, Malaysia. Int. J. Public Health Res. 2015, 5, 631–636. [Google Scholar]
Characteristics | 2008 | 2018 | p |
---|---|---|---|
n (%) | n (%) | ||
Age (Years) | |||
8 | 378 (34.2) | 315 (31.9) | 0.507 |
9 | 396 (35.9) | 362 (36.7) | |
10 | 330 (29.9) | 310 (31.4) | |
Gender | |||
Boys | 576 (52.2) | 495 (50.1) | 0.262 |
Girls | 528 (47.8) | 493 (49.9) | |
Division | |||
Southern | 569 (51.5) | 352 (35.6) | 0.001 |
Central | 333 (30.2) | 315 (31.9) | |
Northern | 202 (18.3) | 321 (32.5) | |
Total | 1104 | 988 |
Variables | Goitre Prevalence | |
---|---|---|
2008 (N = 1104) | 2018 (N = 988) | |
n (%) | n (%) | |
Age (Years) | ||
8 | 13 (1.2) | 0 (0.0) |
9 | 14 (1.3) | 0 (0.0) |
10 | 5 (0.4) | 1 (0.1) |
Gender | ||
Boys | 16 (1.45) | 1 (0.1) |
Girls | 16 (1.45) | 0 (0.)) |
Division | ||
Southern | 30 (2.7) | 0 (0.0) |
Central | 1 (0.1) | 0 (0.0) |
Northern | 1 (0.1) | 1 (0.1) |
Total goitre rate (TGR) | 32 (2.9) | 1(0.1) |
Year | n | Urine Iodine (µg/L) | p | |
---|---|---|---|---|
Median UIC | IQR | |||
2008 | 1104 | 102.1 | 62.3–146.5 | 0.001 |
2018 | 988 | 126.0 | 71.2–200.0 |
Year | n | Median (IQR) | Salt Iodine Concentrations (mg/kg) Frequency (%) | ||
---|---|---|---|---|---|
<20 | 20–39 | ≥40 | |||
2008 | 120 | 14.7 (0.0–27.0) | 73 (60.8) | 38 (31.7) | 9 (7.5) |
2018 | 382 | 34.4 (20.5–43.9) | 94 (24.6) | 145 (38.0) | 143 (37.4) |
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Kuang Kuay, L.; Ahmad, N.A.; Beng Chin, T.; Ying Ying, C.; Mahjom, M.; Awaluddin, S.M.; Shawaluddin, N.S.; Tuan Lah, T.M.A.; Aris, T. A 10-Year Impact Evaluation of the Universal Salt Iodization (USI) Intervention in Sarawak, Malaysia, 2008–2018. Nutrients 2022, 14, 1585. https://doi.org/10.3390/nu14081585
Kuang Kuay L, Ahmad NA, Beng Chin T, Ying Ying C, Mahjom M, Awaluddin SM, Shawaluddin NS, Tuan Lah TMA, Aris T. A 10-Year Impact Evaluation of the Universal Salt Iodization (USI) Intervention in Sarawak, Malaysia, 2008–2018. Nutrients. 2022; 14(8):1585. https://doi.org/10.3390/nu14081585
Chicago/Turabian StyleKuang Kuay, Lim, Noor Ani Ahmad, Tan Beng Chin, Chan Ying Ying, Maznieda Mahjom, S. Maria Awaluddin, Noor Syaqilah Shawaluddin, Tuan Mohd Amin Tuan Lah, and Tahir Aris. 2022. "A 10-Year Impact Evaluation of the Universal Salt Iodization (USI) Intervention in Sarawak, Malaysia, 2008–2018" Nutrients 14, no. 8: 1585. https://doi.org/10.3390/nu14081585
APA StyleKuang Kuay, L., Ahmad, N. A., Beng Chin, T., Ying Ying, C., Mahjom, M., Awaluddin, S. M., Shawaluddin, N. S., Tuan Lah, T. M. A., & Aris, T. (2022). A 10-Year Impact Evaluation of the Universal Salt Iodization (USI) Intervention in Sarawak, Malaysia, 2008–2018. Nutrients, 14(8), 1585. https://doi.org/10.3390/nu14081585