The Consumption of Dairy and Its Association with Nutritional Status in the South East Asian Nutrition Surveys (SEANUTS)
Abstract
:1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- United Nations. The Millennium Development Goals Report 2015. Available online: http://www.un.org/millenniumgoals/2015_MDG_Report/pdf/MDG%202015%20Summary%20web_english.pdf (accessed on 8 September 2015).
- United Nations Children’s Fund; World Health Organisation; The World Bank; UNICEF-WHO-World Bank. Joint Child Malnutrition Estimates; UNICEF: New York, NY, USA; WHO: Geneva, Switzerland; The World Bank: Washington, DC, USA, 2012. [Google Scholar]
- Sandjaja, S.; Budiman, B.; Harahap, H.; Ernawati, F.; Soekatri, M.; Widodo, Y.; Sumedi, E.; Rustan, E.; Sofia, G.; Syarief, S.N.; et al. Food consumption and nutritional and biochemical status of 0.5–12-year-old Indonesian children: The SEANUTS study. Br. J. Nutr. 2013, 110, S11–S20. [Google Scholar] [CrossRef] [PubMed]
- Poh, B.K.; Ng, B.K.; Siti Haslinda, M.D.; Nik Shanita, S.; Wong, J.E.; Budin, S.B.; Ruzita, A.T.; Ng, L.O.; Khouw, I.; Norimah, A.K. Nutritional status and dietary intakes of children aged 6 months to 12 years: Findings of the Nutrition Survey of Malaysian Children (SEANUTS Malaysia). Br. J. Nutr. 2013, 110, S21–S35. [Google Scholar] [CrossRef] [PubMed]
- Rojroongwasinkul, N.; Kijboonchoo, K.; Wimonpeerapattana, W.; Purttiponthanee, S.; Yamborisut, U.; Boonpraderm, A.; Kunapan, P.; Thasanasuwan, W.; Khouw, I. SEANUTS: The nutritional status and dietary intakes of 0.5–12-year-old Thai children. Br. J. Nutr. 2013, 110, S36–S44. [Google Scholar] [CrossRef] [PubMed]
- Le Nguyen, B.K.; Le Thi, H.; Nguyen Do, V.A.; Tran Thuy, N.; Nguyen Huu, C.; Thanh Do, T.; Deurenberg, P.; Khouw, I. Double burden of undernutrition and overnutrition in Vietnam in 2011: Results of the SEANUTS study in 0·5-11-year-old children. Br. J. Nutr. 2013, 110, S45–S56. [Google Scholar] [CrossRef] [PubMed]
- Poh, B.K.; Rojroongwasinkul, N.; Le Nguyen, B.K.; Sandjaja, A.T.R.; Yamborisut, U.; Hong, T.N.; Ernawati, F.; Deurenberg, P.; Parikh, P. 25-hydroxy-vitamin D demography and the risk of vitamin D insufficiency in the South East Asian Nutrition Surveys (SEANUTS). Asia Pac. J. Clin. Nutr. 2016, 25, 538–548. [Google Scholar] [CrossRef] [PubMed]
- Food and Agricultural Organization. Plates, Pyramids, Planet. Developments in National Healthy and Sustainable Dietary Guidelines: A State of Play Assessment. Available online: http://www.fao.org/3/a-i5640e.pdf (accessed on 19 May 2018).
- Koo, H.C.; Poh, B.K.; Lee, S.T.; Chong, K.H.; Bragt, M.C.E.; Abd Talib, R. Are Malaysian children achieving dietary guideline recommendations? Asia Pac. J. Public Health 2016, 28, 8S–20S. [Google Scholar] [CrossRef] [PubMed]
- Pereira, P.C. Milk nutritional composition and its role in human health. Nutrition 2014, 30, 619–627. [Google Scholar] [CrossRef] [PubMed]
- Michaelsen, K.F. Cow’s milk in the prevention and treatment of stunting and wasting. Food Nutr. Bull. 2013, 34, 249–251. [Google Scholar] [CrossRef] [PubMed]
- Food and Agriculture Organization. Milk and Dairy Products in Human Nutrition. 2013. Available online: http://www.fao.org/docrep/018/i3396e/i3396e.pdf (accessed on 8 September 2015).
- Le Nguyen, B.K.; Burgers, M.R.; Nguyen Huu, C.; Bui Van, T.; Nguyen Dinh, D.; Deurenberg, P.; Schaafsma, A. Nutrient intake in Vietnamese preschool and school-aged children is not adequate: The role of dairy. Food Nutr. Bull. 2016, 37, 100–111. [Google Scholar] [CrossRef]
- Widodo, Y.; Sandjaja, S.; Sumedi, E.; Khouw, I.; Deurenberg, P. The effect of socio-demographic variables and dairy use on the intake of essential macro- and micronutrients in 0.5–12-year-old Indonesian children. Asia Pac. J. Clin. Nutr. 2016, 25, 356–367. [Google Scholar] [CrossRef] [PubMed]
- Hoppe, C.; Mølgaard, C.; Michaelsen, K.F. Cow’s milk and linear growth in industrialized and developing countries. Annu. Rev. Nutr. 2006, 26, 131–173. [Google Scholar] [CrossRef] [PubMed]
- Schaafsma, A.; Deurenberg, P.; Calame, W.; van den Heuvel, E.G.H.M.; van Beusekom, C.; Hautvast, J.; Sandjaja; Poh, B.K.; Rojroongwasinkul, N.; Le Nguyen, B.K.; et al. Design of the South East Asian Nutrition Survey (SEANUTS): A four-country multistage cluster design study. Br. J. Nutr. 2013, 110, S2–S10. [Google Scholar] [CrossRef] [PubMed]
- World Health Organization. WHO Child Growth Standards: Length/Height-for-Age, Weight-for-Age, Weight-for-Length, Weight-for Height and Body Mass Index-for-Age; Methods and Development; World Health Organization: Geneva, Switzerland, 2006; Available online: http://www.who.int/childgrowth/publications/technical_report_pub/en/ (accessed on 28 December 2015).
- De Onis, M.; Onyango, A.W.; Borghi, E.; Siyam, A.; Nishida, C.; Siekmann, J. Development of a WHO growth reference for school-aged children and adolescents. Bull. World Health Organ. 2007, 85, 660–667. [Google Scholar] [CrossRef] [PubMed]
- World Health Organization. Haemoglobin Concentrations for the Diagnosis of Anaemia and Assessment of Severity; Vitamin and Mineral Nutrition Information System; World Health Organization: Geneva, Switzerland, 2011; Available online: http://www.who.int/vmnis/indicators/haemoglobin (accessed on 7 September 2015).
- World Health Organization. Serum Ferritin Concentrations for the Assessment of Iron Status and Iron Deficiency in Populations; Vitamin and Mineral Nutrition Information System; World Health Organization: Geneva, Switzerland, 2011; Available online: http://www.who.int/vmnis/indicators/serum_ferritin.pdf (accessed on 9 September 2015).
- World Health Organization. Global Prevalence of Vitamin A Deficiency in Populations at Risk 1995–2005; WHO Global Database on Vitamin A Deficiency; World Health Organization: Geneva, Switzerland, 2009; Available online: http://www.who.int/vmnis/vitamina/prevalence/en/ (accessed on 7 September 2015).
- Misra, M.; Pacaud, D.; Petryk, A.; Collett-Solberg, P.F.; Kappy, M. Vitamin D deficiency in children and its management: Review of current knowledge and recommendations. Pediatrics 2008, 122, 398–417. [Google Scholar] [CrossRef] [PubMed]
- Black, R.E.; Allen, L.H.; Bhutta, Z.A.; Caulfield, L.E.; de Onis, M.; Ezzati, M.; Mathers, C.; Rivera, J. Maternal and child undernutrition: Global and regional exposures and health consequences. Lancet 2008, 371, 243–260. [Google Scholar] [CrossRef]
- Grantham-McGregor, S.; Cheung, Y.B.; Cueto, S.; Glewwe, P.; Richter, L.; Strupp, B. Developmental potential in the first 5 years for children in developing countries. Lancet 2007, 369, 60–70. [Google Scholar] [CrossRef] [Green Version]
- DeBoer, M.D.; Lima, A.A.M.; Oria, R.B.; Scharf, R.J.; Moore, S.R.; Luna, M.A.; Guerrant, R.L. Early childhood growth failure and the developmental origins of adult disease: Do enteric infections and malnutrition increase risk for the metabolic syndrome? Nutr. Rev. 2012, 70, 642–653. [Google Scholar] [CrossRef] [PubMed]
- Orr, J.B. Influence of amount of milk consumption on the rate of growth of school children. Br. Med. J. 1928, 1, 140–141. [Google Scholar] [CrossRef] [PubMed]
- Chen, S.T. Impact of a school milk programme on the nutritional status of school children. Asia Pac. J. Public Health 1989, 3, 19–25. [Google Scholar] [CrossRef] [PubMed]
- De Beer, H. Dairy products and physical stature: A systematic review and meta-analysis of controlled trials. Econ. Hum. Biol. 2012, 10, 299–309. [Google Scholar] [CrossRef] [PubMed]
- Semba, R.D.; Moench-Pfanner, R.; Sun, K.; de Pee, S.; Akhter, N.; Rah, J.H.; Campbell, A.A.; Badham, J.; Bloem, M.W.; Kraemer, K. Consumption of micronutrient-fortified milk and noodles is associated with lower risk of stunting in preschool-aged children in Indonesia. Food Nutr. Bull. 2011, 32, 347–353. [Google Scholar] [CrossRef] [PubMed]
- Semba, R.D.; Shardell, M.; Sakr Ashour, F.A.; Moaddel, R.; Trehan, I.; Maleta, K.M.; Ordiz, M.I.; Kraemer, K.; Khadeer, M.A.; Ferrucci, L.; et al. Child stunting is associated with low circulating essential amino acids. EBioMedicine 2016, 6, 246–252. [Google Scholar] [CrossRef] [PubMed]
- Laplante, M.; Sabatini, D.M. mTOR signalling in growth control and disease. Cell 2012, 149, 274–293. [Google Scholar] [CrossRef] [PubMed]
- Darapheak, C.; Takano, T.; Kizuki, M.; Nakamura, K.; Seino, K. Consumption of animal source foods and dietary diversity reduce stunting in children in Cambodia. Int. Arch. Med. 2013, 6, 29. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Muslimatun, S.; Wiradnyani, L.A.A. Dietary diversity, animal source food consumption and linear growth among children aged 1–5 years in Bandung, Indonesia: A longitudinal observational study. Br. J. Nutr. 2016, 116, S27–S35. [Google Scholar] [CrossRef] [PubMed]
- Louie, J.C.Y.; Flood, V.M.; Hector, D.J.; Rangan, A.M.; Gill, T.P. Dairy consumption and overweight and obesity: A systematic review of prospective cohort studies. Obes. Rev. 2011, 12, e582–e592. [Google Scholar] [CrossRef] [PubMed]
- Maillot, M.; Rehm, C.D.; Vieux, F.; Rose, C.M.; Drewnowski, A. Beverage consumption patterns among 4–19 y old children in 2009-14 NHANES show that the milk and 100% juice pattern is associated with better diets. Nutr. J. 2018, 17, 54. [Google Scholar] [CrossRef] [PubMed]
- Khor, G.L.; Chee, W.S.S.; Shariff, Z.M.; Poh, B.K.; Arumugam, M.; Rahman, J.A.; Theobald, H.E. High prevalence of vitamin D insufficiency and its association with BMI-for-age among primary school children in Kuala Lumpur, Malaysia. BMC Public Health 2011, 11, 95. [Google Scholar] [CrossRef] [PubMed]
- Palacios, C.; Gonzalez, L. Is vitamin D deficiency a major global public health problem? J. Steroid Biochem. Mol. Biol. 2014, 144, 138–145. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Al-Daghri, N.M.; Aljohani, N.; Al-Attas, O.S.; Krishnaswamy, S.; Alfawaz, H.; Al-Ajlan, A.; Alokail, M.S. Dairy products consumption and serum 25-hydroxyvitamin D level in Saudi children and adults. Int. J. Clin. Exp. Pathol. 2015, 8, 8480–8486. [Google Scholar] [PubMed]
- Lien, D.T.K.; Nhung, B.T.; Khan, N.C.; Hop, L.T.; Nga, N.T.Q.; Hung, N.T.; Kiers, J.; Shigeru, Y.; te Biesebeke, R. Impact of milk consumption on performance and health of primary school children in rural Vietnam. Asia Pac. J. Clin. Nutr. 2009, 18, 326–334. [Google Scholar]
- Lomer, M.C.E.; Parkes, G.C.; Sanderson, J.D. Review article: Lactose intolerance in clinical practice—Myths and realities. Aliment. Pharm. Therap. 2008, 27, 93–103. [Google Scholar] [CrossRef] [PubMed]
- Allen, L.H. How common is vitamin B-12 deficiency. Am. J. Clin. Nutr. 2009, 89, 693S–696S. [Google Scholar] [CrossRef] [PubMed]
- Akhtar, S. Zinc status in South Asian population—An update. J. Health Popul. Nutr. 2013, 31, 139–149. [Google Scholar] [CrossRef] [PubMed]
Indonesia | Malaysia | Thailand | Vietnam | All Four Countries | ||||||
---|---|---|---|---|---|---|---|---|---|---|
Sample size | 3163 | 3472 | 2943 | 2798 | 12,376 | |||||
Population | 53,184,526 | 5,740,266 | 9,662,074 | 19,402,735 | 87,989,601 | |||||
Mean | SE | Mean | SE | Mean | SE | Mean | SE | Mean | SE | |
Age (years) | 6.6 | 0.1 | 7.1 | 0.1 | 7.2 | 0.1 | 7.4 | 0.1 | 7.1 | 0.0 |
Weight (kg) | 19.4 | 0.2 | 25.5 | 0.4 | 24.3 | 0.3 | 22.1 | 0.2 | 22.9 | 0.1 |
Height (cm) | 110.5 | 0.4 | 118.2 | 0.6 | 118.2 | 0.5 | 118.0 | 0.3 | 116.2 | 0.2 |
BMI (kg/m2) | 15.4 | 0.1 | 17.0 | 0.1 | 16.4 | 0.1 | 15.4 | 0.0 | 16.1 | 0.0 |
HAZ | −1.44 | 0.03 | −0.55 | 0.03 | −0.52 | 0.02 | −0.88 | 0.02 | −0.84 | 0.01 |
WAZ | −1.23 | 0.04 | −0.33 | 0.03 | −0.39 | 0.03 | −0.81 | 0.03 | −0.70 | 0.02 |
BAZ | −0.47 | 0.03 | 0.14 | 0.03 | −0.10 | 0.03 | −0.54 | 0.03 | −0.23 | 0.02 |
Hb (g/L) | 122 | 0 | 131 | 0 | 125 | 1 | 127 | 1 | 126 | 0 |
Ferritin (μg/L) | 46.8 | 1.0 | 48.5 | 1.5 | 59.4 | 1.9 | 49.1 | 2.3 | 51.0 | 0.9 |
Retinol (μmol/L) | 1.47 | 0.02 | 1.06 | 0.01 | 1.23 | 0.02 | 1.05 | 0.03 | 1.18 | 0.01 |
25-hydroxyvitamin D (nmol/L) | 53.1 | 0.9 | 52.7 | 1.0 | 59.5 | 1.1 | 55.9 | 1.7 | 55.7 | 0.7 |
Indonesia | Malaysia | Thailand | Vietnam | All Four Countries | |
---|---|---|---|---|---|
UHT/flavoured milk (>100 g) | 5 | 3 | 84 | 34 | 32 |
Milk powder (>15 g) | 19 | 41 | 14 | 11 | 22 |
Condensed milk (>10 g) | 27 | 15 | 0 | 4 | 12 |
Dairy user * | 52 | 69 | 98 | 47 | 68 |
Dairy Per Day | <1 Dairy Consumption | 1 Dairy Consumption | ≥2 Dairy Consumptions | |||
---|---|---|---|---|---|---|
Mean | SE | Mean | SE | Mean | SE | |
Energy | 74 a | 1 | 90 b | 1 | 97 c | 1 |
Protein | 119 a | 1 | 158 b | 1 | 179 c | 1 |
Calcium | 55 a | 1 | 96 b | 1 | 83 c | 1 |
Iron | 76 a | 1 | 117 b | 2 | 101 b | 2 |
Zinc | 75 a | 1 | 112 b | 1 | 148 c | 2 |
Vitamin B1 | 71 a | 1 | 114 b | 1 | 141 c | 2 |
Vitamin B2 | 69 a | 1 | 147 b | 2 | 184 c | 2 |
Vitamin B3 | 63 a | 1 | 92 b | 1 | 103 c | 1 |
Vitamin C | 73 a | 2 | 132 b | 3 | 99 c | 2 |
Vitamin A | 63 a | 1 | 96 b | 1 | 88 c | 2 |
Vitamin D | 41 a | 1 | 86 b | 2 | 101 c | 2 |
<1 Dairy Consumption/Day | 1 Dairy Consumption/Day | ≥2 Dairy Consumptions/Day | ||||
---|---|---|---|---|---|---|
Mean | SE | Mean | SE | Mean | SE | |
Age (years) | 7.8 a | 0.1 | 6.3 b | 0.1 | 7.1 c | 0.1 |
Height (cm) | 114.6 a | 0.1 | 115.9 b | 0.1 | 117.1 c | 0.1 |
Weight (kg) | 22.2 a | 0.2 | 22.8 b | 0.1 | 23.2 b | 0.2 |
BMI (kg/m2) | 16.0 a | 0.1 | 16.0 a | 0.1 | 16.1 a | 0.1 |
HAZ | −1.09 a | 0.02 | −0.84 b | 0.02 | −0.63 c | 0.02 |
WAZ | −0.90 a | 0.03 | −0.73 b | 0.03 | −0.50 c | 0.03 |
BAZ | −0.26 a | 0.03 | −0.25 a | 0.03 | −0.17 a | 0.03 |
Stunted (%) | 21.4 a | 15.2 b | 10.0 c | |||
Underweight (%) | 18.0 a | 15.0 ab | 12.0 b | |||
Thinness (%) | 6.9 a | 8.3 a | 7.9 a | |||
Overweight (%) | 6.7 a | 6.7 a | 7.9 a | |||
Obese (%) | 7.3 a | 6.9 a | 7.3 a |
Stunted | Underweight | Thinness † | Overweight † | Obese † | ||||||
---|---|---|---|---|---|---|---|---|---|---|
OR | 95% CI | OR | 95% CI | OR | 95% CI | OR | 95% CI | OR | 95% CI | |
<1 dairy consumption/day | 1 | - | 1 | - | 1 | - | 1 | - | 1 | - |
1 dairy consumption/day | 0.7 * | 0.6, 0.9 | 0.9 | 0.7, 1.1 | 1.3 | 1.0, 1.6 | 1.0 | 0.8, 1.2 | 0.9 | 0.7, 1.2 |
≥2 dairy consumptions/day | 0.5 * | 0.4, 0.6 | 0.7 * | 0.6, 0.9 | 1.2 | 0.9, 1.6 | 1.2 | 1.0, 1.6 | 1.1 | 0.8, 1.4 |
n | <1 Dairy Consumption/Day | 1 Dairy Consumption/Day | ≥2 Dairy Consumptions/Day | ||||
---|---|---|---|---|---|---|---|
Mean | SE | Mean | SE | Mean | SE | ||
Hb (g/L) | 4149 | 126 a | 0 | 126 a | 0 | 127 a | 0 |
Ferritin (μg/L) | 3041 | 48.5 a | 1.6 | 50.2 ab | 1.5 | 55.1 b | 1.4 |
Ferritin (μg/L) † | 2861 | 45.7 a | 1.4 | 46.4 a | 1.4 | 49.6 a | 1.5 |
Retinol (μmol/L) | 3024 | 1.15 a | 0.02 | 1.19 a | 0.02 | 1.22 a | 0.02 |
25 Hydroxyvitamin D (nmol/L) | 1987 | 51.6 a | 1.3 | 58.7 b | 1.2 | 57.0 b | 0.9 |
Anaemia | 13.1 a | 11.6 a | 10.9 a | ||||
Iron deficiency † | 6.6 a | 4.9 a | 4.1 a | ||||
Vitamin A deficiency | 7.5 a | 3.9 b | 2.9 b | ||||
Vitamin D insufficiency | 53.8 a | 39.4 b | 40.6 b | ||||
ODDS | 95% CI | ODDS | 95% CI | ODDS | 95% CI | ||
Anaemia | 1 | - | 0.8 | 0.6, 1.2 | 0.8 | 0.5, 1.1 | |
Iron deficiency † | 1 | - | 0.7 | 0.4, 1.3 | 0.6 | 0.3, 1.2 | |
Vitamin A deficiency | 1 | - | 0.5 * | 0.3, 0.9 | 0.4 * | 0.2, 0.7 | |
Vitamin D deficiency | 1 | - | 0.5 * | 0.4, 0.7 | 0.6 * | 0.4, 0.8 |
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Nguyen Bao, K.L.; Sandjaja, S.; Poh, B.K.; Rojroongwasinkul, N.; Huu, C.N.; Sumedi, E.; Aini, J.N.; Senaprom, S.; Deurenberg, P.; Bragt, M.; et al. The Consumption of Dairy and Its Association with Nutritional Status in the South East Asian Nutrition Surveys (SEANUTS). Nutrients 2018, 10, 759. https://doi.org/10.3390/nu10060759
Nguyen Bao KL, Sandjaja S, Poh BK, Rojroongwasinkul N, Huu CN, Sumedi E, Aini JN, Senaprom S, Deurenberg P, Bragt M, et al. The Consumption of Dairy and Its Association with Nutritional Status in the South East Asian Nutrition Surveys (SEANUTS). Nutrients. 2018; 10(6):759. https://doi.org/10.3390/nu10060759
Chicago/Turabian StyleNguyen Bao, Khanh Le, Sandjaja Sandjaja, Bee Koon Poh, Nipa Rojroongwasinkul, Chinh Nguyen Huu, Edith Sumedi, Jamil Nor Aini, Sayamon Senaprom, Paul Deurenberg, Marjolijn Bragt, and et al. 2018. "The Consumption of Dairy and Its Association with Nutritional Status in the South East Asian Nutrition Surveys (SEANUTS)" Nutrients 10, no. 6: 759. https://doi.org/10.3390/nu10060759
APA StyleNguyen Bao, K. L., Sandjaja, S., Poh, B. K., Rojroongwasinkul, N., Huu, C. N., Sumedi, E., Aini, J. N., Senaprom, S., Deurenberg, P., Bragt, M., Khouw, I., & On behalf of the SEANUTS Study Group. (2018). The Consumption of Dairy and Its Association with Nutritional Status in the South East Asian Nutrition Surveys (SEANUTS). Nutrients, 10(6), 759. https://doi.org/10.3390/nu10060759