Intervening to Repair Cognitive and Behavioural Problems in Adults Exposed to Childhood Malnutrition
Summary
Globally, in 2011, 52 million children under 5 years old suffered from acute malnutrition, and a further 165 million children showed evidence of chronic undernutrition or stunting. It was also estimated that 3.1 million children died in 2011 of malnutrition related causes. The survivors, due to deprivation of critical nutrients in the most important period of development and growth, are left with permanent damage, including an increased risk of cardio-metabolic disease, poorer educational achievement and diminished earning potential. In Jamaica in 2012, 2.5% of children were moderately or severely underweight (more than two standard deviations below weight-for-age by international reference populations), falling from as high as 8.9% in 1993. Though there have been modest reductions in the incidence of acute malnutrition in Jamaica over the past 20 years, the risk remains high in poor families and among children who are being weaned. Hence, the problem is an ongoing one and we have a significant pool of survivors of childhood malnutrition who have now reached adulthood and face the consequences of early nutrient deprivation. The brain is particularly vulnerable to the effects of malnutrition and studies have demonstrated both structural (brain atrophy) and functional (cognitive impairment and poor academic achievement) changes. This evidence, however, has been mainly in later childhood and adolescence. In addition, there is local data that suggests that cardio-metabolic risk factors are increased in these adult survivors, which are well-described precursors of cerebrovascular disease and cognitive impairment. Therefore, in adulthood there may be accelerated cognitive decline due to a poor cardio-metabolic profile superimposed on pre-existing brain injury. We hypothesise that there are differences in cognitive function (poorer memory and executive function)and emotional responses in adult survivors of childhood malnutrition compared to those not exposed to early childhood malnutrition. There is evidence suggesting that aerobic exercise and omega-3 supplementation have some benefit in reversing cognitive decline in older adults, but they have not been investigated in survivors of childhood malnutrition.Hence, we propose to introduce a six month intervention of supervised aerobic exercise and omega-3 supplementation, and will compare cognitive function pre and post intervention/placebo between malnutrition survivors and controls.
Timeline
- Start
- 2018-01-15
- Primary completion
- 2020-09-07
- Completion
- 2020-12-14
Publications
- Background Francis-Emmanuel PM, Thompson DS, Barnett AT, Osmond C, Byrne CD, Hanson MA, Gluckman PD, Forrester TE, Boyne MS. Glucose metabolism in adult survivors of severe acute malnutrition. J Clin Endocrinol Metab. 2014 Jun;99(6):2233-40. doi: 10.1210/jc.2013-3511. Epub 2014 Feb 11.
- Background Tennant IA, Barnett AT, Thompson DS, Kips J, Boyne MS, Chung EE, Chung AP, Osmond C, Hanson MA, Gluckman PD, Segers P, Cruickshank JK, Forrester TE. Impaired cardiovascular structure and function in adult survivors of severe acute malnutrition. Hypertension. 2014 Sep;64(3):664-71. doi: 10.1161/HYPERTENSIONAHA.114.03230. Epub 2014 Jun 30.
- Background Angevaren M, Aufdemkampe G, Verhaar HJ, Aleman A, Vanhees L. Physical activity and enhanced fitness to improve cognitive function in older people without known cognitive impairment. Cochrane Database Syst Rev. 2008 Jul 16;(3):CD005381. doi: 10.1002/14651858.CD005381.pub3.
- Background Dangour AD, Allen E, Elbourne D, Fletcher A, Richards M, Uauy R. Fish consumption and cognitive function among older people in the UK: baseline data from the OPAL study. J Nutr Health Aging. 2009 Mar;13(3):198-202. doi: 10.1007/s12603-009-0057-2.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Omega-3 supplement | Unknown | 2 g | — |