Nutrition and neurodevelopment: mechanisms of developmental dysfunction and disease in later life
- 14 December 1999
- journal article
- Published by Cambridge University Press (CUP) in Nutrition Research Reviews
- Vol. 12 (2) , 231-253
- https://doi.org/10.1079/095442299108728947
Abstract
Nutrition plays a central role in linking the fields of developmental neurobiology and cognitive neuroscience. It has a profound impact on the development of brain structure and function and malnutrition can result in developmental dysfunction and disease in later life. A number of diseases, including schizophrenia, may be related to neurodevelopmental insults such as malnutrition, hypoxia, viruses or in utero drug exposure. Some of the most significant findings on nutrition and neurodevelopment during the last three decades, and especially during the last few years, are discussed in this review. Attention is focused on the underlying cellular and molecular mechanisms by which diet exerts its effects. Randomized intervention studies have revealed important effects of early nutrition on later cognitive development, and recent epidemiological findings show that both genetics and environment are risk factors for schizophrenia. Particularly important is the effect of early nutrition on development of the hippocampus, a brain structure important in establishing learning and memory, and hence for cognitive performance. A major aim of future research should be to elucidate the molecular mechanisms underlying nutritionally-induced impairment of neurodevelopment and specifically to determine the mechanisms by which early nutritional experience affects later cognitive performance. Key research objectives should include: (1) increased understanding of mechanisms underlying the normal processes of ageing and neurodegenerative disorders; (2) assessment of the role of susceptibility genes in modulating the effects of early nutrition on neurodevelopment; and (3) development of nutritional and pharmaceutical strategies for preventing and/or ameliorating the adverse effects of early malnutrition on long-term programming.Keywords
This publication has 134 references indexed in Scilit:
- Cognitive function and prenatal exposure to ionizing radiationTeratology, 1999
- Differential Involvement of Synaptic Vesicle and Presynaptic Plasma Membrane Proteins in Alzheimer's DiseaseBiochemical and Biophysical Research Communications, 1997
- Gene-Environment Interaction in Schizophrenia: Season-of-Birth Effect Reveals -Etiologically Different SubgroupsPsychopathology, 1996
- Neurological differences between 9-year-old children fed breast-milk or formula-milk as babiesThe Lancet, 1994
- Dendritic development in neocortex of infants with early postnatal life undernutritionPediatric Neurology, 1993
- Tissue levels of polyunsaturated fatty acids during early human developmentThe Journal of Pediatrics, 1992
- Early diet in preterm babies and developmental status in infancy.Archives of Disease in Childhood, 1989
- Prenatal protein malnutrition affects synaptic potentiation in the dentate gyrus of rats in adulthoodDevelopmental Brain Research, 1986
- Undernutrition and the development of brain neurotransmitter systemsLife Sciences, 1984
- Deficits in synapse-to-neuron ratio due to early undernutrition show evidence of catch-up in later lifeCellular and Molecular Life Sciences, 1980