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Biological Pathways Associated with Vitamins in Autism Spectrum Disorder
Darlan Gusso1, Gustavo Ricardo Krupp Prauchner2, Alessandra Schmitt Rieder2
1Neuroprotection and Neurometabolic Diseases Laboratory (Wyse's Lab), Graduate Program in Biological Sciences: Biochemistry, Department of Biochemistry, Federal University of Rio Grande Do Sul (UFRGS), Rua Ramiro Barcelos, 2600-Anexo, Zip Code 90035003, Porto Alegre, RS, Brazil. Darlan.gusso@edu.pucrs.br.
Insights
This review examines the roles of folate, vitamin B12, and vitamin D in autism spectrum disorder (ASD). It also explores nutrient impacts during pregnancy and potential links between maternal stress and ASD risk.
Area of Science:
- Neuroscience
- Developmental Biology
- Nutritional Science
Background:
- Autism spectrum disorder (ASD) etiology is largely unknown, with potential genetic and environmental influences.
- Nutrient deficiencies during pregnancy, particularly folate, vitamin B12, and vitamin D, are linked to central nervous system impairment and neurodevelopmental issues.
- Folic acid (FA) supplementation is recommended during early pregnancy to prevent neural tube defects, while vitamin B12 and D play roles in cognitive function, brain development, and gene expression.
Purpose of the Study:
- To review current literature on the roles of folate, vitamin B12, and vitamin D in ASD.
- To discuss the impact of nutrient deficiency or excess during fetal development on ASD risk.
- To explore potential confounding factors in vitamin supplementation studies and propose cortisol as a link between maternal stress, vitamin status, and ASD.
Main Methods:
- Literature review of recent studies on vitamins (folate, B12, D) and ASD.
- Analysis of the effects of nutrient deficiencies and hypersupplementation during gestation.
- Exploration of biases in vitamin supplementation trials and the role of maternal stress (cortisol).
Main Results:
- Vitamins B9 (folate), B12, and D are crucial for fetal neurodevelopment and have been associated with ASD.
- Nutrient imbalances during pregnancy may influence ASD susceptibility.
- Maternal stress, regulated by cortisol, may mediate the relationship between vitamin status and ASD prevalence.
Conclusions:
- Vitamins folate, B12, and D are critical during pregnancy for neurodevelopment and may influence ASD risk.
- Further research is needed to understand the complex interplay between maternal nutrition, stress, and ASD.
- Cortisol may act as a bridge linking vitamin disorders and ASD susceptibility.
Abstract:
Autism spectrum disorder (ASD) is characterized by early-appearing social communication deficits, with genetic and environmental factors potentially playing a role in its etiology, which remains largely unknown. During pregnancy, certain deficiencies in critical nutrients are mainly associated with central nervous system impairment. The vitamin B9 (folate) is primarily related to one-carbon and methionine metabolism, participating in methyl donor generation. In addition, supplementation with folic acid (FA) is recommended by the World Health Organization (WHO) in the first three gestational months to prevent neural tube defects. Vitamin B12 is related to folate regeneration, converting it into an active form. Deficiencies in this vitamin have a negative impact on cognitive function and brain development since it is involved in myelin synthesis. Vitamin D is intimately associated with Ca2+ levels, acting in bone development and calcium-dependent signaling. This vitamin is associated with ASD at several levels since it has a relation with ASD genes and oxidative stress environment. This review carries the recent literature about the role of folate, vitamin B12, and vitamin D in ASD. In addition, we discuss the possible impact of nutrient deficiency or hypersupplementation during fetal development. On the other hand, we explore the biases of vitamin supplementation studies such as the loss of participants in retrospective studies, as well as multiple variants that are not considered in the conclusion, like dietary intake or auto-medication during pregnancy. In this regard, we aim to contribute to the discussion about the role of vitamins in ASD currency, but also in pregnancy and fetal development as well. Furthermore, stress during pregnancy can be an ASD predisposition, with cortisol as a regulator. In this view, we propose that cortisol is the bridge of susceptibility between vitamin disorders and ASD prevalence.
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