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Possible Mechanism of Protective Effect of Folic Acid in Neural Tube Defects

by Sudha Bhat on December 2, 2016 at 5:59 PM
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Highlights

Neural tube defects (NTDs) are serious birth defects of the brain, spine, or spinal cord, which generally occur in the first month of pregnancy and could cause mental retardation, permanent disability or even infant mortality in some cases.


The two most common neural tube defects are spina bifida (split spine) and anencephaly (absence of a major portion of the brain).

‘H3K27me3 has been recognized as an epigenetic marker during neuronal differentiation and folate supplementation has protective effects against neural tube defects.’

Folate is believed to have protective effects against NTDs as it plays an important role in cell proliferation, differentiation and transcriptional regulation of genes. Past studies have demonstrated that prenatal folic acid supplementation could reduce risk of NTDs by nearly 70%, though the exact mechanism is not yet clear.

Research in rats was undertaken to evaluate the association between the H3K27me3 gene which is believed to be crucial in the regulation of neuronal differentiation and ACat2 (Acyl-coenzyme a-cholesterol acyltransferase 2), to study the protective mechanism of folic acid (FA) in neural tube defects. The ACat2 gene codes for a protein that is involved in folate metabolism.

Study

Results

Conclusion

Reference:

  1. Zhai S. The association and significance of H3K27me3 and a folate metabolic gene ACat2 in neural tube defects. Nutrition Journal 2016; 15:95 DOI: 10.1186/s12937-016-0212-7
Source: Medindia

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