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Advances in Folic Acid Biosensors and Their Significance in Maternal, Perinatal, and Paediatric Preventive Medicine

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Specialty Biotechnology
Date 2023 Oct 27
PMID 37887105
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Abstract

Auxotrophic primates like human beings rely on exogenous dietary vitamin B supplementation to meet their metabolic demands. Folates play a crucial role in nucleotide synthesis and DNA methylation. Maternal folate deficiency causes several pregnancy-related complications, perinatal defects, and early childhood cognitive impairments. New evidence suggests excess FA is a potential risk factor resulting in unfavourable genomic and epigenomic alterations. Thus, it is essential to revisit the need to consistently monitor maternal folate levels during pregnancy. Yet, to date, no point-of-care folate-monitoring biosensor is commercially available. Here, we critically appraise the advances in folate biosensors to understand the translational gaps in biosensor design. Further, our review sheds light on the potential role of folate biosensors in strengthening maternal, perinatal, and child healthcare.

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References
1.
Peng Y, Dong W, Wan L, Quan X . Determination of folic acid via its quenching effect on the fluorescence of MoS quantum dots. Mikrochim Acta. 2019; 186(9):605. DOI: 10.1007/s00604-019-3705-1. View

2.
Barua S, Kuizon S, Junaid M . Folic acid supplementation in pregnancy and implications in health and disease. J Biomed Sci. 2014; 21:77. PMC: 4237823. DOI: 10.1186/s12929-014-0077-z. View

3.
He J, Jiang D, Cui X, Ji C . Vitamin B12 status and folic acid/vitamin B12 related to the risk of gestational diabetes mellitus in pregnancy: a systematic review and meta-analysis of observational studies. BMC Pregnancy Childbirth. 2022; 22(1):587. PMC: 9308279. DOI: 10.1186/s12884-022-04911-9. View

4.
Sharif M, Mohamedain A, Ahmed A, Nasr A, Adam I . Folic acid level and preterm birth among Sudanese women. Matern Health Neonatol Perinatol. 2017; 3:25. PMC: 5709970. DOI: 10.1186/s40748-017-0065-x. View

5.
Wen S, White R, Rybak N, Gaudet L, Robson S, Hague W . Effect of high dose folic acid supplementation in pregnancy on pre-eclampsia (FACT): double blind, phase III, randomised controlled, international, multicentre trial. BMJ. 2018; 362:k3478. PMC: 6133042. DOI: 10.1136/bmj.k3478. View