Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/31321
Title: Preconception telomere length as a novel maternal biomarker to assess the risk of spina bifida in the offspring
Authors: Aoulad Fares, Damiat
Schalekamp-Timmermans, Sarah
NAWROT, Tim 
Steegers-Theunissen, Regine P. M.
Issue Date: 2020
Publisher: WILEY
Source: BIRTH DEFECTS RESEARCH, 112 (9) , p. 645 -651
Abstract: Background Periconception interactions between maternal conditions and environmental and genetic factors are involved in the pathogenesis and prevention of neural tube defects (NTD), such as spina bifida. These factors have in common that they can impair the oxidative pathway, resulting in excessive (chronic) oxidative stress and inflammation. Methods Review of the literature concerning underlying mechanisms and biomarkers of aging particularly during reproduction. A number of molecular markers for biological aging have been identified, including telomere length (TL). Excessive telomere shortening is an index of senescence, causes genomic instability and is associated with a higher risk of age-related diseases. Furthermore, TL shortening is associated with the similar environmental and lifestyle exposures associated with NTD risk. Results Embryonic mice deficient in the telomerase gene show shorter TL and failure of closure of the neural tube as the main defect, suggesting that this developmental process is among the most sensitive to telomere loss and chromosomal instability. Conclusions From this background, we hypothesize that preconceptional long term exposure to harmful environmental and lifestyle risk factors accelerates a woman's aging process, which can be measured by TL, and thereby her underlying risk of NTD offspring. Alternatively, it might be that women with an increased NTD risk already exhibit a more advanced biological age before the onset of pregnancy compared to women of identical calendar age.
Notes: Steegers-Theunissen, RPM (reprint author), Erasmus MC, Univ Med Ctr, POB 2040, NL-3000 CA Rotterdam, Netherlands.
r.steegers@erasmusmc.nl
Other: Steegers-Theunissen, RPM (corresponding author), Erasmus MC, Univ Med Ctr, POB 2040, NL-3000 CA Rotterdam, Netherlands. r.steegers@erasmusmc.nl
Keywords: aging;folic acid;lifestyle;neural tube defects;nutrition;oxidative stress;telomere length
Document URI: http://hdl.handle.net/1942/31321
ISSN: 2472-1727
e-ISSN: 2472-1727
DOI: 10.1002/bdr2.1682
ISI #: WOS:000529743400001
Rights: 2020 The Authors. Birth Defects Research published by Wiley Periodicals Inc.
Category: A1
Type: Journal Contribution
Validations: ecoom 2021
Appears in Collections:Research publications

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