Literature DB >> 26633142

Cord blood telomere length in Latino infants: relation with maternal education and infant sex.

J M Wojcicki1, R Olveda1, M B Heyman1, D Elwan1, J Lin2, E Blackburn2, E Epel3.   

Abstract

OBJECTIVE: Telomere length (TL) has important consequences for early disease and lifelong health. However, few studies have examined determinants of TL at birth. STUDY
DESIGN: Here we test associations between cord blood TL and parental and birth factors associated with exposure to stress and indicative of healthy intrauterine life in Latino infants. We tested associations that were significant in bivariate analysis in a multivariate regression model to identify independent predictors for shorter TL at birth. RESULT: Two novel and independent predictors emerged in our analysis of 54 infants. Female gender was associated with longer TL by ~350 base pairs (adjusted β-coefficient for male gender=-369.57, (95% confidence interval, -718.21 to (-)20.92), P=0.02); rho=-0.26, P=0.057). Increased maternal high-school education, as indicated by a high-school diploma or additional education beyond high school, was also associated with longer TL, by ~500 base pairs (adjusted β-coefficient for high-school diploma or greater=505.68 (95% confidence interval, 151.69 to 859.68), P<0.01); rho=0.36, P<0.01). Increasing head circumference trended towards statistical significance in association with longer TL (adjusted β-coefficient = 7.33; 95% confidence interval -0.52 to 15.18; P=0.07). When we removed all infants who had been exposed to high oxidative stress in pregnancy including those exposed to maternal hypertension, preeclampsia, gestational diabetes, and those who were low birth weight or preterm birth (n=7), increasing birth weight percentile was associated with longer TL (adjusted β-coefficient=8.04 (95% confidence interval 0.07 to 16.00), P=0.048).
CONCLUSION: Shorter TL at birth is associated with being male, low maternal education (less than a high school degree), and a trend towards lower birth weight and head circumference. Given the critical role of long TL in predicting health and disease, these findings contribute to the growing literature attempting to understand determinants of TL.

Entities:  

Mesh:

Year:  2015        PMID: 26633142     DOI: 10.1038/jp.2015.178

Source DB:  PubMed          Journal:  J Perinatol        ISSN: 0743-8346            Impact factor:   2.521


  37 in total

Review 1.  Telomeres: structure and synthesis.

Authors:  E H Blackburn
Journal:  J Biol Chem       Date:  1990-04-15       Impact factor: 5.157

2.  Maternal education and child health: is there a strong causal relationship?

Authors:  S Desai; S Alva
Journal:  Demography       Date:  1998-02

3.  Leukocyte telomere length in healthy Caucasian and African-American adolescents: relationships with race, sex, adiposity, adipokines, and physical activity.

Authors:  Haidong Zhu; Xiaoling Wang; Bernard Gutin; Catherine L Davis; Daniel Keeton; Jeffrey Thomas; Inger Stallmann-Jorgensen; Grace Mooken; Vanessa Bundy; Harold Snieder; Pim van der Harst; Yanbin Dong
Journal:  J Pediatr       Date:  2010-09-19       Impact factor: 4.406

4.  Low social support is associated with shorter leukocyte telomere length in late life: multi-ethnic study of atherosclerosis.

Authors:  Judith E Carroll; Ana V Diez Roux; Annette L Fitzpatrick; Teresa Seeman
Journal:  Psychosom Med       Date:  2013-01-31       Impact factor: 4.312

5.  Impact of intrauterine tobacco exposure on fetal telomere length.

Authors:  Hamisu M Salihu; Anupam Pradhan; Lindsey King; Arnut Paothong; Chiaka Nwoga; Phillip J Marty; Valerie Whiteman
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6.  Maternal psychological distress and fetal growth trajectories: the Generation R Study.

Authors:  J Henrichs; J J Schenk; S J Roza; M P van den Berg; H G Schmidt; E A P Steegers; A Hofman; V W V Jaddoe; F C Verhulst; H Tiemeier
Journal:  Psychol Med       Date:  2009-08-06       Impact factor: 7.723

7.  Childhood socioeconomic status, telomere length, and susceptibility to upper respiratory infection.

Authors:  Sheldon Cohen; Denise Janicki-Deverts; Ronald B Turner; Anna L Marsland; Margaretha L Casselbrant; Ha-Sheng Li-Korotky; Elissa S Epel; William J Doyle
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8.  Telomere length in the newborn.

Authors:  Koji Okuda; Arlene Bardeguez; Jeffrey P Gardner; Paulette Rodriguez; Vijaya Ganesh; Masayuki Kimura; Joan Skurnick; Girgis Awad; Abraham Aviv
Journal:  Pediatr Res       Date:  2002-09       Impact factor: 3.756

9.  Telomere fluorescence measurements in granulocytes and T lymphocyte subsets point to a high turnover of hematopoietic stem cells and memory T cells in early childhood.

Authors:  N Rufer; T H Brümmendorf; S Kolvraa; C Bischoff; K Christensen; L Wadsworth; M Schulzer; P M Lansdorp
Journal:  J Exp Med       Date:  1999-07-19       Impact factor: 14.307

10.  Telomere length measurement by a novel monochrome multiplex quantitative PCR method.

Authors:  Richard M Cawthon
Journal:  Nucleic Acids Res       Date:  2009-01-07       Impact factor: 16.971

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  34 in total

1.  Early Antibiotic Exposure and Risk of Childhood Obesity in Latinos.

Authors:  Annette P Ville; Melvin B Heyman; Rosalinda Medrano; Janet M Wojcicki
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2.  Higher maternal vitamin D concentrations are associated with longer leukocyte telomeres in newborns.

Authors:  Jung-Ha Kim; Gwang Jun Kim; Donghee Lee; Jae-Hong Ko; Inja Lim; Hyoweon Bang; Bart W Koes; Byeongchan Seong; Duk-Chul Lee
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3.  A scoping systematic review of social stressors and various measures of telomere length across the life course.

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4.  Increased Cellular Aging by 3 Years of Age in Latino, Preschool Children Who Consume More Sugar-Sweetened Beverages: A Pilot Study.

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5.  The association between early-life relative telomere length and childhood neurodevelopment.

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6.  Telomere length is reduced in 9- to 16-year-old girls exposed to gestational diabetes in utero.

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Review 7.  Stress, Telomeres, and Psychopathology: Toward a Deeper Understanding of a Triad of Early Aging.

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8.  Sex differences in effects of maternal risk and protective factors in childhood and pregnancy on newborn telomere length.

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9.  Prenatal Air Pollution and Newborns' Predisposition to Accelerated Biological Aging.

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10.  Patterns of change in telomere length over the first three years of life in healthy children.

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