Early emergence of sexual dimorphism in offspring leukocyte telomere length was associated with maternal and children’s glucose metabolism—a longitudinal study

Author:

Wong Kwun KiuORCID,Cheng FeifeiORCID,Lim Cadmon K. P.ORCID,Tam Claudia H. T.ORCID,Tutino GregORCID,Yuen Lai YukORCID,Wang Chi ChiuORCID,Hou YongORCID,Chan Michael H. M.ORCID,Ho Chung ShunORCID,Joglekar Mugdha V.ORCID,Hardikar Anandwardhan A.ORCID,Jenkins Alicia J.ORCID,Metzger Boyd E.ORCID,Lowe William L.ORCID,Tam Wing HungORCID,Ma Ronald C. W.ORCID

Abstract

Abstract Background Leukocyte telomere length (LTL) is suggested to be a biomarker of biological age and reported to be associated with metabolic diseases such as type 2 diabetes. Glucose metabolic traits including glucose and insulin levels have been reported to be associated with LTL in adulthood. However, there is relatively little research focusing on children’s LTL and the association with prenatal exposures. This study investigates the relationship between maternal and offspring glucose metabolism with offspring LTL in early life. Methods This study included 882 mother-child pairs from the HAPO Hong Kong Field Centre, with children evaluated at age 7.0 ± 0.4 (mean ± SD) years. Glucose metabolic traits including maternal post-load glucose during pregnancy, children’s glucose and insulin levels, and their derived indices at follow-up were measured or calculated. Offspring LTL was assessed using real-time polymerase chain reaction. Results Sex- and age-adjusted children’s LTL was found to be associated with children’s HOMA-IR (β=−0.046 ± 0.016, p=0.005). Interestingly, both children’s and maternal post-load glucose levels were positively associated with children’s LTL. However, negative associations were observed between children’s LTL and children’s OGTT insulin levels. In addition, the LTL in females was more strongly associated with pancreatic beta-cell function whilst LTL in males was more strongly associated with OGTT glucose levels. Conclusions Our findings suggest a close association between maternal and offspring glucose metabolic traits with early life LTL, with the offspring sex as an important modifier of the disparate relationships in insulin production and response.

Funder

Research Grants Council General Research Fund

University Grants Committee

Croucher Foundation

National Institute of Child Health and Human Development

National Institute of Diabetes and Digestive Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Medicine

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