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Maternal Preeclampsia Is Associated With Reduced Adolescent Offspring Hip BMD in a UK Population-Based Birth Cohort
Kimberly Hannam1, Debbie A Lawlor2,3, Jon H Tobias1
1Musculoskeletal Research Unit, University of Bristol, Bristol, UK.
Insights
Maternal preeclampsia (PE) exposure in utero may be linked to lower offspring bone mineral density (BMD) in late adolescence, particularly at the hip. Gestational hypertension (GH) showed no significant long-term impact on offspring BMD.
Area of Science:
- Obstetrics and Gynecology
- Pediatrics
- Bone Health and Osteoporosis
Background:
- A suboptimal intrauterine environment is linked to long-term health issues, including osteoporosis.
- Preeclampsia (PE) and gestational hypertension (GH) are associated with impaired placental function, suggesting potential impacts on fetal development.
- The long-term skeletal health consequences of in utero exposure to PE and GH remain largely unexplored.
Purpose of the Study:
- To investigate the association between prenatal exposure to preeclampsia (PE) or gestational hypertension (GH) and offspring bone mineral density (BMD) in late adolescence.
- To determine if PE or GH are unrecognized risk factors for reduced offspring BMD.
- To assess BMD at total body, spine, and hip in offspring exposed to PE or GH in utero.
Main Methods:
- Utilized data from the Avon Longitudinal Study of Parents and Children (ALSPAC) cohort in the UK.
- Included 3088 mother-offspring pairs with relevant data on maternal pregnancy conditions and offspring BMD.
- Employed multivariable linear regression to analyze associations between PE/GH and offspring BMD at age 17, adjusting for confounders.
Main Results:
- Preeclampsia (PE) exposure was negatively associated with offspring hip BMD (SD difference -0.30) and weakly with total body BMD (SD difference -0.17).
- These associations persisted after adjusting for gestational age and birth weight.
- Gestational hypertension (GH) showed a transient positive association with offspring BMD that attenuated to the null after confounder adjustment, particularly for adiposity and size.
Conclusions:
- Prenatal exposure to preeclampsia (PE) may be an unrecognized risk factor for reduced bone mineral density (BMD) in offspring, particularly at the hip.
- Gestational hypertension (GH) does not appear to be associated with long-term offspring BMD.
- Further research is needed to elucidate the causal relationship between the intrauterine environment and offspring bone health.
Abstract:
A suboptimal intrauterine environment has been postulated to have adverse long-term health effects, including an increased risk of osteoporosis. Because preeclampsia (PE) and to a lesser extent gestational hypertension (GH) are associated with impaired placental function, we postulated that these represent hitherto unrecognized risk factors for reduced bone mineral density (BMD) of the offspring. The objective of this study was to investigate if exposure to PE or GH in utero is associated with BMD of the offspring as measured in late adolescence. Mother-offspring pairs from the UK population-based cohort study, Avon Longitudinal Study of Parents and Children (ALSPAC), were investigated (n = 3088 with relevant data). Multivariable linear regression was used to examine associations between PE/GH and total body, spine, and total hip BMD at age 17 years. Of the 3088 mother-offspring pairs, 2% (n = 60) of the mothers fulfilled criteria for PE and 14% (n = 416) for GH. In confounder-adjusted analyses (ie, age of scan, gender, maternal factors, including BMI, offspring height, fat mass, and lean mass), PE was negatively associated with BMD at the hip (SD difference -0.30; 95%CI, -0.50 to -0.10). This association was not attenuated by further adjustment for gestational age and birth weight, which were hypothesized to be on the causal pathway. There was also weak evidence for a negative association between PE and total body BMD (SD difference -0.17; 95% CI, -0.36 to 0.02), whereas no relationship was evident at the spine (SD difference -0.11; 95% CI, -0.30 to 0.09). In contrast, a positive association of GH with offspring total body, hip, and spine BMD attenuated to the null with adjustment for confounders, in particular confounding via the maternal and offspring adiposity/size and the link between the two. Modest negative associations from exposure to PE, but not GH may represent a hitherto unrecognized risk factor for low BMD. Further exploration of the causal relationship of the in utero environment on subsequent offspring bone health is required.
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