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Sleep-disordered breathing in pregnancy: a developmental origin of offspring obesity?
Sarah S Farabi1,2, Linda A Barbour3,4, Teri L Hernandez3,5
1Goldfarb School of Nursing, Office of Nursing Research, St. Louis, MO, USA.
Insights
Sleep-disordered breathing (SDB) during pregnancy impacts fetal development, potentially leading to both small- and large-for-gestational-age infants. This condition may increase offspring
Area of Science:
- Obstetrics and Gynecology
- Developmental Biology
- Sleep Medicine
Background:
- Sleep-disordered breathing (SDB) is common in pregnancy and associated with maternal complications.
- Intrauterine exposures like insulin resistance, inflammation, and oxidative stress from SDB can affect offspring health.
- Maternal SDB in obesity is linked to increased risk for small-for-gestational-age (SGA) and large-for-gestational-age (LGA) infants.
Purpose of the Study:
- To systematically review and synthesize data from rodent models and human studies.
- To characterize the impact of maternal SDB on fetal development and offspring metabolic risk.
- To link mechanistic insights from animal models with human observational data.
Main Methods:
- Systematic literature review of PubMed, Embase, and CINAHL (2000-2019).
- Inclusion of 9 rodent studies and 48 human studies (including 5 meta-analyses).
- Data synthesis guided by PRISMA guidelines.
Main Results:
- Rodent models show intermittent hypoxia leads to variable birth weight and postnatal growth, while sleep fragmentation causes normal birth weight with later metabolic issues.
- Human studies indicate maternal SDB is associated with both SGA and LGA, potentially predisposing offspring to obesity.
- Evidence links maternal SDB to inflammation and oxidative stress, affecting maternal metabolism and placental function.
Conclusions:
- Maternal sleep-disordered breathing significantly affects fetal growth and development.
- SDB can adversely influence the intrauterine metabolic environment, impacting offspring metabolic risk.
- Larger prospective human studies are crucial to fully understand the long-term effects of maternal SDB on offspring health.
Abstract:
Sleep-disordered breathing (SDB) worsens over pregnancy, and obstructive sleep apnea is associated with serious maternal complications. Intrauterine exposures that provoke insulin resistance (IR), inflammation, or oxidative stress may have long-term offspring health consequences. In obesity, worsening maternal SDB appears to be an exposure that increases the risk for both small- or large-for-gestational-age (SGA, LGA, respectively), suggesting distinct outcomes linked to a common maternal phenotype. The aim of this paper is to systematically review and link data from both mechanistic rodent models and descriptive human studies to characterize the impact of maternal SDB on fetal development. A systematic review of the literature was conducted using PubMed, Embase, and CINAHL (01/2000-09/2019). Data from rodent (9 studies) and human models (48 studies, 5 meta-analyses) were included and reviewed using PRISMA guidelines. Evidence from rodent models suggests that intermittent maternal hypoxia results in mixed changes in birth weight (BW) followed by accelerated postnatal growth, while maternal sleep fragmentation results in normal BW followed by later metabolic derangement. Human studies support that maternal SDB is associated with both SGA and LGA, both of which may predispose offspring to later obesity. Evidence also suggests a link between SDB, inflammation, and oxidative stress that may impact maternal metabolism and/or placental function. SDB is common in pregnancy and affects fetal growth and development. Given that SDB has significant potential to adversely influence the intrauterine metabolic environment, larger, prospective studies in humans are urgently needed to fully elucidate the effects of this exposure on offspring metabolic risk.
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