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Published on: November 11, 2016
Does Circadian Disruption Play a Role in the Metabolic-Hormonal Link to Delayed Lactogenesis II?
Manjie Fu1, Lingsong Zhang1, Azza Ahmed2
1Department of Statistics, Purdue University , West Lafayette, IN , USA.
Insights
Delayed lactogenesis II (DLII), or delayed milk "coming in," is a key factor in early breastfeeding cessation. Disrupted maternal circadian systems may contribute to DLII, impacting breastfeeding success.
Area of Science:
- Reproductive biology
- Maternal-child health
- Circadian biology
Background:
- Breastfeeding offers significant maternal and child health benefits.
- Exclusive breastfeeding for six months is recommended, but US rates remain low.
- Early postpartum breastfeeding challenges, like delayed lactogenesis II (DLII), lead to early cessation.
Purpose of the Study:
- To review the literature supporting a link between circadian system disruption and DLII.
- To explore potential interventions for increasing breastfeeding success by addressing circadian factors.
Main Methods:
- Review of existing scientific literature on lactation, metabolism, and circadian rhythms.
- Analysis of metabolic-hormonal pathways involved in lactogenesis.
- Examination of the impact of modern lifestyle factors on circadian systems.
Main Results:
- A metabolic-hormonal link to DLII is suggested by recent studies.
- Rodent studies indicate that circadian clocks regulate hormonal and metabolic changes crucial for lactation.
- Disruption of the circadian system, common in modern lifestyles, can impair lactation initiation and milk production.
Conclusions:
- Disruption of the maternal circadian system is hypothesized to be a significant factor in DLII.
- Understanding and potentially intervening in circadian disruption may improve breastfeeding initiation and duration.
- Further research into circadian-based interventions could enhance breastfeeding success rates.
Abstract:
Breastfeeding improves maternal and child health. The American Academy of Pediatrics recommends exclusive breastfeeding for 6 months, with continued breastfeeding for at least 1 year. However, in the US, only 18.8% of infants are exclusively breastfed until 6 months of age. For mothers who initiate breastfeeding, the early post-partum period sets the stage for sustained breastfeeding. Mothers who experience breastfeeding problems in the early post-partum period are more likely to discontinue breastfeeding within 2 weeks. A major risk factor for shorter breastfeeding duration is delayed lactogenesis II (DLII; i.e., onset of milk "coming in" more than 72 h post-partum). Recent studies report a metabolic-hormonal link to DLII. This is not surprising because around the time of birth the mother's entire metabolism changes to direct nutrients to mammary glands. Circadian and metabolic systems are closely linked, and our rodent studies suggest circadian clocks coordinate hormonal and metabolic changes to support lactation. Molecular and environmental disruption of the circadian system decreases a dam's ability to initiate lactation and negatively impacts milk production. Circadian and metabolic systems evolved to be functional and adaptive when lifestyles and environmental exposures were quite different from modern times. We now have artificial lights, longer work days, and increases in shift work. Disruption in the circadian system due to shift work, jet-lag, sleep disorders, and other modern life style choices are associated with metabolic disorders, obesity, and impaired reproduction. We hypothesize that DLII is related to disruption of the mother's circadian system. Here, we review literature that supports this hypothesis, and describe interventions that may help to increase breastfeeding success.
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