Active Pregnancy, Children & Inherited Conditions Diabetes, Hormones & Metabolism

Mitigating against life-course complications of heat stress.

In plain English

AI plain-English summary

When a pregnant woman suffers extreme heat, the damage may not show up until her child reaches adulthood — and scientists don’t yet know why. This matters because heatwaves are becoming more frequent and intense, yet the biological mechanisms linking a mother’s heat exposure during early pregnancy to her offspring’s lifelong health remain unknown. The critical window is the peri-implantation period, just days after conception, when the embryo’s cells first commit to becoming specific organs and the mother-embryo dialogue begins. Acute heat stress during this phase can trigger pregnancy loss or alter organ development in ways that affect health decades later. If this research succeeds, it could lead to intervention strategies — such as targeted cooling protocols or nutritional supplements — that protect pregnancies during heatwaves. The team will use bioengineered models of embryo-maternal interaction, compare development across pigs and other mammals, and apply computational evolutionary biology to find conserved pathways that can be targeted in humans. This is fundamental science: it seeks to explain how heat stress reprograms development at the molecular level. Similar work on early-life environmental influences has already reshaped prenatal care guidelines. A mechanistic understanding here could quietly change how heatwave warnings are issued to pregnant women.

View original technical description
Exposure of the mother to extreme heat events while pregnant are reflected in the life course health of the offspring. A critical time of exposure is during the peri-implantation period of pregnancy when: 1) epigenetic determination of cell fate occurs, 2) cues to establish organ systems are established, and 3) molecular and biophysical interactions between the mother and the embryo are also established. There are unknown mechanisms by which acute extreme heat causes peri-implantation pregnancy loss and affects life course health. Mitigation of this is critical if we are to ensure life-course health of babies. We aim to: - Identify how acute extreme heat alters health of the offspring - Determine how heat stress alters life-course development of organ systems - Establish intervention strategies to mitigate against heat-exposed changes to life-course health in offspring Taking an interdisciplinary approach by harnessing our expertise in 1) bioengineered embryo-maternal interaction models, 2) comparative developmental biology of the pig and mammal systems, 3) computational evolutionary biology, we will determine conserved mitigation pathways for intervention in humans to understand the mechanistic biology of heat stress and to identify intervention strategies.

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Researchers

David Gardner (EPMC Awardee)Kevin Sinclair (EPMC Awardee)Mary O'Connell (EPMC Awardee)Niamh Forde (EPMC Awardee)Ramiro Alberio (EPMC Awardee)Virginia Pensabene (EPMC Awardee)

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Extreme heat and pregnancy complications: harnessing the diverse Australian climate and population for global answers
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