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

Investigating the Biological pathways from HEAT exposure to preterm birth and other adverse maternal and child health outcomes in South Africa (the Bio-HEAT study)

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AI plain-English summary

Two hundred women in Johannesburg will wear personal temperature monitors from their second trimester until a year after giving birth, as researchers track how heat exposure triggers inflammation that can lead to preterm birth. This matters because nearly 200 studies have already linked heat exposure to poor maternal and child health outcomes, but the biological mechanisms remain unknown. Without understanding those pathways, it is impossible to design targeted interventions as global temperatures rise. The Bio-HEAT study follows women through pregnancy, labour, and the first year postpartum, collecting data on epigenetic changes, inflammatory proteins, thermoregulation during labour, and breastmilk composition and volume using isotope techniques. Qualitative interviews with a subset of women will capture psychosocial influences. If the research succeeds, it will produce graphical causal models showing exactly how heat triggers biological vulnerability and what protective mechanisms might work. That knowledge could inform public health guidance, urban planning, and clinical protocols in hot climates—not just in South Africa, but across low- and middle-income countries where rising temperatures pose the greatest risk to pregnant women and infants.

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Approximately 190 studies have documented linkages between heat exposure, and adverse maternal and child health outcomes. Understanding the underlying biological vulnerabilities that explain these linkages is especially important given rising global temperatures and the urgent need for adaptive interventions. Applying transdisciplinary research in Johannesburg, South Africa, we will follow 200 women from the second trimester until one-year postpartum, together with their infant. Exposure to heat and other environmental factors will be tracked continuously through personal temperature monitors and geospatial variables at fine resolution. Our primary aim is to document linkages between heat exposure and inflammatory pathways that precede preterm birth. We will test the hypothesis that heat exposure triggers maternal inflammation by analysing epigenetic changes leading to inflammatory cytokine protein and gene expression. We also investigate the pathophysiology of thermoregulation and hydration in labour, focusing on potential protective mechanisms. Lastly, using breastmilk samples and isotope techniques, we assess whether heat exposure alters breastmilk composition and volume. Qualitative research with a sub-sample of women will explore psycho- social influences and help shape the putative pathways. Lastly, we will construct conceptual frameworks and Graphical Causal Models delineating pathways of biological vulnerability and potential protective mechanisms. Public engagement and communication underscore all study activities.

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Researchers

Amy Wise (EPMC Awardee)Clive Gray (EPMC Awardee)Matthew Chersich (EPMC Awardee)Renate Strehlau (EPMC Awardee)

Related Research

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Extreme heat and preterm birth in rural Zimbabwe
Assessment of biological vulnerability and effects of extreme heat on maternal, fetal and newborn health: implications for policy and action
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Investigating the pathways linking heat exposure to mental health outcomes: mechanisms and interventions in a Ghanaian cohort (HEAT-MIND)
The HEaT INFORM Pregnancy Study

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