H2020Individual fellowship2017–2021

STressD · Stressfully Transmitted Diseases: How your partner’s past stress affects your current and future health

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-05-01 → 2021-08-30
EU contribution
€183,455
Participants
1
Scheme
MSCA-IF-EF-ST

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Results in brief

Stressfully Transmitted Diseases: How your partner’s past stress affects your current and future health

Exposure to unpleasant, uncontrollable, and unpredictable events are unavoidable aspects of life that can cause stress. In humans and other animals, chronic activation of an individual’s stress response systems – particularly in early life – can be costly, leading to poorer health and shorter life expectancy. There is also evidence that stress can be socially transmitted between individuals, with recent experimental work in a songbird (zebra finch) showing that the negative health consequences of early-life stress can be transmitted from an individual to their reproductive partner, almost like an infection. Specifically, early-life stress reduced the lifespan of the individual that experienced it as well as the lifespan of their reproductive partner who had not experienced early-life stress themselves. As these birds lived in benign laboratory environments, well-established mortality risk factors such as disease, starvation and predation could not explain why early-life individuals and their partners suffered accelerated ageing and premature death. Despite these findings, previous experimental studies on early-life stress have focused almost entirely on the exposed individuals and overlooked how early-life stress in an individual can affect the health and longevity of other individuals, particularly partners involved in long-term social relationships. Yet we know that social relationships are significant predictors of human mortality regardless of age, sex, and cause of death and one of the most important predictors of human health and well-being (being as strongly associated with health and longevity as smoking, blood pressure, obesity, physical exercise and other well-established health risk factors). Therefore, this project set out to generate novel insights into the largely unexplored question of how lifespan reduction caused by early-life stress is transmitted to other individuals (i.e. reproductive partners), thus shifting the focus of research on early-life stress, social interactions, and health beyond the level of the individual. The objectives of the project have been met, although the data collected during the project are still being analysed.

Data: CORDIS, © European Union

Project objective

Early-life stress can reduce the lifespan of individuals and recent work shows that this lifespan reduction can be transmitted to reproductive partners. However, the mechanisms that allow early-life stress to damage the health of individuals that did not experience early-life stress themselves have been little studied. The overall aim of this proposal is to examine how the negative effects of early-life stress on longevity are transmitted to social partners, with focus on the neuroendocrine hypothalamic-pituitary-adrenal (HPA) axis. The research objectives are: 1) To determine whether partners become hormonally and behaviourally similar to early-life stressed individuals; 2) To determine whether early-life stressed individuals adversely affect the health of their reproductive partners by ineffectively buffering their partners against stress; 3) To examine whether being paired to a partner that has experienced early life stress influences immune function, oxidative stress, and telomere loss.The experienced researcher will be trained by the host in adopting a life history approach to early-life stress and parental care and learn new skills in several areas of physiology and molecular biology to carry out these objectives. She will be trained to combine studies at different biological levels ranging from the molecular to the individual. This training will enhance the experienced researcher’s knowledge in different biological domains and greatly enhance her chances of starting her own independent research group in the EU.

Original text from CORDIS.

Participants

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Data: CORDIS, © European Union