Abstract
The developing brain is highly sensitive to environmental disturbances, and adverse exposures can act through oxidative stress. Given that oxidative stress susceptibility is determined partly by genetics, multiple studies have employed genetic scores to explore the role of oxidative stress in human disease. However, traditional approaches to genetic score construction face a range of challenges, including a lack of interpretability, bias towards the disease outcome, and often overfitting to the study they were derived on. Here, we develop an alternative strategy by first generating a genetic pathway function score for oxidative stress (gPFSox ) based on the transcriptional activity levels of the oxidative stress response pathway in brain and other tissue types. Then, in the Barwon Infant Study (BIS), a population-based birth cohort (n = 1074), we show that a high gPFSox, indicating reduced ability to counter oxidative stress, is linked to higher autism spectrum disorder risk and higher parent-reported autistic traits at age 4 years, with AOR values (per 2 additional pro-oxidant alleles) of 2.10 (95% CI (1.12, 4.11); p = 0.024) and 1.42 (95% CI (1.02, 2.01); p = 0.041), respectively. Past work in BIS has reported higher prenatal phthalate exposure at 36 weeks of gestation associated with offspring autism spectrum disorder. In this study, we examine combined effects and show a consistent pattern of increased neurodevelopmental problems for individuals with both a high gPFSox and high prenatal phthalate exposure across a range of outcomes, including high gPFSox and high DEHP levels against autism spectrum disorder (attributable proportion due to interaction 0.89; 95% CI (0.62, 1.16); p < 0.0001). The results highlight the utility of this novel functional genetic score and add to the growing evidence implicating gestational phthalate exposure in adverse neurodevelopment.
| Original language | English |
|---|---|
| Article number | 659 |
| Pages (from-to) | 1-16 |
| Number of pages | 16 |
| Journal | Antioxidants |
| Volume | 11 |
| Issue number | 4 |
| Early online date | 29 Mar 2022 |
| DOIs | |
| Publication status | Published - Apr 2022 |
Bibliographical note
Publisher Copyright:© 2022 by the authors. Licensee MDPI, Basel, Switzerland.
Funding
Funding was secured from National Health and Medical Research Council of Australia (NHMRC), The Minderoo Foundation, The Shepherd Foundation, The Jack Brockhoff Foundation, the Scobie and Claire McKinnon Trust, the Shane O’Brien Memorial Asthma Foundation, the Our Women’s Our Children’s Fund Raising Committee Barwon Health, the Rotary Club of Geelong, the Ilhan Food Allergy Foundation, GMHBA, Vanguard Investments Australia Ltd., and the Percy Baxter Charitable Trust, Perpetual Trustees. In-kind support was provided by the Cotton on Foundation and CreativeForce. The study sponsors were not involved in the collection, analysis, and interpretation of data; writing of the report; or the decision to submit the report for publication. Research at Murdoch Children’s Research Institute is supported by the Victorian Government’s Operational Infrastructure Support Program.
| Funders |
|---|
| Cotton on Foundation |
| Our Women’s Our Children’s Fund Raising Committee Barwon Health |
| Rotary Club of Geelong |
| Scobie and Claire McKinnon Trust |
| Vanguard Investments Australia Ltd. |
| Jack Brockhoff Foundation |
| National Health and Medical Research Council |
| Ilhan Food Allergy Foundation |
| State Government of Victoria |
| Minderoo Foundation |
| Percy Baxter Charitable Trust |
| Shepherd Foundation |
| Shane O'Brien Memorial Asthma Foundation |
| Geelong Medical and Hospital Benefits Association |
Keywords
- ADHD
- ASD
- attention-deficit hyperactivity disorder
- autism
- biological pathway
- cognition
- genetic score
- neurodevelopment
- oxidative stress
- phthalates
- plastics
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