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Published on: October 13, 2023
Environmental multiple sclerosis (MS) risk factors, genetic MS risk, and brain development in a general paediatric
Casper Louk de Mol1, Sander Lamballais2, Ryan Muetzel3
1Neurology, MS Center ErasMS, Erasmus Medical Center, Rotterdam, Zuid-Holland, Netherlands.
Insights
Genetic and environmental factors interact to affect brain development in children, influencing multiple sclerosis (MS) risk. Reducing childhood exposure to household smoking may help prevent MS in genetically susceptible individuals.
Area of Science:
- Neuroscience
- Genetics
- Environmental Health
Background:
- Neuroaxonal loss is an early indicator in multiple sclerosis (MS).
- The origins of early neuroaxonal loss (inflammatory vs. neurodegenerative) are unclear.
- Genetic and environmental factors may impact neurodevelopment before MS onset.
Purpose of the Study:
- To investigate the associations and interactions of genetic and environmental risk factors for MS with brain MRI outcomes in childhood.
- To assess the impact of genetic burden and environmental exposures on neurodevelopment in a population-based childhood cohort.
Main Methods:
- Examined brain volumetric and diffusion MRI data at ages 9 and 13 in a large childhood cohort.
- Utilized polygenic risk scores (PRS) for MS and assessed environmental factors (EBV, vitamin D, BMI, outdoor activity, parental smoking) at age 5.
- Analyzed associations and interactions between MS-PRS, environmental factors, and brain MRI outcomes.
Main Results:
- MS-PRS positively correlated with Epstein-Barr virus (EBV) titres in EBV-positive children.
- MS-PRS showed a negative association with subcortical grey matter volume.
- Interaction between MS-PRS and household parental smoking was linked to reduced total brain and thalamic volumes.
Conclusions:
- Genetic and environmental risk factors for MS interact during childhood, influencing brain development.
- Early life exposure to household smoking, in conjunction with genetic predisposition, is associated with smaller brain volumes.
- Intervention strategies targeting environmental factors like household smoking may offer a preventative approach for MS in genetically susceptible individuals.
Background:
Neuroaxonal loss occurs in the early stages of multiple sclerosis (MS), but whether it results from early inflammatory brain damage or an ongoing neurodegenerative process remains unclear. We hypothesise that genetic and childhood environmental risk factors for MS may already have an impact on neurodevelopment before the typical age of onset for MS in the general population.
Methods:
We examined associations and interactions of genetic and environmental risk factors for MS with brain MRI outcomes, including volumetric (n=5350) and diffusion data (n=5649), at ages 9 and 13 years in a large, population-based childhood cohort without MS diagnoses. Polygenic risk scores (PRSs) were used to assess genetic burden, with rs10191329 as a marker of MS severity. Environmental factors at age 5 included Epstein-Barr virus (EBV) serology, vitamin D status, body mass index, duration of outdoor activities, and household parental smoking.
Results:
Genetic data were available for 2817 and 2970 participants with volumetric and diffusion data, respectively. The MS-PRS was positively associated with EBV viral capsid antigen titres among EBV-positive children (β=0.15, p=2.98×10-6). A negative association was observed between the MS-PRS and subcortical grey matter volume (β=-0.03, p=0.014). Interaction between the MS-PRS and household parental smoking was negatively linked to total brain (β=-0.21, p=0.025) and thalamic volumes (β=-0.22, p=0.003), where a higher MS-PRS and household smoking were associated with lower volumes. No associations were observed for rs10191329 with brain outcomes.
Conclusions:
Genetic and environmental risk factors for MS interact to influence brain volumes in childhood, suggesting a potential window for preventing MS in genetically susceptible individuals by reducing exposure to household smoking.
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