Associations between Elemental Metabolic Dynamics and Default Mode Network Functional Connectivity Are Altered in Autism

Author:

Curtin Paul1,Neufeld Janina23,Curtin Austen14,Austin Christine14ORCID,Isaksson Johan25,Remnelius Karl Lundin2,Norrman Hjalmar Nobel2,Arora Manish14,Bölte Sven267

Affiliation:

1. Linus Biotechnology Inc., New York, NY 10013, USA

2. Center of Neurodevelopmental Disorders (KIND), Centre for Psychiatry Research, Department of Women’s and Children’s Health, Karolinska Institutet & Stockholm Health Care Services, Region Stockholm, 11330 Stockholm, Sweden

3. Swedish Collegium for Advanced Study, 75238 Uppsala, Sweden

4. Environmental Medicine and Public Health, Mount Sinai School of Medicine, New York, NY 10029, USA

5. Department of Medical Sciences, Child and Adolescent Psychiatry Unit, Uppsala University, 75185 Uppsala, Sweden

6. Curtin Autism Research Group, Curtin School of Allied Health, Curtin University, Perth, WA 6102, Australia

7. Child and Adolescent Psychiatry, Stockholm Health Care Services, Region Stockholm, 11861 Stockholm, Sweden

Abstract

Autism is a neurodevelopmental condition associated with atypical social communication, cognitive, and sensory faculties. Recent advances in exposure biology suggest that biomarkers of elemental uptake and metabolism measured in hair samples can yield an effective signal predictive of autism diagnosis. Here, we investigated if elemental biomarkers in hair were associated with functional connectivity in regions of the default mode network (DMN) previously linked to autism. In a study sample which included twin pairs with concordant and discordant diagnoses for autism, our analysis of hair samples and neuroimaging data supported two general findings. First, independent of autism diagnosis, we found a broad pattern of association between elemental biomarkers and functional connectivity in the DMN, which primarily involved dynamics in zinc metabolism. Second, we found that associations between the DMN and elemental biomarkers, particularly involving phosphorus, calcium, manganese, and magnesium, differed significantly in autistic participants from control participants. In sum, these findings suggest that functional dynamics in elemental metabolism relate broadly to persistent patterns of functional connectivity in the DMN, and that these associations are altered in the emergence of autism.

Publisher

MDPI AG

Subject

General Medicine

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