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Charlotte M. Pretzsch, Tim Schäfer, Michael V. Lombardo, Varun Warrier, Caroline Mann, Anke Bletsch, Chris H. Chatham, Dorothea L. Floris, et al. (2022). Neurobiological Correlates of Change in Adaptive Behavior in Autism. American Journal of Psychiatry, 179(5), 336-349. American Psychiatric Association Publishing.

Date de publication
01/05/2022
Identifiant
10.1176/appi.ajp.21070711
Auteurs
Charlotte M. Pretzsch, Tim Schäfer, Michael V. Lombardo, Varun Warrier, Caroline Mann, Anke Bletsch, Chris H. Chatham, Dorothea L. Floris, Julian Tillmann, Afsheen Yousaf, Emily Jones, Tony Charman, Sara Ambrosino, Thomas Bourgeron, Guillaume Dumas, Eva Loth, Bethany Oakley, Jan K. Buitelaar, Freddy Cliquet, Claire S. Leblond, Simon Baron-Cohen, Christian F. Beckmann, Tobias Banaschewski, Sarah Durston, Christine M. Freitag, the EU-AIMS LEAP Group, Declan G.M. Murphy, Christine Ecker
Source
American Journal of Psychiatry
Détails
179(5), 336-349
Type de référence
article
Éditeur
American Psychiatric Association Publishing
Source de métadonnées
crossref

Résumé

OBJECTIVE: Autism spectrum disorder (ASD) is a lifelong neurodevelopmental condition that is associated with significant difficulties in adaptive behavior and variation in clinical outcomes across the life span. Some individuals with ASD improve, whereas others may not change significantly, or regress. Hence, the development of "personalized medicine" approaches is essential. However, this requires an understanding of the biological processes underpinning differences in clinical outcome, at both the individual and subgroup levels, across the lifespan. METHODS: The authors conducted a longitudinal follow-up study of 483 individuals (204 with ASD and 279 neurotypical individuals, ages 6-30 years), with assessment time points separated by ∼12-24 months. Data collected included behavioral data (Vineland Adaptive Behavior Scale-II), neuroanatomical data (structural MRI), and genetic data (DNA). Individuals with ASD were grouped into clinically meaningful "increasers," "no-changers," and "decreasers" in adaptive behavior. First, the authors compared neuroanatomy between outcome groups. Next, they examined whether deviations from the neurotypical neuroanatomical profile were associated with outcome at the individual level. Finally, they explored the observed neuroanatomical differences' potential genetic underpinnings. RESULTS: Outcome groups differed in neuroanatomical features (cortical volume and thickness, surface area), including in "social brain" regions previously implicated in ASD. Also, deviations of neuroanatomical features from the neurotypical profile predicted outcome at the individual level. Moreover, neuroanatomical differences were associated with genetic processes relevant to neuroanatomical phenotypes (e.g., synaptic development). CONCLUSIONS: This study demonstrates, for the first time, that variation in clinical (adaptive) outcome is associated with both group- and individual-level variation in anatomy of brain regions enriched for genes relevant to ASD. This may facilitate the move toward better targeted/precision medicine approaches.

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