Chandelier Cartridge Density Is Reduced in the Prefrontal Cortex in Autism

Author:

Amina Sarwat1,Falcone Carmen1ORCID,Hong Tiffany1,Wolf-Ochoa Marisol Wendy1,Vakilzadeh Gelareh1,Allen Erik1,Perez-Castro Rosalia1,Kargar Maryam1,Noctor Stephen23,Martínez-Cerdeño Verónica12

Affiliation:

1. Department of Pathology and Laboratory Medicine, UC Davis School of Medicine; Institute for Pediatric Regenerative Medicine and Shriners Hospitals for Children, Sacramento, CA 95817, USA

2. MIND Institute, UC Davis Medical Center, UC Davis School of Medicine, Sacramento, CA 95817, USA

3. Department of Psychiatry and Behavioral Sciences, UC Davis School of Medicine, Sacramento, CA 95817, USA

Abstract

Abstract An alteration in the balance of excitation-inhibition has been proposed as a common characteristic of the cerebral cortex in autism, which may be due to an alteration in the number and/or function of the excitatory and/or inhibitory cells that form the cortical circuitry. We previously found a decreased number of the parvalbumin (PV)+ interneuron known as Chandelier (Ch) cell in the prefrontal cortex in autism. This decrease could result from a decreased number of Ch cells, but also from decreased PV protein expression by Ch cells. To further determine if Ch cell number is altered in autism, we quantified the number of Ch cells following a different approach and different patient cohort than in our previous studies. We quantified the number of Ch cell cartridges—rather than Ch cell somata—that expressed GAT1—rather than PV. Specifically, we quantified GAT1+ cartridges in prefrontal areas BA9, BA46, and BA47 of 11 cases with autism and 11 control cases. We found that the density of GAT1+ cartridges was decreased in autism in all areas and layers. Whether this alteration is cause or effect remains unclear but could result from alterations that take place during cortical prenatal and/or postnatal development.

Funder

Shriners Hospitals for Children

Mind and Life Institute

Medical Investigation of Neurodevelopmental Disorders

National Institute of Mental Health

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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