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PMID: 28932379 Published · epublish English

Testing the excitation/inhibition imbalance hypothesis in a mouse model of the autism spectrum disorder: in vivo neurospectroscopy and molecular evidence for regional phenotypes.

Molecular autism ·Vol. 8 ·2017-00-00

Gonçalves J, Violante IR, Sereno J, Leitão RA, Cai Y, Abrunhosa A, Silva AP, Silva AJ, Castelo-Branco M

Abstract

Excitation/inhibition (E/I) imbalance remains a widely discussed hypothesis in autism spectrum disorders (ASD). The presence of such an imbalance may potentially define a therapeutic target for the treatment of cognitive disabilities related to this pathology. Consequently, the study of monogenic disorders related to autism, such as neurofibromatosis type 1 (NF1), represents a promising approach to isolate mechanisms underlying ASD-related cognitive disabilities. However, the NF1 mouse model showed increased γ-aminobutyric acid (GABA) neurotransmission, whereas the human disease showed reduced cortical GABA levels. It is therefore important to clarify whether the E/I imbalance hypothesis holds true. We hypothesize that E/I may depend on distinct pre- and postsynaptic push-pull mechanisms that might be are region-dependent. In current study, we assessed two critical components of E/I regulation: the concentration of neurotransmitters and levels of GABA(A) receptors. Measurements were performed across the hippocampi, striatum, and prefrontal cortices by combined in vivo magnetic resonance spectroscopy (MRS) and molecular approaches in this ASD-related animal model, the Nf1+/- mouse. Cortical and striatal GABA/glutamate ratios were increased. At the postsynaptic level, very high receptor GABA(A) receptor expression was found in hippocampus, disproportionately to the small reduction in GABA levels. Gabaergic tone (either by receptor levels change or GABA/glutamate ratios) seemed therefore to be enhanced in all regions, although by a different mechanism. Our data provides support for the hypothesis of E/I imbalance in NF1 while showing that pre- and postsynaptic changes are region-specific. All these findings are consistent with our previous physiological evidence of increased inhibitory tone. Such heterogeneity suggests that therapeutic approaches to address neurochemical imbalance in ASD may need to focus on targets where convergent physiological mechanisms can be found.

Keywords
Autism spectrum disorders Excitation/inhibition imbalance GABA(A) receptor Magnetic resonance spectroscopy Neurofibromatosis type 1
MeSH 主题词
Animals Autism Spectrum Disorder/diagnosis,etiology,psychology DNA-Binding Proteins Disease Models, Animal Female Glutamic Acid/metabolism Immunohistochemistry Inhibition, Psychological Magnetic Resonance Spectroscopy Male Mice Mice, Knockout Nervous System Physiological Phenomena Neurofibromin 1/genetics,metabolism Organ Specificity/genetics Receptors, GABA Viral Proteins gamma-Aminobutyric Acid/metabolism
Article Info
Journal
Molecular autism
Abbr.
Mol Autism
ISSN
2040-2392
Published
2017-00-00
Language
English
Country/Region
England
NLM ID
101534222
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