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Df(h22q11)/+ mouse model exhibits reduced binding levels of GABAA receptors and structural and functional dysregulation in the inhibitory and excitatory networks of hippocampus.
Al-Absi, Abdel-Rahman; Thambiappa, Sakeerthi Kethees; Khan, Ahmad Raza; Glerup, Simon; Sanchez, Connie; Landau, Anne M; Nyengaard, Jens R.
Affiliation
  • Al-Absi AR; Center for Molecular Morphology, Section for Stereology and Microscopy, Department of Clinical Medicine, Aarhus University, Denmark; Department of Pathology, Aarhus University Hospital, Denmark. Electronic address: abd.alabsi@clin.au.dk.
  • Thambiappa SK; Center for Molecular Morphology, Section for Stereology and Microscopy, Department of Clinical Medicine, Aarhus University, Denmark; Department of Pathology, Aarhus University Hospital, Denmark. Electronic address: sakeeketheeswaran@gmail.com.
  • Khan AR; Centre of Biomedical Research (CBMR), SGPGIMS Campus, Lucknow, India. Electronic address: 110ahmadkhan@gmail.com.
  • Glerup S; Department of Biomedicine, Aarhus University, Denmark. Electronic address: glerup@biomed.au.dk.
  • Sanchez C; Translational Neuropsychiatry Unit, Aarhus University, Denmark. Electronic address: connie_sanchez@clin.au.dk.
  • Landau AM; Translational Neuropsychiatry Unit, Aarhus University, Denmark; Department of Nuclear Medicine and PET Centre, Aarhus University Hospital, Denmark. Electronic address: alandau@clin.au.dk.
  • Nyengaard JR; Center for Molecular Morphology, Section for Stereology and Microscopy, Department of Clinical Medicine, Aarhus University, Denmark; Department of Pathology, Aarhus University Hospital, Denmark. Electronic address: jrnyengaard@clin.au.dk.
Mol Cell Neurosci ; 122: 103769, 2022 09.
Article in En | MEDLINE | ID: mdl-35988854
ABSTRACT
The 22q11.2 hemizygous deletion confers high risk for multiple neurodevelopmental disorders. Inhibitory signaling, largely regulated through GABAA receptors, is suggested to serve a multitude of brain functions that are disrupted in the 22q11.2 deletion syndrome. We investigated the putative deficit of GABAA receptors and the potential substrates contributing to the inhibitory and excitatory dysregulations in hippocampal networks of the Df(h22q11)/+ mouse model of the 22q11.2 hemizygous deletion. The Df(h22q11)/+ mice exhibited impairments in several hippocampus-related functional domains, represented by impaired spatial memory and sensory gating functions. Autoradiography using the [3H]muscimol tracer revealed a significant reduction in GABAA receptor binding in the CA1 and CA3 subregions, together with a loss of GAD67+ interneurons in CA1 of Df(h22q11)/+ mice. Furthermore, electrophysiology recordings exhibited significantly higher neuronal activity in CA3, in response to the GABAA receptor antagonist, bicuculline, as compared with wild type mice. Density and volume of dendritic spines in pyramidal neurons were reduced and Sholl analysis also showed a reduction in the complexity of basal dendritic tree in CA1 and CA3 subregions of Df(h22q11)/+ mice. Overall, our findings demonstrate that hemizygous deletion in the 22q11.2 locus leads to dysregulations in the inhibitory circuits, involving reduced binding levels of GABAA receptors, in addition to functional and structural modulations of the excitatory networks of hippocampus.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Receptors, GABA-A / Hippocampus Type of study: Prognostic_studies Limits: Animals Language: En Journal: Mol Cell Neurosci Journal subject: BIOLOGIA MOLECULAR / NEUROLOGIA Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Receptors, GABA-A / Hippocampus Type of study: Prognostic_studies Limits: Animals Language: En Journal: Mol Cell Neurosci Journal subject: BIOLOGIA MOLECULAR / NEUROLOGIA Year: 2022 Document type: Article