Protocadherin-19 (PCDH19) is a calcium dependent cell-adhesion molecule involved in neuronal circuit formation with prevalent expression in the limbic structures. PCDH19-gene mutations cause a developmental encephalopathy with prominent infantile onset focal seizures, variably associated with intellectual disability and autistic features. Diagnostic neuroimaging is usually unrevealing. We used quantitative MRI to investigate the cortex and white matter in a group of 20 PCDH19-mutated patients. By a statistical comparison between quantitative features in PCDH19 brains and in a group of age and sex matched controls, we found that patients exhibited bilateral reductions of local gyrification index (lGI) in limbic cortical areas, including the parahippocampal and entorhinal cortex and the fusiform and lingual gyri, and altered diffusivity features in the underlying white matter. In patients with an earlier onset of seizures, worse psychiatric manifestations and cognitive impairment, reductions of lGI and diffusivity abnormalities in the limbic areas were more pronounced. Developmental abnormalities involving the limbic structures likely represent a measurable anatomic counterpart of the reduced contribution of the PCDH19 protein to local cortical folding and white matter organization and are functionally reflected in the phenotypic features involving cognitive and communicative skills as well as local epileptogenesis.

Quantitative MRI-Based Analysis Identifies Developmental Limbic Abnormalities in PCDH19 Encephalopathy / Lenge, Matteo; Marini, Carla; Canale, Edoardo; Napolitano, Antonio; De Masi, Salvatore; Trivisano, Marina; Mei, Davide; Longo, Daniela; Rossi Espagnet, Maria Camilla; Lucenteforte, Ersilia; Barba, Carmen; Specchio, Nicola; Guerrini, Renzo. - In: CEREBRAL CORTEX. - ISSN 1047-3211. - (2020). [10.1093/cercor/bhaa177]

Quantitative MRI-Based Analysis Identifies Developmental Limbic Abnormalities in PCDH19 Encephalopathy

Rossi Espagnet, Maria Camilla;Guerrini, Renzo
2020

Abstract

Protocadherin-19 (PCDH19) is a calcium dependent cell-adhesion molecule involved in neuronal circuit formation with prevalent expression in the limbic structures. PCDH19-gene mutations cause a developmental encephalopathy with prominent infantile onset focal seizures, variably associated with intellectual disability and autistic features. Diagnostic neuroimaging is usually unrevealing. We used quantitative MRI to investigate the cortex and white matter in a group of 20 PCDH19-mutated patients. By a statistical comparison between quantitative features in PCDH19 brains and in a group of age and sex matched controls, we found that patients exhibited bilateral reductions of local gyrification index (lGI) in limbic cortical areas, including the parahippocampal and entorhinal cortex and the fusiform and lingual gyri, and altered diffusivity features in the underlying white matter. In patients with an earlier onset of seizures, worse psychiatric manifestations and cognitive impairment, reductions of lGI and diffusivity abnormalities in the limbic areas were more pronounced. Developmental abnormalities involving the limbic structures likely represent a measurable anatomic counterpart of the reduced contribution of the PCDH19 protein to local cortical folding and white matter organization and are functionally reflected in the phenotypic features involving cognitive and communicative skills as well as local epileptogenesis.
2020
PCDH19 encephalopathy; autism; epilepsy; gyrification index; limbic formation
01 Pubblicazione su rivista::01a Articolo in rivista
Quantitative MRI-Based Analysis Identifies Developmental Limbic Abnormalities in PCDH19 Encephalopathy / Lenge, Matteo; Marini, Carla; Canale, Edoardo; Napolitano, Antonio; De Masi, Salvatore; Trivisano, Marina; Mei, Davide; Longo, Daniela; Rossi Espagnet, Maria Camilla; Lucenteforte, Ersilia; Barba, Carmen; Specchio, Nicola; Guerrini, Renzo. - In: CEREBRAL CORTEX. - ISSN 1047-3211. - (2020). [10.1093/cercor/bhaa177]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1439749
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