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Encephalopathies with intracranial calcification in children: clinical and genetic characterization
Davide Tonduti1,2, Celeste Panteghini3, Anna Pichiecchio4
1Child Neurology Unit, IRCCS Foundation C. Besta Neurological Institute, Milan, Italy. davidetondu@hotmail.com.
Insights
Next Generation Sequencing identified genetic causes in 32% of pediatric-onset genetic encephalopathy patients with cerebral calcification. Further research is needed to uncover the genetic basis of remaining cases.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Presents a cohort of pediatric-onset genetic encephalopathy patients with cerebral calcification of unknown etiology.
- Highlights the complexity and heterogeneity of phenotypes, including developmental delay, pyramidal signs, and neurological involvement.
Purpose of the Study:
- To investigate the genetic underpinnings of pediatric-onset genetic encephalopathy with cerebral calcification using Next Generation Sequencing (NGS).
- To identify causative mutations and improve diagnostic yield in this patient group.
Main Methods:
- Collected clinical and radiological data from fifty patients.
- Performed Next Generation Sequencing (NGS) using a customized gene panel of fifty-nine genes associated with cerebral calcification.
Main Results:
- Identified mutations in sixteen out of fifty patients (32%), leading to a definitive genetic diagnosis in fourteen cases.
- Observed heterogeneous phenotypes and frequent white matter alterations on MRI, with calcifications predominantly in basal ganglia and cerebral white matter.
Conclusions:
- Genetic encephalopathies with cerebral calcification present complex phenotypes, with a significant portion remaining genetically unresolved.
- Cerebral calcification serves as a useful criterion for patient cohort selection for advanced genetic analyses like exome or whole genome sequencing.
- Emphasizes the critical role of multidisciplinary collaboration among clinicians, neuroradiologists, and geneticists for successful application of new molecular techniques.
Background:
We present a group of patients affected by a paediatric onset genetic encephalopathy with cerebral calcification of unknown aetiology studied with Next Generation Sequencing (NGS) genetic analyses.
Methods:
We collected all clinical and radiological data. DNA samples were tested by means of a customized gene panel including fifty-nine genes associated with known genetic diseases with cerebral calcification.
Results:
We collected a series of fifty patients. All patients displayed complex and heterogeneous phenotypes mostly including developmental delay and pyramidal signs and less frequently movement disorder and epilepsy. Signs of cerebellar and peripheral nervous system involvement were occasionally present. The most frequent MRI abnormality, beside calcification, was the presence of white matter alterations; calcification was localized in basal ganglia and cerebral white matter in the majority of cases. Sixteen out of fifty patients tested positive for mutations in one of the fifty-nine genes analyzed. In fourteen cases the analyses led to a definite genetic diagnosis while results were controversial in the remaining two.
Conclusions:
Genetic encephalopathies with cerebral calcification are usually associated to complex phenotypes. In our series, a molecular diagnosis was achieved in 32% of cases, suggesting that the molecular bases of a large number of disorders are still to be elucidated. Our results confirm that cerebral calcification is a good criterion to collect homogeneous groups of patients to be studied by exome or whole genome sequencing; only a very close collaboration between clinicians, neuroradiologists and geneticists can provide better results from these new generation molecular techniques.
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