Publications by authors named "Patricia Andreo-Lillo"

Article Synopsis
  • GRIN-related disorders are rare developmental conditions in children caused by genetic variants, which often lead to various cognitive and behavioral challenges with few treatment options available.
  • A non-randomized phase 2A trial tested L-serine as a potential treatment for these disorders in children aged 2-18, measuring its safety and efficacy over a 52-week period using several behavioral and cognitive assessment tools.
  • Twenty-four participants were included in the study, showing improvements in specific skill areas, particularly in children with milder impairments, demonstrating promise for L-serine as a therapeutic option for those with GRIN genetic variants.
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Background: GRIN-related disorders (GRD), the so-called grinpathies, is a group of rare encephalopathies caused by mutations affecting genes (mostly , and genes), which encode for the GluN subunit of the -methyl D-aspartate (NMDA) type ionotropic glutamate receptors. A growing number of functional studies indicate that GRIN-encoded GluN1 subunit disturbances can be dichotomically classified into gain- and loss-of-function, although intermediate complex scenarios are often present.

Methods: In this study, we aimed to delineate the structural and functional alterations of disease-associated variants, and their correlations with clinical symptoms in a Spanish cohort of 15 paediatric encephalopathy patients harbouring these variants.

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Autism spectrum disorder (ASD) is a group of neurodevelopmental disorders involving age-dependent gene dysregulation. Reelin is a glycoprotein that varies its expression throughout lifetime and controls cortical patterning and synaptogenesis. Brain and plasma reelin levels have been reported to be low in adults with autism; as well as in children with autism, but only when compared to control adults.

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The engrailed homeobox protein (EN) plays an important role in the regionalization of the neural tube. EN distribution regulates the cerebellum and midbrain morphogenesis, as well as retinotectal synaptogenesis. In humans, the and genes code for the EN family of transcription factors.

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