Infantile spasms syndrome, West syndrome and related phenotypes: what we know in 2013
Piero Pavone1, Pasquale Striano2, Raffaele Falsaperla1
1Unit of Pediatrics and Pediatric Emergency "Costanza Gravina", University Hospital "Policlinico-Vittorio Emanuele", Catania, Italy.
Insights
Infantile spasms syndrome (ISs) is a broader condition than previously understood, encompassing West syndrome and other variants. Genetic factors and developmental pathways are increasingly implicated, influencing prognosis and treatment strategies.
Area of Science:
- Pediatric Neurology
- Epileptology
- Developmental Neuroscience
Background:
- Infantile spasms syndrome (ISs) is an epileptic syndrome affecting infants, characterized by specific EEG patterns like hypsarrhythmia and often associated with developmental delays.
- West syndrome (WS) is a recognized subset of ISs, defined by spasms, hypsarrhythmia, and developmental issues.
- Variations such as single-spasm variants and hypsarrhythmia without spasms are also recognized, expanding the spectrum of ISs.
Purpose of the Study:
- To review the evolving understanding of Infantile Spasms Syndrome (ISs), including its terminology, diagnostic criteria, and associated phenotypes.
- To explore the growing evidence linking ISs to genetic pathways involved in brain development and synaptic function.
- To summarize current and potential future therapeutic approaches for ISs based on its underlying causes.
Main Methods:
- Literature review of clinical, genetic, and molecular studies on infantile spasms.
- Analysis of diagnostic criteria evolution for ISs and West syndrome.
- Synthesis of information on prognostic factors and treatment outcomes.
Main Results:
- The spectrum of ISs is wider than previously thought, with recognized variants like ISSV, HWIS, and ISW.
- Genetic disturbances in brain development pathways and synaptic molecules are increasingly identified as causes of ISs.
- Prognosis is influenced by etiology, EEG patterns, seizure onset, and treatment response.
Conclusions:
- Infantile spasms syndrome is a complex neurodevelopmental disorder with diverse genetic underpinnings.
- Current first-line treatments include ACTH and vigabatrin, with future therapies potentially targeting specific pathogenic pathways.
- A comprehensive understanding of ISs requires integrating clinical, genetic, and molecular findings for improved patient outcomes.
Abstract:
The current spectrum of disorders associated to clinical spasms with onset in infancy is wider than previously thought; accordingly, its terminology has changed. Nowadays, the term Infantile spasms syndrome (ISs) defines an epileptic syndrome occurring in children younger than 1 year (rarely older than 2 years), with clinical (epileptic: i.e., associated to an epileptiform EEG) spasms usually occurring in clusters whose most characteristic EEG finding is hypsarrhythmia [the spasms are often associated with developmental arrest or regression]. The term West syndrome (WS) refers to a form (a subset) of ISs, characterised by the combination of clustered spasms and hypsarrhythmia on an EEG and delayed brain development or regression [currently, it is no longer required that delayed development occur before the onset of spasms]. Less usually, spasms may occur singly rather than in clusters [infantile spasms single-spasm variant (ISSV)], hypsarrhythmia can be (incidentally) recorded without any evidence of clinical spasms [hypsarrhythmia without infantile spasms (HWIS)] or typical clinical spasms may manifest in absence of hypsarrhythmia [infantile spasms without hypsarrhythmia (ISW)]. There is a growing evidence that ISs and related phenotypes may result, besides from acquired events, from disturbances in key genetic pathways of brain development: specifically, in the gene regulatory network of GABAergic forebrain dorsal-ventral development, and abnormalities in molecules expressed at the synapse. Children with these genetic associations also have phenotypes beyond epilepsy, including dysmorphic features, autism, movement disorders and systemic malformations. The prognosis depends on: (a) the cause, which gives origin to the attacks (the complex malformation forms being more severe); (b) the EEG pattern(s); (c) the appearance of seizures prior to the spasms; and (d) the rapid response to treatment. Currently, the first-line treatment includes the adrenocorticotropic hormone ACTH and vigabatrin. In the near future the gold standard could be the development of new therapies that target specific pathways of pathogenesis. In this article we review the past and growing number of clinical, genetic, molecular and therapeutic discoveries on this expanding topic.
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