Early life seizures and epileptic spasms in STXBP1-related disorders

Kim M Thalwitzer1,2,3,4, Julie Xian1,2,3,5, Danielle de Campo1,2,5

  • 1Division of Neurology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania, USA.

Epilepsia
|January 27, 2024
PubMed

Insights

Early onset seizures in STXBP1-DEE do not increase the risk of developing epileptic spasms. Antiseizure medications also do not appear to influence spasm development in these individuals.

Area of Science:

  • Neuroscience
  • Genetics
  • Clinical Neurology

Background:

  • STXBP1-related developmental and epileptic encephalopathy (DEE) often presents with early-onset epilepsy, including epileptic spasms.
  • The influence of early seizures and antiseizure medications (ASMs) on the development and trajectory of epileptic spasms in STXBP1-DEE is not well understood.

Purpose of the Study:

  • To investigate the relationship between early-onset seizures and the subsequent development of epileptic spasms in individuals with STXBP1-DEE.
  • To assess the impact of antiseizure medications (ASMs) on the risk of developing epileptic spasms.
  • To provide baseline data for improved treatment and prognostication.

Main Methods:

  • Retrospective analysis of seizure and medication histories in weekly intervals for 61 individuals with STXBP1-DEE and epilepsy onset within the first year of life.
  • Quantitative analysis of longitudinal seizure histories and ASM response.

Main Results:

  • The risk of developing epileptic spasms was not significantly increased in individuals with a history of neonatal or early infantile seizures (OR=1, P=1).
  • No specific ASM was found to be associated with an increased risk of developing epileptic spasms.
  • Individuals with prior seizures had a higher risk of developing refractory epileptic spasms (76%), which also presented at a later median age (20 weeks) compared to non-refractory spasms (13 weeks).

Conclusions:

  • Early life seizures in STXBP1-DEE do not elevate the risk of developing epileptic spasms.
  • Antiseizure medications do not appear to influence the development of epileptic spasms in this population.
  • Findings offer crucial baseline data for targeted interventions and prognostication in STXBP1-DEE.
Abstract

Related Concept Videos

Seizures: Classification01:13

Seizures: Classification

Epilepsy is primarily characterized by unpredictable seizures, either provoked by an identifiable factor, such as injury or illness, or unprovoked, occurring spontaneously without apparent cause.
Seizures are typically classified into two main categories: focal and generalized seizures.
Focal Seizures
Focal seizures originate from specific regions of the brain. These seizures are further sub-classified into two types:
362
Arteries of the Lower Limbs01:24

Arteries of the Lower Limbs

Epilepsy is a chronic neurological disease marked by recurrent, unpredictable seizures. These seizures are caused by abnormal electrical discharges in the brain, leading to behavior, sensation, or consciousness alterations. They can also cause transient impairment of awareness, interfering with daily activities.
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...
190
Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein01:20

Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein

Antiepileptic drugs, such as levetiracetam (Keppra) and brivaracetam (Briviact), have emerged as crucial tools in managing epilepsy. These medications exert their therapeutic effects by targeting the synaptic vesicle protein SV2A, a transmembrane glycoprotein primarily found in the brain.
SV2A is a transmembrane glycoprotein located predominantly in the brain, modulating the release of neurotransmitters for neuronal communication. Both levetiracetam and brivaracetam exhibit a high affinity for...
303
Antiepileptic Drugs: Glutamate Antagonists01:14

Antiepileptic Drugs: Glutamate Antagonists

Glutamate is a fundamental neurotransmitter in the central nervous system, playing a vital role in neuronal communication and various cognitive processes. Glutamate stands as the principal excitatory neurotransmitter in the brain. Its presence is crucial for the communication between neurons, underpinning essential processes such as synaptic transmission, neuronal excitability, and plasticity. These functions are vital for higher-order cognitive processes, including learning and memory. The...
359
Pleiotropy01:33

Pleiotropy

Pleiotropy is the phenomenon in which a single gene impacts multiple, seemingly unrelated phenotypic traits. For example, defects in the SOX10 gene cause Waardenburg Syndrome Type 4, or WS4, which can cause defects in pigmentation, hearing impairments, and an absence of intestinal contractions necessary for elimination. This diversity of phenotypes results from the expression pattern of SOX10 in early embryonic and fetal development. SOX10 is found in neural crest cells that form melanocytes,...
40.5K
Inborn Errors of Metabolism01:20

Inborn Errors of Metabolism

Phenylketonuria (PKU) is a protein metabolism disorder characterized by high blood levels of the amino acid phenylalanine. This results from a mutation in the gene responsible for phenylalanine hydroxylase, an enzyme that converts phenylalanine into tyrosine. When this enzyme is deficient, phenylalanine builds up in the blood, leading to symptoms such as vomiting, rashes, seizures, growth deficiency, and severe mental retardation. An early diagnosis and a diet restricting phenylalanine intake...
160