HLA-DRB1 confers increased risk of pediatric-onset MS in children with acquired demyelination

G Disanto1, S Magalhaes, A E Handel

  • 1McGill University, Montreal Neurological Institute, Montreal, Quebec, H3A2B4, Canada.

Neurology
|February 4, 2011
PubMed

Insights

The DRB1*15 gene allele increases the risk of pediatric multiple sclerosis (MS) in children with acquired demyelinating syndromes. This finding supports a shared genetic basis for MS in both children and adults.

Area of Science:

  • Neurology
  • Genetics
  • Immunology

Background:

  • Pediatric multiple sclerosis (MS) is increasingly recognized.
  • Genetic and environmental factors influence MS risk in adults, with the major histocompatibility complex (human leukocyte antigen [HLA]) being a key genetic determinant.
  • It remains unknown if HLA alleles predict MS in children with acquired demyelinating syndromes (ADS).

Purpose of the Study:

  • To investigate whether specific HLA-DRB1 alleles predict the development of MS in children presenting with ADS.
  • To determine if the genetic contribution to MS risk is similar in pediatric and adult populations.

Main Methods:

  • HLA-DRB1 alleles were analyzed using allele-specific PCR in 266 children with ADS and 196 healthy controls.
  • Children with ADS were prospectively followed to diagnose MS based on established criteria.

Main Results:

  • Of 266 children with ADS, 64 were diagnosed with MS during follow-up.
  • Children with DRB1*15 alleles showed a significantly higher likelihood of MS diagnosis (OR = 2.7), particularly those of European ancestry (OR = 3.3).
  • DRB1*15 allele frequency was higher in children diagnosed with MS compared to those with monophasic ADS or healthy controls, but not influenced by ancestry in non-European children.

Conclusions:

  • DRB1*15 alleles are associated with increased susceptibility to pediatric-onset MS.
  • This finding suggests a similar genetic basis for MS in both pediatric and adult-onset disease.
  • The DRB1*15 allele specifically predicts chronic MS rather than general acquired demyelination in children.
Abstract

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