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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.
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.
Background:
Multiple sclerosis (MS) in the pediatric age group is being increasingly recognized. In adults, complex interactions between genetic and environmental factors contribute to risk and the major genetic component of MS susceptibility localizes to the major histocompatibility complex (human leukocyte antigen [HLA]). Whether HLA alleles predict MS in at-risk children presenting with acquired demyelinating syndromes (ADS) of the CNS is unknown.
Methods:
HLA-DRB1 alleles were typed using an allele-specific PCR amplification method on samples from 266 children presenting with ADS enrolled in the prospective Canadian Pediatric Demyelinating Disease Study and from 196 healthy controls.
Results:
Sixty-four of 266 children with ADS met established criteria for a diagnosis of MS during a mean follow-up of 3.2 ± 1.5 years. Children harboring DRB1*15 alleles were more likely to be diagnosed with MS (χ(2) = 12.2, p < 0.001; OR = 2.7), an observation strengthened by children of European ancestry (χ(2) = 10.5, p = 0.001; OR = 3.3). DRB1*15 allele frequencies in children with ADS of European ancestry subsequently diagnosed with MS were greater than in children with monophasic ADS (χ(2) = 10.7, p = 0.001) or healthy controls (χ(2) = 12.5, p < 0.001). The proportion of children with non-European ancestry diagnosed with MS was not influenced by DRB1*15 status.
Conclusion:
DRB1*15 alleles confer increased susceptibility to pediatric-onset MS, supporting a fundamental similarity in genetic contribution to MS risk in both pediatric- and adult-onset disease. The specificity of the DRB1*15 risk allele for children with subsequent MS diagnosis, but not for all children with ADS, indicates that the risk conveyed by DRB1*15 relates to chronic CNS disease (MS), rather than acquired demyelination in general.
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