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Identification of intragenic variants in pediatric patients with intellectual disability in Peru
Hugo Hernán Abarca-Barriga1,2,3, Flor Vásquez Sotomayor4,5, Renzo Punil-Luciano5
1Instituto de Investigaciones de Ciencias Biomédicas, Facultad de Medicina Humana, Universidad Ricardo Palma, Av. Benavides 5440. Santiago de Surco, Lima, 1801, Perú. hugo.abarca@urp.edu.pe.
Insights
Genetic analysis reveals intragenic variants in one-third of pediatric patients with intellectual disability. Key genes like MECP2, STXBP1, and LAMA2 were identified, emphasizing the need for genetic testing in Peru.
Area of Science:
- Genetics
- Pediatrics
- Neurology
Background:
- Intellectual disability (ID) affects up to 12% in Latin America, with genetic variants implicated in 90% of cases.
- Etiologies include nutritional deficiencies, toxic exposures, and lack of neonatal screening.
- Genetic factors are a primary driver of intellectual disability.
Purpose of the Study:
- Determine intragenic variants in pediatric patients with intellectual disability.
- Focus on patients aged 5-18 years at the National Children's Institute.
- Investigate the genetic basis of intellectual disability in this cohort.
Main Methods:
- Descriptive cross-sectional study with convenience sampling.
- Whole exome sequencing performed on 124 children diagnosed with intellectual disability.
- Chromosomal analysis conducted on ten patients with negative sequencing results.
Main Results:
- Exome sequencing identified the etiology in 30.6% of patients.
- Autosomal dominant inheritance was observed in 52.6% of identified genetic causes.
- Frequent genes identified include MECP2, STXBP1, and LAMA2, showing genetic heterogeneity.
Conclusions:
- Intragenic variants are found in approximately one-third of patients with intellectual disability.
- Genetic analysis is crucial for accurate diagnosis and understanding the heterogeneity of ID.
- Findings support genetic testing in clinical management and early detection programs in Peru.
Background:
Intellectual disability in Latin America can reach a frequency of 12% of the population, these may include nutritional deficiencies, exposure to toxic or infectious agents, and the lack of universal neonatal screening programs. In 90% of patients with intellectual disability, the etiology can be attributed to variants in the genome.
Objective:
to determine intragenic variants in patients with intellectual disability between 5 and 18 years old at Instituto Nacional de Salud del Niño.
Methods:
It is a descriptive cross-sectional study with convenience sampling. A total of 124 children diagnosed with intellectual disability were selected based on psychological test results and availability for whole exome sequencing. In addition, a chromosomal analysis of 6.55 M was performed on ten patients with a negative result in sequencing. Relative and absolute frequencies and measures of central tendency and dispersion were determined according to their nature. In addition, multiple linear regression and Poisson regression were used to determine the association between some clinical characteristics and the probability of occurrence in patients with positive results.
Results:
The median age of the patients was 6.3 (IQR = 5.95), males accounted for 57.3%, and 91.9% of the cases had mild intellectual disability. Exome sequencing determined the etiology in 30.6% of patients with intellectual disability, of which 52.6% were autosomal dominant inheritance. The most frequent genes found were MECP2, STXBP1 and LAMA2. A broad genotype-phenotype correlation was identified, highlighting the genetic heterogeneity of intellectual disability in this population. The presence of dermatologic lesions, dystonia, peripheral neurological disorders, and fourth finger flexion limitation were observed more frequently in patients with intellectual disability with "positive results".
Conclusions:
This study shows that one-third of patients with intellectual disability exhibit intragenic variants, highlighting the importance of genetic analysis for accurate diagnosis. The identification of genes such as MECP2, STXBP1, and LAMA2 underscores the genetic heterogeneity of intellectual disability in the studied population. These findings emphasize the need for genetic testing in clinical management and the implementation of early detection programs in Peru.
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