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Examining the Potential Link Between Forkhead Box P1 and Severity and Social Impairment in Children with Autism
Laila Yousef Al-Ayadhi1,2, Nadra Elyass Elamin1, Durria Ahmed Abdulmaged1
1Autism Research and Treatment Center, Department of Physiology, College of Medicine, King Saud University, P.O. Box 2925, Riyadh 11461, Saudi Arabia.
Insights
Plasma FOXP1 protein levels are significantly lower in children with Autism Spectrum Disorder (ASD), suggesting it may be a biomarker for ASD prognosis and social communication deficits.
Area of Science:
- Neuroscience
- Biomarkers
- Developmental Disorders
Background:
- Autism Spectrum Disorder (ASD) is a neurodevelopmental condition affecting social skills and communication.
- Forkhead box protein P1 (FOXP1) plays a role in brain development and ASD pathogenesis, but its specific brain function is not fully understood.
Purpose of the Study:
- To investigate plasma FOXP1 levels as a potential diagnostic biomarker for ASD.
- To evaluate the correlation between FOXP1 levels and ASD severity.
Main Methods:
- Case-control study comparing plasma FOXP1 levels in children with ASD and age-matched controls using ELISA.
- Assessment of behavioral and social impairments using the Childhood Autism Rating Scale (CARS) and Social Responsiveness Scale (SRS).
- Spearman's correlation analysis to determine relationships between variables.
Main Results:
- Significantly decreased plasma FOXP1 levels were observed in children with ASD compared to controls (p < 0.001).
- Both mild-to-moderate and severe ASD subgroups showed reduced FOXP1 levels.
- Older children with ASD (over six years) had lower FOXP1 levels than younger children with ASD.
Conclusions:
- Plasma FOXP1 may serve as a potential biomarker for predicting ASD severity and social communication impairment.
- Further large-scale studies are required to validate these findings and elucidate ASD mechanisms.
Abstract:
Background: Autism spectrum disorder (ASD) is a complex neurodevelopmental condition characterized by impaired social skills and communication. Forkhead box protein P1 (FOXP1) is involved in the development of the brain and the pathogenesis of ASD. However, the function of FOXP1 within the brain remains unclear. The aim of this case-control study was to evaluate whether FOXP1 could be used as a diagnostic biomarker for ASD. Method: Blood plasma was collected from children with ASD and age-matched controls. The enzyme-linked immunosorbent assay (ELISA) was used to determine the FOXP1 plasma levels in ASD and control groups. The behavioral and social impairments in children with ASD were assessed using the Childhood Autism Rating Scale (CARS) and the Social Responsiveness Scale (SRS). Spearman's correlation coefficient (r) was used to determine the correlation between different variables. Results: The plasma FOXP1 protein level was significantly decreased in children with ASD compared to the controls (p < 0.001). CARS showed significant differences between the mild-to-moderate and severe subgroups, while the SRS showed no significant difference between the two subgroups. Moreover, both the mild-to-moderate and severe subgroups exhibited a substantial drop in plasma FOXP1 compared to the controls. ASD children older than six years old also showed a significantly decreased FOXP1 level, compared to those aged six years or less. Furthermore, no significant correlation between the FOXP1 level, CARS, and SRS was observed. However, a negative correlation was found between age and FOXP1 plasma level. Conclusions: We suggest that plasma FOXP1 may act as a potential biomarker for the prognosis of ASD severity and social communication impairment. Further research with a larger sample size is needed to clarify these associations and help diagnose or understand the underlying mechanism of ASD.
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