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Blood-Based Biomarkers Predictive of Metformin Target Engagement in Fragile X Syndrome
Mittal Jasoliya1, Heather Bowling2, Ignacio Cortina Petrasic3
1Department of Biochemistry and Molecular Medicine, University of California, Davis, Sacramento, CA 95817, USA.
Abstract:
Recent advances in neurobiology have provided several molecular entrees for targeted treatments for Fragile X syndrome (FXS). However, the efficacy of these treatments has been demonstrated mainly in animal models and has not been consistently predictive of targeted drugs' response in the preponderance of human clinical trials. Because of the heterogeneity of FXS at various levels, including the molecular level, phenotypic manifestation, and drug response, it is critically important to identify biomarkers that can help in patient stratification and prediction of therapeutic efficacy. The primary objective of this study was to assess the ability of molecular biomarkers to predict phenotypic subgroups, symptom severity, and treatment response to metformin in clinically treated patients with FXS. We specifically tested a triplex protein array comprising of hexokinase 1 (HK1), RAS (all isoforms), and Matrix Metalloproteinase 9 (MMP9) that we previously demonstrated were dysregulated in the FXS mouse model and in blood samples from patient with FXS. Seventeen participants with FXS, 12 males and 5 females, treated clinically with metformin were included in this study. The disruption in expression abundance of these proteins was normalized and associated with significant self-reported improvement in clinical phenotypes (CGI-I in addition to BMI) in a subset of participants with FXS. Our preliminary findings suggest that these proteins are of strong molecular relevance to the FXS pathology that could make them useful molecular biomarkers for this syndrome.
Insights
Molecular biomarkers like HK1, RAS, and MMP9 show promise for Fragile X syndrome (FXS) patient stratification. Normalizing these protein levels correlated with improved clinical symptoms in FXS patients treated with metformin.
Area of Science:
- Neurobiology
- Genetics
- Biomarker Discovery
Background:
- Fragile X syndrome (FXS) treatments show limited success in human trials due to disease heterogeneity.
- Identifying reliable biomarkers is crucial for patient stratification and predicting therapeutic responses in FXS.
Purpose of the Study:
- To evaluate molecular biomarkers for predicting phenotypic subgroups, symptom severity, and treatment response in FXS patients.
- To assess the utility of a triplex protein array (HK1, RAS, MMP9) as biomarkers in FXS.
Main Methods:
- Assessed a triplex protein array (hexokinase 1, RAS, Matrix Metalloproteinase 9) in 17 FXS patients treated with metformin.
- Correlated protein expression levels with clinical phenotypes (CGI-I, BMI) and treatment response.
Main Results:
- Disruptions in HK1, RAS, and MMP9 expression were observed in FXS patients.
- Normalized protein expression correlated with significant self-reported clinical improvements in a subset of patients.
Conclusions:
- The studied proteins (HK1, RAS, MMP9) are relevant to FXS pathology.
- These proteins show potential as molecular biomarkers for patient stratification and treatment guidance in Fragile X syndrome.
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