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Updated: May 20, 2025

A Precision Medicine Tool for Measurement and Monitoring of Hemoglobin S in Sickle Cell Disease Patients Receiving Transfusion Therapy
Unraveling the Complex Genomic Interplay of Sickle Cell Disease Among the Saudi Population: A Case-Control GWAS
Ali Alghubayshi1,2, Dayanjan Wijesinghe2, Deemah Alwadaani3,4
1Department of Clinical Pharmacy, College of Pharmacy, University of Ha'il, Ha'il 55473, Saudi Arabia.
Insights
This study identified novel genetic markers in Saudi sickle cell disease (SCD) patients. These findings offer potential for new diagnostic biomarkers and precision medicine approaches for SCD in this population.
Area of Science:
- Genetics and Genomics
- Hematology
- Population Health
Background:
- Sickle cell disease (SCD) is a severe inherited blood disorder with significant morbidity and mortality, particularly in the Middle East.
- While monogenic, SCD complications involve polygenic factors, with most genetic research focused on African ancestry populations.
- Saudi Arabia has a high prevalence of SCD, necessitating population-specific genetic investigations.
Purpose of the Study:
- To identify genetic variants characterizing Saudi SCD patients that may influence disease outcomes.
- To uncover potential molecular biomarkers and therapeutic targets for SCD in the Saudi population.
- To provide a foundation for precision medicine in SCD management within this demographic.
Main Methods:
- A multicenter, case-control genome-wide association study (GWAS) involving 350 adult Saudi SCD patients and 202 healthy controls.
- Genotyping using the Affymetrix Axiom array (683,030 markers) with rigorous quality control.
- Fisher's exact test for significant allele frequency differences (p < 5 × 10^-8), with functional annotation via Ensembl VEP and RegulomeDB.
Main Results:
- The GWAS identified numerous significant genetic variants characterizing Saudi SCD cases across multiple chromosomes.
- Key variants were found in genes within the olfactory receptor cluster, TRIM family, and HBB locus.
- Identified genes are associated with hemoglobin regulation, inflammation, immune response, and vascular function, aligning with known SCD pathophysiology.
Conclusions:
- This study is the first genetic analysis comparing Saudi SCD patients to healthy individuals, revealing population-specific genetic markers.
- The identified variants represent potential diagnostic biomarkers and therapeutic targets, enhancing understanding of SCD's genetic complexity.
- Findings support the development of precision medicine strategies for SCD management in the Saudi population, warranting further validation.
Abstract:
Sickle cell disease (SCD) is a severe inherited blood disorder characterized by abnormal hemoglobin (HbS) that leads to varying degrees of severity, including chronic hemolysis, episodic vaso-occlusion, and damage to multiple organs, causing significant morbidity and mortality. While SCD is a monogenic disease, its complications are influenced by polygenic factors. SCD prevalence is notably high in regions including the Middle East, with Saudi Arabia reporting significant cases, particularly in the Eastern Province. Most genetic factors associated with SCD outcomes have been identified in populations predominantly from Africa or of African ancestry. This study aims to identify genetic variants that characterize Saudi SCD patients with the potential to influence disease outcomes in this population. A multicenter case-control genome-wide association study (GWAS) was conducted involving 350 adult Saudi SCD patients and 202 healthy controls. Participants were genotyped using the Affymetrix Axiom array, covering 683,030 markers. Rigorous quality control measures were applied to ensure data integrity. Fisher's exact was used to identify genetic variants with a significant difference in allele frequency (p < 5 × 10-8). Functional annotations and regulatory functions of variants were determined using the Ensembl Variant Effect Predictor (VEP) and RegulomeDB databases. The GWAS identified numerous significant genetic variants characterizing SCD cases in the Saudi population. These variants, distributed across multiple chromosomes, were found in genes with known functional consequences. A substantial proportion of the markers were detected in the olfactory receptor cluster, TRIM family, and HBB locus genes. Many of the identified genes were reported in previous studies showing significant associations with various SCD outcomes, including hemoglobin regulation, inflammation, immune response, and vascular function. The findings highlight the genetic complexity underlying SCD and its clinical manifestations. The identified variants suggest potential molecular biomarkers and therapeutic targets, enhancing our understanding of the molecular basis of SCD in the Saudi population. This is the first genetic analysis characterizing SCD patients compared to healthy individuals, uncovering genetic markers that could serve as diagnostic biomarkers and therapeutic targets. Given the known molecular mechanisms of the detected genetic loci, these provide a foundation for precision medicine in SCD management, highlighting the need for further studies to validate these results and explore their clinical implications.
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