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Updated: May 17, 2025

A Precision Medicine Tool for Measurement and Monitoring of Hemoglobin S in Sickle Cell Disease Patients Receiving Transfusion Therapy
Genetic Modifiers Associated with Vaso-Occlusive Crises and Acute Pain Phenomena in Sickle Cell Disease: A Scoping
Froso Sophocleous1, Natasha M Archer2, Carsten W Lederer1
1Molecular Genetics Thalassaemia Department, The Cyprus Institute of Neurology & Genetics, 6 Iroon Avenue, Ayios Dometios, Nicosia 2371, Cyprus.
Insights
Genetic disease modifiers significantly impact sickle cell disease (SCD) pain variability. Identifying these genetic factors is crucial for improving prognosis and developing targeted therapies for SCD patients.
Area of Science:
- Genetics
- Hematology
- Pharmacogenomics
Background:
- Sickle cell disease (SCD) is characterized by significant variability in pain-related phenomena, suggesting the influence of genetic disease modifiers (GDMs).
- Understanding these GDMs is critical for accurate prognosis, personalized treatment selection, and effective therapy development in SCD.
Purpose of the Study:
- To identify and analyze genetic disease modifiers (GDMs) associated with pain-related phenomena in sickle cell disease (SCD).
- To assess the current state of research on GDMs in SCD and identify areas for future investigation.
Main Methods:
- A systematic literature search was conducted in PubMed and SCOPUS to identify articles on genetic factors influencing SCD pain.
- A two-step selection process was employed, leading to the content analysis of 100 articles and extraction of GDM findings from 37.
- Data on GDM single nucleotide variants (SNVs), deletions, regions, and associated gene ontology pathways were analyzed.
Main Results:
- Gender effects and 51 GDM SNVs, deletions, and regions were identified, including globin genes.
- Overrepresented gene ontology pathways included oxidative stress, hypoxia, and blood pressure regulation.
- Additional candidate GDMs and potential confounding factors for genome-wide association studies (GWAS) were highlighted.
Conclusions:
- Despite the importance of pain phenomena in SCD, clinically relevant genetic insights are limited by a lack of large-scale, systematic, multi-ethnic research efforts.
- Further large-scale, multi-ethnic studies are essential to fully elucidate the role of GDMs in SCD pain and improve patient outcomes.
Abstract:
Sickle cell disease (SCD) is a group of recessive diseases caused by the βS sickling mutation of HBB in homozygosity or in compound heterozygosity with other pathogenic HBB mutations. Patients with severe SCD typically experience painful vaso-occlusive crises and other pain-related phenomena, including acute chest syndrome, priapism, dactylitis, avascular necrosis, and splenic sequestration and infarction. High variability of pain-related phenomena per SCD genotype indicates genetic disease modifiers (GDMs) as pathology determinants and, thus, as critical to prognosis, treatment choice, and therapy development. Articles likely holding genetic information for SCD pain phenomena were identified in PubMed and SCOPUS for article quality assessment and extraction of corresponding GDMs and observations indicative of development areas in our understanding of SCD GDMs. This process led to the initial selection of 183 articles matching the search terms, which, after two-step selection, resulted in the inclusion of 100 articles for content analysis and of significant findings for GDMs from 37 articles. Published data point to gender effects and to 51 GDM SNVs, deletions, and regions, including globin genes and significant overrepresentation of gene ontology pathways related, e.g., to oxidative stress, hypoxia, and regulation of blood pressure. Analyzed articles further pointed to additional candidate GDMs affecting SCD VOC and pain phenomena and to potential confounding factors for GWAS analyses. We found that despite the critical importance of VOC and pain phenomena for SCD pathology, corresponding clinically relevant genetic insights are held back by a shortage of large-scale, systematic multi-ethnic efforts, as undertaken by the INHERENT Network.
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