AI Article Synopsis

  • This study explored the links between specific genetic markers, alpha-thalassemia, and laboratory findings in pediatric patients with two types of sickle cell disease: sickle cell anemia (SCA) and hemoglobin SC disease (HbSC).
  • Higher triglyceride levels were noted particularly in SCA, with significant correlations to lower hemoglobin and HDL cholesterol levels, as well as higher white blood cell counts and other markers related to hemolysis.
  • Although treatment with hydroxyurea (HU) positively affected blood markers, it did not alter lipid levels; the study identified a specific genetic variant (rs964184) as a potential contributor to elevated triglycerides in children with sickle cell disease.

Article Abstract

This cross-sectional study investigated associations between SNPs in metabolizing lipid genes, alpha-thalassemia and laboratory parameters in two forms of sickle cell disease (SCD), sickle cell anemia (SCA) and hemoglobin SC disease (HbSC) in a pediatric population. Among the groups SCA and HbSC was found a higher proportion of increased triglycerides (TG) in SCA. High levels of TG were significantly associated with lower hemoglobin (p = 0.006) and HDL-C (p = 0.037), higher white blood cell count (p = 0.027), LDH (p = 0.004) and bilirubins (p < 0.05) in SCD. Patients with HDL-C ≤40 mg/dL had higher markers hemolytic levels. Therapy of HU significantly influenced several hematological and biochemical parameters but not lipid fractions. Genotypes of the APOA5 rs662799 were not associated with lipid levels. The G-risk allele rs964184/ZPRI ZNF259/ZPR1 gene (GC + GG genotypes) was associated with increased levels of TG in children ≥10 years old (p = 0.045) and the atherogenic ratio TG/HDL-C (p = 0.032) in SCD. The use of HU improves levels of hemolysis and inflammation markers in SCD with high TG and, while not interfering with lipid levels, seems to overlap the effect of the G-risk allele in on them. This study reported for the first time that rs964184 SNP could be a genetic modifier of TG in SCD.

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Source
http://dx.doi.org/10.1016/j.bcmd.2019.102376DOI Listing

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