Microarray analysis of liver gene expression in iron overloaded patients with sickle cell anemia and beta-thalassemia

Am J Hematol. 2009 Jun;84(6):328-34. doi: 10.1002/ajh.21407.

Abstract

Chronic transfusion therapy is used clinically to supply healthy erythrocytes for patients with sickle cell anemia (SCA) or beta-thalassemia major (TM). Despite the benefits of red blood cell transfusions, chronic transfusions lead to iron accumulation in key tissues such as the heart, liver, and endocrine glands. Transfusion-acquired iron overload is recognized as a cause of morbidity and mortality among patients receiving chronic transfusions. At present, there is little understanding of molecular events that occur during transfusional iron loading and the reasons for the large inter-individual variation observed clinically in transfusion-acquired iron accumulation. To address these issues, we examined whether any liver-expressed genes in SCA or TM patients with transfusional iron overload were associated with the degree of iron accumulation. Specifically, we performed microarray analysis on liver biopsy specimens comparing SCA patients with mild or severe iron overload and also compared SCA with TM patients. Fifteen candidate genes were identified with significantly differential expression between the high and low liver iron concentrations. SCA patients and 20 candidate genes were detected between the SCA and TM patient comparison. Subsequent quantitative PCR experiments validated 12 candidate genes; with GSTM1, eIF5a, SULF2, NTS, and HO-1 being particularly good prospects as genes that might affect the degree of iron accumulation. Future work will determine the baseline expression of these genes prior to transfusional iron overload and elucidate the full impact of these genes on the inter-individual variation observed clinically in transfusion-acquired iron accumulation.

MeSH terms

  • Adolescent
  • Adult
  • Anemia, Sickle Cell / genetics*
  • Anemia, Sickle Cell / metabolism
  • Anemia, Sickle Cell / therapy
  • Child
  • Chronic Disease
  • Erythrocyte Transfusion / adverse effects*
  • Female
  • Gene Expression
  • Humans
  • Iron / metabolism
  • Iron Overload / etiology
  • Iron Overload / genetics*
  • Iron Overload / metabolism
  • Linear Models
  • Liver / metabolism*
  • Liver / pathology
  • Male
  • Oligonucleotide Array Sequence Analysis
  • beta-Thalassemia / genetics*
  • beta-Thalassemia / metabolism
  • beta-Thalassemia / therapy

Substances

  • Iron