Pathobiology of thalassemic erythrocytes. 1997

S L Schrier
Stanford University School of Medicine, Department of Hematology, CA 94305, USA.

Although study of the thalassemias has focussed on possible cure or amelioration by genetic techniques, considerable progress has been made in understanding the underlying pathobiology of these diseases. Better control of childhood infectious diseases has led to a clearer understanding of the frequency and clinical severity of some of these disorders. The striking differences between alpha- and beta-thalassemia are now well documented and the role of oxidant attack in the pathobiology is becoming clearer. Some authors believe that severe beta-thalassemia induces a hypercoagulable state that could be partially caused by scrambling of the phospholipid bilayer of affected erythrocytes. There is growing appreciation that double heterozygosity for hemoglobin E/beta-thalassemia, while causing variable anemia, can produce a clinical condition as severe as Cooley's anemia (beta-thalassemia major). Anemia severity may be related to the extent of oxidant attack on the unstable hemoglobin E. Studies of the hemoglobin Constant Spring variants demonstrate the consequences of accumulating excess unmatched beta globin as well as the unique alpha CS. Studies on marrow erythroid precursors in the beta-thalassemias have already shown accelerated programmed cell death and abnormal assembly of membrane proteins. Such studies in the future will likely further delineate the underlying differences between alpha- and beta-thalassemias.

UI MeSH Term Description Entries
D004912 Erythrocytes Red blood cells. Mature erythrocytes are non-nucleated, biconcave disks containing HEMOGLOBIN whose function is to transport OXYGEN. Blood Cells, Red,Blood Corpuscles, Red,Red Blood Cells,Red Blood Corpuscles,Blood Cell, Red,Blood Corpuscle, Red,Erythrocyte,Red Blood Cell,Red Blood Corpuscle
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D017085 alpha-Thalassemia A disorder characterized by reduced synthesis of the alpha chains of hemoglobin. The severity of this condition can vary from mild anemia to death, depending on the number of genes deleted. Hemoglobin H Disease,Thalassemia-alpha,A-Thalassemia,Alpha Thalassemia,Disease, Hemoglobin H,Thalassemia alpha,Thalassemia, Alpha,alpha-Thalassemias
D017086 beta-Thalassemia A disorder characterized by reduced synthesis of the beta chains of hemoglobin. There is retardation of hemoglobin A synthesis in the heterozygous form (thalassemia minor), which is asymptomatic, while in the homozygous form (thalassemia major, Cooley's anemia, Mediterranean anemia, erythroblastic anemia), which can result in severe complications and even death, hemoglobin A synthesis is absent. Anemia, Cooley's,Anemia, Erythroblastic,Anemia, Mediterranean,Hemoglobin F Disease,Thalassemia Major,Thalassemia Minor,Erythroblastic Anemia,Mediterranean Anemia,Microcytemia, beta Type,Thalassemia Intermedia,Thalassemia Major (beta-Thalassemia Major),Thalassemia Minor (beta-Thalassemia Minor),Thalassemia, beta Type,beta Thalassemia,Anemia, Cooley,Anemia, Cooleys,Anemias, Erythroblastic,Anemias, Mediterranean,Cooley's Anemia,Disease, Hemoglobin F,Intermedia, Thalassemia,Intermedias, Thalassemia,Major, Thalassemia (beta-Thalassemia Major),Majors, Thalassemia (beta-Thalassemia Major),Mediterranean Anemias,Microcytemias, beta Type,Minor, Thalassemia (beta-Thalassemia Minor),Minors, Thalassemia (beta-Thalassemia Minor),Thalassemia Intermedias,Thalassemia Major (beta Thalassemia Major),Thalassemia Majors (beta-Thalassemia Major),Thalassemia Minor (beta Thalassemia Minor),Thalassemia Minors (beta-Thalassemia Minor),Thalassemia, beta,Thalassemias, beta,Thalassemias, beta Type,Type Microcytemia, beta,Type Microcytemias, beta,Type Thalassemia, beta,Type Thalassemias, beta,beta Thalassemias,beta Type Microcytemia,beta Type Microcytemias,beta Type Thalassemia,beta Type Thalassemias

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