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PMID: 6061750 Published · ppublish English Journal Article

Pathogenesis of hemolytic anemia in homozygous hemoglobin C disease.

The Journal of clinical investigation ·Vol. 46 ·No. 11 ·1967-11-00 ·Pages 1795-811

Charache S, Conley CL, Waugh DF, Ugoretz RJ, Spurrell JR

Abstract

Hemoglobin C is less soluble than hemoglobin A in red cells, in hemolysates, and in dilute phosphate buffer. Its relative insolubility may be explained by electrostatic interactions between positively charged beta6-lysyl groups and negatively charged groups on adjacent molecules. Red cells from patients with homozygous hemoglobin C (CC) disease exhibit aberrant physical properties which suggest that the cells are more rigid than normal erythrocytes. They pass through membrane filters less readily than normal red cells do, and their viscosity is higher than that of normal cells. Differences from normal cells are exaggerated if mean corpuscular hemoglobin concentration (MCHC) is increased, by suspension in hypertonic salt solution. Increased rigidity of CC cells, by accelerating their fragmentation, may be responsible for formation of microspherocytes. These small dense cells are exceptionally rigid, and probably are even more susceptible to fragmentation and sequestration. Rigidity of CC cells can be attributed to a "precrystalline" state of intracellular hemoglobin, in which crystallization does not occur, although the MCHC exceeds the solubility of hemoglobin in hemolysates.

MeSH Terms
Anemia, Hemolytic/pathology Erythrocytes, Abnormal Hemoglobin C/analysis Hemoglobin C Disease Hemoglobinopathies Humans Splenomegaly
Chemicals
Hemoglobin C
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Charache S
Conley C L
Waugh D F
Ugoretz R J
Spurrell J R
References (36)
36 references, click to expand
  1. Heinz body anemia: an ultrastructural study. II. Red cell sequestration and destruction.
    Blood. 1965 Oct;26(4):433-48 PMID: 5825007
  2. Electron microscopic observations of the splenic red pulp with special reference to the pitting function.
    Mie Med J. 1964 Sep;14(2):143-88 PMID: 5825651
  3. Disk-sphere transformation and plasticity alteration of red blood cells.
    Nature. 1965 Apr 24;206(982):409-10 PMID: 5835717
  4. Molecular mechanism of red cell "sickling".
    Science. 1966 Jul 8;153(3732):145-9 PMID: 5940355
  5. Membrane alterations leading to red cell destruction.
    Am J Med. 1966 Nov;41(5):681-98 PMID: 5332168
  6. Destruction of injured red cells in vivo.
    Am J Med. 1966 Nov;41(5):711-23 PMID: 5332170
  7. Abnormalities in the physiology of the erythrocyte membrane in hereditary spherocytosis.
    Am J Med. 1966 Nov;41(5):734-43 PMID: 5332172
  8. Thalassemia: the consequences of unbalanced hemoglobin synthesis.
    Am J Med. 1966 Nov;41(5):815-30 PMID: 5332176
  9. The relationship of red cell fragmentation occurring within the spleen to cell destruction.
    Trans Assoc Am Physicians. 1966;79:426-38 PMID: 5333401
  10. [Microscopic structure of erythrocytes with abnormal hemoglobin].
    Rev Hematol. 1952;7(4):567-74 PMID: 13048114
  11. Solubilities of naturally occurring mixtures of human hemoglobin.
    Arch Biochem Biophys. 1953 Nov;47(1):148-59 PMID: 13114882
  12. The specific heat and the heat of compression of human red cells, sickled red cells, and paracrystalline rat red cells.
    J Gen Physiol. 1955 May 20;38(5):575-80 PMID: 14367773
  13. Properties of sickle-cell haemoglobin.
    Biochem J. 1957 Feb;65(2):212-9 PMID: 13403895
  14. The distribution of Fe59 tagged human erythrocytes in centrifuged specimens as a function of cell age.
    J Clin Invest. 1957 May;36(5):676-9 PMID: 13428856
  15. The destruction of red cells by antibodies in man. I. Observations of the sequestration and lysis of red cells altered by immune mechanisms.
    J Clin Invest. 1957 Oct;36(10):1428-59 PMID: 13475483
  16. Intra-erythrocytic haemoglobin crystals.
    J Clin Pathol. 1957 Nov;10(4):336-8 PMID: 13481116
  17. Allelomorphism and the chemical differences of the human haemoglobins A, S and C.
    Nature. 1958 Apr 12;181(4615):1062-3 PMID: 13541361
  18. [Normal, paracrystalline & sickled erythrocytes].
    Rev Hematol. 1958 Apr-Jun;13(2):129-31 PMID: 13568364
  19. [Sickling of erythrocytes studied with polarized light & electron microscopes. II. Erythrocyte internal structure; comparison with intra-erythrocytic crystals].
    Rev Hematol. 1958 Apr-Jun;13(2):249-70 PMID: 13568373
  20. Clinical manifestations of hemoglobin C disorders.
    Bull Johns Hopkins Hosp. 1959 Jan;104(1):17-43 PMID: 13618691
  21. Ultracentrifugal fractionation of human erythrocytes on the basis of cell age.
    J Lab Clin Med. 1961 Aug;58:242-6 PMID: 13741595
  22. Red cell filtration and the pathogenesis of certain hemolytic anemias.
    Blood. 1961 Aug;18:133-48 PMID: 13789381
  23. Considerations of the internal viscosity of red cells and its effect on the viscosity of whole blood.
    Angiology. 1962 Aug;13:333-44 PMID: 13886516
  24. The physics of blood flow in capillaries. III. The pressure required to deform erythrocytes in acid-citrate-dextrose.
    Biophys J. 1962 Mar;2:213-22 PMID: 14488987
  25. ERYTHROCYTE LIPIDS: A COMPARISON OF NORMAL YOUNG AND NORMAL OLD POPULATIONS.
    J Lab Clin Med. 1963 Sep;62:394-400 PMID: 14061970
  26. EFFECT OF MEAN CORPUSCULAR HEMOGLOBIN CONCENTRATION ON VISCOSITY.
    J Lab Clin Med. 1963 Sep;62:401-6 PMID: 14061971
  27. RED BLOOD CELLS: CHANGE IN SHAPE IN CAPILLARIES.
    Science. 1963 Dec 6;142(3597):1319-21 PMID: 14074848
  28. A MOLECULAR MECHANISM OF SICKLED ERYTHROCYTE FORMATION.
    Nature. 1964 Apr 18;202:258-60 PMID: 14167780
  29. HEMODILUTION, TONICITY, AND BLOOD VISCOSITY.
    J Clin Invest. 1964 Nov;43:2214-26 PMID: 14223933
  30. PATHOPHYSIOLOGICAL EFFECTS OF SOME ABNORMAL HEMOGLOBINS.
    Medicine (Baltimore). 1964 Nov;43:785-7 PMID: 14226595
  31. RHEOLOGY OF PACKED RED BLOOD CELLS CONTAINING HEMOGLOBINS A-A, S-A, AND S-S.
    J Lab Clin Med. 1964 Oct;64:594-600 PMID: 14233148
  32. SOME LIPID CHARACTERISTICS OF NORMAL RED BLOOD CELLS OF DIFFERENT AGE.
    Br J Haematol. 1965 Mar;11:193-9 PMID: 14262178
  33. Some characteristic properties of hemoglobin C.
    Blood. 1955 Nov;10(11):1079-91 PMID: 13269392
  34. Studies on the destruction of red blood cells. X. The biophysics and biology of sickle-cell disease.
    AMA Arch Intern Med. 1956 Feb;97(2):145-68 PMID: 13282521
  35. Homozygous hemoglobin C disease in siblings: further comment on intraerythrocytic crystals.
    Blood. 1956 Mar;11(3):266-72 PMID: 13293203
  36. In vitro crystallization of hemoglobin occuring in citrated blood from patients with hemoglobin C.
    J Lab Clin Med. 1956 May;47(5):700-5 PMID: 13319876
Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1967-11-00
Pages
1795-811
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC292930
Subset
IM
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