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Original Article

Shear Rate Dependency of Red Cell Sequestration in Skin Capillaries in Sickle Cell Disease and Its Variation with Vasoocclusive Crisis

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Pages 289-301 | Received 11 Sep 1996, Accepted 17 Jan 1997, Published online: 10 Jul 2009

References

  • Baez S, Kaul DK, Nagel RI. Microvascular determinants of blood flow behavior and HbSS erythrocyte plugging in the microcirculation. Blood Cells 1982; 8: 127–137
  • Barabino GA, McIntire LV, Eskin SG, Sears DA, Udden M. Endothelial cell interactions with sickle cell, sickle trait, mechanically injured, and normal erythrocytes under controlled flow. Blood 1987; 170: 152–157
  • Barrett-Connor E. Bacterial infection and sickle cell anemia. Medicine 1971; 50: 97–112
  • Chien S, Usami S, Bertles JF. Abnormal rheology of oxygenated blood in sickle cell anemia. J Clin Invest 1970; 4: 623–634
  • Diggs LW. Anatomic lesions in sickle cell diseases. Sickle Cell Disease: Diagnosis, Management, Education and Research, H Abramton, JF Bertles, DL Wethers. C.J. Mosley, Saint Louis 1973; 189–229
  • Evans E, Mohandas N, Leung A. Static and dynamic rigidities of normal and sickle erythrocytes. J Clin Invest 1984; 73: 477–488
  • Fabry ME, Benjamin L, Lawerence C, Nagel RL. An objective sign in painful crisis in sickle cell anemia: the concomitant reduction of high density red cells. Blood 1984; 64: 559–563
  • Fabry ME, Nagel RL. Heterogeneity of red cells in the sickler. Blood Cells 1982; 8: 9–15
  • Fagrell B, Intaglietta M, Ostergren J. Relative hematocrit in human skin capillaries and its relation to capillary blood flow velocity. Microvasc Res 1980; 20: 327–335
  • Gaehtgens P, Benner KU, Schickendantz S, Albrecht KH. Method for simultaneous determination of red cell and plasma flow velocity in vitro. in vivo. Pflugers Arch 1976; 361: 191–195
  • Ham TH, Castle WB. Relation of increased hypotonic fragility and of erythrostasis to the mechanism of hemolysis in certain anemias. Trans Assoc Am Physicians 1940; 55: 127
  • Harris JW, Brewster HH, Ham TH, Castle WB. Studies on the destruction of red blood cells: X. The biophysics and biology of sickle cell disease. AMA Arch Intern Med 1956; 97: 145
  • Hebbel RP. Beyond hemoglobin polymerization: the red blood cell membrane and sickle cell disease pathophysiology. Blood 1991; 77: 214–237
  • Hebbel RP, Moldow CF, Steinberg MH. Modulations of erythrocyte-endothelial interactions and the vasocclusive severity of sickling disorders. Blood 1981; 58: 947–952
  • Hebbel RP, Yamada O, Maldow CF, Jacob HS. Abnormal adherence of sickle erythrocytes to cultured vascular endothelium. J Clin Invest 1980; 65: 154–160
  • Hoover R, Rubin R, Wise G, Warren R. Adhesion of normal and sickle erythrocytes to endothelial monolayer cultures. Blood 1979; 54: 872–876
  • House SD, Lipowsky HH. Leukocyte-endothelium adhesion and microhemodynamics in the mesentery of the cat. Microvasc Res 1987; 34: 363–379
  • Johnson PC, Blaschke J, Burton KS, Dial JH. Influence of flow variations on the capillary hematocrit in mesentery. Am J Physiol 1971; 221: 105–112
  • Kaul DK, Fabry ME, Constantini F, Rubin EM, Nagel RL. In vivo demonstration of red cell-endothelial interaction, sickling and altered microvascular response to oxygen in the sickle transgenic mouse. Clin Invest 1996; 96: 2845–2853
  • Kaul DK, Fabry ME, Windsisch P, Baez S, Nagel RL. Erythrocytes in sickle cell anemia are heterogeneous in their rheological and hemodynamic characteristics. J Clin Invest 1983; 72: 22–31
  • Kaul DL, Nagel RL, Baez S. Pressure effects on the flow behavior of sickle (HbSS) red cells in isolated (ex-vivo) microvascular systems. Microvasc Res 1983; 26: 170–181
  • Kucukcelebi A, Barmatoski SP, Barhart MI. Interactions between vessel wall and perfused sickled erythrocytes. Scanning Electron Microsc 1980; 3: 243–248
  • LaCell P. Oxygen delivery to muscle cells during capillary occlusion by sickled erythrocytes. Nouv Rev Fr Hematol Blood Cells 1977; 3: 273–282
  • Lipowsky HH, Chien S. Role of leukocyte-endothelium adhesion in affecting recovery from ischemia episodes. Ann NY Acad Sci 1989; 565: 308–315
  • Lipowsky HH, Sheikh NU, Katz DM. Intravital microscopy of capillary hemodynamics in sickle cell disease. J Clin Invest 1987; 80: 117–127
  • Lipowsky HH, Usami S, Shien S. Human SS red cell rheological behavior in the microcirculation of cremaster muscle. Blood Cells 1982; 8: 113–126
  • Nash GB, Johnson CS, Meiselman HJ. Mechanical properties of oxygenated red blood cells in sickle cell (HbSS) disease. Blood 1984; 63: 73–82
  • Rodgers GP, Noguchi CT, Schechter AN. Non-invasive techniques to evaluate the vasoocclusive manifestations of sickle cell disease. Am J Pediatr Hematol Oncol 1985; 7: 245–253
  • Rodgers GP, Schechter AN, Noguchi CT, Klein HG, Nienhuis AW, Bonner RF. Periodic microcirculatory flow in patients with sickle-cell disease. N Engl J Med 1984; 311: 1534–1538
  • Rogers GP, Schechter AN, Noguchi CT, Klein HG, Nienhuis AW, Bonner RF. Microcirculatory adaptations in sickle cell anemia: reactive hyperemia response. Am J Physiol 1990; 258: H113–H120
  • Schmid-Schönbein GW, Usami S, Skalak R, Chien D. The interaction of red blood cells in normal circulation in small blood vessels observed. in vivo. Microvasc Res 1980; 19: 45–70
  • Secomb TW, Pries AR, Gaehtgens P. Hematocrit fluctuations within capillary tubes and estimation of Fåhraeus effect. Int J Microcirc Clin Exp 1987; 5: 335–345
  • Swerlick RA, Eckman JR, Kumar A, Jeitler M, Wick TM. Alpha 4 beta 1-integrin expression on sickle reticulocytes: vascular cell adhesion molecule-1-dependent binding to endothelium. Blood 1993; 82: 1891–1899
  • Usami S, Chien S, Scholz PM, Bertles JF. Effect of deoxygenation on blood rheology in sickle cell disease. Microvasc Res 1975; 9: 324–334

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