Thromb Haemost 1975; 33(03): 508-518
DOI: 10.1055/s-0038-1647844
Original Article
Schattauer GmbH

Light Scattering Changes of Edetic Acid-Treated, Washed Rat Platelets

Effect of Adenosine Diphosphate and Calcium Ion in Relation to Chilling
Sachiko Shibata
1   Radioisotope Research Laboratory and Department of Physiological Chemistry, Kitasato University School of Pharmaceutical Sciences, Tokyo, Japan
,
Bonro Kobayashi
1   Radioisotope Research Laboratory and Department of Physiological Chemistry, Kitasato University School of Pharmaceutical Sciences, Tokyo, Japan
› Author Affiliations
Further Information

Publication History

Received 07 July 1974

Accepted 24 February 1975

Publication Date:
02 July 2018 (online)

Summary

The effects of adenosine diphosphate (ADP) and Ca2+ on platelet morphology were studied in edetic acid (EDTA)-treated, washed platelets of rat by means of light scattering measurement at right angles. ADP caused a transient change of light scattering, which was independent of concentration above 5 μM and of pH between 4 and 10. When the platelets were pretreated with ADP or chilled persistently, Ca2+ also caused another transient change of light scattering. The effect of Ca2+ was abolished at pH below 6.5. The velocity of both ADP- and Ca2+-induced response was dependent on temperature, and the magnitude was reduced by metabolic inhibitors and SH-blocking agents. Adenosine triphosphate (ATP) competitively inhibited the ADP-induced response, but not the Ca2+-induced one. The response to Ca2+ of the control and chilled platelets was compared by scanning electron microgram. Apparent similarity of the effect of chilling on membrane structure to that of ADP was suggested.

 
  • References

  • 1 Booyse F. M, Hoveke T. P, Kisieleski D, Rafelson M. E. Mechanism and control of platelet-platelet interactionI. Effects of inducers and inhibitors of aggregation. Microvascular Research 1972; 4: 179
  • 2 Booyse F. M, Rafelson M. E. Mechanism and control of platelet-platelet interactions III. A relaxation-contraction model for platelet aggregation. Microvascular Research 1972; 4: 207
  • 3 Born G. V. R. Observations on the change in shape of blood platelets brought about by adenosine diphosphate. Journal of Physiology 1970; 209: 487
  • 4 Born G. V. R, Foulks J, Michal F, Sharp D. E. Reversal of the rapid morphological reaction of platelets. Journal of Physiology 1972; 225: 27
  • 5 Chambers D. A, Salzman E. W, Neri L. L. Characterization of “ecto ATPase“ of human blood platelets. Archives of Biochemistry and Biophysics 1967; 119: 173
  • 6 Constantine J. W. Aggregation and adhesion of rat platelets. Nature 1967; 214: 1084
  • 7 Cronberg S, Caen J. P. Mg2+- and Ca2+-induced platelet aggregation and ADP. Thrombosis et Diathesis Haemorrhagica 1970; 24: 432
  • 8 Holmsen H. Compartmentation of adenine nucleotides in platelets. In Gerlach E. et al. (ed.) Erythrocytes, Thrombocytes . Leukocytes: Recent Advances in Membrane and Metabolic Research ; 1973: 321
  • 9 Kahn R. A. Alteration in optical density of platelets exposed to hypertonic solutions. Proceedings of the Society for Experimental Biology and Medicine 1973; 143: 1094
  • 10 Kattlove H. E, Alexander B. The effect of cold on platelets I. Cold-induced platelet aggregation. Blood 1971; 38: 39
  • 11 Lüscher E. F, Probst E, Bettex-Galland M. Thrombosthenin : Structure and function. Annals of the New York Academy of Sciences 1972; 201: 122
  • 12 MacMillan D. C, Oliver M. F. The initial changes in platelet morphology following the addition of adenosine diphosphate. Journal of Atherosclerosis Research 1965; 5: 440
  • 13 Martin J. B, Doty D. M. Determination of inorganic phosphate: modification of isobutyl alcohol procedure. Analytical Chemistry 1949; 21: 965
  • 14 Michal F, Born G. V. R. Effect of the rapid shape change of platelets on the transmission and scattering of light through plasma. Nature 1971; 231: 220
  • 15 Rossi E. C. A soluble, magnesium-dependent, calciuminhibited ATPase in human platelets. Journal of Laboratory and Clinical Medicine 1971; 78: 483
  • 16 Salzman E. W, Chambers D. A, Neri L. L. Possible mechanism of aggregation of blood platelets by adenosine diphosphate. Nature 1966; 210: 167
  • 17 Shibata S, Kobayashi B. Calcium ion-induced swelling of EDTA-treated, washed blood platelets of rats. Life Sciences 1969; 8: 727
  • 18 White J. G, Krivit W. An ultrastructural basis for the shape change induced in platelets by chilling. Blood 1967; 30: 625
  • 19 White J. G, Krumwiede M. Influence of cytochalasin B on the shape change induced in platelets by cold. Blood 1973; 41: 823