Semin Thromb Hemost 2005; 31(4): 449-457
DOI: 10.1055/s-2005-916680
Copyright © 2005 by Thieme Medical Publishers, Inc., 333 Seventh Avenue, New York, NY 10001, USA.

Adhesion, Spreading, and Aggregation of Platelets in Flowing Blood and the Reliability of the Retention Test Homburg

Boris Krischek1 , Eberhard Morgenstern2 , Pedres Mestres3 , Ute Klinkhardt4 , Werner Brannath5 , Ulrich Wieding6 , Amah Nemeh6 , Walter Heinrich6 , Jochen Schenk6 , Thomas Wenzel6 , Ernst Wenzel6
  • 1Professor, Department of Neurosurgery, Philipps University Marburg, Germany
  • 2Campus, University Hospital of Saarland, Germany
  • 3Institute of Anatomy, University Hospital of Saarland, Germany
  • 4Institute of Clinical Pharmacology, University Hospital Frankfurt/Main, Germany
  • 5Department of Medical Statistics, Medical University of Vienna, Austria
  • 6Working Party in Hemostasis and Department of Clinical Hemostaseology and Transfusion Medicine, University Hospital of Saarland, Germany
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Publikationsverlauf

Publikationsdatum:
07. September 2005 (online)

ABSTRACT

Adhesion and aggregation are important parameters characterizing the function of intact platelets in flowing blood and in contact with a more or less thrombogenic surface. In the retention test Homburg (RTH), platelets are exposed to a standardized textured surface (Sysmex retention tubes) under defined conditions of flow. Platelet counts are performed before and after the Sysmex retention tube passage. The difference between these values indicates the percentage of retained platelets (retention index). Decreased retention in the RTH indicates a loss of function or defective platelet function; increase is associated with an increased activation of platelets, for example, in patients with vascular diseases. For further evaluation of the retention phenomenon the filters were fixed after cell passage and examined by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). SEM and TEM micrographs show activated platelets adhering and spreading on the filter surface, comparable with platelets on a disturbed endothelium.

Also, we examined the influence of different G forces and centrifugation times on the retention behavior of the platelets in citrated platelet-rich plasma (PRP) and whole blood (WB). G forces influenced the retention index in PRP and WB significantly and in a different way. Finally, we used a platelet standard, as customary in the quality check, to determine the serial as well as the day-to-day precision.

REFERENCES

  • 1 Harrison P. Progress in the assessment of platelet function.  Br J Haematol. 2000;  111 733-744
  • 2 Baumgartner H R. Defective adhesion of platelets to subendothelium in von Willebrand's disease and Bernard-Soulier syndrome.  Thromb Haemost. 1978;  39 782-783
  • 3 Baumgartner H R. Effect of shear rate on platelet interaction with subendothelium in citrated and native blood. II. Relationships among platelet adhesion, thrombus dimensions, and fibrin formation.  J Lab Clin Med. 1980;  95 208-221
  • 4 Tschopp T B. Platelet adhesion and platelet thrombus formation on subendothelium of human arteries and veins exposed to flowing blood in vitro. A comparison with rabbit aorta.  Haemostasis. 1979;  8 19-29
  • 5 Salzmann E W. Measurement of platelet adhesiveness.  J Lab Clin Med. 1963;  62 724
  • 6 Hellem A J. The adhesiveness of human blood platelets in vitro.  Scand J Clin Lab Invest. 1960;  51(suppl) 1
  • 7 Rand M L, Leung R, Packham M A. Platelet function assays.  Transfus Apheresis Sci. 2003;  28 307-317
  • 8 Hayward C. Extending knowledge on inherited platelet disorders associated with thrombocytopenia. Editorial Focus.  Thromb Haemost. 2003;  90 770-771
  • 9 Mestres P, Pütz N, Hong Zhu, Wenzel E. Description of a method for detection of adherent platelets in scanning electron microscopy [abstract].  Eur J Cell Biol. 1999;  78(suppl 50) 32
  • 10 Schenk J F, Morgenstern E, König J, Nemeh A, Heinrich W, Wenzel E. Evaluation of an athrombogenic filter system for measuring platelet function (Retention Test Homburg-RT-H) [abst 280].  Ann Hematol. 2002;  81 A1-A106
  • 11 Michelson A D, Furman M I. Laboratory markers of platelet activation and their clinical significance.  Curr Opin Hematol. 1999;  6 342-348
  • 12 Ahnadi C E, Sabrinah C E, Lepine M et al.. Assessment of platelet activation in several different anticoagulants by the Advia 120 Hematology System, fluorescence flow cytometry, and electron microscopy.  Thromb Haemost. 2003;  90 940-948
  • 13 Schenk J F, Morgenstern E, König J, Seyfert U T, Heinrich W, Wenzel E. Reliability of platelet retention measurement using the Platelet Retention Test Homburg (“RT-H”).  J Thromb Haemost. 2001;  (Suppl) , Abst P384
  • 14 Conover W J, Johnson M E. A comparative study of test for homogeneity of variances, with applications to outer continental shelf bidding data.  Technometrics. 1981;  23 351-361

Boris KrischekM.D. 

Department of Neurosurgery, Philipps University Hospital

Baldingerstrasse, 35033 Marburg, Germany

eMail: krischek@med.uni-marburg.de

eMail: boris@krischek.de