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In vitro fibrin clot formation and fibrinolysis using heterozygous plasma fibrinogen from gammaAsn319, Asp320 deletion dysfibrinogen, Otsu I
Authors:Terasawa Fumiko  Kani Satomi  Hongo Minoru  Okumura Nobuo
Affiliation:Department of Biomedical Laboratory Sciences, School of Health Sciences, Shinshu University, 3-1-1 Asahi, Matsumoto, Japan. fterasa@shinshu-u.ac.jp
Abstract:INTRODUCTION: We have reported a heterozygous dysfibrinogenemia, fibrinogen Otsu I, caused by the deletion of gammaAsn319 and gammaAsp320, which was originally identified in the dysfibrinogen Vlissingen/Frankfurt IV (V/FIV) associated with thrombosis. Unlike the V/FIV family, the Otsu propositus showed no thrombotic tendencies. To analyze the relationship between thrombosis and the heterozygous plasma variant fibrinogen, we used purified plasma fibrinogen from the Otsu patient and compared it with a normal control. MATERIALS AND METHODS: Thrombin-induced fibrin clot formation and clot structure were observed by fibrin polymerization and scanning electron microscopy, respectively. For in vitro observation of fibrinolysis, plasmin generation and clot lysis assays were performed by the addition of tissue type plasminogen activation (tPA) and plasminogen. RESULTS AND CONCLUSIONS: Polymerization of Otsu was markedly impaired, while fibrin fibers were much thicker and the density of the bundles of fibrin fibers was less and porous compared with normal. Lysis of the Otsu clot was not significantly different from normal when a tPA and plasminogen mixture was overlaid onto the clots. For Otsu, the penetration of the tPA/plasminogen mixture into the clot was much faster than normal and the protection against plasmin cleavage was impaired; however, tPA-induced plasmin activation of the Otsu fibrin was slower than that of normal fibrin, resulting in a clot lysis of Otsu similar to normal.
Keywords:V/FIV, Vlissingen/Frankfurt IV   tPA, tissue-type plasminogen activator   FXIII, factor XIII   SEM, scanning electron microscopy   SDS-PAGE, sodium dodecyl sulfate-polyacrylamide gel electrophoresis   Vmax, maximum rate   Lmax, maximum lysis rate   HEPES, N-(2-hydroxy-ethyl) piperazine-N′-(2-ethanesulfonic acid)   ECL, enhanced chemiluminescence
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