[Congenital deficiency in the fibrin stabilizing factor (factor XIII)].
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A 60-year-old woman was admitted to our hospital in February 1993 due to dizziness, dyspnea, abdominal pain, and high susceptibility to bleeding. Physical examination revealed livedo reticularis of the foot, but did not detect hepatosplenomegaly. Examination of the peripheral blood detected pancytopenia, leukoerythroblastosis, and tear-drop erythrocytes. Primary myelofibrosis (PMF) was diagnosed on the basis of bone marrow biopsy findings. Antiphospholipid syndrome (APS) was confirmed by positive response to anti-cardiolipin antibody and recurrent splenic infarction. Because of factor XIII deficiency, the patient experienced severe gingival bleeding after tooth extraction. Her condition was complicated by mesenteric arterial thromboembolism and she died of sepsis 5 years after onset. Although the incidence of immunopathy in PMF patients is high, few studies to date have focused on APS patients presenting with a variety of severe embolic symptoms. Our patient required careful monitoring due to bleeding tendency and thromboemboli.
The most powerful instrument to establish the presence or absence of a coagulation disorder is the history of the patient. In addition, screening laboratory tests (consisting of the platelet count, bleeding time and global clotting assays, such as the prothrombin time and the activated partial thromboplastin time) may be helpful to support the diagnosis. In two patients, a 21-year-old man and a 10-year-old girl, with a marked history of enhanced bleeding normal screening laboratory tests were found. The male patient had a congenital alpha 2-antiplasmin deficiency and the girl had a homozygous deficiency of factor XIII. Some defects in the coagulation system (such as defects in fibrin network formation and fibrinolysis, but also mild Von Willebrand disease) are indeed not detected by screening laboratory tests. In patients with a strong suspicion of a coagulation disorder such defects should be specifically tested for.
Early signs of haemorrhages develop in the childhood, nose bleeding being predominant. Recurrent nose bleeding was observed in 130 (89.0%) patients with thrombocytopathies, 37 patients with nasal pathologies, 13 out of 14 children having willebrand's disease, 3 patients suffering from Rendu-Osler disease, in a boy with a factor XIII deficiency, and in a girl with psoriasis. In the case of haemorrhagic diathesis, nose bleeding was, as a rule, combined with haemorrhages of other types (skin, gum, uterine, etc.) whereas in the case of ENT pathology, nose bleeding was the only haemorrhagic symptom. Medical examinations of patients suffering from recurrent nasal haemorrhages at the prehospital stage should include: study of the history case, ENT-doctor examination, and blood analysis using standard tests (micro-coagulation, prothrombin, hemolysate-aggregation). The battery of blood tests can be performed without costly equipment or reagents. It became routine in the work of a regular polyclinical laboratory and helped identify the causes of nose hemorrhages in 94.6% children.
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The purpose of these studies was to establish the validity of 125I fibrin autoradiography--SDS gel techniques for monitoring degradation products from whole plasma or blood clots. These methods can be used to study fibrin degradation not only in patients with congenital factor XIII deficiency, but also in patients with disseminated intravascular coagulation or deep vein thrombosis during the course of thrombolytic therapy. Such an assay might complement existing immunologic techniques to characterize fibrin degradation in vivo by providing an in vitro analysis of the rate and pattern of fibrin degradation in whole blood or plasma. Fibrin degradation was traced by Coomassie blue staining for protein and by autoradiography on SDS-PAGE of degradation products released from a 125I-labeled fibrin tracer. The degradation of non-crosslinked clots from purified fibrin supplemented with plasmin showed a typical release of X, Y, D, and E fibrin fragments. Subsequently, all X and Y fragments were digested to D and E fragments. The degradation of non-crosslinked washed clots prepared from plasma supplemented with plasmin reflected the same pattern. The degradation of non-crosslinked washed clots prepared from EDTA anticoagulated plasma without added plasmin also showed release of X, Y, D, and E fragments. However, in contrast to the non-crosslinked washed clots supplemented with plasmin, there was no additional degradation of the X and Y fragments. These studies established that the pattern of degradation of the 125I-radiolabeled fibrin tracer was similar to that of the total protein released from the fibrin clot as observed by protein staining.(ABSTRACT TRUNCATED AT 250 WORDS)
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Plasma and platelet factor XIII levels were measured in normal human donors and in a patient congenitally deficient in factor XIII. The purpose of these experiments was to study the role of platelet factor XIII in blood coagulation. On polyacrylamide disc electrophoresis, factor XIII activity in extracts of washed normal platelets appeared as a single peak. This peak was missing or very low when factor XIII-deficient platelet extract was used. The patient was also studied before and after transfusion of fresh frozen plasma. Before transfusion, factor XIII activity could not be detected in the patient's plasma or platelet extracts. 24 hr after transfusion the plasma factor XIII level was still at the anticipated value, but factor XIII activity could not be detected in the platelet extracts. These experiments imply that plasma factor XIII was not transported across the platelet membrane in measurable quantities in vivo. This suggests that platelet factor XIII is a true platelet component and originates in the platelet precursor, the megakaryocyte. Thrombelastographic studies suggest that platelet factor XIII participates in the coagulation process. Thrombelastograms of factor XIII-deficient samples had decreased maximum amplitude and clot elasticity values. The abnormalities were fully corrected by the addition of washed normal platelets to factor XIII-deficient plasma; preincubation of the normal platelets in the deficient plasma had no additional effect. This indicates that platelet factor XIII is immediately available during clot formation.
Thrombin-activated Factor XIII (FXIIIa), a plasma transglutaminase, stabilizes fibrin clots by crosslinking fibrin chains. FXIIIa was previously shown by us to exhibit proangiogenic activity associated with downregulation of thrombospondin-1, phosphorylation of vascular endothelial growth factor receptor 2 (VEGFR-2), and upregulation of c-Jun. In the current study, we evaluated the proangiogenic effect of FXIIIa in two murine models: a neonatal heterotopic cardiac allograft model in normal mice, and a Matrigel plug model in FXIII-deficient mice. In the neonatal cardiac allograft model, the number of new vessels as well as graft viability (contractile performance) was significantly higher in FXIIIa-injected animals than in controls. A significant increase in the level of c-Jun mRNA and a significant decrease in the level of TSP-1 mRNA were observed in heart allografts treated with FXIIIa. A marked decrease in TSP-1 protein expression was observed within the endothelial cells of hearts treated with FXIIIa. In the Matrigel plug model, FXIII-deficient mice showed a significantly decreased number of new vessels compared to that of the control mice, and the number of vessels almost reached normal levels following addition of FXIIIa. The results of this study provide substantial in vivo evidence for the proangiogenic activity of FXIIIa.
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Factor XIIIa (active fibrin-stabilizing factor) generated in heat-defibrinated plasma by the addition of thrombin can be measured by 14C-putrescine incorporation into casein. Modification of this assay be substituting 3H-putrescine of high specific activity as the donor amine permits measurement of amine incorporation by plasma even in the absence of added thrombin. Incorporation is calcium dependent, inhibited by iodoacetamide, and absent from congenital factor XIII-deficient plasma and from normal platelets. The transamidating activity detected by radioenzymatic assay catalyzed the formation of gamma-gamma dimers and alpha polymers of fibrin and was thus biologically functional. This fibrin cross-linking activity was absent from factor XIII-deficient plasma. These experiments show (1) some factor XIII is present in plasma as factor XIIIa; (2) this factor XIIIa can cross-link fibrin and thus has biologic activity as well; and (3) this activity is not present in factor XIII-deficient plasma. Factor XIIIa in normal plasma is possibly activated in vivo, perhaps by circulating thrombin, factor Xa, or other proteolytic enzymes.
A 33 years old female with ulcerative colitis was admitted with an acute exacerbation of the disease characterised by haematochezia, diarrhoea (10 stools/die) and anaemia (haemoglobin 6.5 g/dl). Therapy with 5-ASA and corticosteroids for six weeks failed to decrease the activity of the disease. Since deficiency of coagulation factor XIII (activity 60%, subunit A 56%) was present, in addition, concentrates of factor XIII (Fibrogammin HS, Behring, F.R.G.) 1250 U/die were given for ten days. The substitution resulted in an immediate increase of reduced F XIII activity (164%) and F XIII subunit A (333%) as well as in a marked improvement of symptoms.