Two patients with familial antithrombin III deficiency developed deep venous thrombosis of the lower limb. The diagnosis of venous thrombosis was made by the indium labelled platelet technique which also allowed for the daily assessment of thrombus size. Each patient received treatment with Warfarin, subcutaneous heparin, and infusions of antithrombin III concentrates. The authors conclude that infusions of antithrombin III concentrates may be of value in limiting the extent of acute thrombosis in patients with a severe deficiency of this protein and may help prevent pulmonary embolism. The haemorrhagic risk of continuing modest doses of heparin with high dose ATIII therapy appears small. In addition to its value in the diagnosis of venous thrombosis the indium platelet technique may give an early indication of thrombus extension and may thus indicate the effectiveness of treatment.
Fibrin persistence in the vasculature is an important complication of sepsis that can often lead to mortality. We have previously established that polymorphonuclear leukocytes (PMN) from healthy individuals have the capacity to degrade fibrin via urokinase-type plaminogen activator (u-PA). We have also demonstrated an increase in u-PA antigen in the plasma of patients suffering from septic shock. In this study, we investigate the hypothesis that PMN from patients with sepsis have lost their fibrinolytic ability and that this might contribute to the persistence of fibrin deposits We show here that PMN from these patients do not express any u-PA activity, despite retaining some u-PA antigen. Additionally, thrombi prepared from the whole blood of the patients exhibit reduced endogenous lysis compared with those from healthy individuals. These data indicate that loss of fibrinolytic activity from PMN may be a contributing factor in fibrin persistence in the microvasculature in sepsis.
SummaryHuman thrombi vary in their susceptibility to lysis and this is clinically important. Several potential contributory factors were examined in this study by using model thrombi, created under flow; these provide a robust, reproducible and easily-manipulated system. Here we identify the plasminogen activators (PA) active in model thrombi of known age and define the cellular and plasma contribution to activity in different areas. The cell-rich head of model thrombi had strong thrombin and PA activity, with coagulant activity also at the tail. Thrombin activity decreased as model thrombi were aged. PA activity in the thrombus head also decreased on ageing of thrombi but activity emerged around the thrombi, including the tail. Activity in the head of fresh model thrombi was primarily due to uPA, with some contribution from tPA. Experiments with thrombi prepared from platelet-rich plasma and added leucocytes showed that uPA activity at the head of fresh thrombi was derived from PMN. Older thrombi had tPA activity around the tail of the thrombus; this activity occurred in the absence of cells. This study highlights the importance of PMN-derived uPA activity in the lysis of fresh thrombi, with activity originating in the leucocyte-rich head. It also shows that thrombi are dynamic structures in which fibrin can be repeatedly laid down and lysed, observations that are relevant to therapeutic lysis and potential rethrombosis.
Polymorphonuclear leucocytes (PMN) are important in the resolution of human thrombi, with u-PA as a key player. We have shown that the u-PA activity of PMN depends on the presence of plasma; the study presented here provides an explanation for that requirement. Here we show that PMN degraded scu-PA and also tcu-PA, t-PA and plasmin, resulting in loss of fibrinolytic activity. Plasma protected against this degradation; alpha1-antitrypsin was identified as a protective factor. Purified human neutrophil elastase mirrored the effects of PMN, again neutralized by plasma inhibitors. These findings illustrate the dual role of PMN in the breakdown of thrombi, in that they contribute both u-PA, which lyses fibrin, and other proteases, including elastase, which can cleave fibrin and plasminogen activators/plasmin. Similarly, plasma can potentiate fibrinolysis by neutralization of PMN elastase, in addition to direct inhibition of fibrinolytic proteases. Our previous studies show that PMN in thrombi are mostly pro-fibrinolytic; the anti-fibrinolytic role defined here may be important in other pathologies where fibrin persists.
Many human thrombi lyse spontaneously without the administration of lytic drugs and cause no clinical symptoms. The mechanisms by which this occurs are incompletely understood. We found that model thrombi prepared from whole human blood in a Chandler loop also exhibited significant spontaneous lysis. Lysis was inhibited by chemical protease inhibitors, consistent with proteolysis resulting primarily from serine proteases, with a small contribution from matrix metalloproteinases. Whole blood was fractionated into platelet‐rich plasma and cell populations. Significant spontaneous lysis was observed in platelet‐rich thrombi enriched with polymorphonuclear leucocytes (PMNs), whereas mononuclear cells (MCs) and erythrocytes did not contribute to lysis. Incorporation of antibodies to urokinase (u‐PA) and its receptor u‐PAR neutralized a large proportion of the activity. Incubation of plasma with PMNs generated free u‐PA activity, which was also detectable in model thrombi and in vivo human thrombi. Purified neutrophils, free of eosinophils, generated activity identical to PMNs. Smaller contributions to lysis by tissue‐type plasminogen activator (t‐PA), elastase and cathepsin G were also identified. These findings suggest a major role for circulating PMNs in endogenous thrombus lysis.
Purified preparations of circulating leukaemic blast cells from patients with acute myeloid (M1-7) or acute lymphoblastic leukaemia, and the myeloid or lymphoid cells from patients with chronic myeloid or lymphocytic forms of leukaemia, were incorporated into clots prepared from fibrinogen and plasminogen. Patterns of lysis were followed and measured by light transmission in a microtitre plate reader. Mature polymorphonuclear and mononuclear cell fractions from normal individuals were studied concurrently for comparison. Blast cells from the myeloid forms of acute leukaemia (M2-4) and 'myeloid' cell fractions from patients with chronic myeloid leukaemia were capable of lysing plasminogen-containing clots; this activity was neutralized by addition of immunoglobulin against urokinase plasminogen activator (u-PA), but not by anti-tissue plasmogen activator (t-PA). Mature polymorphonuclear and mononuclear cells from normal individuals lacked lytic activity, as did the leukaemic cells from patients with acute lymphoblastic or chronic lymphocytic leukaemia. Lysed blast cells showed the presence of free plasminogen activator on sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) with overlay zymography, also neutralized by anti-u-PA, whereas normal polymorphonuclear and mononuclear cells did not. These observations suggest that mechanisms underlying some forms of severe bleeding in acute myeloid leukaemias have a critical fibrinolytic component generated by the blast cells themselves.
Proteins influencing plasminogen activation to plasmin, namely plasminogen activators tissue-type plasminogen activator (t-PA) and urokinase-type plasminogen activator (u-PA) and their principal inhibitors, plasminogen activator inhibitor 1 (PAI-1) and PAI-2, were measured in the plasma, the polymorph and mononuclear cell fractions taken from patients with major sepsis who were entering a general intensive care unit, The purpose of this study was to elucidate the factors favouring the persistence of fibrin in the microvasculature and thus contributing to multiple organ failure. Levels of u-PA antigen in plasma rose in sepsis and u-PA activity not detectable in normal plasma, appeared. Levels of u-PA antigen in the cell fractions fell concomitantly. t-PA antigen in plasma and in the mononuclear cell fraction rose in sepsis, but t-PA activity was not detectable. Plasma PAI-1 antigen levels were strikingly raised in sepsis, presumably accounting for the complete neutralization of t-PA activity. PAI-2 antigen, not normally detected in plasma, appeared in the plasma of some patients, whereas it disappeared from the cellular fractions. Appearance of PAI-2 in plasma was associated with non-survival of the patient, The observations indicate that all the agents involved in plasminogen activation are released into the plasma in major sepsis. The levels of PAI-1 reached were quantitatively sufficient to suppress all activity of the released t-PA, but the inhibitors did not prevent expression of u-PA activity in the circulation, Circulating active u-PA and PAI-2 in the plasma of patients with severe sepsis may represent material originating from leucocytes. Leucocyte release of these agents within fibrin deposits may influence the persistence of fibrin and thus the development of multiple organ failure.
This study used two mutants of tissue-type plasminogen activator (t-PA) with resistance to inhibitors of fibrinolysis to define the contribution of plasminogen activator inhibitor (PAI)-1 and alpha (2)-antiplasmin (alpha (2)-AP) to the control of fibrin lysis. Wild-type t-PA was compared with KHRR296-299AAAA, which is resistant to PAI-1, and with A473S, which is resistant to alpha (2)-AP. We examined these forms of t-PA in model systems that are physiologically relevant. Neutralization of alpha (2)-AP was essential for lysis of plasma clots, irrespective of their platelet content, by either wild-type t-PA or KHRR296-299AAAA. In marked contrast, A473S lysed plasma clots without neutralization of alpha (2)-AP. Model thrombi, with structures similar to in vivo thrombi, were lysed slowly by wild-type t-PA; the rate and extent of lysis were enhanced by the addition of antibodies to alpha (2)-AP or PAI-1. A473S was more effective than wild-type t-PA without the addition of antibodies by virtue of its resistance to alpha (2)-AP. This resistance was remarkable, in that no complex formed between A473S t-PA and alpha (2)-AP, even after extended incubation, when 50% of wild-type t-PA could be converted to complex. Comparison of A473S and KHRR296-299AAAA mutants showed their similar effectiveness in lysis of platelet-rich model thrombi. Thus, PAI-1 and alpha (2)-AP contribute approximately equally to the inhibition of thrombus lysis. This study underlines the functional significance of alpha (2)-AP as a direct inhibitor of t-PA and further explains the basis of the accepted role of alpha (2)-AP as a regulator of fibrin persistence and thrombus resistance to lysis.
OBJECTIVE:Definition of the changes in the activators of plasminogen, u-PA and t-PA, and examination of the possible generation of plasmin in the circulation in overwhelming sepsis.DESIGN:Serial blood analysis starting 4 h after development of symptoms of toxic shock syndrome.SETTING:Intensive care unit.PATIENT:A previously healthy woman underwent endometrial ablation and rapidly thereafter developed staphylococcal toxic shock syndrome with organ failure. MEASUREMENT AND RESULT: t-PA, PAI-1, t-PA-PAI-1 complexes, plasminogen, fibrinogen and plasmin-alpha 2-antiplasmin complexes were measured serially by ELISA and free u-PA by SDS-PAGE with zymography. The onset of symptoms was accompanied by a rise of t-PA antigen-followed rapidly by PAI-1 antigen. Plasmin-alpha 2-antiplasmin complex was generated in large amounts but disappeared within hours. From day 3, free u-PA was detectable in the circulation without plasmin generation.CONCLUSION:Despite the sustained presence of active u-PA in the circulation and of t-PA antigen at the onset of symptoms, plasmin-alpha 2-antiplasmin generation was largely suppressed by high levels of PAI-1. The suppression of plasmin generation by u-PA and t-PA may ensure the persistence of fibrin in the microcirculation and so contribute to organ failure.
SummaryWe have previously shown that whole blood clots prepared under static conditions are a poor model for human thrombi formed in vivo. The most striking contrast is in the PAI-1 content, some 100 times lower in static clots than in human thrombi. This study aimed to evaluate thrombi formed in an artificial circulation (Chandler loop) using whole blood augmented with platelets. Citrated blood was recalcified and placed in tubing, which was sealed to form a closed loop and circulated. Immunohistochemical staining revealed morphology very similar to human thrombi formed in vivo, comprising dense platelet-rich heads and fibrin-rich tails. Strong positive staining for PAI-1 was observed in fibrin-rich areas of both the head and the tail. The PAI-1 content of the thrombi increased significantly on augmentation of blood with isolated platelets, and reached levels comparable with those in human thrombi. These Chandler thrombi thus provide an appropriate model system for the study of thrombus lysis, in contrast to static blood clots.
Tumour cells may express urokinase type plasminogen activator (u‐PA). This may influence the invasive properties of the cells but has seldom been implicated in production of a systemic bleeding state. Two patients are described in whom severe bleeding occurred in association with disseminated malignancies. Thrombin generation was little disturbed and platelet numbers were insufficient to account for the bleeding. Florid plasmin generation was evident in the circulation and the fibrinolytic inhibitor tranexamic acid controlled the bleeding well. Free active u‐PA was demonstrated in the circulation and u‐PA antigen on the malignant cells which invaded the marrow of one of the patients. Tumour cell u‐PA may occasionally be responsible for a bleeding state.
Departments of Medicine & Therapeutics and of Molecular & Cell Biology, University of Aberdeen and Department of Anaesthetics, Aberdeen Royal Hospitals NHS Trust, Aberdeen, Scotland, UK
Summary The proteins of fibrinolysis have been quantified in human thrombi, to assess the balance between plasminogen activators and their major inhibitor PAI-1. The relative roles of PAI-1 and α2-AP were also examined since we have previously shown that both platelet PAI-1 and plasma α2-AP are important determinants of clot lysis in vitro. Extracts and sections were prepared from human thrombi for quantitative immunoassay and immunohistochemical staining respectively. PAI-1 and α2-AP were present at high concentrations. Levels of t-PA and t-PA-PAI-1 complex were relatively low. Staining confirmed the presence of abundant PAI-1, associated primarily with platelet material within the thrombus and also with fibrin. Staining for α2-AP was also intense and demonstrated strong association with fibrin. The α2-AP concentration was similar to its high plasma concentration, whereas PAI-1 levels were up to 30 times greater than that in circulating blood, suggesting that active recruitment of platelets contributes to the high PAI-1 concentration in thrombi.
Departments of Molecular and Cell Biology, and Medicine and Therapeutics, University of Aberdeen, Scotland, UK
Septic patients with normal white cell responses had high plasma levels of the principal inhibitor of fibrinolysis, plasminogen activator inhibitor 1 (PAI-1). Severely leucopenic septic patients demonstrated less marked changes in plasma PAI-1. Polymorphs (PMN) from septic patients contained higher levels of PAI-1 than corresponding cells from non-septic subjects. Thus leucocytes may enhance the fibrinolytic inhibition characteristic of sepsis. If shock complicated sepsis, however, plasma PAI-1 levels were grossly elevated in the presence or absence of leucopenia, thus indicating a source for PAI-1 other than leucocytes. Endothelial cells (EC) secrete PAI-1 in culture. Go-culture of EC with mononuclear cells (MC) from normal subjects significantly enhanced PAI-1 release into culture media. This phenomenon was, however, significantly reduced by MC from septic patients.