Plasma levels of tissue-type plasminogen activator and von Willebrand factor in patients with Raynaud's phenomenon.
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Biomedical subjects
Publications and source records attributed to M Cugno.
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Since L-Arginine is the substrate for nitric oxide synthesis by vascular endothelial cells the effects of L-arginine treatment on the digital vascular response to local stimuli were investigated in patients with primary or secondary Raynaud's phenomenon. After therapy, patients with Raynaud's phenomenon secondary to systemic sclerosis showed: (1) higher digital vasodilation after local warming, (2) cold-induced digital vasodilation, and (3) increase of plasma levels of tissue-type plasminogen activator.
Fifty-six patients affected with hereditary angioedema have been followed during long-term prophylaxis with attenuated androgens. The treatment was started in patients who had one or more severe attacks per month. In 24 patients, the therapy lasted for more than 5 years. The minimal effective dose usually did not exceed 2 mg/day of stanozolol or 200 mg/day of danazol. Only in two patients were these doses not sufficient to achieve the complete disappearance of symptoms. Irregular menstruation, but rarely amenorrhea, was the only significant side effect. One patient had to stop the therapy because of laboratory signs of hepatic cell necrosis. In one patient, danazol was administered during the last 8 weeks of pregnancy without side effects for the mother but with transient signs of virilization for the female baby. To find a biochemical marker for the minimal effective dose of androgen derivatives, we measured the plasma levels of C1 C1 INH complexes at different doses of stanozolol in four patients with hereditary angioedema. We found that these complexes, elevated before treatment, promptly reverted to normal values during androgen therapy and remained normal with any reduction of the dose of the drug as long as the patient remained symptom free. Therefore, the measurement of C1 C1 INH complexes appears to reflect the activity of the disease and not the amount of androgen that is administered.
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An array of fibrinolysis tests was applied to the plasmas of 125 untreated patients with breast carcinoma and malignant melanoma, localized or spread to regional lymph nodes with no detectable distant metastases, to see whether or not there may be changes related to the type or to the stage of malignancy. Breast carcinoma (a mucin secreting tumor) and melanoma (a neuroectodermal tumor) were chosen as examples of tumors that can be accurately staged for localization or spread. Forty healthy subjects matched for age served as controls. The most marked differences between malignant tumors and controls were elevated plasma levels of tissue plasminogen activator antigen (P less than 0.005), plasminogen activator inhibitor (P less than 0.01), cross-linked fibrin degradation products (P less than 0.001), fragment B beta 15-42 (P less than 0.001) and histidine-rich glycoprotein (P less than 0.005). For no fibrinolysis test were results significantly different between patients with localized and spread tumors. Our data indicate that in these tumors fibrinolytic alterations are an early phenomenon unrelated to spreading.
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C1- inhibitor (C1(-)-Inh) catabolism in plasma of patients with hereditary angioneurotic edema (HANE) was assessed by measuring the complexes formed by C1(-)-Inh with its target proteases (C1-s, Factor XIIa, and kallikrein) and a modified (cleaved) inactive form of C1(-)-Inh (iC1(-)-Inh). This study was performed in plasma from 18 healthy subjects and 30 patients with HANE in remission: 20 with low antigen concentration (type I) and 10 (from 5 different kindreds) with dysfunctional protein (type II). Both type-I and type-II patients had increased C1(-)-C1(-)-Inh complexes (P less than 0.0001), which in type I inversely correlated with the levels of C1(-)-Inh (P less than 0.001). iC1(-)-Inh was normal in all type-I patients and in type-II patients from three families with increased C1(-)-Inh antigen, whereas iC1(-)-Inh was higher than 20 times the normal values in patients from the remaining two families with C1(-)-Inh antigen in the normal range. None of the subjects had an increase of either Factor XIIa-C1(-)-Inh or kallikrein-C1(-)-Inh complexes. This study shows that the hypercatabolism of C1(-)-Inh in HANE patients at least in part occurs via the formation of complexes with C1- and that genetically determined differences in catabolism of dysfunctional C1(-)-Inh proteins are present in type-II patients.
Thrombohemorrhagic risk is one of the main limiting factors in extracorporeal circulation. We describe here our experience in managing some life-threatening hematological complications in 58 patients with acute respiratory failure treated with long-term extracorporeal assistance. These patients were studied by clinical and laboratory means to assess questions related to heparin monitoring, coagulation complications and bleeding incidence. We found that two clotting tests, activated partial thromboplastin time (APTT) and activated clotting time (ACT) can be easily used to assess the safety of anticoagulant treatment (therapeutic ranges: APTT from 55 to 95 sec and ACT from 170 to 220 sec). A certain degree of coagulation activation, despite heparin, was indicated by the constant finding of thrombin-antithrombin complexes, while fibrinolytic activation, measured as plasminogen activator activity, was confined to the time of bypass connection and was of no clinical consequence. Platelet function was always impaired without relation to the platelet loss. Disseminated intravascular coagulation (DIC) (13 episodes) and severe bleeding (11 episodes) were major complications. DIC was corrected with a good outcome for 8 of 13 patients, while severe bleeding was correlated with a poor outcome in 8 of the 11 patients, probably because of the severity of the underlying disease.
A set of fibrinolytic parameters was measured in 40 healthy subjects before and after a venous occlusion (VO) test lasting 10 min. After VO, plasma levels of tissue-type plasminogen activator (t-PA) antigen increased in all subjects, t-PA activity increased only in 25 subjects who were considered responders and remained unchanged in 15 (non-responders). High levels of plasminogen activator inhibitor (PAI) in the non-responder group explain this discrepancy. The non-responders had basal levels of PAI activity and t-PA antigen higher than responders (p less than 0.0001) and their basal levels of t-PA activity were lower (p less than 0.001). DDAVP infusion elicited good responses in 7 of 9 non-responders to VO with a fall of PAI activity to 0. Our data indicate that a high proportion of healthy subjects do not have a fibrinolytic response after VO, that a lack of fibrinolytic response to VO is due to high plasma levels of PAI and that DDAVP infusion appear to be more selective than VO for detecting non-responders.
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Factors of the classical complement pathway, the contact system and fibrinolysis were evaluated both with functional and immunochemical methods, in patients with inherited deficiency of C1-inhibitor. Evaluations were performed under basal conditions, during acute attacks and during prophylaxis with low doses of anabolic steroids. Patients in the basal state showed no significant abnormalities of any of the parameters that we investigated. During acute attacks a slightly reduced prekallikrein concentration was registered. During treatment with low doses of danazol and stanozolol, protein C and plasminogen were found to be increased. Our data suggest that C1-inhibitor deficiency per se does not lead to a derangement of the fibrinolysis and coagulation contact system, and that the kinin system may be involved during acute attacks of angioedema.
Two coagulation tests, Recalcified Activated Clotting Time (RACT) and Hemochron, were compared with the activated partial thromboplastin time (APTT) in in vitro heparinization experiments and in patients heparinized for long term extracorporeal circulation (ECC) to determine their suitability as guidelines for heparin administration. All tests had good precision, with a small variability between methods. There was satisfactory correlation with the heparin level in vivo (r = 0.77 for RACT; r = 0.80 for Hemochron and r = 0.82 for APTT) too, while the in vitro r was always greater than or equal to 0.94. Nevertheless, APTT values for plasma heparin levels higher than 1.5 U/ml were markedly prolonged, with a large standard deviation, and often "unclottable". The good correlation between the three tests, makes it possible to substitute RACT and Hemochron for APTT, during long-term ECC.
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Experimental and clinical observation suggest that patients with primary biliary cirrhosis (PBC) have endothelial dysfunction. Postischemic digital blood flow, nailfold capillaroscopy, von Willebrand factor (vWf) and tissue-type plasminogen activator (t-PA) plasma levels were examined in 59 PBC patients. Forty-six subjects (15 with liver diseases other than PBC, 11 hypercholesterolemics, 20 healthy subjects) served as controls. PBC versus healthy controls (209.8 +/- 1.4% and 16.54 +/- 1.44 ng/ml vs. 120.2 +/- 1.4% and 9.91 +/- 1.49 ng/ml; p<0.001) and related to bilirubin (r = 0.38, p<0.02; r = 0.47, p<0.0005, respectively). vWf was also increased in other liver diseases (249.9 +/- 1.7%; p<0.001) and related to bilirubin (r = 0.59, p<0.05). Postischemic finger blood flow negatively correlated with vWf(p<0.05 or less). Our data indicate that PBC patients have microvascular disease. Whether vessels other than those of the fingers were involved remained unclear. vWf and t-PA might reflect a dysfunction of teh hepatic vascular endothelium.
Bleeding due to systemic heparinization represents the major side effect of extracorporeal respiratory support. In the present animal study, a surface heparinized system (Carmeda Biological Active Surface) was applied to assess the feasibility of prolonged perfusion at low circulating heparin levels. Eight sheep divided into two groups: group A (5 animals) and group B (3 animals) underwent venovenous bypass using a heparin coated surface circuit. The following protocol was used: a) 24 hours at high heparin dose (30 to 100 U/kg/hr with an ACT [activated coagulation time] three to four times normal); b) 24 hours at low heparin dose (3 to 8 U/kg/hr with an ACT within the normal range); c) 24 hours at high heparin dose. Group B animals also received fresh frozen sheep plasma (14 ml/kg/day). During Period b, the clotting times were within baseline range. The bleeding time showed a dramatic decrease after change from a to b (27.9 +/- 3 minutes vs. 10.2 +/- 5.6 minutes). There was a negative relationship between antithrombin III (AT III) and thrombin coagulase time (TC); the latter is considered to be an aspecific indicator of circulating fibrin(ogen) degradation products. Maintaining AT III over 70%, TC changes were only minor. The use of the bioactive heparin surface allowed the performance of a 24 hour bypass, with normal coagulation times, at low circulating heparin levels.
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Kallikrein is a protease involved in the inflammatory process causing acute pancreatitis. Attempts to prevent this process with antiprotease agents have been successful in experimental animal models but disappointing in humans. We studied 40 consecutive patients undergoing endoscopic papillosphincterotomy. This procedure can induce a transient, moderate pancreatic inflammatory reaction, characterized by hyperamylasemia, which in 1-6% of the patients may evolve to acute pancreatitis. To assess the capacity of C1 inhibitor, the main physiological inhibitor of kallikrein, to prevent such complications, we pretreated 20 patients with 3000 U of C1 inhibitor plasma concentrate i.v.; 20 patients served as controls. Serum levels of amylase and functional C1 inhibitor were determined before the procedure and after 2, 4, 8 and 24 hours. Serum levels of amylase in the control group (146 +/- 21 IU) and in the group treated with C1 inhibitor (158 +/- 25 IU) were similar before treatment. Four and 8 hours after the end of the procedure, amylase levels were significantly lower (p < 0.001) in the treated group (231 +/- 46 and 355 +/- 104 IU) than in the control subjects (969 +/- 229 and 923 +/- 207 IU). After 24 hours both groups had normal amylase levels. In treated patients, functional levels of C1 inhibitor increased from 104 +/- 30 to 175 +/- 30% and remained elevated throughout the observation period. These data indicate that C1 inhibitor plasma concentrate can prevent hyperamylasemia following pancreas injury, probably, by inhibiting the kallikrein-mediated inflammatory process. C1 inhibitor might benefit patients at high risk of pancreatitis who undergo endoscopic papillosphincterotomy.
Details of possible complement activation in acute myocardial infarction (AMI) and the in vivo effects of fibrinolytic agents on this activation are not yet known. We measured complement activation in 40 patients with AMI: 20 were treated with streptokinase, and 20 did not receive any fibrinolytic agent. Anaphylatoxin C4a, C3a and membrane attack complexes SC5b-9 increased about 10-fold (p < 0.0001) during streptokinase infusion. There were no increases in complement catabolic products in AMI patients not treated with streptokinase. Significant transient leukopenia (-29.5%, 7.0 SEM, p = 0.001) and a drop in systolic pressure (-29%, 3.4 SEM, p < 0.0001) occurred after 15 min of streptokinase infusion simultaneously with the peak of anaphylatoxins in plasma.