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Tissue plasminogen activator, plasminogen activator inhibitor, and other parameters of fibrinolysis in the early stages of taurocholate acute pancreatitis in rats.

It is well known that fibrinolytic activity in the early stages of acute experimental pancreatitis (AEP) as assessed by euglobulin lysis time (ELT) is depressed. The aim of this study was to evaluate changes in the fibrinolytic system in the early stages of taurocholate AEP in rats. Tissue plasminogen activator (t-PA) activity, plasminogen activator inhibitor 1 (PAI-1) activity, plasminogen, alpha 1 proteinase inhibitor (alpha 1 PI), alpha 2 antiplasmin (alpha 2 AP), antithrombin III (AT III), fibrinogen, and ELT were measured 0.5, 1, 3, and 6 h after the induction of taurocholate AEP in rats, as well as in sham-operated animals and the control group, which was not submitted to any operation. T-PA activity decreased significantly after 3 and 6 h of AEP; PAI activity had a time course reverse to t-PA and was parallel to alpha 1 PI activity. ELT was slightly prolonged after 0.5, 1, and 3 h, whereas alpha 2 AP activity and plasminogen levels increased significantly; AT III activity was increased after 1 h in comparison to control group. Sham operation caused nonsignificant changes in fibrinolysis. Increase of PAI activity and decrease of t-PA could be a reasonable explanation for inhibited plasma euglobulin fibrinolytic activity noted in the early period of AEP.

Acute Disease

Localization of urokinase-type plasminogen activator, plasminogen activator inhibitor-1, 2 and plasminogen in colon cancer.

We examined the localization of urokinase-type plasminogen activator (u-PA), plasminogen activator inhibitors (PAI-1 and PAI-2) and plasminogen (plg) in 26 cases of colon cancer by immunohistochemical staining. The u-PA antigen was detected in the cytoplasm of cancer cells (18/26) and stromal cells adjacent to cancer tissues (9/26). The localization of u-PA mRNA examined by in situ hybridization was consistent with that of u-PA antigen. The PAI-1 antigen was detected in fibroblasts and endothelial cells (22/26), while PAI-2 antigen was found in cancer cells (20/26). The plg antigen was seen in the extracellular matrix of the cancer stroma. The u-PA expression in cancer cells was significantly more frequently detected in cases with lymph node metastasis than in cases without metastasis. In either PAI-1- or PAI-2-expressing cases, lymph node metastasis seemed to be restrained. These findings indicate that cancer cells themselves produce u-PA, and suggest that u-PA converts plg into plasmin, which dissolves the extracellular matrix surrounding cancer cells, resulting in cancer invasion and metastasis. PAI-1 and PAI-2 may have inhibitory actions on cancer invasion and metastasis mediated by u-PA.

Colonic Neoplasms

Purification of an active plasminogen activator inhibitor immunologically related to the endothelial type plasminogen activator inhibitor from the conditioned media of a human melanoma cell line.

24 established melanoma cell cultures were screened for their secretion of plasminogen activators and plasminogen activator inhibitors into the culture medium by sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by conventional and reverse fibrin autography. Among the cell lines investigated, 22 cell lines predominantly secreting tissue type plasminogen activator (t-PA) and four cell lines additionally secreting urokinase were found. The conditioned media of two cell lines (KRFM and MJZJ) were found to contain plasminogen activator inhibitor (PAI) activity at a Mr position of approximately 50,000. The PAI of one of the two melanoma cell (MJZJ)-conditioned media found to contain PAI activity was purified to apparent homogeneity employing concanavalin A-Sepharose chromatography, gel filtration on Sephadex G-150, chromatography on Affi-Gel blue, and affinity chromatography on a Sepharose 4B immobilized monoclonal anti-t-PA IgG column. The purified melanoma PAI was found to be a single chain protein, acid stable, immunologically related to the endothelial derived PAI. In contrast to endothelial PAI, melanoma PAI presented itself in the conditioned media of the melanoma cells and in the purified preparation to an appreciable extent in its active form.

Cell Line

Tissue plasminogen activator, plasminogen activator inhibitors, and activator-inhibitor complex in liver disease.

AIMS: To identify the relative contribution of plasminogen activators, particularly tissue plasminogen activator (t-PA) and specific plasminogen activator inhibitors (PAI-1, PAI-2), to the fibrinolytic changes associated with various types of liver disease or severe chemical and physical damage to the liver. METHODS: Platelet rich (PRP) and platelet poor plasma (PFP) from patients with alcoholic cirrhosis, primary biliary cirrhosis, hepatic malignancy, or paracetamol overdose, or who were undergoing partial hepatectomy or liver transplantation, were assayed for t-PA, PAI-1, t-PA-PAI-1 complex and PAI-2 antigen values using specific enzyme linked immunosorbent assays (ELISAs) developed in this laboratory. RESULTS: Appreciable increases in the plasma concentration of t-PA, PAI-1, and t-PA-PAI-1 were seen in patients with alcoholic cirrhosis, primary biliary cirrhosis, and hepatic malignancy. Liver damage due to paracetamol overdose and partial hepatectomy both resulted in a striking increase in plasma PAI-1 concentration, although concentrations of t-PA and t-PA-PAI-1 complex were less affected. Concentrations of t-PA, PAI-1, and t-PA-PAI-1 complex returned to near normal values after successful liver transplantation in a patient with chronic active hepatitis. PAI-2 was also detected in several patients with chronic liver disorders. CONCLUSIONS: Haemorrhage due to fibrinolytic bleeding is commonly associated with liver disease. The patients studied here all had appreciable increases in circulating t-PA antigen concentrations. This was associated with increased concentrations of PAI-1 antigen and t-PA-PAI-1 complex and the balance between activator and inhibitor did not result in systemic plasmin generation. Reduced PAI-1 activity in cirrhosis or a critical difference in the ratio of t-PA to PAI-1 concentrations may explain the enhanced plasminogen activator activity previously noted in cirrhosis but not metastatic disease. Reduced hepatic clearance of t-PA and t-PA-PAI-1 complex due to impaired liver function may account for increased concentrations of free and complexed t-PA.

Enzyme-Linked Immunosorbent Assay

Transplacental effect of lead compounds on tissue plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition.

The transplacental effect of lead compounds (lead acetate and tetraethyl lead) on the tissue plasminogen activator activity (PAA), plasminogen activator inhibition (PAI) and plasmin inhibition (PI) was studied in the rat. The concentration of lead in organs of the newborn showed a great variation; the distribution of lead in the organs studied depended on the dose and the stage of gestation at injection. In each organ the concentration of lead was dose-dependent. In control specimens no lead could be detected. The tissue response of PAA, PAI and PI to the lead compounds also showed a great variation; however, there was no correlation between lead concentrations and PAA, PAI or PI responses. Changes of one or more of the parameters studied (PAA, PAI or PI) were noticed in lungs, liver, heart, brain and kidneys. The PAA was due to the tissue type plasminogen activator in all organs studied; in kidneys and lungs the urokinase type of plasminogen activator was also detected. Therefore, fetal tissue PAA, PAI and PI can be affected transplacentally by lead compounds.

Animals

Plasminogen activators, plasminogen activator inhibitors and markers of intravascular coagulation in pre-eclampsia.

In pre-eclampsia (PE), reduced levels of plasma urokinase-like plasminogen activator (u-PA) and plasminogen activator inhibitor-2 (PAI-2), and increased levels of plasma tissue-type plasminogen activator (t-PA) antigen were seen. The majority of moderate and severe pre-eclamptic women (7 out of 10) ended up with pre-term delivery as compared with 2 out of 11 who went on to term. Patients with moderate and severe PE had significantly lower levels (mean +/- SD, ng/ml) of PAI-2 (58.4 +/- 34.9) and u-PA antigen (1.61 +/- 0.62) as compared to those with mild PE (95.6 +/- 39.3 and 1.61 +/- 0.62 and 2.12 +/- 0.61, respectively). Significantly raised t-PA antigen (14.6 +/- 5.7 ng/ml) was seen in moderate and severe PE as compared with mild PE (9.9 +/- 3.4 ng/ml). PAI-1 activity was significantly raised only in moderate and severe PE as compared with normal pregnancy. There were no significant differences in thrombin-antithrombin-III complexes, D-dimer and beta-thromboglobulin levels between the PE group and normal pregnancy, although these parameters were above the non-pregnant levels. Platelets in PE were within the range found in normal pregnancy. It appears that measurements of plasma u-PA and PAI-2 levels in patients with PE may have prognostic value in determining the outcome of pregnancy in this pregnancy disorder.

Antithrombin III

Tissue plasminogen activator, plasminogen activator inhibitor-1 and von Willebrand factor in rheumatoid arthritis.

Tissue plasminogen activator (tPA), plasminogen activator inhibitor-1 (PAI-1) and von Willebrand factor (vWF), all of endothelial origin and active in the haemostasis, were analysed in 74 patients with rheumatoid arthritis. The concentrations were related to extra-articular disease and to the incidence of thromboembolic events (TE) registered in a 2-year follow-up period. Patients with extra-articular disease had a significant increase in PAI-1 activity and reduced tPA release in the venous occlusion test. von Willebrand factor, PAI-1 and also haptoglobin and triglycerides were significantly increased in the group of patients who later suffered from TE. In a multiple regression model, in which cholesterol, triglycerides and lipoprotein (a) showed significant association with TE, vWF had the strongest additive explanatory value. No distinct acute phase pattern of PAI-1 was found in any patient subgroup.

Adult

Variable effect of unilateral or bilateral ovariectomy performed in young or adult animals on tissue plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition.

Unilateral or bilateral ovariectomy was performed in young and adult rats. Mainly bilateral ovariectomy induced variable changes of plasminogen activator activity (PAA), plasminogen activator inhibition (PAI) and plasmin inhibition (PI) in key organs (brain, lungs, heart, aorta and kidneys). The most remarkable changes were induced after bilateral ovariectomy performed in young animals and mostly after two and three months of ovariectomy. Therefore, the effect of ovariectomy on tissue PAA, PAI or PI was variable and dependent on the extent of the ovariectomy (unilateral or bilateral), the age of the animal at ovariectomy (young or adult), the time after ovariectomy, and the organ. An additional interesting finding was the dissociation in the response of tissue anti-t-PA and anti-u-PA activities to ovariectomy in some of the organs studied.

Animals

Effect of orchidectomy on tissue plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition.

The effect of unilateral or bilateral orchidectomy on tissue plasminogen activator activity (PAA), plasminogen activator inhibition (PAI) and plasmin inhibition (PI) was studied in the rat. Orchidectomy was performed in young or adult rats. Unilateral orchidectomy affected only PI in the lungs and brain, 1, 2 and 3 months after orchidectomy was performed in adult rats. Bilateral orchidectomy performed in young or adult rats affected one or more of the parameters studied in one or more of the key organs (brain, lungs, kidneys, heart, aorta), in most cases only 2 and 3 months after orchidectomy. Therefore, the effect of orchidectomy on tissue PAA, PAI or PI was variable and dependent on the extent of the orchidectomy (unilateral or bilateral), the age of the animal at orchidectomy, the time after orchidectomy, and the organ.

Animals

Great variation in the response of tissue plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition to endotoxin, aspirin and endotoxin after administration of aspirin.

The effect of endotoxin, aspirin and endotoxin after administration of aspirin on the tissue plasminogen activator activity (PAA), plasminogen activator inhibition (PAI) and plasmin inhibition (PI) was studied in the rat. PAA, PAI and PI were determined in key organs (brain, heart, lungs, kidneys, liver and aorta) spectrophotometrically by procedures involving hydrolysis of the chromogenic substrate S-2251. Aspirin at three different doses had not any significant effect on tissue PAA; PAI and PI were affected in several organs. Four hours after a sustained infusion of endotoxin PAA was found to be increased in brain, kidneys and aorta, decreased in heart and lungs, while in liver the PAA was unchanged compared to controls. Changes in PAI and PI showed also a tissue variation. In endotoxin-infused rats pretreated with aspirin the PAA changes induced by endotoxin were prevented or modified; PAI and PI were affected in most organs studied. However, this effect of aspirin was varying and depending on the tissue, the parameter studied and the dose of aspirin. In some organs, as the heart and lungs, changes in PAI or PI were noticed, while neither aspirin nor endotoxin separately induced such changes in these organs. Also, a differential response of PAI and PI to the same stimulus in the same tissue was a noteworthy finding. The results of the present study show that the response of PAA, PAI and PI to aspirin depends on the tissue, the physiological or pathophysiological condition of the tissue and the dose of the aspirin.

Animals

Behaviour of tissue plasminogen activator, plasminogen activator inhibitor 1 and their complex in various disease states.

Plasma levels of tissue plasminogen activator (t-PA) antigen, plasminogen activator inhibitor 1 (PAI-1) antigen and t-PA/PAI-1 complex were measured in plasmas from 18 healthy subjects and 75 patients with various diseases (28 patients with haematological malignancies, 20 with thrombotic diseases, five with infectious diseases, four with liver diseases, ten with bleeding disorders and eight miscellaneous conditions). In addition, we studied ten patients with bleeding disorders after DDAVP infusion and 18 healthy subjects after venous occlusion. Plasma levels of t-PA antigen, PAI-1 antigen and t-PA/PAI-1 complex were increased in the patients compared with the healthy subjects. t-PA/PAI-1 complex levels correlated well with t-PA antigen levels and molar concentrations of t-PA antigen were similar to those of the t-PA/PAI-1 complex. Venous occlusion induced an increase in both t-PA antigen and PAI-1 antigen and the molar concentration of the t-PA/PAI-1 complex was equivalent to that of t-PA antigen. Following DDAVP infusion, the levels of t-PA antigen and t-PA/PAI-1 complex increased but PAI-1 antigen levels decreased, and the increase of t-PA antigen was greater than that of t-PA/PAI-1 complex. These findings indicate that PAI-1 antigen exceeds t-PA antigen in healthy subjects and in patients with various diseases. We conclude that part of the t-PA/PAI-1 complex is rapidly cleared from the circulation and that free t-PA increases after DDAVP infusion.

Adult

Relationship between tissue plasminogen activator, plasminogen activator inhibitor and CT image in chronic subdural hematoma.

The present study was performed to investigate the relationship between the concentrations of tissue-type plasminogen activator (t-PA) and plasminogen activator inhibitor (PAI) and the CT images in 23 cases of chronic subdural hematomas (SDHs). The concentrations of t-PA and PAI-1 were quantified by enzyme-linked immunosorbent assay (ELISA). Chronic SDHs were divided into five groups according to their appearance on computed tomography: high-density (n = 4), isodensity (n = 8), low-density (n = 5), mixed-density (n = 3), layering (n = 3) types. The volume of hematoma was measured with an image analyzing software program. The concentrations of t-PA were higher in layering (41.2 +/- 0.3 ng/ml, mean +/- standard error of the mean) and high-density (40.0 +/- 1.1 ng/ml) types compared to those of low-density (23.3 +/- 4.1 ng/ml) and iso-density (25.1 +/- 3.7 ng/ml) types. The concentrations of PAI-1 were lower in layering (95.9 +/- 1.0 ng/ml) and high-density (103.4 +/- 34.5 ng/ml) types compared to that of low-density (192.5 +/- 2.6 ng/ml) type. So the ratio between t-PA and PAI-1 (t-PA/PAI) was greater in layering and high-density types. The volume of hematoma was larger in mixed-density and layering types but statistically insignificant. These results presumably suggest that the ratio between t-PA and PAI concentration may contribute to the pathogenesis of the chronic SDH.

Adult

Plasma von Willebrand factor, tissue plasminogen activator, plasminogen activator inhibitor, and antithrombin III levels in Behçet's disease.

Sixty-three patients with Behçet's disease (BD), 30 patients with recurrent oral ulcer and 30 healthy individuals as control group were included in the study. ISG criteria was used for the diagnosis of BD and patients were classified as active and inactive and evaluated accordingly. In the patient and control groups, von Willebrand factor (vWF), tissue plasminogen activator (tPA), and plasminogen activator inhibitor (PAI) levels were determined using ELISA method and antithrombin III (AT-III) by nephelometric methods. High levels of endothelial product, vWF in the active Behçet patient group (p < 0.005) supports endothelial destruction due to vasculitis related with BD. In the active patient group tPA levels were significantly lower (p < 0.05) than the inactive and control groups with higher levels of PAI (p < 0.05 and p < 0.01) respectively. In Behçet disease, besides the decrease in tPA synthesis, high PAI levels also can affect tPA decrease and lead to inhibition of fibrinolytic activity. In active Behçet group, levels of AT-III were low and no significant difference was observed in recurrent oral ulcer and control groups. This situation may arise from the excessive use of AT-III in active disease. In conclusion, high levels of vWF in Behçet patients is thought to arise from vasculitis and high levels of PAI from the accumulation of thrombocytes on the damaged surface of endothelium leading to a decrease in tPA levels and inhibition of fibrinolytic activity.

Adolescent

Effects of gemfibrozil and ciprofibrate on plasma levels of tissue-type plasminogen activator, plasminogen activator inhibitor-1 and fibrinogen in hyperlipidaemic patients.

Evaluation of fibrate treatment in humans has focused primarily on its anti-lipidaemic effects. A potentially favourable haemostasis-modulating activity of fibrates has also been recognized but the data are not consistent. We sought to learn more about this variability by examining the effects of gemfibrozil and ciprofibrate on plasma levels of tissue-type plasminogen activator (t-PA), plasminogen activator inhibitor-1 (PAI-1) and fibrinogen in primary hyperlipidaemic patients after six and twelve weeks of treatment using different assay systems for PAI-1 and fibrinogen. Although both fibrates effectively lowered triglyceride and cholesterol levels, no effect on the elevated baseline antigen levels of t-PA and PAI-1 was observed after fibrate treatment. However, both fibrates influenced plasma fibrinogen levels, albeit in a different way. Fibrinogen antigen levels were elevated by 17.6% (p <0.05) and 24.3% (p <0.001) with gemfibrozil after six and twelve weeks, respectively, whereas with ciprofibrate there was no effect. Using a Clauss functional assay with either a mechanical end point or a turbidity-based end point, no significant change in fibrinogen levels was seen after six weeks of gemfibrozil treatment. However, after twelve weeks, gemfibrozil enhanced functional fibrinogen levels by 7.2% (p <0.05) as assessed by the Clauss mechanical assay, but decreased functional fibrinogen levels by 12.5% (p <0.0001) when a Clauss assay based on turbidity was used. After six or twelve weeks of ciprofibrate treatment, functional fibrinogen levels were decreased by 10.1% (p <0.001) and 10.5% (p <0.0001), respectively on the basis of Clauss mechanical and by 14.2% (p <0.001) and 28.2% (p <0.0001), respectively with the Clauss turbidimetric assay. A remarkable and consistent finding with both fibrates was the decrease in functionality of fibrinogen as assessed by the ratio of functional fibrinogen (determined by either of the two Clauss assays) to fibrinogen antigen. Taken together, our results indicate that at least part of the variability in the effects of fibrates on haemostatic parameters can be explained by intrinsic differences between various fibrates, by differences in treatment period and/or by the different outcomes of various assay systems. Interestingly, the two fibrates tested both reduced the functionality of fibrinogen.

Adult

Plasminogen activators, plasminogen activator inhibitor, and fibronectin in human granulosa cells and follicular fluid related to oocyte maturation and intrafollicular gonadotropin levels.

We determined the relative distribution of tissue plasminogen activator (TPA) antigen, urokinase-type PA antigen, PA inhibitor activity, and fibronectin levels in lysates of human granulosa cells (GC) and the respective follicular fluid (FF) in relationship to oocyte-corona-cumulus complex morphology. In addition, FF gonadotropins were measured to investigate a possible relationship of gonadotropins to PA activity. A significant increase of TPA antigen in GC lysates of intermediate and mature oocyte-corona-cumulus complex was found when compared with immature oocyte-corona-cumulus complex. Urokinase-type plasminogen activator levels and PA inhibitor levels did not reveal any significant differences between the different groups. In FF the concentrations of PA and PA inhibitor were significantly lower than in GC lysates and showed no significant difference between the oocyte-corona-cumulus complex groups. The concentration of fibronectin was significantly elevated in GC lysates of mature follicles. The marked increase of TPA in human GC during oocyte maturation showed a positive correlation with the increase of FF follicle-stimulating hormone and beta-human chorionic gonadotropin in the group of mature oocyte-corona-cumulus complex. The data obtained suggest that in man TPA is the predominant PA involved in the process leading to follicular rupture.

Adult

Progress of fibrinolysis during tumor necrosis factor infusions in humans. Concomitant increase in tissue-type plasminogen activator, plasminogen activator inhibitor type-1, and fibrin(ogen) degradation products.

Several investigators have reported that tumor necrosis factor (TNF) can alter the production of plasminogen activator type-1 (PAI-1) and plasminogen activators (PAs) by endothelial cells in vitro. We have examined the in vivo effects of recombinant human TNF administration on fibrinolysis as assessed by parameters in plasma during a 24-hour period of continuous TNF infusion to 17 cancer patients with active disease. The plasma levels of PAI activity increased sevenfold after 3 and 24 hours of TNF infusion. This was the result of an increase of PAI-1 antigen; PAI-2 antigen was not detectable. Plasma concentrations of tissue-type PA (t-PA) antigen increased twofold to fivefold after 3 and 24 hours of TNF infusion, whereas urokinase-type PA antigen levels in plasma remained unaltered. After 3 hours of TNF infusion the plasma levels of alpha 2-antiplasmin were slightly decreased, 5% on average, suggesting that fibrinolysis continued. After 24 hours of TNF infusion a highly significant increase in fibrin- plus fibrinogen-degradation products, and separately of fibrin degradation products and fibrinogen degradation products, was found. This indicates that fibrinolysis persisted, at least partly, in the presence of high levels of PAI activity. Whereas PAI-1 production increased, t-PA production by human endothelial cells in vitro remains unaltered or even decreases on TNF addition. It has been shown previously that TNF infusion in our patients results in thrombin and fibrin generation. Therefore, it is possible that thrombin, not TNF, is the actual stimulus for t-PA production in our patients. We speculate that fibrin is formed during TNF infusions and that plasmin is generated by t-PA action immediately on the initial formation of (soluble) fibrin molecules. Such a process may explain the generation of degradation products of both fibrin and fibrinogen during infusion of TNF in patients.

Fibrin Fibrinogen Degradation Products

Fibrinogen, coagulation factor VII, tissue plasminogen activator, plasminogen activator inhibitor-1, and lipid as cardiovascular risk factors in chronic hemodialysis and continuous ambulatory peritoneal dialysis patients.

Mortality rates associated with cardiovascular disease (CVD) are high in long-term dialysis patients. Increased levels of plasma fibrinogen (FBG), coagulation factor VII (FVII), tissue plasminogen activator (t-PA), and plasminogen activator inhibitor-1 (PAI-1) as well as hyperlipidemia are regarded as important risk factors for CVD. To investigate whether there are differences in the risk of CVD between chronic hemodialysis (HD) and continuous ambulatory peritoneal dialysis (CAPD) patients, serum lipid levels and plasma FBG, FVII, t-PA, and PAI-1 levels were measured in 17 patients on HD and 17 patients on CAPD. FBG was measured by the thrombin time method, FVII activity (FVIIc) by the chromogenic prothrombin time method, and t-PA and PAI-1 activity by the chromogenic substrate assay. No difference was found in body mass index (BMI) between HD and CAPD patients. Total cholesterol (TC), TC/high-density lipoprotein (HDL)-C ratio, low-density lipoprotein (LDL)-C, and triglycerides (TG) were significantly increased, and HDL-C was significantly decreased in CAPD patients compared with HD patients. FBG and FVIIc were significantly elevated in CAPD patients compared with controls or HD patients. T-PA activities were significantly higher in HD and CAPD patients than in controls. CAPD patients showed significantly higher PAI-1 activities than controls or HD patients. Significant positive correlations were found between FBG or FVIIc and TC, between FBG and LDL-C or TG, and between FVIIc and LDL-C in these patients. T-PA showed significant negative correlations with FBG, PAI-1, TC, LDL-C, and TG. There was a significant positive correlation between PAI-1 and TG and a significant negative correlation between PAI-1 and HDL-C. We conclude that CAPD patients may have a greater risk of CVD than do HD patients, and that coagulation and fibrinolytic activity are correlated with lipid disorders in these patients.

Adult

The effect of experimental chronic hypertension on tissue plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition.

Chronic hypertension was induced in rats after partial nephrectomy. The systolic blood pressure was significantly elevated from the first week after nephrectomy to the end of the experimentation (8th week). Plasminogen activator activity (PAA) and plasminogen activator inhibition (PAI) showed a tissue- and time-dependent pattern of changes in some key organs compared to controls (sham-operated rats). Two weeks after nephrectomy (one week after the induction of hypertension) the PAA was markedly increased in lungs, heart and aorta. In aorta the PAA continued to be enhanced until the end of the experimentation (the 8th week after nephrectomy), while in heart and lungs the PAA returned to the normal eight weeks after nephrectomy. In vena cava, brain and liver no change in PAA was noticed compared to controls. Tissue PAI was mostly increased or unchanged, while tissue plasmin inhibition (PI) was unchanged. The differential response of PAA and PAI was varying not only from one organ to another or in the same organ at a given time but also in the same organ throughout experimentation. In a number of nephrectomized rats, however, hypertension was not induced. In these rats similar changes in tissue PAA and PAI were noted compared to hypertensive nephrectomized rats. Therefore, all the changes in the parameters studied should be due to the partial nephrectomy itself. In conclusion, experimentally induced chronic hypertension had not any effect on tissue PAA, PAI and PI.

Animals