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Tissue plasminogen activator requires plasminogen to modulate amyloid-beta neurotoxicity and deposition.

Tissue plasminogen (plgn) activator (tPA) modulates neuronal death in models of stroke, excitotoxicity, and oxidative stress. Amyloid-beta (Abeta) appears central to Alzheimer's disease and is neurotoxic to neurons in vitro. Here, we evaluate tPA effects on Abeta toxicity. We report that tPA alone had no effect on Abeta toxicity. However, in combination with plgn, tPA reduced Abeta toxicity in a robust fashion. Moreover, the combined tPA and plgn treatment markedly inhibited Abeta accumulation. The addition of phenylmethylsulfonyl fluoride, a serine protease inhibitor, to a sample of tPA, plgn, and Abeta resulted in a marked reduction of Abeta degradation. We interpret the actions of tPA and plgn within the context of the ability of plasmin to degrade Abeta.

Amyloid beta-Peptides↗

Plasminogen, alpha 2-antiplasmin, and protein C decline following infusions of recombinant tissue plasminogen activator.

We examined a variety of hemostatic functions in a subset of patients participating in a multicenter trial of rt-PA in the treatment of DVT. There were declines in systemic levels of plasminogen and alpha 2-antiplasmin at 24 hours following therapy. Additionally, levels of protein C antigen and protein C activity were also seen to decrease over the same time course. We propose that therapy with rt-PA has more systemic effects than previously thought and suggest that the effect on protein C may have some role in reocclusion following thrombolysis.

Drug Synergism↗

alpha Domain deletion converts streptokinase into a fibrin-dependent plasminogen activator through mechanisms akin to staphylokinase and tissue plasminogen activator.

The mechanism of action of plasminogen (Pg) activators may affect their therapeutic properties in humans. Streptokinase (SK) is a robust Pg activator in physiologic fluids in the absence of fibrin. Deletion of a "catalytic switch" (SK residues 1-59), alters the conformation of the SK alpha domain and converts SKDelta59 into a fibrin-dependent Pg activator through unknown mechanisms. We show that the SK alpha domain binds avidly to the Pg kringle domains that maintain Glu-Pg in a tightly folded conformation. By virtue of deletion of SK residues 1-59, SKDelta59 loses the ability to unfold Glu-Pg during complex formation and becomes incapable of nonproteolytic active site formation. In this manner, SKDelta59 behaves more like staphylokinase than like SK; it requires plasmin to form a functional activator complex, and in this complex SKDelta59 does not protect plasmin from inhibition by alpha(2)-antiplasmin. At the same time, SKDelta59 is unlike staphylokinase or SK and is more like tissue Pg activator, because it is a poor activator of the tightly folded form of Glu-Pg in physiologic solutions. SKDelta59 can only activate Glu-Pg when it was unfolded by fibrin interactions or by Cl(-)-deficient buffers. Taken together, these studies indicate that an intact alpha domain confers on SK the ability to nonproteolytically activate Glu-Pg, to unfold and process Glu-Pg substrate in physiologic solutions, and to alter the substrate-inhibitor interactions of plasmin in the activator complex. The loss of an intact alpha domain makes SKDelta59 activate Pg through classical "fibrin-dependent mechanisms" (akin to both staphylokinase and tissue Pg activator) that include: 1) a marked preference for a fibrin-bound or unfolded Glu-Pg substrate, 2) a requirement for plasmin in the activator complex, and 3) the creation of an activator complex with plasmin that is readily inhibited by alpha(2)-antiplasmin.

Binding Sites↗

Changes in tissue-type plasminogen activator-like and plasminogen activator inhibitor activities in granulosa and theca layers during ovarian follicle development in the domestic hen.

Changes in plasminogen activator (PA) and PA inhibitor (PAI) activities were measured during follicular development in granulosa cells (GC) and theca tissue (TT) isolated from the six largest yolk-filled preovulatory follicles (F1, F2, F3, F4, F5, F6) and large white follicles (LWF) of the domestic hen. PA activity increased and PAI activity decreased during follicular development, with the peak PA value and minimum activity for PAI observed in the largest preovulatory follicle (F1) 12-14 h before expected time of ovulation. The PA activity in GC and TT appears to be principally of the tissue (t)-PA type judging from its substrate specificity and biochemical characteristics. The enzyme cleaved the chromogenic substrate specific for t-PA (Spectrozyme TM t-PA; CH3SO2-D-CHT-Gly-Arg-p-nitroanilide) more efficiently (4-6 x) than that for u-PA (Spectrozyme TM UK; Cbo-L-Glu-(alpha-t-BuO)-Gly-Arg-p-nitroanilide), suggesting that t-PA may be the predominant PA in the chicken preovulatory follicle. Determination of PA activity following sodium dodecyl sulphate-polyacrylamide gel electrophoresis and isoelectric focussing suggested the presence of two forms of the enzyme in GC and TT. The predominant form of PA had a molecular weight of 75,000 and an isoelectric point (pI) of 7.7, characteristics similar to those reported for t-PA in humans, pigs, and rodents. The other form of PA had a molecular weight of 35,000 and pI of 8.4. PAI present in GC and TT had a molecular weight of 50,000 and pI of 4.7. In GC, an acid-labile PAI was detected with biochemical characteristics similar to those of the protease, nexin I.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased plasma fibrinolysis and tissue-type plasminogen activator/tissue-type plasminogen activator inhibitor ratios after ethanol withdrawal in chronic alcoholics.

The effects of alcohol withdrawal on fibrinolysis were studied in 10 middle-aged male chronic alcoholics institutionalized for withdrawal therapy. All patients were sampled on admission [day 1 (D1)] and 21 days after alcohol withdrawal [day 22 (D22)]. The overall plasma fibrinolytic capacity (OFC) was assayed by measuring the ability of patient plasma to generate D-dimers from a standardized fibrin clot, and tissue-type plasminogen activator (t-PA) and t-PA inhibitor (PAI-1) levels were assayed together with serum cholesterol, triglyceride and cholesterol fractions. At D22, the OFC significantly increased in seven patients [D1 = 10 +/- 0.7 microg/h (mean +/- SD), D22 = 17 +/- 7.4 microg/h; P < 0.01], while t-PA and PAI-1 levels decreased in all patients but two (t-PA: D1 = 16.6 +/- 5 ng/ml, D22 = 10.2 +/- 3.8 ng/ml; P < 0.001; and PAI-1: D1 = 46 +/- 39 ng/ml, D22 = 21 +/- 28 ng/ml; P < 0.01). This study clearly demonstrates an increase in overall fibrinolytic activity after alcohol withdrawal, which is mainly due to a decrease in PAI-1 levels. These changes induced by alcohol abstinence might provide clear benefit by reducing the risk of thromboembolic events and particularly of stroke associated with elevated PAI-1 levels described in heavy drinkers.

Adult↗

Immunohistochemical localization of tissue-type plasminogen activator and type I plasminogen activator inhibitor in radicular cysts.

BACKGROUND: The plasminogen/plasmin proteolytic system participates in a wide variety of extracellular matrix degradation. Detailed knowledge of plasminogen activators (PAs) and their inhibitors may be important for understanding the pathogenesis of radicular cysts. The purpose of this study was to investigate the in situ localization of tissue-type PA (t-PA) and type I PA inhibitor (PAI-1) in radicular cysts. METHODS: Thirty formalin-fixed, paraffin-embedded specimens of radicular cysts were examined using immunohistochemistry. In addition, another section from each radicular cyst specimen was stained with hematoxylin and eosin to assess the presence of inflammatory infiltrates. Differences in t-PA and PAI-1 expression between tissues with low and high levels of inflammation were subsequently analyzed using Fisher's exact test. RESULTS: Both t-PA- and PAI-1-positive cells were detected in the lining epithelium, connective tissue, inflammatory infiltrates, and endothelium. In addition, the t-PA signal was mainly expressed in epithelial cells. However, the PAI-1 signal was mainly expressed in fibroblasts. Moreover, significantly greater t-PA as well as PAI-1 expression was noted in radicular cysts with high levels of inflammation as compared to tissues with low levels of inflammatory cell infiltrates (P < 0.05). CONCLUSIONS: The present study confirms earlier indications of local production of PA and its inhibitor in radicular cysts. In addition, this study further shows the tissue localization of the antigens for t-PA as well as PAI-1, and demonstrates that the expression of both t-PA and PAI-1 increases with the grade of inflammation in radicular cysts.

Humans↗

Pocket protein-independent repression of urokinase-type plasminogen activator and plasminogen activator inhibitor 1 gene expression by E2F1.

Expression of genes of the plasminogen activator (PA) system declines at the G(0)/G(1)-S-phase boundary of the cell cycle. We found that overexpression of E2F1-3, which acts mainly in late G(1), inhibits promoter activity and endogenous expression of the urokinase-type PA (uPA) and PA inhibitor 1 (PAI-1) genes. This effect is dose dependent and conserved in evolution. Mutation analysis indicated that both the DNA-binding and transactivation domains of E2F1 are necessary for this regulation. Interestingly, an E2F1 mutant lacking the pRB-binding region strongly repressed the uPA and PAI-1 promoters. An E2F-mediated negative effect was also observed in pRB and p107/p130 knockout cell lines. This is the first report that E2F can act as a repressor independently of pocket proteins. Mutation of AP-1 elements in the uPA promoter abrogated E2F-mediated transcriptional inhibition, suggesting the involvement of AP-1 in this regulation. Results shown here identify E2F as an important component of transcriptional control of the PA system and thus provide new insights into mechanisms of cellular proliferation.

Animals↗

Specific interaction of tissue-type plasminogen activator (t-PA) with annexin II on the membrane of pancreatic cancer cells activates plasminogen and promotes invasion in vitro.

BACKGROUND: Overexpression of tissue plasminogen activator (t-PA) in pancreatic cancer cells promotes invasion and proliferation in vitro and tumour growth and angiogenesis in vivo. AIMS: To understand the mechanisms by which t-PA favours cancer progression, we analysed the surface membrane proteins responsible for binding specifically t-PA and studied the contribution of this interaction to the t-PA promoted invasion of pancreatic cancer cells. METHODS: The ability of t-PA to activate plasmin and a fluorogenic plasmin substrate was used to analyse the nature of the binding of active t-PA to cell surfaces. Specific binding was determined in two pancreatic cancer cell lines (SK-PC-1 and PANC-1), and complex formation analysed by co-immunoprecipitation experiments and co-immunolocalisation in tumours. The functional role of the interaction was studied in Matrigel invasion assays. RESULTS: t-PA bound to PANC-1 and SK-PC-1 cells in a specific and saturable manner while maintaining its activity. This binding was competitively inhibited by specific peptides interfering with the interaction of t-PA with annexin II. The t-PA/annexin II interaction on pancreatic cancer cells was also supported by co-immunoprecipitation assays using anti-t-PA antibodies and, reciprocally, with antiannexin II antibodies. In addition, confocal microscopy showed t-PA and annexin II colocalisation in tumour tissues. Finally, disruption of the t-PA/annexin II interaction by a specific hexapeptide significantly decreased the invasive capacity of SK-PC-1 cells in vitro. CONCLUSION: t-PA specifically binds to annexin II on the extracellular membrane of pancreatic cancer cells where it activates local plasmin production and tumour cell invasion. These findings may be clinically relevant for future therapeutic strategies based on specific drugs that counteract the activity of t-PA or its receptor annexin II, or their interaction at the surface level.

Annexin A2↗

Maspin retards cell detachment via a novel interaction with the urokinase-type plasminogen activator/urokinase-type plasminogen activator receptor system.

It is well documented that tumor suppressive maspin inhibits tumor cell invasion and extracellular matrix remodeling. Maspin is a cytosolic, cell surface-associated, and secreted protein in the serine protease inhibitor superfamily. Although several molecules have been identified as candidate intracellular maspin targets, the extracellular maspin target(s) remains elusive. Although maspin does not directly inhibit urokinase-type plasminogen activator (uPA) activity, we have shown evidence that maspin may block the pericellular proteolysis mediated by cell surface-associated uPA. In the current study, maspin significantly inhibited the Ca2+ reduction-induced detachment of DU145 cells. This maspin effect was associated with increased and sustained levels of mature focal adhesion contacts (FAC). We noted that maspin (a) colocalized with uPA and uPA receptor (uPAR), (b) enhanced the interaction between uPAR and low-density lipoprotein receptor related protein, and (c) induced rapid internalization of uPA and uPAR. The maspin effects on surface-associated uPA and uPAR required the interaction between uPA and uPAR. Further biochemical and biophysical analyses revealed that maspin specifically bound to pro-uPA with a deduced K(d) of 270 nmol/L and inhibited the plasmin-mediated pro-uPA cleavage. Interestingly, substitution of maspin p1' site Arg340 in the reactive site loop (RSL) with alanine not only abolished the binding to pro-uPA but also diminished the maspin effects on pro-uPA cleavage and cell detachment. These data show an important role of maspin RSL in regulating the uPA/uPAR-dependent cell detachment. Together, our data led to a new hypothesis that maspin may stabilize mature FACs by quenching localized uPA/uPAR complex before uPA activation.

Cell Adhesion↗

Significance of urokinase-type plasminogen activator and plasminogen activator inhibitor-1 (PAI-1) expression in human colorectal carcinomas.

Despite the advances in the medical care of colorectal carcinoma patients, the prognosis has improved only marginally over recent decades. Thus, additional prognostic indicators would be of great clinical value to select patients for adjuvant therapy. In the present study, the antigen levels of urokinase-type plasminogen activator (uPA) and its inhibitor PAI-1, and their immunohistochemical staining were compared in paired colorectal tumor (n = 64) and background colon tissue of the same patients with clinical and pathological staging. The antigen levels, measured with an ELISA method, were found to be significantly higher in cancer tissue (mean 1.92 ng/mg protein for uPA and 7.08 for PAI-1) than in corresponding normal mucosa (0.29 ng/mg protein for uPA and 1.11 ng/mg protein for PAI-1). There was a positive correlation between uPA and PAI-1 antigen levels and clinicopathological parameters such as grade (p < 0.001 and p = 0.01, respectively), while for Dukes' stage, only PAI-1 correlated positively (p = 0.018). Nodal status correlated positively with uPA but not with PAI-1 antigen levels. Immunohistochemical localization of both antigens was observed mainly in cancer cells and much less in stromal cells. Staining intensity increased from adenoma to adenocarcinoma. The degree of staining was associated with grade, Dukes' stage and nodal status for uPA (p < 0.001, p = 0.002, p < 0.001, respectively) and only with grade for PAI-1 (p = 0.007).

Adult↗

Review of studies with plasminogen concentrates and proposals for further therapeutic strategies with plasminogen concentrates.

Since the introduction of thrombolytic treatment based on the activation of plasminogen (PLG) by streptokinase (SK) and urokinase (UK) the search for new and improved methods has been continuing. The pivotal issue is how to achieve clot-specific fibrinolysis without producing systemic fibrinogenolysis. One out of various approaches to enhance lysis rates has been the use of PLG either alone or in combination with UK or SK in the light of the fact that fibrinolytic treatment, particularly using SK, is associated with a consumption of PLG, and that thrombi contain relatively small amounts of native PLG, however, are capable of incorporating added PLG in vitro. PLG-concentrates from various manufactures have been administered intravenously for treatment of deep venous thrombosis, mainly in combination with SK, and of pulmonary embolism in combination with UK. Local intracoronary and intraarterial administration in combination with UK has been reported in patients with myocardial infarction, and peripheral arterial occlusions, respectively. Lysis rates obtained in these studies were in most cases superior to results obtained with SK or UK alone, without increasing the incidence of bleeding complications. In addition, excellent results in larger group of patients with cerebral thrombosis were obtained with PLG alone. The encouraging results of these studies may be explained by the fact that all of the preparations used contained partially activated forms of PLG (commonly designated lys-PLG) to a greater or lesser extent. Lys-PLG has a higher affinity for fibrin than the native glu-PLG and is activated by UK or SK by a manyfold faster. These properties allow for a rapid formation of plasmin which--bound to fibrin--is also protected from the attack of neutralizing antiplasmin. The design and results of previous studies with lys-PLG concentrates will be reviewed and approaches to further improve fibrinolytic regimens with lys-PLG-concentrates discussed.

Fibrinolysis↗

Randomized comparison of coronary thrombolysis achieved with double-bolus reteplase (recombinant plasminogen activator) and front-loaded, accelerated alteplase (recombinant tissue plasminogen activator) in patients with acute myocardial infarction. The RAPID II Investigators.

BACKGROUND: The therapeutic benefit of thrombolytic therapy has been shown to correlate directly with completeness (TIMI grade 3 flow) and speed of reperfusion of the infarct-related coronary artery. The purpose of the RAPID II study was to determine whether a double-bolus regimen of reteplase, a recently developed deletion mutant of wild-type tissue plasminogen activator, could improve 90-minute coronary artery patency rates achieved with the most successful standard regimen, an "accelerated" front-loaded infusion of alteplase. METHODS AND RESULTS: Three hundred twenty-four patients with acute myocardial infarction were randomized to receive (along with intravenous heparin and aspirin) either a 10 plus 10 megaunits double bolus of reteplase or front-loaded alteplase. The primary end point of "patency at 90 minutes, graded according to the TIMI classification" was centrally assessed in a blinded fashion. Infarctrelated coronary artery patency (TIMI grade 2 or 3) and complete patency (TIMI grade 3) at 90 minutes after the start of thrombolytic therapy were significantly higher in the reteplase-treated patients (TIMI grade 2 or 3: 83.4% versus 73.3% for front-loaded alteplase-treated patients, P = .03; TIMI grade 3: 59.9% versus 45.2%, P = .01). At 60 minutes, the incidence of both, patency and complete patency, was also significantly higher in reteplase-treated patients (reteplase versus alteplase, TIMI grade 2 or 3: 81.8% versus 66.1%, P = .01; TIMI grade 3: 51.2% versus 37.4%, P < .03). Reteplase-treated patients required fewer acute additional coronary interventions (13.6% versus 26.5%, P < .01), and 35-day mortality was 4.1% for reteplase and 8.4% for alteplase (P = NS). There were no significant differences between reteplase and alteplase in bleedings requiring a transfusion (12.4% versus 9.7%) or hemorrhagic stroke (1.2% versus 1.9%). CONCLUSIONS: Reteplase, when given as a double bolus of 10 plus 10 megaunits to patients with acute myocardial infarction, achieves significantly higher rates of early reperfusion of the infarct-related coronary artery and requires significantly fewer acute coronary interventions than front-loaded alteplase without an apparent increased risk of complications.

Adult↗

Fibrinogen Lima: a homozygous dysfibrinogen with an A alpha-arginine-141 to serine substitution associated with extra N-glycosylation at A alpha-asparagine-139. Impaired fibrin gel formation but normal fibrin-facilitated plasminogen activation catalyzed by tissue-type plasminogen activator.

An A alpha-arginine-141 to serine substitution has been identified in a homozygous dysfibrinogen, fibrinogen Lima, associated with impaired fibrin polymerization. The point mutation created an asparagine-X-serine-type glycosylation sequence, and indeed, extra, mainly disialylated biantennary oligosaccharides have been isolated from A alpha asparagine-139 of the patient's fibrinogen. This type of glycosylation sequence is unique for human fibrinogen, because the sequences shown for normal and abnormal fibrinogens are all asparagine-X-threonine types. The terminal sialic acids of the extra oligosaccharides seem to have largely contributed to the impaired fibrin gel formation, as evidenced by its correction to a near normal level by desialylation. Nevertheless, the polymerizing fibrin facilitated tissue-type plasminogen activator-catalyzed plasmin formation in a normal fashion, indicating that the initial two-stranded fibrin protofibrils had been constructed normally. Thus the impaired fibrin gel formation could be attributed to the delay in their subsequent lateral association, most probably because of the repulsive forces generated by the negative electric charge of the extra sialic acids. The substitution of a basic residue arginine to a noncharged residue serine may also have contributed to the impaired function in a similar manner or by steric hindrance in association with bulky extra oligosaccharide chains.

Amino Acids↗

Expression of oestrogen and progesterone receptors, Ki-67, p53 and BCL-2 proteins, cathepsin D, urokinase plasminogen activator and urokinase plasminogen activator-receptors in carcinomas of the female breast in an African population.

OBJECTIVE: To determine the expression of oestrogen (ER) and progesterone receptor (PgR), Ki-67, p53, bcl-2 proteins and the proteolytic enzymes cathepsin D (CD), urokinase-plasminogen activator (uPA) and its receptor (uPA-R) in primary carcinomas of the breast from indigenous Tanzanian female patients by immunohistochemistry. DESIGN: Prospective cross-sectional study. SETTING: Muhimbili Medical Centre, Dar es Salaam, Tanzania. SUBJECTS: Sixty patients admitted between 1995 and 1997. RESULTS: Markers were found to be expressed as follows: ER (33.3%), PgR (18.3%), p53 (30%), bcl-2 (43.5%) and the median proliferation rate of Ki-67 was 15%. Proportion of tumours positive for ER, PgR and bcl-2 initially decreased to 12 months disease duration, after which it increased. The observed proliferation rate approaches that reported in developed countries. p53 expression did not influence the proliferation rate nor did bcl-2 expression. ER, PgR and bcl-2 were strongly co-expressed. CD was predominantly expressed in stromal macrophages than in cancer cells. CONCLUSION: The low expression of ER and PgR and their strong co-expression with bcl-2 might negatively influence response to hormonal therapy. The influence of bcl-2 on tumour response to anti-cancer therapy in patients with long disease duration requires urgent clarification. Determination of CD in stromal macrophages rather than in cancer cells may have greater prognostic significance in patients of this region.

Breast Neoplasms↗

[The study of plasminogen activator in renal cell carcinoma with special remarks on urokinase type plasminogen activator].

Plasminogen activators (PA) have been reported to be associated with fibrinolysis. The amounts of PA in urine, plasma, and tissues of patients with renal cell carcinoma were determined by measuring the amounts of two kinds of antigens, urokinase type (u-PA) antigen and tissue type (t-PA) antigen, by highly sensitive enzyme-immunoassay. The u-PA antigen level in urine showed neither daily variation nor age-relationship. It was, however, significantly higher (164.2 +/- 93.5 x 10(2) U/gCr) in patients with renal cell carcinoma than in healthy subjects (56.8 +/- 22.4 x 10(2) U/gCr) (p less than 0.01). The amount of u-PA antigen in urine tended to be higher in patients with high grade or stage cancer than in those with cancer of low grade or stage, though not statistically significant. The u-PA antigen content in tissues appeared elevated in tumors (8.90 +/- 6.00 x 10(-1) U/g wet tissue) in comparison to normal renal cortex and medulla. However, the difference was not significant, as the cancer samples consisted of various tissue components including necrotic or hemorrhagic tissue in addition to cancer cells. Although the t-PA antigen content in urine was too immeasurably small in 29% cases by the present method, there was no significant difference between patients with renal cell carcinoma and healthy subjects. The plasma level of t-PA antigen tended to be elevated in renal cell carcinoma group (7.87 +/- 5.60 U/ml) compared to the control group (5.7 +/- 2.19 U/ml), but no significant difference was present between them.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Urokinase-type plasminogen activator, plasminogen activator inhibitor type 1 and cathepsin D: analysis of their prognostic significance in squamous cell carcinoma of the head and neck.

BACKGROUND: The aim of the study was to evaluate the prognostic significance of tumour and serum concentrations of urokinase-type plasminogen activator (uPA), its type 1 inhibitor (PAI-1) and cathepsin D (Cath D) in patients with squamous cell carcinoma of the head and neck (SCCHN). PATIENTS AND METHODS: Determinations of uPA and PAI-1 were made using enzyme-linked immunosorbent assays in tumour and serum samples of 47 and 32/47 patients, respectively. For the determination of tumour (94 patients) and serum (34/94 patients) Cath D concentrations, an immunoradiometric assay was used. RESULTS: In an univariate survival analysis, the risk of disease recurrence and SCCHN-related death was significantly higher in the patients with high uPA (P = 0.046, P = 0.010) tumours, compared to those with low uPA tumours. In addition, the high serum levels of uPA correlated positively with the rate of relapse (P = 0.007), but not with the mortality rate (P = 0.200). There was no statistically significant difference between low and high PAI-1 groups, regarding either tumour or serum concentration of the inhibitor, and between low and high Cath D tumours. Low Cath D serum levels appeared to be related to longer disease-free interval (P = 0.055), but not to disease-specific survival (P = 0.120). CONCLUSIONS: The tumour levels of uPA, as well as serum levels of uPA and Cath D could potentially predict the survival probability of patients with SCCHN. However, the strength of this association remains to be investigated on a larger and more homogeneous group of patients.

Adult↗

[The influence of nitric oxide on the regulation of plasminogen activator inhibitor type 1 and tissue-type plasminogen activator expression].

Nitric oxide produced in various human tissues by nitric oxide synthase is involved in the regulation of many physiological processes. Mechanism of its action is diverse. The most important physiological activity of nitric oxide is guanylate cyclase activation and an increase of cGMP synthesis. At low concentrations NO plays a pivotal role in vessel relaxation and possesses antithrombotic, antiproliferative and anti-inflammatory features as well. An excessive production of nitric oxide can disturb vascular hemostasis and contribute to development of cardiovascular diseases. Studies provide that NO also participate in fibrynolysis regulation by the influence on the PAI-1 and t-PA expression, what may have important clinical implications. The aim of this review is to present current knowledge about the role of nitric oxide in the regulation of these plasminogen activation system factors.

Animals↗

Evaluation of fibrinolytic capacity in plasma during thrombolytic therapy with single (scu-PA) or two-chain urokinase type plasminogen activator (tcu-PA) by a combined assay system for urokinase type plasminogen activator antigen and function.

A combined assay for urokinase type plasminogen activator (u-PA) activity and antigen determination in plasma samples is described. This assay is based on binding of u-PA to an antibody immobilized on a microtiter plate followed by determination of the enzymatic activity of the bound u-PA. Thereafter bound u-PA antigen can be quantified by means of a specific peroxidase labelled monoclonal antibody against u-PA. By use of this assay system u-PA activity and antigen can be determined with lower detection limits of 0.08 IU/ml and 1.0 ng/ml, respectively, and intraassay as well as interassay coefficients of variation of 10% and 12% for activity and 5% and 7% for antigen determinations, respectively. Normal plasma levels of u-PA antigen could be determined to be 1.88 ng/ml +/- 0.61. Furthermore, this assay system allows specific quantification of u-PA antigen and activity during thrombolytic therapy.

Antigens↗