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D C Stump

Publications and source records attributed to D C Stump.

At least 55 records · Page 3Linked to original sources

Comparative thrombolytic properties of single-chain forms of urokinase-type plasminogen activator.

The specific thrombolytic properties of urokinase and three molecular forms of single-chain urokinase-type plasminogen activator (scu-PA) were compared in a human plasma milieu in vitro and in an experimental thrombosis model in rabbits. These scu-PA molecules included Mr 54,000 scu-PA from human urine (urinary scu-PA), scu-PA from conditioned media of a human lung adenocarcinoma cell line (CALU-3,ATCC,HTB-55) (cellular scu-PA) and an Mr 32,000 proteolytic derivative of cellular scu-PA (scu-PA-32k). All four molecular forms induced significant lysis of a 125I-labeled human plasma clot immersed in citrated human plasma at concentrations between 50 and 200 IU/mL. None of the four showed absolute fibrin-specificity, but at equivalent lytic dose the three single-chain forms appeared to cause less fibrinogen degradation and alpha 2-antiplasmin consumption than two-chain urokinase. In addition, the fibrinolytic potential of the three single-chain forms was largely maintained during pre-incubation in plasma for up to 48 hours whereas that of urokinase was completely inhibited. Intravenous (IV) infusion of cellular scu-PA or scu-PA-32k into rabbits with a 125I-labeled thrombus in the jugular vein caused significant dose-dependent lysis at concentrations ranging from 8,700 to 35,000 and from 9,000 to 36,000 IU/kg respectively. Clot lysis was accompanied by minor alpha 2-antiplasmin consumption or fibrinogen breakdown. In contrast, urokinase induced lysis at doses between 20,000 and 200,000 IU/kg, but at higher doses was associated with significant systemic activation of the fibrinolytic system. It is concluded that scu-PA obtained from CALU-3 cell cultures has identical thrombolytic properties to that obtained from urine. In addition, the scu-PA-32k proteolytic derivative has the same fibrin-specific thrombolytic properties as the intact molecule. Cellular scu-PA and scu-PA-32k may therefore constitute more readily available alternatives for clot-selective thrombolytic therapy in man.

Animals↗

Pharmacokinetics of single chain forms of urokinase-type plasminogen activator.

The pharmacokinetics of single chain urokinase-type plasminogen activator (scu-PA) were studied in rabbits and squirrel monkeys using three of its molecular forms, Mr 54,000 isolated from human urine (urinary scu-PA), Mr 54,000 isolated from conditioned media of cultured human lung adenocarcinoma cells (CALU-3) (cellular scu-PA) and its Mr 32,000 proteolytic derivative lacking the NH2-terminal 143 amino acids (scu-PA-32k). After bolus i.v. injection in rabbits with 2.5 kg. b.wt., the disappearance rate of all three forms from plasma could be described by a two-compartment disposition model with the following pharmacokinetic parameters: alpha T1/2, 3.2 to 3.9 min; beta T1/2, 15 to 16 min; volume of the central compartment, 170 to 200 ml; total volume of distribution, 660 to 910 ml; and plasma clearance, 18 to 22 ml/min. Similar results were obtained with cellular scu-PA in squirrel monkeys. Plasma euglobulin fibrinolytic activity disappeared in parallel with antigen, suggesting that the primary mechanism of disappearance is via clearance of the intact molecule. The organ distribution of isotope after bolus injection of 125I-labeled scu-PA revealed that clearance occurred via the liver and kidneys in rabbits, but predominantly via the liver in squirrel monkeys. Functional hepatectomy prolonged the alpha T1/2 of scu-PA in rabbits, whereas nephrectomy had no significant effect. Steady-state plasma levels of scu-PA during continuous i.v. infusion were proportional to the dose given, whereas the initial postinfusion disappearance rate of scu-PA from plasma was comparable to that after bolus injection (T1/2 of 5 to 6 min).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

Bovine angiotensin-converting enzyme: amino-terminal sequence analysis and preliminary characterization of a hybridization-selected primary translation product.

Bovine lung angiotensin-converting enzyme was isolated in pure form and the sequence of the first twenty-two NH2-terminal amino acids determined. Oligonucleotides, complementary to a selected portion of the NH2-terminal amino acid sequence of the bovine glycoprotein (Mr 145,000), were synthesized and used for hybridization selection of angiotensin-converting enzyme mRNA. The hybridization-selected mRNA programmed the in vitro synthesis of a single polypeptide (Mr 130,000) that was specifically immunoadsorbed by anti-bovine enzyme antibodies. Preliminary sequence analysis of the primary translation product suggests that bovine angiotensin-converting enzyme is synthesized without a transient NH2-terminal signal sequence.

Amino Acid Sequence↗

Purification and characterization of a novel low molecular weight form of single-chain urokinase-type plasminogen activator.

A low Mr form (Mr 32,000) of single-chain urokinase-type plasminogen activator (scu-PA) was isolated from conditioned culture medium of a human lung adenocarcinoma cell line, CALU-3 (ATCC, HTB-55). The purified material (scu-PA-32k) consists of a single polypeptide chain and is immunologically similar to Mr 33,000 urokinase. Its NH2-terminal sequence is identical to that beginning at Leu-144 of Mr 54,000 urokinase. Whereas low Mr urokinase is derived from mature Mr 54,000 scu-PA by limited hydrolysis by plasmin first of the Lys-158-Ile-159 peptide bond and then of the Lys-136-Lys-137, scu-PA-32k is generated by specific hydrolysis of the Glu-143-Leu-144 peptide bond by an unidentified protease. scu-PA-32k resembles its Mr 54,000 scu-PA counterpart by its very low activity on chromogenic substrates for urokinase, by plasminogen-dependent fibrinolytic activity on fibrin plates, and by the lack of specific binding to fibrin. It activates plasminogen directly with high affinity, Km = 0.9 microM, but low turnover number, kcat = 0.0028 s-1. It is converted to fully active two-chain urokinase by plasmin with Km = 12 microM and kcat = 0.3 s-1. Like Mr 54,000 scu-PA, it causes significant lysis of a 125I-labeled fibrin clot in human plasma with relatively less fibrinogen breakdown as compared to urokinase. scu-PA-32k, which also has conserved fibrin specificity, represents a molecular variant which may be more suitable for large scale production as a fibrin-specific thrombolytic agent by recombinant DNA technology.

Adenocarcinoma↗

Measurement of urokinase-type plasminogen activator (u-PA) with an enzyme-linked immunosorbent assay (ELISA) based on three murine monoclonal antibodies.

An enzyme-linked immunosorbent assay (ELISA) for the measurement of urokinase-type plasminogen activator (u-PA) was developed. Three murine monoclonal antibodies to single chain urokinase-type plasminogen activator (scu-PA) were isolated and shown to react with non-overlapping epitopes in scu-PA. Two of the three antibodies were coated onto microtiter plates and bound u-PA was quantitated with the third antibody conjugated to horseradish peroxidase. The assay was equally sensitive to Mr 54,000 u-PA in the single chain or two-chain form but did not respond to Mr 33,000 urokinase. The lower limit of sensitivity of the assay was 0.1 ng/ml in buffer and 1 ng/ml in plasma. Coefficients of variation of the assay at physiological levels of u-PA were 6.5 percent within assays and 13 percent between assays. The level of u-PA in normal resting plasma was 1.9 +/- 0.66 ng/ml (mean +/- SD, n = 54). The assay can be performed within one working day and provides an efficient, reproducible, and stable means for the measurement of u-PA in biological fluids. As such it may facilitate physiological and pharmacological studies of urokinase-type plasminogen activators in man.

Adult↗

Purification and characterization of a novel inhibitor of urokinase from human urine. Quantitation and preliminary characterization in plasma.

Urokinase-related proteins in human urine occur mainly as a 1:1 complex of urokinase with an inhibitor (Stump, D. C., Thienpont, M., and Collen, D. (1986) J. Biol. Chem. 261, 1267-1273). BALB/c mice were immunized with this urokinase-urokinase inhibitor complex and spleen cells fused with mouse myeloma cells, resulting in hybridomas producing monoclonal antibodies. Three antibodies reacting with the complex but not with urokinase were utilized to develop a sensitive (0.5 ng/ml) enzyme-linked immunosorbent assay for the urokinase inhibitor, which was used for monitoring its purification by chromatography on zinc chelate-Sepharose, concanavalin A-Sepharose, SP-Sephadex C-50, and Sephadex G-100. A homogenous glycoprotein of apparent Mr 50,000 was obtained with a yield of 40 micrograms/liter urine and a purification factor of 320. One mg of the purified protein inhibited 35,000 IU of urokinase within 30 min at 37 degrees C. This protein was immunologically related to both the purified urokinase-urokinase inhibitor complex and to the inhibitor portion dissociated from it by nucleophilic dissociation. It was immunologically distinct from all known protease inhibitors, including the endothelial cell-derived fast-acting inhibitor of tissue-type plasminogen activator, the placental inhibitor of urokinase and protease nexin. In electrophoresis the protein migrated with beta-mobility. Inhibition of urokinase occurred with a second order rate constant (k) of 8 X 10(3) M-1 s-1 in the absence and of 9 X 10(4) M-1 s-1 in the presence of 50 IU of heparin/ml. The urokinase inhibitor was inactive towards single-chain urokinase-type plasminogen activator and plasmin, but it inhibited two-chain tissue-type plasminogen activator with a k below 10(3) M-1 s-1 and thrombin with a k of 4 X 10(4) M-1 s-1 in the absence and 2 X 10(5) M-1 s-1 in the presence of heparin. The concentration of this urokinase inhibitor in plasma from normal subjects determined by immunoassay was 2 +/- 0.7 micrograms/ml (mean +/- S.D., n = 25). The protein purified from plasma by immunoabsorption had the same Mr, amino acid composition, and immunoreactivity as the urinary protein. Furthermore, when urokinase was added to plasma, time-dependent urokinase-urokinase inhibitor complex formation was observed at a rate similar to that observed for the inhibition of urokinase by the purified inhibitor from urine. This urokinase inhibitor, purified from human urine, most probably represents a new plasma protease inhibitor.

Amino Acids↗

Absence of synergism between tissue-type plasminogen activator (t-PA), single-chain urokinase-type plasminogen activator (scu-PA) and urokinase on clot lysis in a plasma milieu in vitro.

A potential synergic effect of tissue-type plasminogen activator (t-PA), single-chain urokinase-type plasminogen activator (scu-PA) or urokinase on clot lysis was investigated in a whole human plasma system in vitro. The system consisted of a human plasma clot labeled with 125I-fibrinogen, immersed in citrated whole human plasma, to which the thrombolytic agents were added. Clot lysis was quantitated by measurement of released 125I, and activation of the fibrinolytic system in the surrounding plasma by measurements of fibrinogen and alpha 2-antiplasmin. t-PA, scu-PA and urokinase induced a dose-dependent and time-dependent clot lysis; 50 percent lysis after 2 h was obtained with 5 nM t-PA, 20 nM scu-PA and 12 nM urokinase. At these concentrations no significant activation of the fibrinolytic system in the plasma was observed with t-PA and scu-PA, whereas urokinase caused significant alpha 2-antiplasmin consumption and concomitant fibrinogen degradation. The shape of the dose-response curves was different; t-PA and urokinase showed a log linear dose-response whereas that of scu-PA was sigmoidal. Combinations of t-PA and scu-PA, of t-PA and urokinase or of scu-PA and urokinase at thrombolytic doses of each showed no synergism for thrombolysis. Fifty percent clot lysis in 2 h was obtained at total concentrations of the combined agents of 5 to 15 nM with molar ratios ranging from 1:4 to 4:1.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

Urokinase-related proteins in human urine. Isolation and characterization of single-chain urokinase (pro-urokinase) and urokinase-inhibitor complex.

Urokinase-related proteins were purified from 60-liter batches of human urine collected into the protease inhibitor aprotinin to prevent proteolytic degradation. Three homogeneous species were obtained by chromatography on zinc chelate-Sepharose, SP-Sephadex C-50, Sephadex G-100, benzamidine-Sepharose, and immunoadsorption on a murine anti-human urokinase monoclonal antibody. One urokinase-related protein with Mr 95,000 representing a complex of two-chain urokinase with an inhibitor accounts for about 70% of the total urokinase-related antigen in urine. Nucleophilic agents dissociate the complex into active two-chain urokinase and a protein with Mr 45,000-50,000 which is immunologically distinct from urokinase. Approximately 25% of the urinary urokinase-related antigen represents a single-chain molecule with Mr 54,000. This highly purified single-chain molecule was obtained with a yield of 5 micrograms/liter of urine. Only trace amounts (less than 5%) of the urokinase-related antigen were recovered as free two-chain urokinase. The urinary single-chain urokinase-related protein has no specific affinity for fibrin. It has a very low activity on Pyroglu-Gly-Arg-p-nitroanilide, a urokinase-specific synthetic substrate, but directly activates plasminogen following Michaelis-Menten kinetics with Km = 0.7 microM and kcat = 0.0011 S-1. The single-chain molecule is rapidly converted to active two-chain urokinase by plasmin. Active two-chain urinary urokinase has a very high amidolytic activity and activates plasminogen with Km = 60 microM and kcat = 1.4 S-1. It is concluded that the urokinase-related proteins in human urine consist of about 25% of single-chain urokinase (10-20 micrograms/liter) and of about 75% two-chain urokinase (40-50 micrograms/liter), the bulk of which is complexed to an inhibitor. Because even in freshly voided urine most of the urokinase-related antigen is already converted to two-chain urokinase, urine does not seem to be a suitable source for the large-scale purification of single-chain urokinase. In view of the very significant intrinsic plasminogen-activating properties of single-chain urokinase, it should not be considered to be a proenzyme form of urokinase. The dramatic differences of its kinetic constants from those of urokinase render the designation single-chain urokinase equally inadequate. Consequently, the designation "single-chain urokinase-type plasminogen activator" was recently adopted by the International Committee on Thrombosis and Haemostasis (Annual Meeting, San Diego, CA, July 13-14, 1985).

Blood Proteins↗

Purification and characterization of single-chain urokinase-type plasminogen activator from human cell cultures.

A urokinase-type plasminogen activator was purified from conditioned media of several human cell cultures, but preferably from the human lung adenocarcinoma line CALU-3 (ATCC, HTB-55), using a combination of chromatography on zinc chelate-Sepharose, SP-Sephadex C-50, and Sephadex G-100. Final yields of 65-100 micrograms/liter of starting material were obtained with a 290-fold purification factor and a recovery of 30%. The purified plasminogen activator consists of a single polypeptide chain with Mr 54,000 as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and is very similar or identical to single-chain urokinase-type plasminogen activator on the basis of immunodiffusion, amino acid composition, and the lack of specific binding to fibrin. It has very low amidolytic activity on Pyroglu-Gly-Arg-rho-nitroanilide and is converted to two-chain urokinase by limited exposure to plasmin. It has a specific activity of 60,000 IU/mg on fibrin plates and directly activates plasminogen following Michaelis-Menten kinetics with Km = 1.1 microM and kappa cat = 0.0026 S-1. It is concluded that the plasminogen activator purified from CALU-3-conditioned media is physically and kinetically identical to single-chain urokinase-type plasminogen activator. With the present straightforward purification method and a readily available source, sufficient amounts of single-chain urokinase-type plasminogen activator can be obtained for more detailed investigations of its biochemical, biological, and thrombolytic properties.

Cells, Cultured↗

Coronary thrombolysis by intravenous infusion of recombinant single chain urokinase-type plasminogen activator or recombinant urokinase in baboons: effect on regional blood flow, infarct size and hemostasis.

An occlusive thrombus was produced by thrombin-induced coagulation in the left anterior descending coronary artery of 18 open chest baboons. In six control animals, occlusive thrombosis persisting for 4 hours resulted in a large transmural infarct (66 +/- 4% of the perfusion area, mean +/- SEM). In six animals, single chain urokinase-type plasminogen activator, obtained by recombinant deoxyribonucleic acid (DNA) technology, was infused intravenously at a rate of 20 micrograms/kg per min for 60 minutes after approximately 45 minutes of coronary thrombosis. Persistent reperfusion occurred within 21 +/- 4 minutes (mean +/- SD). The mean duration of occlusion before reperfusion was 72 +/- 6 minutes. Recanalization resulted in a reduction of infarct size (42 +/- 4%, p less than 0.01 versus control animals). Myocardial blood flow in the perfusion area of the left anterior descending coronary artery was 107% of normal 2.5 hours after recanalization. The infusion of recombinant single chain urokinase-type plasminogen activator was not associated with systemic activation of the fibrinolytic system, fibrinogen breakdown or evident bleeding. In six baboons recombinant low molecular weight urokinase (molecular weight 33,000) was infused intravenously at a rate of 20 micrograms/kg per min for 60 minutes after approximately 45 minutes of coronary thrombosis. Persistent reperfusion occurred within 14 +/- 5 minutes (p less than 0.05 versus recombinant single chain urokinase-type plasminogen activator). The mean duration of occlusion was 69 +/- 14 minutes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Synergism of thrombolytic agents in vivo.

The existence of significant synergism between tissue-type plasminogen activator (t-PA) and single-chain urokinase-type plasminogen activator (scu-PA), and between t-PA and urokinase in thrombolysis in vivo is described. In a quantitative preparation of thrombolysis, consisting of rabbits in which a blood clot was induced in the jugular vein with 125I-labeled fibrin, intravenous infusion over 4 hr of t-PA, scu-PA, or urokinase in amounts of 0.5, 1.0, or 2.0 mg/kg body weight resulted in significant thrombolysis (30% to 60%). The simultaneous infusion of t-PA and scu-PA or of t-PA and urokinase had a significantly greater (p less than .001) thrombolytic effect than could be anticipated on the basis of the added effects of each agents alone. However, no synergism was observed between scu-PA and urokinase. The observed alpha 2-antiplasmin consumption and fibrinogen breakdown after urokinase at higher doses did not occur with the equivalent thrombolytic combinations of t-PA and urokinase. The combined use of synergic thrombolytic agents in patients may permit a significant reduction in total administered doses, probably with elimination of the systemic activation of the fibrinolytic system and the concomitant fibrinogen breakdown that is unavoidable with the currently used thrombolytic doses of each agent.

Animals↗

Clonidine and para-aminoclonidine, partial agonists for the alpha2-adrenergic receptor on intact human blood platelets.

Human blood platelets display alpha2-adrenergic receptors, which promote platelet aggregation and inhibit the adenylate cyclase. We investigated the effects of the antihypertensive agent clonidine and its analogue para-aminoclonidine on this receptor in the intact human platelet to determine their pharmacological effects and their ability to bind to the receptor by radioligand displacement. Both agents potentiated platelet aggregation induced by a submaximal concentration of ADP. Epinephrine-induced aggregation, on the other hand, was antagonized by clonidine and para-aminoclonidine in a dose-dependent fashion. Both agents inhibited the accumulation of cyclic AMP in platelets exposed to prostaglandin E1 and a phosphodiesterase inhibitor, but to a lesser extent than the inhibition caused by epinephrine. Both antagonized this excess inhibitory action of epinephrine. Clonidine and para-aminoclonidine blocked the binding of [3H]yohimbine (a selective alpha 2-adrenergic antagonist) to intact platelets with half-maximal effects at 0.3 and 0.7 microM, respectively. No evidence for the existence of a second class of binding sites with high affinity for clonidine was seen in intact platelets, either by this technique or by direct binding of [3H]clonidine. It is concluded that these two agents are partial agonists for the alpha 2-adrenergic receptors on blood platelets and that this receptor exists predominantly in the low-affinity state in the intact cell.

Adrenergic alpha-Agonists↗

Catechol estrogens and thrombosis: lack of a direct effect of 2-hydroxyestradiol on platelets.

Women who use the oral contraceptive pill are at risk for a variety of thromboembolic complications, but the precise mechanism is unclear. Since 2-hydroxyestradiol is a major metabolite of estradiol and possesses some of the structural and functional properties of catecholamines, we examined whether this compound might influence thrombogenesis, in particular whether it would exert an epinephrine-like effect on the platelet. In vitro, 2-hydroxyestradiol does not cause or potentiate aggregation or thromboxane release, nor does it prevent the rise in cyclic AMP caused by anti-aggregatory prostaglandins. While 2-hydroxyestradiol does not exert a direct effect on the platelet in vitro, it may play a role in thrombosis in women who take oral contraceptives through another mechanism.

Blood Platelets↗

Parallel observation of the occupancy of the alpha 2-adrenergic receptor in intact platelets and its ability to inhibit the adenylate cyclase.

The binding of the selective alpha2-adrenergic receptor antagonist [methyl-3H]yohimbine to intact human blood platelets was studied in parallel with an assessment of the ability of epinephrine to inhibit their accumulation of cyclic AMP in response to prostaglandin E1 and a phosphodiesterase inhibitor. Specifically bound [3H]yohimbine dissociated in a monoexponential fashion, and equilibrium binding showed 200-400 sites/platelet with a dissociation constant of 2-7 nM. The concentration of epinephrine which inhibited cyclic AMP accumulation was one-quarter of that required for an equal degree of inhibition of [3H]yohimbine binding. Conversely, the concentration of yohimbine required to inhibit the action of epinephrine on the adenylate cyclase was 10 times higher than that required for an equal degree of saturation of the alpha2-adrenoreceptor. The ability of epinephrine and the partial agonist p-aminoclonidine to compete with [3H]yohimbine for binding was not influenced by agonist-occupation of the ADP receptor, which also inhibits the adenylate cyclase. These results are not compatible with the concept that each adenylate cyclase unit is coupled to an alpha 2-receptor, nor do they indicate that the agonist-occupied alpha 2-receptor forms a complex with the enzyme which persists for the duration of the inhibitory effect. However, it is suggested that these results are compatible with a persistent inhibition of the cyclase being induced by a brief interaction between the agonist-occupied receptor and the adenylate cyclase.

Adenine↗

A controlled trial of prophylactic granulocyte transfusions during initial induction chemotherapy for acute myelogenous leukemia.

To evaluate the role of prophylactic granulocyte transfusions during remission-induction chemotherapy for acute myelogenous leukemia (AML) we randomized 102 infected patients either to receive daily granulocyte transfusions when blood granulocytes fell below 0.5 x 10(9) per liter (54 patients) or not to receive them (48). Although the percentage of patients acquiring any infection was similar in the transfusion and control groups (46 and 42 per cent, respectively), granulocyte transfusions decreased the proportion of patients with bacterial septicemia (9 per cent of those with transfusions vs. 27 per cent of the controls; P = 0.01). Granulocyte transfusions did not reduce the incidence of other infections or improve bone-marrow recovery, remission rate and duration, or survival. Seventy-two per cent of the patients given transfusions had transfusion reactions. Pulmonary infiltrates were more common in the transfusion group than in the control group (57 per cent vs. 27 per cent; P = 0.002). Thirty-five per cent of the patients with pulmonary filtrates died, as compared with 5 per cent of those without filtrates. We conclude that prophylactic granulocyte transfusions should not be used during remission-induction chemotherapy in AML because the risks outweigh the benefits.

Bacterial Infections↗