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Biomedical subjects

U Martin

Publications and source records attributed to U Martin.

At least 91 records · Page 5Linked to original sources

The interaction of paracetamol with frusemide.

Following the administration of paracetamol (1 g 4 times per day) or placebo to 10 healthy female volunteers for 2 days, the pharmacological effects of intravenous frusemide (20 mg) were observed after a final dose of either paracetamol or placebo. Paracetamol pre-treatment had no effect on frusemide-induced diuresis or natriuresis. There was a significant reduction in the basal output of prostaglandin E2 (PGE2) with paracetamol pre-treatment (18.4 +/- 15.4 vs 7.6 +/- 5.0 ng h-1, P < 0.05; 95% confidence interval of the difference 0.2 to 21.8). Frusemide induced a transient increase in the urinary excretion rate of PGE2 and although this effect was reduced by paracetamol (46.6 +/- 50.9 vs 23.2 +/- 13.8) the differences in the change of excretion rate from baseline were not statistically significant (95% confidence interval of the difference -17.8 to 15.7). The basal level of 6-keto prostaglandin F1 alpha (PGF1 alpha) was less with paracetamol pre-treatment (61.7 +/- 41.1 vs 38.7 +/- 26.1 ng h-1, NS; 95% confidence interval of the difference -16.6 to 62.6) and the cumulative urinary output of PGF1 alpha in the 6 h after frusemide administration was significantly reduced (305.9 +/- 179.4 vs 181.8 +/- 100.2 ng h-1, P < 0.05; 95% confidence interval of the difference 32.2 to 216). The frusemide-induced rise in plasma renin activity was significantly less with paracetamol than placebo at 60 min (4.3 +/- 2.9 vs 2.7 +/- 1.9 ng ml-1 h-1, P < 0.01; 95% confidence interval of the difference 0.4 to 2.7).

6-Ketoprostaglandin F1 alpha↗

Adhesion of human lymphoid cell lines to immobilized carbohydrates and to bone-marrow stromal cell layers by surface sugar receptors.

Cell-surface sugar receptors may participate in interactions of lymphoid cells that influence their adhesive properties and proliferation. Their expression on cells of the pre-B line BLIN-I, the B-lymphoblastoid line Croco II, the myeloma line RPMI 8226 and the T-lymphoblastoid line CCRF-CEM was monitored with a panel of 14 types of chemically glycosylated E. coli beta-galactosidase at a non-saturating ligand concentration. Quantitative differences were determined for the capacity of the different cell types to bind constituents of the carbohydrate part of glycoconjugates. They were corroborated by analyses of binding for lactose-, beta-N-acetylgalactosamine-, beta-N-acetylglucosamine- and fucose-exposing neoglycoenzymes up to saturation levels. Values of dissociation constants of the tetrameric enzyme were in the range of 3-300 nM. Several types of sugar receptor led to carbohydrate-inhibitable adhesion of cells to 6 types of nitrocellulose-immobilized neoglycoprotein, their effectiveness being most obvious for the myeloma cells. Analyses of the carbohydrate-ligand-mediated adhesion of the other cell types revealed a comparatively decreased response. Only a few carbohydrates among the 7 types tested were effective in reducing cell adhesion to a far more complex ligand-bearing matrix than immobilized neoglycoproteins, namely bone-marrow stromal cell layers: sialic acid and N-acetylgalactosamine for B-lymphoblastoid cells and rhamnose for pre-B cells. These cellular interactions may encompass sugar receptors on the stromal cells and other types of molecular recognition in addition to the detected activities on the lymphoid cells.

Bone Marrow↗

The disposition of paracetamol and its conjugates during multiple dosing in patients with end-stage renal failure maintained on haemodialysis.

The disposition of oral paracetamol (1.0 g 3 times daily for 10 days) was studied in 6 patients with end-stage renal failure (creatinine clearance < 5 ml x min-1) maintained on haemodialysis 2 or 3 times per week. Blood was sampled daily for 10 days. The time of sampling depended on whether the patients were dialysed in the morning or afternoon but was always within 5 h of the last dose of paracetamol. On dialysis days samples were taken at the start of the session. The mean plasma concentration of paracetamol was 6.8 mg x l-1 after the first 24 h and subsequently varied little throughout the 10 days. Apparent steady-state plasma concentrations of 60.0 mg x l-1 and 54.5 mg x l-1 were reached for the glucuronide and sulphate conjugate of paracetamol respectively by the 2nd day of treatment with little variation throughout the remainder of the study. These steady-state concentrations of paracetamol glucuronide and sulphate were much lower than predicted. The steady-state plasma concentrations of the retained cysteine and mercapturate conjugates of paracetamol were low (5.7 and 3.7 mg x l-1, respectively) and there was no evidence of accumulation of these potentially toxic metabolites. It is not clear why regular dosing with paracetamol in haemodialysis patients did not cause the accumulation of paracetamol glucuronide or sulphate as predicted. There may be enterohepatic elimination of retained paracetamol conjugates or depletion of substrates such as inorganic sulphate during chronic dosing.

Acetaminophen↗

Influence of heparin and systemic lysis on coronary blood flow after reperfusion induced by the novel recombinant plasminogen activator BM 06.022 in a canine model of coronary thrombosis.

OBJECTIVES: We sought to evaluate whether anticoagulation by an intravenous heparin infusion prevents deterioration of coronary blood flow restored by the novel recombinant plasminogen activator BM 06.022, and to compare the effects of profound fibrinogenolysis with those of an intravenous bolus injection of heparin. BACKGROUND: Recent clinical studies indicate that heparin appears to be effective in reducing reocclusion when combined with recombinant tissue-type plasminogen activator (rt-PA), but that heparin is associated with an increased bleeding incidence. Therefore, the need for heparin has to be critically evaluated in the development of BM 06.022. METHODS: BM 06.022 is an unglycosylated variant of human tissue-type plasminogen activator. Thrombus formation in anesthetized open chest dogs was induced by electrical injury. Left circumflex coronary artery blood flow was monitored for 4 h using an electromagnetic flow probe. Twenty dogs were randomized to receive intravenous heparin (100 IU/kg bolus plus 100 IU/kg per h) in group B or saline solution in group A before an intravenous bolus injection of 200 kU/kg (= 0.34 mg/kg) BM 06.022 1 h after thrombus formation. Another 14 dogs were randomized to receive a single intravenous bolus injection of 200 IU/kg heparin plus 200 kU/kg BM 06.022 in group D or saline solution plus 1,000 kU/kg BM 06.022 in group C. RESULTS: In the absence of a systemic lytic state, heparin infusion prolonged (p < 0.05) the cumulative patency time (sum of time intervals during which the coronary artery was patent) to 204.3 +/- 7.4 min (group B) compared with 34.6 +/- 10.8 min with saline solution (group A), and increased (p < 0.05) the area under the curve for coronary blood flow versus time (AUCFlow) to 34.0 +/- 3.4 ml.h.min-1 compared with 7.7 +/- 4.6 ml.h.min-1. Profound fibrinogenolysis after administration of 1,000 kU/kg BM 06.022 (group C) and a single intravenous heparin injection (group D) did not differ in their effects on the cumulative patency time (182 +/- 30.3 vs. 177.5 +/- 25.4 min) and AUCFlow (36.0 +/- 10.3 vs. 30.5 +/- 4.8 ml.h.min-1), but these values were improved (p < 0.05) compared with those obtained after administration of saline solution plus 200 kU/kg BM 06.022 (group A). CONCLUSIONS: In the absence of a systemic lytic state, intravenous heparin is required as an adjunct to BM 06.022 to maintain coronary blood flow in dogs.

Analysis of Variance↗

Differential fibrinolytic properties of the recombinant plasminogen activator BM 06.022 in human plasma and blood clot systems in vitro.

The effects of the unglycosylated recombinant plasminogen activator BM 06.022, consisting of the kringle 2 and protease domains of tissue-type plasminogen activator (t-PA), on clot lysis were evaluated in an in vitro system. Fresh and aged 125I-labelled human platelet-poor (PPP) and platelet-rich plasma (PRP) and whole blood clots were immersed in human plasma. Clot lysis was quantitated by measurement of released 125I. Fresh PPP clots were time- and concentration-dependently lysed by BM 06.022, alteplase, melanoma t-PA (mt-PA), and urokinase. Fifty per cent clot lysis at 4 h required 3.2-, 6.4- and 15.2-fold higher nM concentrations of mt-PA, BM 06.022, and urokinase respectively compared with alteplase. Maximal lysis (Emax) at 4 h was similar (84.1-87.6%) for BM 06.022, alteplase, and mt-PA, but lower (65.3 +/- 0.6%) for urokinase. Emax for BM 06.022 was lower (P < 0.05) than for alteplase for fresh and aged PRP and whole blood clot lysis. These data suggest that in vitro BM 06.022 achieved, compared with alteplase, the same maximal efficacy in fresh PPP-clot lysis despite a lower potency, but was less effective in lysing aged and fresh PRP and whole blood clots.

Evaluation Studies as Topic↗

Rapid reversal of canine thromboembolic pulmonary hypertension by bolus injection of the novel recombinant plasminogen activator BM 06.022.

We used a canine model of embolic pulmonary hypertension induced by intravenous (i.v.) injection of autologous thrombi to evaluate whether the novel recombinant plasminogen activator (r-PA) BM 06.022 reversed pulmonary hypertension. The effects of BM 06.022 after bolus injection were compared with those of vehicle, alteplase, urokinase, and anistreplase in 6 dogs per group. Thirty minutes after initiation of treatment, the decrease in pulmonary artery pressure (PAP) caused by a bolus of 200 kU/kg (0.35 mg/kg) BM 06.022 was greater (p < 0.05) than that caused by a 2-h infusion of 1.33 mg/kg alteplase or of 40,000 U/kg urokinase and that caused by a bolus of 0.4 U/kg anistreplase but not that caused by a 15-min infusion of 1 mg/kg alteplase. At 3 h, all thrombolytic agents had reduced PAP equally. The greatest measured plasma concentration of BM 06.022 was higher (p < 0.05) than that of 2-h infused alteplase (4,498 +/- 716 vs. 519 +/- 119 IU/ml). We conclude that because of its bolus-pharmacokinetics, BM 06.022 more rapidly reversed thromboembolic pulmonary hypertension than did 2-h infusion of alteplase or urokinase or a bolus of anistreplase.

Animals↗

Cloning of the low-affinity murine granulocyte-macrophage colony-stimulating factor receptor and reconstitution of a high-affinity receptor complex.

A cDNA clone (clone 71) that encodes a low-affinity receptor for murine granulocyte-macrophage colony-stimulating factor (GM-CSF) has been isolated by direct expression. This molecule is the homologue of the human GM-CSF receptor alpha subunit, although homology between these molecules is surprisingly low (less than 35% amino acid identity). The cDNA encodes a polypeptide of 387 amino acids, which contains the conserved features of the hematopoietin receptor superfamily. When expressed in COS-7 cells, this clone encodes a protein that binds radiolabeled murine GM-CSF with low affinity. Coexpression of clone 71 with a cDNA corresponding to a low-affinity interleukin 3 (IL-3) receptor (AIC2A) did not alter the affinity of binding of either GM-CSF or IL-3. However, coexpression of clone 71 with the IL-3 receptor-related cDNA AIC2B generated high-affinity binding sites for murine GM-CSF but not murine IL-3. These studies show that clone 71 and AIC2B are capable of forming an alpha beta complex capable of binding murine GM-CSF with high affinity, while AIC2A appears not to be a component of the murine GM-CSF receptor.

Amino Acid Sequence↗

Efficient thyroid hormone formation by in vitro iodination of a segment of rat thyroglobulin fused to Staphylococcal protein A.

A polypeptide of 224 amino acids from the C terminus of rat thyroglobulin fused to Staphylococcal protein A (TgC 224), containing 3 tyrosines which have been shown to be hormonogenic in vivo (Tyr-2555, -2569 and -2748), forms thyroid hormones with relatively high efficiency upon in vitro enzymatic iodination using, most likely, the hormonogenic Tyr-2555 and Tyr-2569. Acetylcholinesterase, which has sequence and structural homology with the C terminus of the thyroglobulin molecule and bovine serum albumin, used as control proteins, formed thyroid hormones with lower efficiency. These results validate our experimental approach to define the structural requirements for thyroid hormone formation using thyroglobulin fragments.

Amino Acid Sequence↗

Pharmacokinetic and thrombolytic properties of unglycosylated recombinant tissue-type plasminogen activator (BM 06.021) produced in Escherichia coli.

Recombinant tissue-type plasminogen activator (rt-PA) was produced in Escherichia coli cells in order to obtain an unglycosylated rt-PA (BM 06.021) with increased thrombolytic potency due to altered pharmacokinetic properties. The pharmacokinetics were studied in rabbits upon intravenous infusion of 200 kU/kg over 30 min. The thrombolytic dose-response effects were evaluated in a rabbit model with 125I-labeled venous thrombi upon intravenous infusion over 4 h. The thrombolytic effects after intravenous bolus injection of 200 kU/kg BM 06.021 were investigated in a canine model of coronary artery thrombosis. All studies were performed comparing BM 06.021 with glycosylated rt-PA (alteplase). BM 06.021 demonstrated a longer (p less than 0.05) half-life (5.6 +/- 2.6 vs. 2.1 +/- 0.3 min) and a lower (p less than 0.05) clearance rate (7.5 +/- 0.8 vs. 22.2 +/- 3.1 ml.min-1.kg-1) than alteplase in rabbits upon intravenous infusion. The dose-response curve of BM 06.021 for thrombolysis in a rabbit model of jugular vein thrombosis was located to the left of that for alteplase with a 2.1-fold lower effective dose of 50% thrombolysis (ED50) of BM 06.021 (207 vs. 436 kU/kg). Intravenous bolus injection of 200 kU/kg BM 06.021 induced the same reperfusion rate (4/6) as intravenous infusion of 800 kU/kg alteplase over 90 min in a canine model of coronary artery thrombosis. The residual thrombus wet weight did not significantly differ between BM 06.021 and alteplase (5.7 +/- 1.8 vs. 6.3 +/- 1.1 mg). The results indicate that unglycosylated rt-PA (BM 06.021) has a higher in vivo thrombolytic potency than glycosylated rt-PA (alteplase).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Evaluation of thrombolytic and systemic effects of the novel recombinant plasminogen activator BM 06.022 compared with alteplase, anistreplase, streptokinase and urokinase in a canine model of coronary artery thrombosis.

The thrombolytic and systemic effects of BM 06.022 were evaluated and compared with those of alteplase, anistreplase, streptokinase and urokinase in a canine model of coronary artery thrombosis. BM 06.022 consists of the kringle-2 and protease domains of human tissue plasminogen activator (t-PA) and is unglycosylated because of its expression in Escherichia coli cells. Thrombus formation in anesthetized open chest dogs was induced by electrical injury to the intimal surface of the left circumflex coronary artery at a high level site of obstruction. In heparinized dogs, none of six vehicle-treated animals exhibited reperfusion. Reperfusion was achieved in four of six dogs at 18.3 +/- 6 min after intravenous bolus injection of 140 kU/kg (0.24 mg/kg) of BM 06.022, whereas four of six dogs exhibited reperfusion later (p less than 0.05) at 76.5 +/- 16.1 min during infusion of 1.33 mg/kg of alteplase (0.13 mg/kg as initial bolus injection, followed by 0.66 mg/kg over 1 h and 0.53 mg/kg over 2 h). Significantly later (p less than 0.05) reperfusion than that achieved with BM 06.022 was achieved in five of six dogs at 57.8 +/- 12.1 min after intravenous injection of 0.4 U/kg of anistreplase. Streptokinase (21,000 IU/kg over 60 min) and urokinase (20,000 IU/kg as an intravenous bolus injection, followed by 20,000 IU/kg over 89 min) each induced reperfusion in three of six dogs but at 67 +/- 12 and 84.3 +/- 17.1 min (p less than 0.05 vs. BM 06.022), respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Biochemical properties of the kringle 2 and protease domains are maintained in the refolded t-PA deletion variant BM 06.022.

BM 06.022 is a t-PA deletion variant which comprises the kringle 2 and the protease domain. Production of BM 06.022 in Escherichia coli leads to the formation of inactive inclusion bodies, which have to be refolded by an in vitro refolding process to achieve activity and proper structure of the domains. We analysed the biochemical properties of BM 06.022 to obtain some information about the structure of kringle 2 and the protease as compared with the structure of these domains in the intact t-PA molecule. The kinetic analysis of the amidolytic activity of BM 06.022 and CHO-t-PA yielded similar values for kcat (13.9 s-1 and 11.4 s-1 for the single chain forms and 33.9 s-1 and 27.1 s-1 for the two chain forms of BM 06.022 and CHO-t-PA, respectively) and for Km (2.5 mM and 2.1 mM for the single chains forms and 0.5 mM and 0.3 mM for the two chain forms of BM 06.022 and CHO-t-PA, respectively). BM 06.022 and CHO-t-PA have the same plasminogenolytic activity in the absence of CNBr fragments of fibrinogen. However, BM 06.022 has a lower plasminogenolytic activity in the presence of CNBr fragments of fibrinogen and a lower affinity to fibrin as compared with CHO-t-PA. The affinity of BM 06.022 for fibrin is completely suppressed by 0.3 mM epsilon-aminocaproic acid, while the intact t-PA has a residual affinity of approximately 30%. The dissociation constants for the interaction with the lysine analogue epsilon-aminocaproic acid are 0.10 mM and 0.09 mM for BM 06.022 and the intact t-PA, respectively. Furthermore, BM 06.022 and CHO-t-PA are inhibited by PAI-1 in a similar manner.

Amidohydrolases↗

Double bolus administration of the novel recombinant plasminogen activator BM 06.022 improves coronary blood flow after reperfusion in a canine model of coronary thrombosis.

Reocclusion of coronary arteries is a major problem after successful thrombolysis in patients with acute myocardial infarction. We evaluated in a canine model of coronary thrombosis which is known to elicit reocclusion, whether an increased single i.v. bolus dose or two boli of the novel t-PA variant BM 06.022 improved coronary blood flow after reperfusion compared to i.v. injection of a standard single dose of BM 06.022. Double bolus administration, but not an increased single bolus dose of BM 06.022 significantly increased the maximum achieved coronary blood flow, prolonged the cumulative patency time, maintained blood flow at the end of the experiments, and reduced residual thrombus wet weight. Thus, double bolus administration improves coronary blood flow after reperfusion in the dog.

Animals↗

Pharmacokinetic parameters of recombinant mast cell growth factor (rMGF).

The gene product of the murine Steel (Sl) locus encodes an early-acting hematopoietic growth factor that is a ligand for the c-kit protooncogene. Several cDNAs for the Sl gene product, known as mast cell growth factor (MGF), stem cell factor (SCF), or kit ligand (KL), have recently been isolated, and both soluble and membrane-associated versions have been shown to be biologically active. The potential for therapeutic usage of recombinant MGF (rMGF) indicated a need for determining the biodistribution and elimination parameters of this cytokine. Pharmacokinetic studies demonstrated that radiolabeled rMGF had a distribution half-life of 2 min and an elimination half-life of 2.1 h in wild-type mice following iv injection, during which a striking localization of labeled rMGF in the lungs was noted. When administered by subcutaneous injection the elimination half-life was prolonged to 8.4 h. The primary sites of rMGF elimination appeared to be the kidneys and the liver. Pharmacokinetic analysis of labeled rMGF in mutant Sl/Sld mice, which are mast cell deficient, demonstrated similar distribution and elimination half-lives compared to wild-type mice (1.4 min and 1.8 h, respectively). In addition, the biodistribution pattern of the labeled rMGF in Sl/Sld mice was similar to that observed in wild-type mice, including the striking localization to the lungs. Binding of radiolabeled rMGF to lungs in vivo subsequent to iv injection was completely inhibited by excess unlabeled rMGF. Interestingly, mice that received an iv injection of the higher doses of rMGF (15 micrograms) demonstrated profound respiratory distress and hypotension within minutes of administration. Histologic analysis of lungs from such mice revealed extensive mast cell degranulation, which was associated with vasodilatation and pronounced hyperemia of virtually all pulmonary vessels. The respiratory distress in normal mice was probably a consequence of mast cell degranulation induced by rMGF since similar findings were not observed in Sl/Sld mice injected with identical concentrations of rMGF.

Animals↗

Hirudin and sulotroban improve coronary blood flow after reperfusion induced by the novel recombinant plasminogen activator BM 06.022 in a canine model of coronary artery thrombosis.

Thrombus formation in anesthetized, open-chest dogs was induced by electrical injury to the intimal surface of the left circumflex coronary artery. One-hour postocclusion, administration of vehicle to heparinized dogs (n = 12) did not induce reperfusion despite concomitant treatment with acetylsalicylic acid (ASA), sulotroban, or saline. Intravenous bolus injection of 140 kU/kg (= 0.24 mg/kg) of the unglycosylated t-PA variant BM 06.022 induced reperfusion in 4 out of 6 dogs, followed by flow deterioration. Pretreatment with i.v. ASA did not improve coronary blood flow (CBF). Conjunctive treatment with the thromboxane A2-receptor antagonist, sulotroban, (10 mg/kg i.v. bolus, followed by 10 mg/kg/h) or with recombinant hirudin, a specific thrombin inhibitor, (1 mg/kg/h) 30 min prior to i.v. injection of BM 06.022, prolonged (p < 0.01) the cumulative patency time (sum of time-intervals in which the coronary artery was patent) to 147.4 +/- 9.2 min in 4 out of 6 reperfused dogs and 129.9 +/- 12.3 min in 7 out of 8 dogs, respectively, compared to the saline plus BM 06.022 treatment (47.5 +/- 13.1 min) in 4 out of 6 dogs. The terminal CBF was higher (p < 0.01) after sulotroban plus BM 06.022 (7.0 +/- 1.7 ml/min) and hirudin plus BM 06.022 (6.3 +/- 1.5 ml/min) than after saline plus BM 06.022 (0.8 ml/min). These findings demonstrate that drugs with antithromboxane or antithrombin activity may improve CBF after reperfusion.

Animals↗

Pharmacokinetic and hemostatic properties of the recombinant plasminogen activator bm 06.022 in healthy volunteers.

In a randomized, single-blind, placebo-controlled, cross-over Phase-I study pharmacokinetic and hemostatic properties of BM 06.022 were investigated in seven healthy, male human volunteers. The novel recombinant plasminogen activator BM 06.022 consists of the kringle 2 domain and the protease domain of human t-PA and is unglycosylated due to its expression in Escherichia coli cells. Vehicle or 6 MU (= 10.4 mg) BM 06.022 was administered as a single i.v. bolus injection of 10 ml over 2 min. BM 06.022 was well tolerated. Fibrinogen levels and clotting times remained unchanged at baseline levels after 6 MU BM 06.022; plasminogen and alpha 2-antiplasmin (collected on chloromethylketone) decreased maximally to 83 +/- 1% and 64 +/- 3%, respectively, of baseline. D-dimers and fibrinogen degradation products increased to 1,006 +/- 234 ng/ml and 555 +/- 155 ng/ml, respectively, after BM 06.022. Half-life of BM 06.022-activity was 11.2 +/- 0.4 min and of antigen was 13.9 +/- 0.7 min, followed by a terminal half-life only for antigen of 173 +/- 33 min. Plasma clearance of BM 06.022 was 371 +/- 13 ml/min for activity and 183 +/- 15 ml/min for antigen. Thus, BM 06.022 is not fibrinogenolytic at 6 MU and is a fibrinolytic agent with a longer half-life than t-PA.

Adult↗

Enhanced hematopoietic activity of a human granulocyte/macrophage colony-stimulating factor-interleukin 3 fusion protein.

Granulocyte/macrophage colony-stimulating factor-interleukin 3 (GM-CSF-IL-3) fusion proteins were generated by construction of a plasmid in which the coding regions of human GM-CSF and IL-3 cDNAs were connected by a synthetic linker sequence followed by subsequent expression in yeast. Both GM-CSF-IL-3 and IL-3-GM-CSF fusion proteins were purified to homogeneity and shown to bind to cell-surface receptors through either their GM-CSF or IL-3 domains. The fusion proteins exhibited enhanced receptor affinity, proliferative activity, and hematopoietic colony-stimulating activity compared with either IL-3 and/or GM-CSF alone. This suggests that GM-CSF-IL-3 fusion proteins may hold future promise as therapeutic agents.

Base Sequence↗

Thrombolysis with an Escherichia coli-produced recombinant plasminogen activator (BM 06.022) in the rabbit model of jugular vein thrombosis.

The recombinant plasminogen activator BM 06.022 consists of the kringle 2 and the protease domains of human t-PA and is unglycosylated because of the expression in Escherichia coli. The thrombolytic and pharmacokinetic properties as well as the hemostasis effects of BM 06.022 were investigated in the rabbit model of jugular vein thrombosis. The thrombi were 125I-fibrin labeled. Intravenous bolus injection of 50, 100, 200, and 400 kU/kg BM 06.022 or 400, 800, and 1600 kU/kg alteplase over 15 s to six rabbits/dose produced a dose-dependent increase of thrombolysis determined 2 h post injection. The dose-response curve of BM 06.022 was located left compared with that of alteplase. The effective dose of 50% thrombolysis (ED50) obtained by half-logarithmic regression analysis was 163 kU/kg (= 0.28 mg/kg) for BM 06.022 and 871 kU/kg (= 1.09 mg/kg) for alteplase. At equipotent doses (50% thrombolysis), the residual concentration of fibrinogen was 74.2% and 76.5%, that of plasminogen 66.7% and 69.4%, and that of alpha 2-antiplasmin 47.3% and 46% for BM 06.022 and alteplase, respectively. Pharmacokinetic analysis for plasma activity at a dose of 400 kU/kg revealed a half-life of 18.9 +/- 1.5 min for BM 06.022, whereas alteplase was distributed with a half-life of 2.1 +/- 0.1 min, accounting for 86.7 +/- 1.9% of the total AUC, followed by a beta-phase with a half-life of 13.8 +/- 0.9 min. Plasma clearance of BM 06.022 was 4.7 +/- 0.7 ml min-1 kg-1 compared with 20 +/- 1.2 ml min-1 kg-1 for alteplase.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗