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Biomedical subjects

B Adelman

Publications and source records attributed to B Adelman.

At least 37 records · Page 2Linked to original sources

Heparin inhibition of von Willebrand factor-dependent platelet function in vitro and in vivo.

The intravenous administration of heparin to patients before open heart surgery reduced ristocetin cofactor activity by 58% (P less than 0.01, t test), and this impairment of von Willebrand factor-dependent platelet function was closely related to plasma heparin levels (r2 = 0.9), but not to plasma von Willebrand factor (vWF) levels. We hypothesized that heparin may inhibit vWF-dependent platelet hemostatic functions by directly binding vWF in solution and interfering with vWF-GpIb binding. Using the in vitro techniques of ristocetin-induced platelet agglutination, fluorescent flow cytometric measurement of vWF-platelet binding, and conventional radioligand binding assays we observed that heparin inhibited both vWF-dependent platelet function and vWF-platelet binding in a parallel and dose-dependent manner. Heparin also inhibited platelet agglutination induced by bovine vWF and inhibited the binding of human asialo-vWF to platelets in ristocetin-free systems. The inhibitory potency of heparin was not dependent upon its affinity for antithrombin III, but was molecular weight dependent: homogeneous preparations of lower molecular weight were less inhibitory. Heparin impairment of vWF function may explain why some hemorrhagic complications of heparin therapy are not predictable based on techniques for monitoring the conventional anticoagulant effects of heparin.

Agglutination↗

Aurintricarboxylic acid in a canine model of coronary artery thrombosis.

Platelet thrombus formation occurs at sites of severe arterial narrowing where shear stress is elevated. Shear stress appears to induce platelet aggregation in vitro by means of initiation of von Willebrand factor binding to platelet glycoprotein Ib. Recent in vitro studies have demonstrated that aurintricarboxylic acid can inhibit shear stress-induced platelet aggregation. This effect is mediated by aurintricarboxylic acid binding to von Willebrand factor; this binding results in inhibition of von Willebrand factor interaction with glycoprotein Ib. In this study, we examined the effect of aurintricarboxylic acid on platelet-dependent cyclic flow reductions (CFRs) in a canine coronary stenosis model. In dose-response experiments, six animals received 4 mg/kg aurintricarboxylic acid by bolus infusion, followed by 1 mg/kg every 10 minutes. Total inhibition of CFRs was observed in all animals after 6.7 mg/kg aurintricarboxylic acid; CFRs could not be reinitiated by the thromboxane A2 analogue U46619. Continuous infusion of epinephrine (0.4 micrograms/kg/min) caused CFRs to return; however, 3.7 mg/kg additional aurintricarboxylic acid again induced total inhibition of CFRs. In addition, five animals received a bolus infusion of 10 mg/kg aurintricarboxylic acid, which caused total inhibition of CFRs. The average area of stenosis in the constricted vessels was 83%, and shear stress at the site of constriction averaged 350 dynes/cm2. Aurintricarboxylic acid did not alter hemodynamics, thrombin time, platelet count, or ADP/epinephrine-induced platelet aggregation. These data indicate that platelet glycoprotein Ib-von Willebrand factor interactions are important during coronary occlusion and that aurintricarboxylic acid can inhibit coronary thrombosis associated with coronary constriction.

Animals↗

Synergistic inhibition of platelet aggregation by fibrinogen-related peptides.

We have evaluated the ability of the fibrinogen-related peptides Gly-Arg-Gly-Asp-Ser (GRGDS), Gly-Gln-Gln-His-His-Leu-Gly-Gly-Ala-Lys-Gln-Ala-Gly-Asp-Val (gamma-chain peptide), and Gly-Pro-Arg-Pro (GPRP) to inhibit platelet aggregation in platelet-rich plasma individually and in combination. When used alone, GRGDS totally inhibited ADP-induced aggregation of human platelets in platelet-rich plasma; however, the maximum inhibitory effect of the other peptides was less than 80%. The concentrations necessary to inhibit platelet aggregation in plasma by 50% were 100 mumols/l and 1 and 3.2 mmol/l for GRGDS, gamma-chain peptide, and GPRP, respectively. When evaluating the effect of peptide mixtures, we discovered that the combination GPRP + GRGDS worked together synergistically (p less than 0.001, analysis by surface response methodology), whereas GPRP + gamma-chain peptide did not. For example, our analysis indicated that a mixture of 50 mumols/l GRGDS plus 180 mumols/l GPRP would produce 50% inhibition of platelet aggregation. This is an effect twofold greater than that produced by 50 mumols/l GRGDS alone, and one that would require an 18-fold greater concentration of GPRP if used alone. These data indicate that the combination GPRP + GRGDS inhibited platelet aggregation in plasma in a synergistic fashion and suggest the potential value of their combined use in antithrombotic therapy.

Adenosine Diphosphate↗

Plasminogen interactions with immobilized fibrinogen.

This report describes the binding of plasminogen to fibrinogen adsorbed onto polystyrene wells. Binding was determined by enzyme linked immunosorbent assay. Both glu- and lys-plasminogen bound to immobilized fibrinogen in a dose-dependent fashion. However, more lys- than glu-plasminogen bound when equal concentrations of either were added to immobilized fibrinogen. Plasminogen binding was inhibited by epsilon aminocaproic acid indicating that binding was mediated via lysine-binding regions of plasminogen. Soluble fibrinogen added in excess of immobilized fibrinogen did not compete for plasminogen binding but fibrinogen fragments produced by plasmin digestion of fibrinogen did. Treatment of immobilized fibrinogen with thrombin caused a small but significant (p less than 0.01) increase in plasminogen binding. These studies demonstrate that immobilized fibrinogen binds both glu- and lys-plasminogen and that binding is mediated via lysine-binding regions. These interactions may facilitate plasminogen binding to fibrinogen adsorbed on to surfaces and to cells such as platelets which bind fibrinogen.

Aminocaproic Acid↗

Heparin-associated thrombocytopenia: observations on the mechanism of platelet aggregation.

We investigated the mechanism of heparin-mediated platelet aggregation in 11 patients with heparin-associated thrombocytopenia. Severe thrombocytopenia (16,000 to 66,000 platelets/microliters) developed in each patient during heparin therapy, and platelet aggregation occurred in vitro when heparin was added to mixtures of patient plasma and normal platelet-rich plasma. In 10 patients, heparin-initiated platelet aggregation was inhibited by preincubation of mixtures of normal platelet-rich plasma and heparin-associated thrombocytopenia plasma with monoclonal antiglycoprotein Ib antibodies 6D1 or LJ-Ib1. Both antibodies are directed against the von Willebrand factor binding site on glycoprotein Ib and inhibit only ristocetin-induced platelet agglutination. Purified immunoglobulin G (IgG) from patients with heparin-associated thrombocytopenia also supported heparin-induced aggregation, but equivalent amounts of antigen-binding fragments [F(ab')2] did not. We also found that F(ab')2 of LJ-Lb1 did not inhibit heparin-induced platelet aggregation but retained inhibitory activity against ristocetin-induced platelet agglutination. The monoclonal antibody 3G6, directed against the alpha-chain of glycoprotein Ib but not inhibitory of ristocetin-induced platelet agglutination, had no effect on heparin-induced platelet aggregation. Antibodies to von Willebrand factor that inhibit ristocetin-induced platelet agglutination did not inhibit heparin-mediated platelet aggregation, but antibodies to glycoprotein IIb-IIIa blocked aggregation. These data suggest that platelet aggregation in heparin-associated thrombocytopenia may be initiated by an interaction between patient IgG, heparin, and the platelet surface. Platelet activation appears to be mediated by a platelet surface crystallizable fragment (Fc) receptor.(ABSTRACT TRUNCATED AT 250 WORDS)

Heparin↗

Characterization of platelet binding of heparins and other glycosaminoglycans.

The binding of glycosaminoglycans to intact washed human platelets was studied. The platelet binding of a 3H-labeled unfractionated heparin was saturable and reached equilibrium in 10-15 minutes. Heparin binding was specific: a 50-fold molar excess of an equivalent unlabeled heparin displaced up to 90% of labeled heparin, while chondroitin sulfate A and hyaluronic acid minimally displaced the binding of labeled heparin. Low molecular weight heparin fragments showed intermediate efficacy in displacing the binding of unfractionated [3H]heparin. Dextran sulfate (Mr 8,000, sulfation 17%) was as potent as unfractionated heparin in displacing binding, while neutral dextrans were ineffective. We observed that platelet activation by the calcium ionophore A23187 increased heparin binding by 2 to 3-fold, principally by enhancement of binding capacity not binding affinity. This process of heparin binding to the platelet surface may mediate some of the reported effects of heparin on platelet behavior.

Binding, Competitive↗

Identification and isolation of a platelet GPIb-like protein in human umbilical vein endothelial cells and bovine aortic smooth muscle cells.

Glycoprotein Ib (GPIb) is an intrinsic platelet membrane protein that plays a major role in platelet adherence and mediates ristocetin-dependent platelet von Willebrand factor binding. Recent reports that the platelet membrane glycoprotein complex IIb/IIIa is expressed in several cell types prompted us to look for GPIb expression in other vascular cells. Immunoperoxidase staining of human stomach and skin histologic sections with polyclonal as well as monoclonal anti-GPIb antibody revealed the presence of GPIb in the endothelial cell and smooth muscle cell layers. Western blotting using monospecific polyclonal anti-GPIb antibodies confirmed the presence of immunoreactive GPIb in human umbilical vein endothelial and bovine aortic smooth muscle cell cultures. Fab fragments of a monoclonal anti-GPIb antibody were used to immunoprecipitate [3H]leucine labeled GPIb from metabolically labeled cells. The GPIb in these cells was functional as measured by ristocetin-dependent cell agglutination and by vWF binding. Endothelial cells as well as smooth muscle cells bound 125I-labeled vWF in a ristocetin-dependent manner, with a Kd of 7.9 nM.

Agglutination↗

Platelet storage results in a redistribution of glycoprotein Ib molecules. Evidence for a large intraplatelet pool of glycoprotein Ib.

Platelet membrane glycoprotein (GP) Ib contains receptor for von Willebrand factor and thrombin. Its proteolytic fragment, glycocalicin, circulates in normal plasma. In this study, storage of platelet concentrates for 5 d resulted in a 221% increase in plasma glycocalicin (1.3 times the total amount of glycocalicin present on the surface of all platelets), an 8% overall increase in platelet surface GPIb, and the appearance of a surface GPIb-negative subpopulation of platelets. Total platelet GPIb content of fresh washed platelets, determined by gel electrophoresis and immunoassay of Triton X-100 lysates, averaged 159,740 molecules per platelet. There were 36,360 surface GPIb molecules per platelet, determined by immunoassay of the supernatant of fresh washed platelets whose surface GPIb had been completely plasmin-cleaved. In summary, these studies provide evidence for (a) a redistribution of GPIb molecules with platelet storage, and (b) a large intraplatelet pool of GPIb (approximately threefold larger than the platelet surface pool of GPIb).

Antibodies, Monoclonal↗

Surgical management of heparin-associated thrombocytopenia. Strategies in the treatment of venous and arterial thromboembolism.

We report the vascular surgical strategies and results in 13 patients with heparin-associated thrombocytopenia and describe useful in vitro techniques for the evaluation of anticoagulant therapy. Thirteen of 40 patients with heparin-associated thrombocytopenia had 18 cardiovascular procedures done to save life or limb. Greenfield filters were placed in eight patients to prevent pulmonary embolism. Eight patients had 10 arterial procedures, with alternative anticoagulation that used dextran or warfarin in five cases. In three cases iloprost, a derivative of prostacyclin and a potent platelet inhibitor, was infused intraoperatively and heparin was given. Both the use of alternative anticoagulants and platelet suppression by iloprost were clinically effective strategies. The concurrent measurement of plasma levels of beta-thromboglobulin and fibrinopeptide A in two patients confirmed that both approaches can successfully prevent activation of platelets and plasma coagulation during arterial surgery. One operative death occurred; all vascular reconstructions remained patent at 3 to 6 months. In two patients who received heparin alone for arterial surgery, both procedures resulted in thrombosis and limb loss. When major venous thromboembolism is complicated by heparin-associated thrombocytopenia, insertion of a Greenfield vena cava filter should be considered if there is significant risk of pulmonary embolism. When necessary, arterial surgery is feasible in patients with heparin-associated thrombocytopenia if alternative anticoagulation or adequate suppression of platelet reactivity can be achieved.

Dextrans↗

Plasminogen interactions with platelets in plasma.

In this report we used a fluorescent flow cytometry-based assay to examine plasminogen binding to platelets in plasma. Our data indicate that platelets activated in platelet-rich plasma (PRP) by adenosine-5'-diphosphate (ADP) or thrombin bind plasminogen to their surface. Fab fragments of the monoclonal antibody LJ-CP8 that are directed against the fibrinogen binding site on the glycoprotein (GP) IIb-IIIa complex inhibit both plasminogen and fibrinogen binding to ADP-stimulated platelets as does 5 mmol/L EDTA. Platelet aggregation and plasminogen and fibrinogen binding are also concurrently inhibited by the Gly-Arg-Asp (RGD) analogue Gly-Arg-Gly-Asp-Ser (GRGDS) when it is added to PRP before ADP stimulation. The scrambled peptide analogue SDGRG has no effect. The monoclonal antibody 6D1, directed against the von Willebrand factor binding site on GPIb, has no effect on plasminogen-platelet binding, nor does antithrombospondin antibody. epsilon-Aminocaproic acid (EACA), however, inhibits plasminogen binding to ADP-activated platelets. These data indicate that plasminogen binds to platelets activated in plasma, that binding occurs on platelet GPIIb/IIIa, and that binding may be mediated via plasminogen association with fibrinogen via lysine binding domains. Finally, we found both plasminogen and fibrinogen on resting platelets in PRP and demonstrated that they are equally displaced by EDTA, LJ-CP8, and 10E5 (an additional anti-GPIIb/IIIa monoclonal antibody). Plasminogen is also equally displaced by EACA. These data suggest that plasminogen is also bound to GPIIb/IIIa on resting platelets, possibly also via interaction with fibrinogen.

Adenosine Diphosphate↗

HL-60-1E3, a novel phorbol diester-resistant HL-60 cell line.

The HL-60 (human promyelocytic leukemia) cell line has proved to be a useful model for the study of the expression of cellular functions and markers associated with hematopoietic differentiation. We report here the development and initial characterization of a novel, differentiation-resistant HL-60 cell line (HL-60-1E3) which was established by cloning the parent HL-60 line in the absence of mutagens or differentiation-inducing agents. HL-60-1E3 exhibits markedly reduced phorbol diester-induced expression of extracellular cytolytic activity, nonspecific esterase, phagocytosis, and surface Mo1 antigen. In addition, dimethyl sulfoxide-induced expression of both Mo1 and Mo2 is markedly reduced. However, if HL-60-1E3 is exposed to dimethyl sulfoxide, it acquires appreciable phorbol diester-triggered cytolytic activity and production of superoxide anion (O2-). Phorbol diester receptor number and dissociation constant (Kd) obtained by Scatchard analysis are not significantly different for the two cell lines. The HL-60-1E3 cell line should provide a useful adjunct to other cell lines used in the study of normal myeloid and leukemic cell differentiation, as well as the study of cytokine maturation factors and oncogene expression.

Antibodies, Monoclonal↗

von Willebrand factor is present on the surface of platelets stimulated in plasma by ADP.

von Willebrand factor (vWf) can bind to glycoprotein (GP) IIb/IIIa on activated platelets. The significance of this interaction is unclear, however, because it has not been possible to detect vWf binding to GPIIb/IIIa on platelets stimulated in plasma. We have developed an indirect, flow cytometry assay that uses fluorescein-labeled antibodies to detect vWf and fibrinogen on platelets. Using this assay, we found vWf on the surface of platelets stimulated in plasma by ADP. The number of platelets that bound vWf increased in proportion to ADP concentration and incubation time. Washed platelets in a protein-free buffer activated by 1 mumol/L calcium ionophore A23187 or 10 mumol/L ADP also bound vWf, suggesting that we were detecting surface binding of alpha-granule-derived vWf. Monoclonal antibodies against the vWf binding site on GPIb (6D1) and the vWf and fibrinogen binding sites on GPIIb/IIIa (LJP5 and LJ-CP8, respectively) were used to characterize the mechanism of vWf binding to stimulated platelets. Ristocetin-induced binding of vWf was inhibited by 6D1, and ADP-induced binding of fibrinogen was inhibited by LJ-CP8. None of these antibodies inhibited ADP-induced vWf binding. Aspirin and prostaglandin E1 also inhibited ADP-induced binding of vWf in platelet-rich plasma. During platelet activation in plasma, vWf derived from alpha-granules becomes bound to the platelet surface possibly being transferred already associated with a binding site.

Adenosine Diphosphate↗

Dextran 40 reduces heparin-mediated platelet aggregation.

Using platelet aggregometry, we investigated the in vitro efficacy of dextran, mean MW 40,000, in reducing the heparin-mediated platelet aggregation seen with the syndrome of heparin-associated thrombocytopenia (HAT). Six patients with the clinical syndrome of HAT were studied who had a plasma factor which induced aggregation of normal platelets in the presence of heparin. At a final concentration of 2% (20 mg/ml) Dextran 40 reduced heparin-stimulated aggregation by 60.5 +/- 36% (SD) in mixtures of normal platelet-rich plasma/HAT patient plasma. In contrast, the same dextran concentration reduced ADP-stimulated aggregation of normal platelet-rich plasma by only 18.6 +/- 12%. This selective inhibition of heparin-mediated aggregation by dextran was highly significant (P less than 0.005, Wilcoxon rank sum). Whereas protamine abolished heparin's anticoagulant and platelet aggregating activity, dextran had no effect on heparin's anticoagulant properties. These data show that Dextran 40 selectively blocks heparin-mediated aggregation in vitro, perhaps by blocking heparin binding to the platelet membrane. This study suggests that dextran may be a clinically useful adjunct in the treatment of HAT, and describes a simple method for testing the efficacy of drugs in the treatment of HAT.

Adenosine Diphosphate↗

Proteolysis of platelet glycoprotein Ib by plasmin is facilitated by plasmin lysine-binding regions.

We have characterized the effects of plasmin on glycoprotein Ib (GpIb), a platelet membrane receptor for von Willebrand factor (vWF), and on glycocalicin, a fragment of the alpha chain of GpIb that contains the vWF-binding region. The addition of 4.5 X 10(-7) mol/L plasmin to washed platelets caused a time-dependent decrease in ristocetin-induced, vWF-dependent platelet agglutination. epsilon-Aminocaproic acid (EACA) inhibited plasmin release of glycocalicin-related antigen from washed platelets and preserved vWF-dependent platelet agglutination, thus indicating that the lysine-binding sites on plasmin facilitated its degradation of GpIb. To demonstrate a direct interaction between plasmin and the vWF-binding region of GpIb we incubated purified glycocalicin with plasmin. Plasmin degraded the glycocalicin into two small carbohydrate-poor peptides and into a larger carbohydrate-rich fragment. EACA was able to inhibit plasmin-mediated degradation of glycocalicin in a concentration-dependent fashion. These studies indicated that plasmin degradation of GpIb was due to a direct interaction between plasmin and GpIb and that this effect was mediated by the lysine-binding region of the plasmin molecule.

Aminocaproates↗

Plasmin inhibition of platelet function and of arachidonic acid metabolism.

To study interactions between platelets and the fibrinolytic system, we examined the effects of human plasmin on human platelets washed by gel filtration. Plasmin concentrations that did not affect platelet shape change, release, or aggregation (less than 1.0 caseinolytic units [CU]/ml) caused a dose- and time-dependent inhibition of platelet aggregation in response to thrombin, ionophore A23187, and collagen. Complete loss of aggregation occurred at 0.1-0.5 CU/ml of plasmin. In a parallel dose-dependent manner, plasmin likewise inhibited thrombin, ionophore, and collagen-stimulated thromboxane B2 production. In contrast, neither aggregation nor thromboxane B2 formation induced by arachidonate was inhibited by plasmin pretreatment of the platelets. Plasmin blocked the thrombin-induced release of [3H]arachidonic acid from platelet membrane phospholipids and the thrombin-induced platelet oxygen burst. However, plasmin did not inhibit the arachidonate-induced oxygen burst. Inhibition of arachidonic acid release by plasmin was not mediated by increase in platelet cyclic AMP. These results suggest that plasmin inhibits platelet function, at least in part, by blocking the mobilization of arachidonic acid from membrane phospholipid pools. The effects of plasmin on platelets may contribute to the hemostatic abnormalities seen in pathologic and pharmacologic fibrinolysis.

Arachidonic Acid↗

Refractoriness of platelets to prostaglandins after infusion in rabbits.

Continuous intravenous infusion of prostacyclin (prostaglandin I2, PGI2) in rabbits induced refractoriness to PGI2-induced inhibition of platelet function. Although inhibited during earlier stages, platelet response to adenosine diphosphate and thrombin became normal within 24 hours of PGI2 infusion. Cross-mixing experiments with platelets and plasma from infused and control animals suggested that the altered response to PGI2 was caused by a defect intrinsic in the platelets. PGI2-stimulated cyclic adenosine monophosphate (cAMP) production was reduced in platelets from infused rabbits as compared with those from controls. Platelets refractory to PGI2 were refractory to PGE1 and PGD2, as well. Because PGE1 but not PGD2 shares the same platelet receptor as PGI2, the phenomenon could not be ascribed to receptor-specific downregulation, which was also shown by refractoriness of platelets from infused rabbits to the nonprostanoid inhibitor of platelet function adenosine. Either increased concentrations of ineffective inhibitors or their combination with phosphodiesterase inhibitors overcame refractoriness of resistant platelets, which also responded to inhibition by dibutyryl cAMP, indicating residual activity of adenylate cyclase. That at least the catalytic subunit of the enzyme was still working in refractory platelets was shown by inhibition of aggregation induced by forskolin, a non-receptor-mediated activator of adenylate cyclase. Impairment of the adenylate cyclase regulatory subunit, possibly accompanied by multireceptor downregulation, may explain the paradoxical refractoriness of platelets to prolonged infusion of PGI2. Such an effect may limit the benefit of PGI2 in treatment of thromboembolic disease.

6-Ketoprostaglandin F1 alpha↗

Plasmin effect on platelet glycoprotein Ib-von Willebrand factor interactions.

We have studied the effect of streptokinase on platelets in platelet-rich plasma (PRP) and of plasmin on washed platelets. By three and one-half minutes after the addition of 50,000 IU/mL streptokinase to PRP, the maximum rate of ristocetin-induced platelet agglutination declined 40%, and by 60 minutes, it declined 70%. During the same time interval, the thrombin time increased from 20 seconds to over 120 seconds. At a concentration as low as 50 IU/mL, streptokinase reduced the maximum rate of ristocetin-induced platelet agglutination by 50% and prolonged the thrombin time to 1.5 times control value. Streptokinase added to PRP also caused inhibition of platelet aggregation following stimulation by 2.9 mumol/L adenosine diphosphate, 0.25 U/mL thrombin, and 0.025 mg/mL collagen. Plasmin, 0.05 to 1.0 CU/mL, reduced ristocetin-mediated agglutination of washed platelets in the presence of von Willebrand factor (vWF) from 66% of control to 2% of control, following a one-hour incubation. Autoradiograms produced following sodium dodecyl-polyacrylamide gel electrophoresis (SDS-PAGE) of plasmin-treated 125I-surface-labeled platelets demonstrated progressive loss of a protein with a molecular weight (mol wt) of 180,000; simultaneously, a protein with mol wt 135,000 appeared on autoradiograms produced following SDS-PAGE of the surrounding platelet medium. These proteins are similar in molecular weight to glycoprotein (gp) Ib, a platelet surface receptor for vWF, and glycocalicin, a proteolytic fragment of gpIb. By use of an enzyme-linked immunosorbent assay (ELISA) based immunoinhibition assay for glycocalicin, we were able to demonstrate that plasmin treatment of washed platelets released a glycocalicin-related antigen into the surrounding medium and that appearance of this material corresponding to loss of vWF-dependent, ristocetin-induced agglutination.

Blood Coagulation Factors↗