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Biomedical subjects

J L Moake

Publications and source records attributed to J L Moake.

At least 37 records · Page 2Linked to original sources

Effects of Integrelin on platelet function in flow models of arterial thrombosis.

The effects of intravenous Integrelin, an antagonist of platelet glycoprotein (GP) IIb-IIIa, were studied ex vivo in flow models of platelet adhesion/aggregation in patients undergoing angioplasty. Blood was collected from each patient before, during, and after a 24-h Integrelin infusion (0.75 micrograms/kg/min; plasma Integrelin levels, 312-759 ng/ml). The effects of Integrelin administered in vivo were evaluated by using two different models of platelet thrombus formation: (a) platelet adhesion onto von Willebrand factor (vWF)/collagen, followed by platelet aggregation, in a perfusion system; and (b) direct platelet aggregation induced by elevated levels of shear stress imposed by a cone-and-plate viscometer. Neither aspirin nor heparin, also given to the patients, affected platelet adhesion or aggregation in these flow models. In the perfusion studies, platelet adhesion to vWF/collagen I was not inhibited by in vivo Integrelin. In contrast, in each of the six patients studied by using blood collected after 45 min of Integrelin infusion, there was a decrease in the size of platelet aggregates compared with patient baseline samples. In the viscometer experiments, shear-induced platelet aggregation was reduced by 61-71% in samples collected 45 min into the Integrelin infusion (plasma Integrelin levels: 759 +/- 69 ng/ml) compared with baseline samples. Within 24-48 h after termination of the Integrelin, direct shear-induced platelet aggregation and platelet aggregation subsequent to adhesion returned to or near baseline in each of the patients studied. We conclude that Integrelin administered in vivo inhibits both platelet aggregation subsequent to initial platelet adhesion and direct shear-induced platelet aggregation under pathologic flowing conditions, After discontinuation of the drug, these inhibitory effects do not persist in vivo as long as the inhibitory effect on aggregation produced by c7E3 (the monoclonal antibody against GPIIb-IIIa).

Blood Platelets↗

Thrombotic microangiopathies associated with drugs and bone marrow transplantation.

This type of thrombotic microangiopathy more commonly resembles the hemolytic-uremic syndrome (HUS) than thrombotic thrombocytopenic purpura (TTP). The syndrome has been associated with the use of cyclosporin, mitomycin C, combinations of other chemotherapeutic and immunosuppressive agents, and total body irradiation. Endothelial cell injury and von Willebrand factor may be involved in pathogenesis of the intravascular platelet aggregation and tissue (especially renal) ischemia and infarction that characterize the entity. The most effective therapy for thrombotic microangiopathy associated with drugs and bone marrow transplantation has not been determined.

Antineoplastic Agents↗

Familial infantile thrombotic thrombocytopenic purpura.

PURPOSE: To further define familial infantile thrombotic thrombocytopenic purpura and clarify its pathophysiology, we describe a family with two infants presenting with this rare syndrome. RESULTS: Complete, but temporary remission followed the transfusion of whole blood in the first sibling and fresh frozen plasma (FFP) in the second. Periodic FFP transfusions have kept the surviving proband in a prolonged clinical remission. The presence of unusually large von Willebrand factor multimers was demonstrated in the proband and the processing activity of these large multimers was found to be normal. CONCLUSION: The occurrence of this rare disorder, in siblings who are products of a consanguinous union, suggests an as yet uncharacterized genetic defect.

Female↗

Fibrinolysis inhibits shear stress-induced platelet aggregation.

BACKGROUND: Shear stress-induced platelet aggregation may initiate arterial thrombosis at sites of pathological blood flow. Shear stress-induced platelet aggregation is mediated by von Willebrand factor (vWf) binding to platelet membrane glycoprotein (GP) Ib and GP IIb/IIIa. Tissue-type plasminogen activator (TPA) induces thrombolysis in coronary arteries through the local generation of plasmin. Plasmin also proteolyses GP Ib and plasma vWf. METHODS AND RESULTS: Because these effects could mitigate shear stress-induced platelet aggregation, we investigated the effect of fibrinolytic agents on platelet aggregation in response to a pathological shear stress of 120 dynes/cm2 generated by a cone-and-platen rotational viscometer. Plasmin inhibited shear stress-induced aggregation of washed platelets, and this was associated with a decrease in GP Ib. TPA, at concentrations > or = 2000 IU/mL, significantly inhibited shear stress-induced platelet aggregation of platelet-rich plasma without a decrease in platelet GP Ib. In plasma-platelet mixing experiments, we determined that the TPA effect was localized to plasma. Purified vWf multimer degradation by TPA (in the presence of exogenous plasminogen) was associated with the loss of the capacity of vWf to support shear stress-induced platelet aggregation. CONCLUSIONS: These results demonstrate that TPA inhibits platelet aggregation in response to pathological shear stress by altering the multimeric composition of vWf. This effect of TPA on shear stress-induced platelet aggregation may contribute, along with fibrinolysis, to the therapeutic effect of TPA in restoring blood flow during acute coronary artery thrombosis.

Fibrinolysin↗

Platelet adhesion and aggregation on human type VI collagen surfaces under physiological flow conditions.

Type VI collagen is a subendothelial constituent that binds von Willebrand factor (vWF) and platelets. The interaction of platelets with type VI collagen and the roles of platelet glycoprotein (GP) receptors and vWF were studied under flow conditions using epi-fluorescent videomicroscopy coupled with digital image processing. We found that surface coverage was less than 6% on collagen VI at a relatively high-wall shear rate (1,000 s-1) and was approximately 60% at a low-wall shear rate (100 s-1). The molecular mechanisms involved in low-shear platelet binding were studied using monoclonal antibodies to platelet GPIb and GPIIb-IIIa, and polymeric aurin tricarboxylic acid. Anti-GPIIb-IIIa was the most effective in eliminating adhesion (surface coverage, 0.8%), followed by anti-GPIb (4.3%), and ATA (12.6%). Experiments with von Willebrand disease blood indicate that vWF is involved in platelet adhesion to collagen VI at 100 s-1. In the absence of vWF, there may be direct binding of platelet GPIIb-IIIa complexes to collagen VI. Adhesion and aggregation on collagen VI are different in shear rate dependence from collagen I. Our results suggest a possible role for collagen VI and vWF in platelet adhesion and aggregation in vascular regions with low shear rates.

Animals↗

Comparative real-time effects on platelet adhesion and aggregation under flowing conditions of in vivo aspirin, heparin, and monoclonal antibody fragment against glycoprotein IIb-IIIa.

BACKGROUND: A real-time in vitro system of human platelet thrombosis under arterylike flowing conditions similar to those produced in vivo by angioplasty would be useful for the evaluation of potential antiarterial thrombotic agents in association with in vivo trials. Aspirin, heparin, and the chimeric monoclonal antibody antigen-binding fragment 7E3 (c7E3 Fab) directed against platelet glycoprotein (GP) IIb-IIIa have been used in attempts to delay or prevent thrombotic reocclusion of coronary arteries after angioplasty. We compared the effects of these agents administered in vivo on GPIb-mediated platelet adhesion to von Willebrand factor (vWF)/collagen type I (as in atherosclerotic subendothelium) and on subsequent GPIIb-IIIa-fibrinogen/vWF-mediated platelet aggregation under flowing conditions analogous to those in constricted coronary arteries. METHODS AND RESULTS: Citrated whole blood containing mepacrine-labeled platelets from patients and healthy donors was perfused for 1 minute at an abnormally elevated shear rate of 1500 seconds-1 (arterial wall shear stress of 50 to 60 dynes/cm2) at 37 degrees C over collagen I/vWF. The number of adherent fluorescent platelets was quantified every 15 seconds with a low-light-level video camera and epifluorescent microscopy. After 5 healthy donors had ingested 975 mg aspirin, platelet adhesion was unaffected in the aspirin-treated blood compared with the control blood in all experiments (10 of 10), and subsequent aggregation was unchanged in most runs (8 of 10). The blood of 3 aspirin-treated patients undergoing angioplasty was analyzed before and after a 12,000-U heparin injection and 2 minutes, 2 hours, and 24 hours after infusion of 0.25 mg/kg of c7E3 Fab. In these patients, the bolus of heparin did not inhibit either platelet adhesion to collagen I/vWF or subsequent aggregation. In contrast, there was > 50% inhibition of platelet aggregation 2 minutes after the infusion of c7E3 Fab in all 3 patients, and inhibition persisted in 2 of the 3 patients at 2 hours and 24 hours after c7E3 Fab. CONCLUSIONS: In contrast to aspirin or heparin, the in vivo injection of c7E3 Fab considerably reduces platelet aggregate formation mediated by the binding of fibrinogen, vWF, or some other ligand to platelet GPIIb-IIIa under conditions of abnormally increased shear stress analogous to those in narrowed coronary arteries. Platelet adherence to collagen I/vWF is not affected. This study describes an in vitro model of arterial injury (similar to angioplasty) that uses human blood to compare directly, in real time, the precise relative effects of aspirin, heparin, and c7E3 Fab on platelet adhesion and subsequent aggregation.

Abciximab↗

Postpartum thrombotic thrombocytopenic purpura complicated by Budd-Chiari syndrome.

BACKGROUND: Thrombotic thrombocytopenic purpura is an infrequent but devastating complication of pregnancy, often difficult to differentiate from severe preeclampsia and the syndrome of hemolysis, elevated liver enzymes, and low platelets (HELLP). To our knowledge, the combination of thrombotic thrombocytopenic purpura and hepatic vein thrombosis has not been reported previously in pregnancy. CASE: A 33-year-old woman, a multigravida, was delivered at 36 weeks' gestation because of pregnancy-induced hypertension and HELLP syndrome. Postpartum, the patient became obtunded, disoriented, and anuric. Her laboratory values revealed a Coombs-negative, microangiopathic hemolytic anemia, modestly abnormal coagulation studies, and thrombocytopenia. She also had elevated liver enzymes, lactate dehydrogenase, and creatinine. The largest plasma von Willebrand factor multimeric forms were relatively decreased in her ethylenediaminetetra-acetic acid-platelet-poor plasma. A diagnosis of thrombotic thrombocytopenic purpura was made. The patient received plasma exchange, hemodialysis, blood transfusion, and glucocorticoids. She responded to therapy, but was later noted to have increasing hepatosplenomegaly, rising levels of bilirubin, and elevated alkaline phosphatase. A Doppler study and magnetic resonance imaging demonstrated the absence of flow in the middle and left hepatic veins, secondary to thrombosis (Budd-Chiari syndrome). She was maintained on warfarin therapy and was discharged on postpartum day 50. CONCLUSION: The early recognition of thrombotic thrombocytopenic purpura is crucial for the initiation of appropriate treatment as soon as possible. The avoidance of platelet transfusion and early plasma-exchange therapy may be lifesaving.

Adult↗

Thrombotic thrombocytopenic purpura.

Recent studies indicate that CRTTP patients have excessive shear stress-induced platelet aggregation that is associated with the presence of ULvWF multimers in their plasma and increased vWF-binding to their platelets by flow cytometry. In these CRTTP patients, relapses, excessive shear-aggregation and the presence in their plasma of ULvWF forms are all reversed by the infusion of normal FFP or substances devoid of the largest vWF multimers found in plasma (cryoprecipitate-poor plasma or cryosupernatant; solvent/detergent-treated plasma) without the need for concurrent plasmapheresis. This constellation of observations, along with reports of increased vWF in TTP platelet thrombi, increases the probability that ULvWF multimers derived from injured or abnormal endothelial cells induce aggregation during TTP episodes in high-shear regions of the microcirculation.

Adult↗

Real-time analysis of shear-dependent thrombus formation and its blockade by inhibitors of von Willebrand factor binding to platelets.

Two likely mechanisms for the initiation of arterial platelet thrombus formation under conditions of elevated fluid shear stresses are: (1) excessive adhesion and aggregation of platelets from rapidly flowing blood onto the exposed sub-endothelium of injured, atherosclerotic arteries; or (2) direct, fluid shear stress-induced aggregation of platelets in constricted arteries with intact endothelial cells. Mechanism (1) was simulated using a parallel plate flow chamber, fibrillar collagen type I-coated slides, and mepacrine-labeled (fluorescent) platelets in whole blood anticoagulated with citrate, hirudin, unfractionated porcine heparin, or low molecular weight heparin flowing for 1 to 2 minutes at wall shear rates of 100 to 3,000 seconds-1 (4 to 120 dynes/cm2). The precise sequence of interactions among von Willebrand factor (vWF), glycoprotein (GP)Ib, and GPIIb-IIIa during platelet adhesion and subsequent aggregation were resolved by direct real-time observation using a computerized epifluorescence video microscopy system. Adhesion at high shear rates was the result of the adsorption of large vWF multimers onto collagen and the binding of platelet GPIb to the insolubilized vWF. Aggregation occurred subsequently and required the binding of ligands, including vWF via its RGD binding domain, to GPIIb-IIIa. Mechanism (2) was modeled by producing shear stresses of 90 to 180 dynes/cm2 in a rotational cone and plate viscometer, which aggregates platelets from platelet-rich-plasma (PRP) anti-coagulated with citrate, hirudin, or either type of heparin in reactions that require large vWF multimers, Ca2+, adenosine diphosphate, and both GPIb and GPIIb-IIIa. Both vWF-mediated shear-aggregation in PRP and platelet-collagen adhesion in flowing whole blood (anticoagulated with citrate and hirudin) are inhibited by two potentially useful anti-arterial thrombotic agents: polymeric aurin tricarboxylic acid (ATA; 28.5 to 114 micrograms/mL), which binds to vWF and inhibits its attachment of GPIb, and a recombinant vWF fragment (rvWF445-733; 30 to 200 micrograms/mL) that binds to platelet GPIb (in the absence of any modulator) and blocks attachment of vWF multimers. Unfractionated heparin, but not low molecular weight heparin, apparently binds to rvWF445-733 and counteracts the inhibitory effects of the vWF fragment in vitro on shear-aggregation and platelet-collagen adhesion.

Antibodies, Monoclonal↗

Abnormalities of von Willebrand factor multimers in drug-associated thrombotic microangiopathies.

Six patients with thrombotic microangiopathy associated with drug therapy had serial analyses of von Willebrand factor (vWF) multimeric patterns in their EDTA-plasma samples by sodium dodecyl sulfate-1% agarose gel electrophoresis and autoradiography. In the plasma of five patients (one with chronic myelogenous leukemia, two with prostatic cancer, and two with lymphoma), vWF abnormalities were observed during evolution of the thrombotic microangiopathy. These abnormalities were either the presence of unusually large (UL)vWF multimers of the type similar to those found within, and released or secreted by, endothelial cells (three patients) or a relative decrease in the largest plasma vWF multimers of the type that can be induced to attach to platelets (one patient) or both vWF abnormalities in different serial samples (one patient). In the one cardiac transplant patient who did not develop vWF multimeric abnormalities associated with thrombotic microangiopathy, vWF antigen levels were elevated more than threefold. This later individual received therapy with cyclosporin A alone. The other five thrombotic microangiopathy patients received cyclosporin A in combination with other chemotherapeutic agents (two patients); mitomycin-C, along with other chemotherapy (two patients); or multiple chemotherapeutic drugs, but not cyclosporin A or mitomycin C (one patient). The finding of vWF multimeric abnormalities during serial analysis of plasma samples from five of six patients with drug-associated thrombotic microangiopathy suggests the possibility that ULvWF forms derived from damaged or stimulated endothelial cells, along with the largest plasma vWF multimers, may be involved in the intravascular platelet clumping that is an essential part of the pathophysiology of this disorder.

Adolescent↗

Unusually large von Willebrand factor multimers preferentially promote young sickle and nonsickle erythrocyte adhesion to endothelial cells.

Sickle red blood cells (RBC) suspended with endothelial cell (EC)-derived unusually large (UL) von Willebrand factor (vWF) multimers, but not large plasma vWF forms, adhered to human venous EC under shear flow conditions. When sickle RBC were separated by density gradient centrifugation, fractions rich in less dense RBC were the most adhesive to EC in the presence of ULvWF. Incubation of sickle RBC with monoclonal antibodies against platelet surface receptors GPIb or GPIIb/IIIa, or with the integrin receptor agonist Arg-Gly-Asp-Ser (RGDS) decreased the ULvWF-mediated sickle RBC adhesion to EC 84%, > 99%, and 90%, respectively. When incubated with EC before the flow studies, anti-GPIb antibody and RGDS inhibited the ULvWF-mediated sickle RBC adhesion to EC. ULvWF also promoted the adhesion to EC of nonsickle RBC (HbAA) from patients with an increased proportion of young erythrocytes. When the EC supernatant was depleted of most vWF forms, young nonsickle RBC adhesion decreased by 90%. Preincubation of young nonsickle RBC with anti-GPIb antibody, anti-GPIIb/IIIa antibody, or RGDS inhibited the ULvWF-mediated young RBC adhesion to EC by 47%, 88%, and 92%, respectively. These data indicate that (1) low-density erythrocyte fractions enriched in young sickle or young nonsickle RBC are capable of binding ULvWF multimers via GPIb-like and GPIIb/IIIa-like receptors; (2) the RBC vWF receptors are lost or modified as erythrocytes age in the circulation; and (3) ULvWF/RBC complexes also bind to EC via a GPIb-like receptor.

Anemia, Sickle Cell↗

Shear stress-induced von Willebrand factor binding to platelet glycoprotein Ib initiates calcium influx associated with aggregation.

Platelets subjected to elevated levels of fluid shear stress in the absence of exogenous agonists will aggregate. Shear stress-induced aggregation requires von Willebrand factor (vWF) multimers, extracellular calcium (Ca2+), adenosine diphosphate (ADP), and platelet membrane glycoprotein (GP)Ib and GPIIb-IIIa. The sequence of interaction of vWF multimers with platelet surface receptors and the effect of these interactions on platelet activation have not been determined. To elucidate the mechanism of shear stress-induced platelet aggregation, suspensions of washed platelets were subjected to different levels of uniform shear stress (15 to 120 dyne/cm2) in an optically modified cone and plate viscometer. Cytoplasmic ionized calcium ([Ca2+]i) and aggregation of platelets were monitored simultaneously during the application of shear stress; [Ca2+]i was measured using indo-1 loaded platelets and aggregation was measured as changes in light transmission. Basal [Ca2+]i was approximately 60 to 100 nmol/L. An increase of [Ca2+]i (up to greater than 1,000 nmol/L) was accompanied by synchronous aggregation, and both responses were dependent on the shear force and the presence of vWF multimers. EGTA chelation of extracellular Ca2+ completely inhibited vWF-mediated [Ca2+]i and aggregation responses to shear stress. Aurin tricarboxylic acid, which blocks the GPIb recognition site on the vWF monomer, and 6D1, a monoclonal antibody to GPIb, also completely inhibited platelet responses to shear stress. The tetrapeptide RGDS and the monoclonal antibody 10E5, which inhibit vWF binding to GPIIb-IIIa, partially inhibited shear stress-induced [Ca2+]i and aggregation responses. The combination of creatine phosphate/creatine phosphokinase, which converts ADP to adenosine triphosphate and blocks the effect of ADP released from stimulated platelets, inhibited shear stress-induced platelet aggregation without affecting the increase of [Ca2+]i. Neither the [Ca2+]i nor aggregation response to shear stress was inhibited by blocking platelet cyclooxygenase metabolism with acetylsalicylic acid. These results indicate that GPIb and extracellular Ca2+ are absolutely required for vWF-mediated [Ca2+]i and aggregation responses to imposed shear stress, and that the interaction of vWF multimers with GPIIb-IIIa potentiates these responses. Shear stress-induced elevation of platelet [Ca2+]i, but not aggregation, is independent of the effects of release ADP, and both responses occur independently of platelet cyclooxygenase metabolism. These results suggest that shear stress induces the binding of vWF multimers to platelet GPIb and this vWF-GPIb interaction causes an increase of [Ca2+]i and platelet aggregation, both of which are potentiated by vWF binding to the platelet GPIIb-IIIa complex.

Adenosine Diphosphate↗

Chronic relapsing thrombotic thrombocytopenic purpura in infants with large von Willebrand factor multimers during remission.

We studied two children with recurrent schistocytic hemolytic anemia and thrombocytopenia beginning in the neonatal period. One patient had a stroke during one of the episodes of thrombotic thrombocytopenic purpura. The presence of unusually large von Willebrand factor multimers was demonstrated in both children during clinical and hematologic remissions. Treatment with corticosteroids and intravenous injections of immune globulin was unsuccessful in the one patient who received it. Immediate improvement occurred in both patients after the infusion of fresh-frozen plasma. Symptoms of thrombocytopenia continue to recur at regular intervals in the absence of periodic fresh-frozen plasma infusions. One of these children apparently has chronic relapsing thrombotic thrombocytopenic purpura; the second has a chronic relapsing disorder similar to thrombotic thrombocytopenic purpura.

Blood Component Transfusion↗