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Biomedical subjects

J G Kelton

Publications and source records attributed to J G Kelton.

At least 19 recordsLinked to original sources

Calpain activity in patients with thrombotic thrombocytopenic purpura is associated with platelet microparticles.

Thrombotic thrombocytopenic purpura (TTP) is characterized by thrombocytopenia and disseminated platelet thrombi throughout the microvasculature. Studies by our group have demonstrated calcium-dependent proteolytic activity (calpain) that is no longer detectable in the serum of patients with acute TTP after their recovery. The purpose of this study was to investigate if the protease activity of TTP was detectable in plasma and, therefore, not an in vitro phenomenon secondary to the formation of serum. Additionally, we looked for evidence of membrane association of the active protease in the patients' samples, which would explain the persistence of its activity in the presence of plasma inhibitors. Acute TTP samples, both serum and plasma, were collected from 10 patients with TTP. Calpain was measured using bioassays for enzyme activity and also by detection of the protein using immunoblotting with an anticalpain monoclonal antibody (MoAb). In all instances, calpain could be detected both functionally and antigenically in the acute TTP sera and plasma. No calpain activity could be detected in any of the controls, although antigenic calpain was detectable in one sample from a patient who had undergone cardiopulmonary bypass surgery. To investigate whether the calpain was associated with microparticles in the plasma, the TTP plasma samples were ultrafiltered and ultracentrifuged. Activity was not lost by passage across a 0.2-micron filter but was detectable only in the pellet following ultracentrifugation. Membrane association of the calpain in the microparticles also was demonstrated using solubilization with Triton X-100. Immunoprecipitation studies demonstrated that the calpain activity could be removed by MoAbs against platelet membrane glycoproteins (IX and IIb/IIa) but not by a MoAb against red blood cell membrane glycophorin. These studies indicate that active calpain is associated with platelet microparticles in plasma from patients with TTP.

Blood Platelets

Splenic radiation for corticosteroid-resistant immune thrombocytopenia.

OBJECTIVE: To determine the role of splenic radiation as a treatment for immune thrombocytopenia. DESIGN: Retrospective analysis of an open, nonrandomized investigation. SETTING: A regional cancer center, referred care, and primary care settings. PATIENTS: Eleven older patients with idiopathic thrombocytopenic purpura (ITP) and 8 patients with secondary immune thrombocytopenia refractory to corticosteroid treatment for whom surgery would have posed a high risk. INTERVENTION: A short course (1 to 6 weeks) of radiation therapy to the spleen (total dose, 75 to 1370 cGy) with or without concurrent and postradiation corticosteroid administration. MEASUREMENTS: Efficacy was assessed by measuring any increase in the platelet count and by monitoring the duration of response and side effects. RESULTS: Of 11 patients with ITP, 8 patients responded. Three patients had a sustained (greater than 52 weeks) increase in the platelet count to safe levels after therapy was discontinued. An additional patient had a sustained response but required intermittent, low-dose corticosteroids. Four other patients had increases in their platelet counts that lasted from 8 to 25 weeks. Two of the eight patients without ITP had a positive response, whereas four did not respond, and two were not evaluable. Patients had no adverse reactions to the radiation treatment. CONCLUSION: Splenic radiation can be a safe and effective method to raise the platelet count in older patients with ITP that is refractory to corticosteroids and in whom the risks associated with splenectomy are high.

Adrenal Cortex Hormones

Thrombocytopenia caused by passive transfusion of anti-glycoprotein Ia/IIa alloantibody (anti-HPA-5b).

We describe a patient who developed transient and moderately severe thrombocytopenia (platelet count nadir 35 x 10(9)/L) after the transfusion of plasma. Using the technique of direct radioimmunoprecipitation, we showed that during the thrombocytopenia episode, the patient's platelets had IgG specifically bound to the glycoprotein (GP) Ia/IIa complex. Indirect radioimmunoprecipitation using serum from the plasma donor confirmed that anti-HPA-5b (anti-Zava) was the cause of GP Ia/IIa sensitization. The relatively mild thrombocytopenia, compared with passive alloimmune thrombocytopenia caused by anti-HPA-1a (anti-P1A1), may reflect the low copy number of HPA-5 compared with HPA-1. Direct radioimmunoprecipitation permits the detection of the GPs carrying the known platelet alloantigen systems, and this study suggests that this technique can be used to diagnose passive alloimmune thrombocytopenia.

Humans

A human monoclonal autoantibody to platelet glycoprotein IIb derived from normal human lymphocytes.

Tonsillar lymphocytes from an otherwise healthy nonthrombocytopenic male child were fused with the lymphoblastoid cell line GM 4672. Twenty of 472 (4%) hybridomas had antiplatelet reactivity detected using intact platelets in an enzyme-linked immunosorbent assay. One hybridoma (STO 171) reacted to platelet glycoprotein IIb (integrin alpha IIb) as determined by radioimmunoprecipitation and immunoblotting. Antibody specificity was confirmed using immunodepletion experiments with isotypic antibodies derived from a mutlitransfused Glanzmann's thrombasthenic patient. The antibody reactivity was restricted to platelets and did not react with other integrin alpha-chain proteins expressed on granulocytes or cultured human brain-derived microvascular endothelial cells. These studies indicate that lymphocytes of normal, nonthrombocytopenic individuals have the genetic potential to produce antiplatelet autoantibodies.

Antibodies, Monoclonal

Thrombotic thrombocytopenic purpura.

Thrombotic thrombocytopenic purpura is an uncommon disorder, but it continues to be of considerable interest. The disease mechanisms are unclear and the aetiology is unknown. Perhaps most enigmatic of all, the mode of action of plasma therapy, which successfully induces remission in about two-thirds of cases, is wholly inexplicable. There are currently several areas of debate on the subject of thrombotic thrombocytopenic purpura. This paper addresses these points of contention: the definition of the disease, its distinction from haemolytic uraemic syndrome, the nature of the platelet aggregating factors in the plasma of patients with acute disease, the importance of the abnormalities of von Willebrand's factor observed in the acute and quiescent phases of the disease, the nature of the factor in normal plasma that induces remission, and the possible causes of the observed superiority of plasma exchange combined with plasma infusion, over plasma infusion alone.

Calpain

HLA-DR expression by platelets in acute idiopathic thrombocytopenic purpura.

Induction of expression of MHC class II antigens on the surface of cells that do not ordinarily express these proteins has been implicated in the pathogenesis of autoimmunity in diabetes mellitus and autoimmune thyroiditis. Platelets express class I but not class II HLA antigens. In this report, we describe a child with acute idiopathic thrombocytopenic purpura who at the time of the thrombocytopenic episode had class II (HLA-DR) antigens on his platelets. Following recovery, the HLA-DR antigens were no longer present on the platelets. We postulated that class II had been induced on his megakaryocytes by a cytokine such as interferon gamma, and that the induced expression of class II antigens contributed to the autoimmune disorder. To substantiate this possibility we next studied class I and II antigen expression on an erythroleukaemia cell line (HEL), which has many megakaryocytic features. Following treatment of HEL cells with interferon gamma, class I expression was increased and HLA-DR antigens were induced. These observations suggest that cytokine-mediated induced HLA-DR expression may contribute to the pathogenesis of a subset of thrombocytopenias.

Blood Platelets

A prospective study to determine the safety of omitting the antiglobulin crossmatch from pretransfusion testing.

Transfusion medicine laboratories routinely perform a series of pretransfusion serological tests including: ABO grouping, Rh typing, and investigation of the recipient's serum to detect antibodies against blood group antigens (antibody screen). As a final check, most laboratories also perform a crossmatch in which the recipient's serum is incubated with the donor's red cells followed by the addition of an antiglobulin reagent (antiglobulin crossmatch). The need for the antiglobulin crossmatch when the antibody screen is negative has been questioned because there are few antibodies that are detected by this test. Such antibodies are usually directed against low incidence antigens that are not expressed on the screening cells and in many cases the clinical importance of these antibodies is uncertain. For these reasons, we performed a prospective study in which patients requiring red cell transfusion had a group and screen performed. If the antibody screen was negative the antiglobulin crossmatch was omitted. Following the transfusion of the blood, the antiglobulin crossmatch was performed to look for any potential incompatibility. All patients were monitored both serologically and clinically. Over the 2-year interval of the study 9128 patients were entered. There were 8936 patients (97.9%) with a negative antibody screen and 26.9% (2404 patients) were transfused a total of 10,899 red cell concentrates. The antiglobulin crossmatch performed after the transfusion indicated that 168 red cell concentrates (1.5%) would have been incompatible if the antiglobulin crossmatch had been performed pretransfusion. These 168 red cell concentrates were transfused to 119 patients during 130 transfusion episodes (defined as all transfusions administered within 24 h). Of the 130 transfusion episodes, 79.2% (103/130) were false positive laboratory results. There were 27 transfusion episodes where the antiglobulin crossmatch on blood transfused was positive due to an IgG antibody. Even though these transfused red cell concentrates were designated incompatible by the antiglobulin crossmatch, none of the patients receiving this blood had clinical or serological evidence of haemolysis. We concluded that the antiglobulin phase of the crossmatch can be omitted from pretransfusion testing without putting patients at risk.

Blood Component Transfusion

The production of human monoclonal antiplatelet auto-antibodies derived from human lymphocytes of normal origin: reactivity to DNA, anionic phospholipids and platelet proteins.

Human hybridoma monoclonal antiplatelet antibodies were produced using tonsillar lymphocytes from a nonthrombocytopenic male fused to the lymphoblastoid cell line GM 4672. Twenty of 472 (4%) IgM producing hybridomas had antiplatelet reactivity as detected by ELISA. Thirteen of these antiplatelet antibody producing hybridomas with clonality ensured by limiting dilution were tested for antigenic specificity. Two different and mutually exclusive groups of antiplatelet antibodies were identified. The first group of antiplatelet antibodies (four clones) showed reactivity that was limited to DNA and anionic phospholipids. Antibodies from the second group (seven clones) showed reactivity by immunoblotting to a variety of platelet proteins including platelet glycoprotein IIb. These antibodies did not bind DNA nor anionic phospholipids. These studies indicate that lymphocytes of normal human origin have the genetic potential to produce antiplatelet autoantibodies. These antiplatelet antibodies segregate on the basis of their target antigens into two major groups, which mimic the target antigens held responsible for antiplatelet autoantibodies in disease. These include glycoproteins (typical of chronic idiopathic thrombocytopenic purpura) and DNA and/or anionic phospholipids (typical of the lupus anticoagulant syndrome).

Antibodies, Monoclonal

A novel congenital haemostatic defect: combined factor VII and factor XI deficiency.

Isolated deficiencies of factors VII and XI are both rare. Not surprisingly, therefore, combined factor VII and XI deficiency has not been reported previously. We report here a kindred with a combined heterozygous deficiency for both factors VII and XI. The proposita is a 28-year-old woman who had both a prolonged prothrombin time (PT) and a prolonged activated partial prothrombin time (APTT) associated with a mild bleeding tendency. Coagulation studies were performed on the six available members of this kindred. The PT and APTT were normal or mildly abnormal in five of these individuals. Factor VII coagulant activity (VII:C) varied from 0.33 to 0.77 units/ml in affected subjects. In contrast, the concentration of factor VII-related antigen for the six individuals ranged from 0.68 to 2.10 units/ml. Comparable factor VII:C levels were obtained when each subject's plasma was tested with either a rabbit or a human thromboplastin reagent. Factor XI coagulant activity was less than 0.5 units/ml in three of the six subjects and normal (approximately 1.0 units/ml) in the other three. The concentrations of thrombin-antithrombin-III and prothrombin fragment 1.2 were within normal limits for all individuals. In addition to being associated with heterozygous factor XI deficiency, the abnormal factor VII molecule in the plasma of affected individuals in this kindred appears to represent a newly described mutation. This is suggested by the pattern of reactivity with thromboplastin from different species, the normal tissue factor binding and the bleeding tendency in heterozygous individuals in this kindred.

Adult

Determinants of donor platelet variability when testing for heparin-induced thrombocytopenia.

Heparin-induced thrombocytopenia is a common immune-mediated drug reaction that can be complicated by life-threatening arterial thrombosis. The diagnosis can be confirmed by demonstrating heparin-dependent release of radiolabeled serotonin from washed normal platelets in the presence of patient serum. However, certain serum samples from these patients produce 14C-serotonin release from some but not other normal donor platelets. We investigated this problem of donor platelet variability by studying the reactivities of 10 serum samples from patients with heparin-induced thrombocytopenia with platelets from 10 normal donors (100 serum and platelet combinations). We observed a marked variability in reactivity for patient serum and platelets from normal donors; this initially appeared random. However, closer examination indicated that the reactivities varied hierarchically. Because heparin-induced thrombocytopenia is caused by binding of heparin-dependent IgG to platelet Fc receptors, we examined whether platelet Fc receptor number or function explained the variability in platelet reactivity. We observed that platelet Fc receptor function, as measured by platelet release associated with heat-aggregated IgG, was highly correlated with platelet reactivity to heparin-induced thrombocytopenia serum samples. No significant correlation, however, was found between Fc receptor number and platelet response. Reaction of murine monoclonal antibodies that activate human platelets by means of the platelet Fc receptors was not predictive of platelet reactivity to heparin-induced thrombocytopenia serum.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Donors

Investigation of the mechanisms of monoclonal antibody-induced platelet activation.

Antiplatelet antibodies can activate platelets causing platelet aggregation and the release reaction. However, the pathway of activation by these antibodies is unknown and several potential mechanisms are possible. In this report, we describe studies investigating potential pathways of platelet activation by IgG antibodies. We tested 16 different IgG monoclonal antibodies (MoAbs) against a variety of platelet surface components and found that six antibodies were capable of causing platelet aggregation and release. These included MoAbs against glycoprotein (GP) IIb/IIIa, CD9, GPIV, and two other not well-characterized platelet components. There was no relationship between the number of platelet binding sites and the ability of an MoAb to activate the platelets. By adding intact and F(ab')2 preparations of the MoAb to control or Fc receptor-blocked platelets, we found that in all instances the MoAbs initiated platelet activation via interacting with the platelet Fc receptors. Clustering of the platelet protein components using a secondary antibody did not cause activation. Studies into the pathway of Fc-dependent activation demonstrated that the MoAbs were capable of activating platelets by occupying Fc receptors on adjacent platelets (interplatelet activation), as well as on the same platelet (intraplatelet activation).

Animals

Heparin and platelets.

Heparin-induced thrombocytopenia is the most important immune drug-induced thrombocytopenia because of its relatively high frequency and association with arterial and venous thromboembolism. The reported incidence of thrombocytopenia (1 per cent for heparin of porcine mucosal, and 5 per cent for heparin of bovine lung origin) probably represents an underestimate of its true frequency because some patients have a heparin-induced fall in the platelet count that does not reach thrombocytopenic levels. The majority and possibly all cases of heparin-induced thrombocytopenia with or without thrombosis are caused by immune mechanisms. Recent evidence indicates that a heparin-antibody immune complex causes platelet activation by binding to platelet Fc receptors. The risk of heparin-induced thrombosis can be reduced by minimizing duration of heparin exposure, by using porcine instead of bovine heparin, possibly by monitoring the platelet count, and by early institution of alternate anticoagulation when the syndrome is recognized. It is hoped that a new heparin or heparinoid preparation will be developed that will not cause this syndrome.

Animals

Platelet transfusions.

Platelets play a pivotal role in hemostasis by forming the initial hemostatic plug and augmenting the formation of the more permanent fibrin thrombus. Thrombocytopenia may lead to bleeding, which can be treated with therapeutic platelet transfusions or prevented with prophylactic transfusions. While many advances have been made in platelet transfusion technology, problems remain. These include the short storage life of liquid-stored platelets and the frequent development of alloantibodies (the refractory state) in patients receiving a number of transfusions. Significant progress, however, is being made in both areas.

Antigens

The use of in vitro technics to study drug-induced pancytopenia.

The confirmation of drug-induced marrow aplasia is difficult since rechallenging the patient can lead to serious morbidity. We used marrow-culture technics to challenge in vitro the bone marrow of a patient with marrow aplasia after ingestion of quinidine. There was no clinical or laboratory evidence of quinidine-mediated destruction of erythrocytes, leukocytes or platelets. By contrast, use of quinidine in combination with the patient's serum substantially inhibited in vitro growth of allogeneic marrow granulocytic and erythroid series. Furthermore, use of quinidine in combination with acute-phase serum (but not acute-phase serum alone or quinidine in combination with recovery-phase serum) inhibited growth of the patient's marrow. This observation suggests that both a transient serum factor and quinidine were responsible for the marrow aplasia. These technics could be applied with minimal risk to similar patients and would permit in vitro rechallenge with the suspected drug.

Aged

Elevated platelet-associated IgG in the thrombocytopenia of septicemia.

The mechanism of thrombocytopenia, a frequent complication of septicemia, is obscure, but indirect evidence suggests that the immune system may be involved. To investigate this possibility, we quantitated platelet-associated IgG on platelets obtained from 44 patients during 46 episodes of septicemia. Thrombocytopenia occurred in 21 of 46 episodes (46 per cent). Platelet-associated IgG was elevated in eight of 11 episodes of gram-negative septicemia and thrombocytopenia (47.3 +/- 11.7 fg of IgG per platelet [mean +/- S.E.]) and in one of 20 patients with gram-negative septicemia and normal platelet counts (5.9 +/- 1.1) (P less than 0.001). Elevated levels occurred in eight of 10 patients with gram-positive septicemia and thrombocytopenia (55.3 +/- 14.7 fg of IgG per platelet) and in none of 11 patients with gram-positive septicemia and normal platelet counts (5.6 +/- 1.7) (P less than 0.001). Serial testing during the thrombocytopenia and recovery showed an inverse relation between the platelet count and platelet-associated IgG. Thrombocytopenia in some patients with septicemia may be related to the binding of IgG to platelets.

Adult