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Biomedical subjects

M Yanabu

Publications and source records attributed to M Yanabu.

At least 37 records · Page 2Linked to original sources

Platelet activation induced by an antiplatelet autoantibody against CD9 antigen and its inhibition by another autoantibody in immune thrombocytopenic purpura.

In a patient with immune thrombocytopenic purpura (ITP), we found a novel platelet-activating IgG (act-IgG) and an inhibitory IgG (inhi-IgG) that prevented activation induced by both CD9 monoclonal antibody (mAb) and the act-IgG. Purified IgG from the patient plasma caused a rise in [Ca2+]i and the aggregation of normal platelets, and bound to a 24 kD membrane protein. This aggregation was inhibited by aspirin, staurosporine, an inhibitor of protein kinase C, and F(ab')2 fragments of MALL13, a CD9 mAb. When the platelet count of this patient rose to normal range, the act-IgG disappeared. About 2 weeks later, the relapse of thrombocytopenia was observed. The purified IgG obtained in this period did not activate platelets but inhibited both the rise in [Ca2+]i and platelet aggregation stimulated by NNKY 1-19, a CD9 mAb, as well as the act-IgG, and bound to a 40 kD membrane protein. The inhi-IgG prevented the binding of IV-3, a mAb against Fc gamma receptor II (Fc gamma RII), but did not prevent the binding of NNKY 1-19 to its antigen. We suggest that the activating autoantibody recognized CD9 antigen and activated both the thromboxane- and phospholipase C-dependent pathways, while the inhibitory autoantibody recognized the Fc gamma RII and inhibited CD9 antibody-induced platelet activation mediated via this receptor.

Adult↗

IgG inhibits the increase of platelet-associated C3 stimulated by anti-platelet antibodies.

We investigated the increase of platelet-associated IgG and complement component 3 (C3) caused by the in vitro action of anti-platelet MoAbs, and the effect of mouse and human IgG on these events. Anti-glycoprotein IIb/IIIa and anti-glycoprotein Ib MoAbs caused a slight increase of C3, but not of platelet-associated IgG. In contrast, anti-CD9 and anti-Fc gamma II receptor MoAbs caused an increase of both platelet-associated C3 and IgG. In particular, three MoAbs which activated the complement system caused a marked increase of C3. When platelet-rich plasma was treated with aspirin and prostaglandin E1 before incubation with antibodies, the increase of platelet-associated IgG was inhibited in all cases. In contrast, the increase of platelet-associated C3 was scarcely influenced. These results suggest that the binding to platelets of platelet-activating antibodies caused the increased expression of IgG molecules on the platelet surface and a possible increase of platelet-associated IgG. However, the increase of platelet-associated C3 appeared to depend on specific characteristics of the antibodies tested, such as a complement-activating effect. In addition, intact mouse or human IgG inhibited the increase of platelet-associated C3 caused by complement-activating antibodies, while F(ab')2 mouse or human IgG had no such effect. This suggested that the Fc portion of IgG may block the increase of C3 mediated by anti-platelet antibodies.

Animals↗

Detection of platelet antigen for antiplatelet antibodies in idiopathic thrombocytopenic purpura by flow cytometry, antigen-capture ELISA, and immunoblotting: a comparative study.

We compared three methods of detecting platelet antigens for antiplatelet antibodies in patients with idiopathic thrombocytopenic purpura (ITP), i.e., a microtiter well antigen-capture enzyme-linked immunosorbent assay (AC-ELISA), a platelet suspension immunofluorescence test using flow cytometry (PSIFT-FCM), and Western blotting. Using PSIFT-FCM, the reactivity of NNKY1-32, an anti-glycoprotein (GP) IIb/IIIa antibody, and of NNKY5-5 (anti-GPIb) to platelets from 60 ITP patients were examined. By PSIFT-FCM, both the peak channel and the relative fluorescence value were below the mean-2SD for healthy control platelets in 15 patients when NNKY1-32 was used and in 2 patients when NNKY5-5 was used. Western blotting gave an apparent molecular weight for GPIb of 160,000, while GPIIb was 135,000 and GPIIIa was 88,000. By the AC-ELISA, 12 patients were positive for NNKY1-32 and 4 for NNKY5-5. Although NNKY1-32 binding was detected by PSIFT-FCM in 15 of the ITP patients using platelets, only 3 were positive using plasma. By AC-ELISA and Western blotting of plasma, 12 and 10 of the patients were positive for NNKY1-32 and NNKY5-5, respectively. Our results suggest that none of the three methods is good enough to stand alone and that they should be used together in the analysis of platelet antigens for antiplatelet antibodies in ITP.

Autoantibodies↗

Effects of kami-kihi-to (jia-wei-gui-pi-tang) on autoantibodies in patients with chronic immune thrombocytopenic purpura.

We studied the effect of Kami-kihi-to (Jia-Wei-Gui-Pi-Tang) on the production of autoantibodies in ten patients with chronic immune thrombocytopenic purpura. After administration of Kami-kihi-to, platelet count was increased in seven of the ten patients (p < 0.05). Using Western blotting, we demonstrated the disappearance of autoantibody reaction with antigen in one patient. However, platelet-associated IgG was decreased in eight of ten patients (p < 0.05). Kami-kihi-to appears to promote the suppression of autoantibodies in patients with chronic immune thrombocytopenic purpura. No side effects were observed in any patient. Thus, Kami-kihi-to may be a useful and safe drug in the management of chronic immune thrombocytopenia purpura.

Administration, Oral↗

Periodic production of antiplatelet autoantibody directed against GPIIIa in cyclic thrombocytopenia.

We report here a female patient with cyclic thrombocytopenia associated with antiplatelet autoantibodies. There was an inverse relationship between the level of platelet-associated IgG and platelet count. Bone marrow megakaryocytes were normal in number even during the thrombocytopenia. The binding of monoclonal antibodies (mAbs) against glycoprotein (GP) IIb/IIIa to patient platelets was significantly inhibited in the thrombocytopenic phase, while these mAbs normally bound to patient platelets obtained during the normal platelet count. Western blotting and mAb-specific immobilization of platelet antigens showed that both plasma autoantibody and the eluted IgG from the patient platelets bound to GPIIIa. These results suggest that the periodic production of antiplatelet autoantibody against GPIIIa caused cyclic destruction of platelets in this patient.

Adult↗

Effects of ticlopidine on monoclonal anti-CD9 antibody-induced platelet aggregation and microparticle generation.

We analyzed the effects of ticlopidine on platelet aggregation and on microparticle (MP) formation when platelets were exposed to a monoclonal anti-CD9 antibody (NNKY1-19) in vitro. Even when NNKY1-19-induced platelet aggregation was completely inhibited by preincubation with anti-GPIIb/IIIa antibody or Arg-Gly-Asp-Ser, or by using washed platelets from a Glanzmann's thrombasthenia patient, the formation of MP was still observed. Prostaglandin E1 and protein kinase C antagonists (H-7 and staurosporine) inhibited both NNKY1-19-induced aggregation and MP formation. Ticlopidine or aspirin plus apyrase scarcely affected NNKY1-19-induced platelet aggregation, except to prolong the lag time. However, ticlopidine significantly inhibited MP formation (p less than 0.01). These results suggest that ticlopidine inhibits NNKY1-19-induced MP formation by a different mechanism to that of the other antagonists, and that this mechanism is unrelated to the inhibition of platelet aggregation.

Adenosine Triphosphate↗

Differences between platelet and microparticle glycoprotein IIb/IIIa.

Glycoprotein (GP) IIb and IIIa are major constituents of the platelet membrane which are involved in forming the fibrinogen receptor on activated platelets. We used flow cytometry to study the effects of ethylene-diamine tetraacetic acid (EDTA) on the membrane GPIIb/IIIa complexes of platelets and microparticles, and to study the effects of cations on dissociated GP complexes. Microparticles were detected by both the volume signal and by fluorescence using an FITC-conjugated anti-GPIb antibody (NNKY5-5). When platelets were stimulated with ADP, calcium ionophore A23187, or thrombin, fibrinogen binding to the platelet surface increased markedly. However, fibrinogen binding to microparticles showed little increase in response to such agonists. Microparticle GPIIb/IIIa complexes were dissociated by incubation with EDTA at 37 degrees C but did not reassociate after treatment with divalent cations (Ca2+, Mg2+, and Mn2+) in contrast to platelet GPIIb/IIIa complexes. These results suggest that some interaction of GPIIb/IIIa and linked structures like the platelet cytoskeleton may be involved in the reassociation of dissociated GPIIb and GPIIIa, perhaps explaining the failure of reassociation of microparticle GPIIb/IIIa (i.e., the fibrinogen binding to microparticles).

Adenosine Diphosphate↗

Anti-phospholipid antibodies bind to platelet microparticles in idiopathic (autoimmune) thrombocytopenic purpura.

We recently reported that IgM antibody-related microparticles exist in some patients with idiopathic thrombocytopenic purpura (ITP) [14]. In this study, we investigated the relationship between antiphospholipid (cardiolipin and phosphatidylinositol) antibodies and microparticles in 56 ITP patients. We used an ELISA to detect anti-phospholipid antibodies. IgG antibodies against cardiolipin and phosphatidylinositol were detected in 13 and 12 patients, respectively. The titers of IgG antibodies against these phospholipids did not correlate with the platelet-associated IgG level or the platelet count. Next, we investigated the binding of anti-phospholipid antibodies to platelets and microparticles. Microparticles were obtained by incubating washed platelets with collagen plus thrombin. ITP plasma containing IgG-class anti-phospholipid antibodies showed significantly increase binding to microparticles compared with plasma without such antibodies (p less than 0.001). Our results suggest that anti-phospholipid antibodies could affect the function of platelet microparticles in ITP.

Antibodies↗

Anti-glycoprotein IIb/IIIa autoantibodies are reversibly internalized into platelets in idiopathic (autoimmune) thrombocytopenic purpura.

We used flow cytometry to investigate the binding of platelet-binding IgG (PBIgG) to unfixed platelets in idiopathic thrombocytopenic purpura (ITP), including that of anti-glycoprotein (GP) IIb/IIIa antibodies. Anti-GPIIb/IIIa antibodies were detected in 13/64 ITP patients using antigen-capture ELISA and immunoblotting. When unfixed platelets were incubated with ITP plasma, the PBIgG level was significantly higher than after incubation with normal plasma. When 1 microM ADP was added to unfixed platelets, which were incubated with ITP plasma and washed, the PBIgG level increased additively. GMP-140 is a constituent of platelet alpha-granules, and a monoclonal antibody directed against this protein showed weak binding to platelets after 1 microM ADP stimulation. The increase of PBIgG produced by ADP was significantly greater when ITP plasma positive for anti-GPIIb/IIIa antibody was used compared with that obtained using antibody-negative ITP plasma. This increase of PBIgG was markedly inhibited by the removal of extracellular calcium with EDTA or the dissociation of the GPIIb/IIIa complex by EDTA treatment at 37 degrees C. These results suggest that anti-GPIIb/IIIa autoantibodies are internalized by unfixed ITP platelets and stored somewhere other than the alpha-granules. This stored antibody pool can be reversibly redistributed on the platelet surface by weak stimulants such as ADP and a functional GPIIb/IIIa complex appears to be necessary for this to occur.

Adolescent↗

[Analysis of adhesive proteins on the surface of platelets from the patients with lung cancer: studies in histological type and clinical stage].

Flow cytometry was used to detect platelet-associated fibrinogen (PA-Fbg), platelet-associated fibronectin (PA-FN) and platelet-associated thrombospondin (PA-TSP) on the surface membrane of platelets and plasma (P)-TSP in 30 patients with lung cancer (16 case of adenocarcinoma and 14 of squamous cell carcinoma). ELISA was used to analyze beta-TG and PF4. In the lung cancer group, beta-TG and PF4 were higher than those of a normal control group. PA-Fbg values were correlated with beta-TG and PF4 values. Each adhesive protein had a higher value in the patient than in the normal control group, and the degree of the increase was related to the progression of clinical disease stage. In the squamous cell carcinoma group, the P-TSP value was significantly elevated. Platelet size increased as the clinical stage of the disease progressed. These results suggest the following: 1. An increase in PA-Fbg can indicate the presence of activated platelets. 2. In patients with lung cancer, activated platelets appear in the blood, and their numbers increase as the clinical stage of the disease progresses. 3. Differences in histologic type led to differences in binding adhesive protein.

Adenocarcinoma↗

Antiplatelet autoantibody-related microparticles in patients with idiopathic (autoimmune) thrombocytopenic purpura.

We used flow cytometry to detect antiplatelet antibody-related microparticles (MP) in 56 patients with idiopathic thrombocytopenic purpura (ITP). We measured MP in platelets following various types of stimulation in two experimental systems. In one system washed platelets were incubated with normal serum which included the complement system, and in the other, washed platelets were incubated with Tyrode's buffer. There were no differences between the two measurement systems in the degree of increase in MP using various agonists. An increase in MP using ITP plasma was found in 12 out of 56 patients. In particular, four patients showed a significant increase in MP in washed platelets (WP) plus serum. Furthermore, the increase in platelet-associated IgM (PAIgM) was significant in these patients. There was also a definite positive correlation between PAIgM and the percentage of MP of WP plus serum. On the other hand, no specificity for MP formation with anti-GPIIb/IIIa or anti-GPIb autoantibodies was observed. IgM antibody-related MP appear to exist in some patients with ITP.

Adolescent↗

Synergistic action in platelet activation induced by an antiplatelet autoantibody in ITP.

We detected an autoantibody which activated normal platelets in a patient with immune thrombocytopenic purpura and investigated the mechanism by which this autoantibody mediated platelet activation. The patient's IgG induced platelet aggregation and ATP secretion in normal platelet-rich plasma (PRP). IgG-induced aggregation was inhibited by aspirin (ASA), apyrase, a protein kinase C (PKC) inhibitor and two anti-platelet glycoprotein (GP) IIb/IIIa monoclonal antibodies. The increase of aequorin-detected intraplatelet Ca2+ induced by the patient's IgG was extremely slight. Phosphorylation of a 40 kDa protein was induced by the patient's IgG without any obvious phosphorylation of a 20 kDa protein, and was inhibited by a PKC inhibitor but not by ASA. With ASA-treated normal PRP, the patient's IgG failed to induce aggregation itself, but enhanced ADP- or STA2-induced aggregation. Western blotting and immunoprecipitation experiments showed that the patient's IgG reacted to a protein of 36 kDa. These results suggest that the platelet activation induced by this autoantibody depended on both the selective activation of PKC and the slight Ca2+ mobilization induced by thromboxane A2 synthesis, while the aggregation depended on secretion induced by the synergistic action of the above two mechanisms and was mediated through GP IIb/IIIa.

Adenosine Triphosphate↗

New monoclonal anti-human Fc gamma receptor II antibodies induce platelet aggregation.

We developed two new monoclonal antibodies, designated NNKY3-2 and NNKY4-7, that recognized a 40-kD platelet protein. They appeared to be monoclonal anti-Fc gamma receptor II (Fc gamma RII) antibodies from the results of flow cytometric binding inhibition studies using another monoclonal anti-Fc gamma RII antibody (2E1). The addition of NNKY3-2 or NNKY4-7 to platelet-rich plasma (PRP) led to a typical aggregation pattern preceded by a lag phase, but their addition to washed platelets did not induce aggregation. The aggregation of PRP by these antibodies was inhibited by prostaglandin E1 (PGE1) or staurosporine (protein kinase C inhibitor), whereas it was only slightly affected by a monoclonal anti-GPIIb/IIIa antibody or Arg-Gly-Asp-Ser. Furthermore, these antibodies induced the aggregation of washed platelets plus normal serum, but not that of washed platelets plus heat-treated serum (destruction of complement activity). These results suggest that NNKY3-2 or NNKY4-7-induced aggregation involves an unusual pathway independent of fibrinogen, and that the important factor is the participation of complement. NNKY3-2 and NNKY4-7 may be useful to study the relationship between autoantibodies, the Fc receptor, and complement in idiopathic thrombocytopenic purpura.

Adenosine Diphosphate↗

Influences of antiplatelet autoantibodies on platelet function in immune thrombocytopenic purpura.

We investigated the characteristics of the antiplatelet autoantibodies in 60 patients with ITP. Using flow cytometry, the binding of monoclonal antibodies to the platelet glycoprotein (GP) IIb/IIIa complex and to GPIb was examined in these patients. The extent of binding was decreased in 15 patients (anti-GPIIb/IIIa in 12 patients and both anti-GPIIb/IIIa and anti-GPIb in 3 patients). Western blotting revealed that 10 of these 15 patients had either anti-GPIIb or anti-GPIIIa and 2 had anti-GPIb autoantibodies, ADP-induced aggregation of normal platelets was inhibited by autoantibodies in 12 of 60 patients, and 11 of these had anti-GPIIb/IIIa antibodies. Ristocetin-induced aggregation was inhibited in 4 of these patients, and 2 with prominent inhibition had anti-GPIb antibodies. There was a significant relationship between platelet-associated IgG value and ATP secretion. These results suggest that some antiplatelet autoantibodies can affect platelet function and thus have an influence on the pathophysiology of ITP.

Adenosine Diphosphate↗

Analysis of idiopathic thrombocytopenic purpura patients with antiglycoprotein IIb/IIIa or Ib autoantibodies.

We analyzed the immunological characteristics of patients with idiopathic thrombocytopenic purpura (ITP) and antiglycoprotein (GP) IIb/IIIa or GPIb autoantibodies. Among 101 ITP patients, 32 had anti-GPIIb/IIIa and 19 had anti-GPIb autoantibodies. Thrombocytopenia was more severe in patients with anti-GPIb autoantibodies than in patients without these autoantibodies, whereas ITP patients with anti-GPIIb/IIIa autoantibodies did not develop severe thrombocytopenia. Patients with anti-GPIb autoantibodies showed significant increases of platelet-associated IgM and platelet-associated C3 in comparison with patients without the autoantibodies, despite there being no significant difference in the platelet-associated IgG levels. The lymphocyte subsets and the blastogenic response in patients with anti-GPIb autoantibodies were also significantly different from those in the patients without these autoantibodies. Furthermore, severe purpura and a poor response to prednisolone were far more common in the patients with anti-GPIb autoantibodies. Activation of the complement system and/or functional abnormalities of lymphocytes thus appear to be involved in the development of thrombocytopenia in ITP patients with anti-GPIb autoantibodies, and such antibodies may be associated with a particularly severe form of ITP.

Autoantibodies↗

[A morphological study on the mandibular symphysis of cleft lip and palate, anterior crossbite and Angle Class I malocclusions].

Morphological characteristics of the mandibular symphysis among the cleft lip and palate, anterior crossbite and Angle Class I malocclusions were analyzed cephalometrically. 1. In the symphyseal thickness at pogonion, the significant differences among the three groups were not found. In the cleft group, the symphyseal thickness at point B was significantly narrower than that of the Class I group. 2. In the symphyseal height, the cleft group was larger than that of the crossbite group, while the crossbite group was the middle of the two groups. 3. In the symphyseal inclination, the cleft group was significantly large, compared to that of the crossbite and Class I groups. The symphyseal inclination of the cleft group was mostly the alveolar part of mandibular symphysis. 4. The chin formation was the absorption of the around of point B. The chin formation was appeared between the ages of A and B groups.

Cephalometry↗

[Analysis of adhesive proteins on the surface membrane of platelet in malignant neoplasm].

Flow cytometry was used to detect fibrinogen (platelet associated fibrinogen: PAFbg) and fibronectin (PAFn) on the surface membrane of platelets in leukemia (9 cases), lung cancer (15 cases) and hepatoma (8 cases) patients (by one color analysis method), and simultaneously to investigate the binding of monoclonal anti-glycoprotein (GP) IIb/IIIa and anti-GP Ib antibodies (by two color analysis). All patient groups showed higher Fbg values than the normal control group, but no differences were found between patient groups. The values of Fbg and Fn showed a correlation, but the pattern of binding did not show a regular tendency in any patient group. There also was no significant correlation between Fbg values and the positive percentage of monoclonal anti-GPIIb/IIIa and anti-GPIb antibodies, and the binding of Fbg did not inhibit that of monoclonal antibody. The results suggest the following. 1. There are no differences in platelet activation in leukemia, lung cancer and hepatoma patients, and the degree of platelet activation is decided by the degree and the kind of stimulation. 2. The increase of both PAFbg and PAFn prove to the existence of activated platelet.

Blood Platelets↗