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Biomedical subjects

A Oda

Publications and source records attributed to A Oda.

At least 55 records · Page 3Linked to original sources

Outside-in signaling from integrin alpha IIb beta 3 into platelets in the absence of agonist-induced signaling.

Platelet agonists generate intracellular signals which lead to activation of the platelet membrane glycoprotein IIb-IIIa (integrin alpha IIb beta 3). The resulting occupancy of alpha IIb beta 3 by ligands also generates signals into the cell (outside-in signaling). We reported previously that unlike platelet agonists, the F(ab')2 fragments of an anti-alpha IIb beta 3 monoclonal antibody, PMA4, induced fibrinogen binding to alpha IIb beta 3 without causing intracellular activation. In this study, in order to determine whether outside-in signaling occurs in the absence of agonist-induced intracellular signals, we used PMA4 F(ab')2 as an inducer of fibrinogen binding to alpha IIb beta 3. PMA4 F(ab')2-induced fibrinogen binding and subsequent platelet aggregation triggered tyrosine phosphorylation of several proteins including pp72syk but not pp125FAK. No Ca2+ influx or mobilization, thromboxane B2 synthesis, phosphorylation of pleckstrin or the myosin light chain, cytoplasmic alkalinization, or platelet shape changes, were detected. These findings suggest that, in the absence of agonist-induced signaling, alpha IIb beta 3 occupied by soluble fibrinogen generates only a limited outside-in signal.

Antibodies, Monoclonal↗

[Hemodynamic effects of continuous epidural infusion with local anesthetics].

Epidural blockade with local anesthetic may cause hypotension resulting from sympathetic block and/or systemic effect produced by absorbed local anesthetic through epidural blood vessels. In the present study, we compared the hemodynamic effects of saline 0.5 ml.h-1, lidocaine 0.5 ml.h-1, bupivacaine 0.5 ml.h-1, lidocaine 2 ml.h-1, and bupivacaine 2 ml.h-1, which were given epidurally combined with morphine. There was not significant difference in hemodynamics among 5 groups. Continuous epidural infusion with a small dose of local anesthetic agent combined with morphine is unlikely to induce apparent hemodynamic effects during postoperative period.

Adult↗

Crkl is constitutively tyrosine phosphorylated in platelets from chronic myelogenous leukemia patients and inducibly phosphorylated in normal platelets stimulated by thrombopoietin.

Platelet functions such as aggregation and clot retraction are often abnormal in chronic mylogenous leukemia (CML) patients. However, the molecular mechanisms of these altered functions are unknown. As expression of the p210bcr-abl oncogene product, a constitutively active tyrosine kinase, is known to have an essential role in the pathogenesis of CML and tyrosine phosphorylation is intimately involved in various aspects of platelet activation, we examined the pattern of protein tyrosine phosphorylation in platelets from 15 CML patients by immunoblotting with a monoclonal antiphosphotyrosine antibody (4G10). Before and after stimulation with thrombin, the only consistent difference between normal and CML platelets was the presence of a tyrosine phosphorylated protein with a relative molecular weight of 39 kD. This tyrosine phosphorylated protein was identified as crid, an SH2, SH3 containing adapter protein. Thus, as previously demonstrated for neutrophils from CML patients, tyrosine phosphorylation of p39crkl persists in mature platelets. No tyrosine phosphorylation of crid was detected following stimulation with thrombin in normal platelets. However, crkl became incorporated into the Triton X-100 insoluble residue following thrombin stimulation in a manner dependent on platelet aggregation. Further, we found that crkl is an endogenous substrate for calpain, a protease that may be involved in postaggregation signaling processes. This suggests that crkl may be involved in the reorganization of the cytoskeleton during normal platelet aggregation and its tyrosine phosphorylation in CML platelets may contribute to the abnormal platelet function in CML patients. Finally, we found that thrombopoietin induces tyrosine phosphorylation of crk1 in normal platelets and FDCP cells genetically engineered to express human c-Mpl. This suggests that crk1 can be phosphorylated by a kinase other than p210bcr-abl and that crk1 may have a role in signaling by thrombopoietin.

Adaptor Proteins, Signal Transducing↗

p120c-cbl is present in human blood platelets and is differentially involved in signaling by thrombopoietin and thrombin.

To investigate the signaling processes induced by recombinant thrombopoietin, we used human platelets to recently show that thrombopoietin induces rapid tyrosine phosphorylation of Jak2, Tyk2, Shc, Stat3, Stat5, and other proteins in human platelets. Because the apparent molecular weight of a major tyrosine-phosphorylated protein in platelets stimulated by thrombopoietin is approximately 120 kD, we examined the possibility that this could be p120c-cbl, a protein known to be involved in signaling by many growth factors. Specific antisera against p120c-cbl recognized the same 120-kD protein in lysates of Jurkat cells, which are known to express p120c-cbl, and platelets, indicating that platelets have p120c-cbl. Thrombopoietin induced rapid tyrosine phosphorylation of p120c-cbl in platelets. Thrombopoietin also induced tyrosine phosphorylation of p120c-cbl in FDCP cells genetically engineered to express the thrombopoietin receptor, c-Mpl. Interestingly, FDCP cells, expressing a truncated c-Mpl devoid of the box-2 domain, proliferate in response to thrombopoietin. However, no increase in tyrosine phosphorylation of p120c-cbl was observed upon treatment of these cells with thrombopoietin, indicating that in this system tyrosine phosphorylation of p120c-cbl may not be essential for cell proliferation. This suggests that tyrosine phosphorylation of p120c-cbl may be required for nonmitogenic responses induced by thrombopoietin in postmitotic cells such as platelets. On the other hand, p120c-cbl was not significantly tyrosine-phosphorylated upon treatment of platelets with thrombin. However, it became incorporated into the Triton X-100-insoluble, 10,000g-sedimentable residue in an aggregation-dependent manner, suggesting that it may have a regulatory role in platelet cytoskeletal processes. p120c-cbl was constitutively associated with a 28-kD adapter protein, Grb2, that was also incorporated into the Triton X-100-insoluble, sedimentable residue dependent on aggregation. Further, we found that p120c-cbl is an endogenous substrate for calpain, a protease that may play a role in postaggregation signaling processes. Our data suggest that p120c-cbl may be involved in signal transduction following ligand binding to c-Mpl through its inducible tyrosine phosphorylation, and it may also be involved in signaling during platelet aggregation by its redistribution to the cytoskeleton.

Adaptor Proteins, Signal Transducing↗

Thrombopoietin primes human platelet aggregation induced by shear stress and by multiple agonists.

Recombinant thrombopoietin has been reported to stimulate megakaryocytopoiesis and thrombopoiesis and it may be quite useful to treat patients with low platelet counts after chemotherapy. As little is known regarding the possible activation of platelets by thrombopoietin, we examined the effects of thrombopoietin on platelet aggregation induced by shear stress and various agonists in native plasma. Using hirudin as an anticoagulant, thrombopoietin (1 to 100 ng/mL) enhanced platelet aggregation induced by 2 micromol/L adenosine-diphosphate (ADP) in a dose dependent fashion. The enhancement was not affected by treatment of platelets with 1 mmol/L aspirin plus SQ-29548 (a thromboxane antagonist, 1 micromol/L) but was inhibited by a soluble form of the thrombopoietin receptor, suggesting that the enhancement was mediated by the specific receptors and does not require thromboxane production. Epinephrine (1 micromol/L), which does not induce platelet aggregation in hirudin platelet rich plasma (PRP), did so in the presence of thrombopoietin (10 ng/mL). Thrombopoietin (10 ng/mL) also enhanced or primed platelet aggregation induced by collagen (0.5 micron.mL),. thrombin, serotonin, and vasopressin. Thrombopoietin does not induce any rise in cytosolic ionized calcium concentration nor activation of protein kinase C, as estimated by phosphorylation of preckstrin, indicating that the priming effects of thrombopoietin does not require those processes. The ADP- or thrombin-induced rise in cytosolic ionized calcium concentration was not enhanced by thrombopoietin (100 ng/mL). Further, shear (ca. 90 dyn/cm2)-induced platelet aggregation was also potentiated by thrombopoietin. The priming effect on epinephrine-induced platelet aggregation in hirudin PRP was unique to thrombopoietin, with no effects seen using interleukin-6 (IL-6), IL-11, IL-3, erythropoietin, granulocyte-colony stimulating factor, granulocyte macrophage-colony stimulating factor, or c-kit ligand. These data indicate that monitoring of platelet functions may be necessary in the clinical trials of thrombopoietin.

Adenosine Diphosphate↗

Thrombopoietin induces tyrosine phosphorylation of Stat3 and Stat5 in human blood platelets.

Thrombopoietin is known to be essential for megakaryocytopoiesis and thrombopoiesis. Recently, we and others have shown that thrombopoietin induces rapid tyrosine phosphorylation of Jak2 and other proteins in human platelets and BaF3 cells, genetically engineered to express c-Mpl, a receptor for thrombopoietin. The Jak family of tyrosine kinases are known to mediate some of the effects of cytokines or hematopoietic growth factors by recruitment and tyrosine phosphorylation of a variety of Stat (signal transducers and activators of transcription) proteins. Hence, we have investigated whether Stat proteins are present in platelets and, if so, whether they become tyrosine phosphorylated in response to thrombopoietin. We immunologically identified Stat1, Stat2, Stat3, and Stat5 in human platelet lysates. Thrombopoietin induced tyrosine phosphorylation of Stat3 and Stat5 in these cells. Thrombopoietin also induced tyrosine phosphorylation of Stat3 and Stat5 in FDCP-2 cells genetically engineered to constitutively express human c-Mpl. Thus, our data indicate that Stat3 and Stat5 may be involved in signal transduction after ligand binding to c-Mpl and that this event may have a role in megakaryopoiesis/thrombopoiesis or possibly a mature platelet function such as aggregation.

Animals↗

Circulating endogenous thrombopoietin, interleukin-3, interleukin-6 and interleukin-11 levels in patients undergoing allogeneic bone marrow transplantation.

To elucidate the physiologic role of thrombopoietin (TPO) for hematologic reconstitution following allogeneic bone marrow transplantation (BMT), serum TPO levels as well as interleukin-3 (IL-3), IL-6 and IL-11 were serially measured in 55 samples from 3 patients who underwent allogeneic BMT using an enzyme-linked immunosorbent assay (ELISA). The TPO level was higher in the serum taken during marrow aplasia than in the pretransplant serum. The serum TPO levels and platelet counts showed a strong inverse relationship in all patients examined. We also sequentially measured endogenous serum TPO levels before and within 36 h after platelet transfusions. Endogenous serum TPO levels were inversely correlated with platelet mass following platelet transfusions. Serum levels of IL-3 had no apparent correlation with platelet counts and serum levels of IL-11 remained below the detection levels (31.3 pg/ml) in all samples. Serum levels of IL-6 were high during myeloaplasia and more upregulated in the febrile period. These findings support the view that TPO is the central regulator for megakaryopoiesis in vivo and the rationale for its clinical use after allogeneic BMT.

Adult↗

[Anesthetic management of a patient with renal cell carcinoma extending into the right atrium].

A 60-year-old man with renal cell carcinoma extending through inferior vena cava into the right atrium was scheduled for the removal of the right kidney under general anesthesia and the cardiopulmonary bypass technique. In order to obtain a clear operative field and to minimize the risk for pulmonary embolism of necrotizing tumor, total circulatory arrest under profound hypothermia (20 degrees C) was performed. Anesthesia was maintained with high doses of fentanyl (62 micrograms.kg-1), midazolam and supplemented with enflurane. We attempted to prevent circulatory collapse due to acute pulmonary embolism by tumor fragments during operation. The body temperature of the patient was decreased down to 20 degrees C for protecting central nervous system with the minimal damage. No complications occurred during anesthesia and the post-operative period. For the safe anesthetic management of the patient such as our case, adequate monitoring of circulation and protection of central nervous system are essential.

Anesthesia, General↗

A novel regulatory epitope defined by a murine monoclonal antibody to the platelet GPIIb-IIIa complex (alpha IIb beta 3 integrin).

We characterized a murine monoclonal antibody, PT25-2 (IgG1), raised against washed human platelets. The antibody and its Fab fragments were both capable of inducing platelet aggregation in a fibrinogen-dependent manner and induced 125I-fibrinogen binding to unstimulated platelets (120,000 molecules/platelet at a 100 nM IgG concentration). The antibody immunoprecipitated the alpha IIb beta 3 complex from lysates of iodinated platelets but did not react with the respective subunits when complex formation was disrupted by treatment with 5 mM EDTA at 37 degrees C for 30 min. However, simply removing the extracellular divalent cation with EDTA had no effect on antibody binding indicating that the antibody's epitope depends upon a conformational structure maintained by alpha beta subunit association. Antibody binding to unstimulated, washed platelets yielded binding parameters (Kd = 40 nM, Bmax = 100,000 molecules/platelet), which were found to be virtually unchanged when binding was performed using thrombin or RGDS-peptide-stimulated platelets. Thus, the PT25-2 antibody defines a novel regulatory epitope expressed by the alpha IIb beta 3 integrin on unstimulated, quiescent platelets.

Animals↗

[Effects of continuous epidural administration of fentanyl and morphine on postcesarean pain].

We studied the effects of continuous epidural administration of fentanyl and morphine with bupivacaine for management of postcesarean pain. Eighteen patients received either bolus epidural administration of fentanyl 100 micrograms or morphine 3 mg with 0.5% bupivacaine 4 ml, followed by continuous infusion of fentanyl 33 micrograms.ml-1 with 0.17% bupivacaine or morphine 0.21 mg.ml-1 with 0.17% bupivacaine for 48 hours, respectively. Pain score was assessed at 0 h, 12h, 24h and 48h after leaving the operating room. Pain score increased significantly and progressively in the fentanyl group. In all cases pruritus was noted. Severe pruritus was observed in the morphine group significantly more than in the fentanyl group. The current results indicate that morphine may be preferable to fentanyl for postcesarean pain control using the present opioid doses.

Adult↗

Recombinant thrombopoietin induces rapid protein tyrosine phosphorylation of Janus kinase 2 and Shc in human blood platelets.

A cDNA for the thrombopoietin has been cloned by several groups. The recombinant thrombopoietin has been reported to stimulate the megakaryocytopoiesis and thrombopoiesis. Little is known regarding the molecular basis of its effects. To elucidate the molecular mechanism involved in signal transduction, we have investigated the effects of thrombopoietin on platelet tyrosine phosphorylation. We report here that thrombopoietin induced time- and dose-dependent tyrosine phosphorylation of several proteins including Janus kinase 2 (Jak2) and a 52-kD protein, Shc, in human blood platelets. Both Jak2 and Shc were tyrosine phosphorylated within 15 seconds after stimulation. The tyrosine phosphorylation of Jak2 was accompanied by increased kinase activity, whereas Shc tyrosine phosphorylation induced its association with a 25-kD protein, Grb2. Thus, our data suggest that Jak2, Shc, and Grb2 may be involved in signal transduction after ligand binding to c-mpl in human platelets.

Adaptor Proteins, Signal Transducing↗

Fibrous hamartoma of the tongue: report of a case with immunohistochemical and ultrastructural studies.

The case of an 8-month-old female with fibrous hamartoma of the tongue is reported with immunohistochemical and electron microscopic findings. An elastic hard mass at the base of the tongue gradually enlarged, causing dysphagia. The tumor was excised by CO2 laser. Under light microscopy, the tumor was observed as composed of fibroblast-like cells, fibrocollagenous bundles and striated muscle tissues. The majority of the cells were immunoreactive for vimentin. Electronmicroscopically, they contained numerous intermediate filaments, some had intercellular microvilli and cilia (9 + 2 type). These findings revealed that the cells of the fibrous hamartoma in our case may possess both mesenchymal and epithelial properties.

Female↗

The effect of non-enzymatic glycation on recombinant human aldose reductase.

It has been demonstrated that activation of aldose reductase (AR; EC 1.1.1.21) in diabetic tissues plays an important role in the pathogenesis of diabetic complications. In the present study, the effects of non-enzymatic glycation of recombinant human AR (rhAR) on enzyme activity and affinity for its substrate (glyceraldehyde), co-factor (NADPH) and inhibitors (ARI; Sorbinil, Tolrestat, AL-1576 and Statil) were examined. Although rhAR was successfully non-enzymatically glycated with HPLC-purified [3H]D-glucose, the Michaelis constant (Km) and catalytic efficiency (Kcat/Km) for glyceraldehyde, the Km for NADPH and the inhibitor constant (Ki) for ARI did not change. These results suggest that the mechanism of AR activation and its insensitivity to inhibition observed in diabetic tissues cannot be attributed to its non-enzymatic glycation.

Aldehyde Reductase↗

TMB-8 and dibucaine induce tyrosine phosphorylation and dephosphorylation of a common set of proteins in platelets.

Dibucaine and 8-(N,N-diethylamino)octyl 3,4,5-trimethoxybenzoate (TMB-8), which are local anesthetics, affect diverse functions of many cell types. For example, platelet aggregation is inhibited by both, and both cause changes in platelet morphology and structure. Little is known of the mechanisms. We found that both dibucaine (0.125-0.5 mM) and TMB-8 (0.25-1.0 mM) induced rapid tyrosine phosphorylation of several platelet proteins (160, 70-75, and 40 kDa) and dephosphorylation of a 62- to 64-kDa protein detectable by a specific antiphosphotyrosine monoclonal antibody (4G10). Platelet aggregation induced by alpha-thrombin (10 nM) was inhibited by the local anesthetics in approximately the same dose range. Neither dibucaine nor TMB-8 induced activation of protein kinase C (PKC) or myosin light-chain kinase. Their activation was not essential for tyrosine phosphorylation induced by local anesthetics. However, an increase in tyrosine phosphorylation of several proteins (95-130 kDa) induced by alpha-thrombin (10 nM) was inhibited by dibucaine (0.5 mM) or TMB-8 (0.5 mM). Furthermore, when dibucaine (0.5 mM) was added 1 min after addition of alpha-thrombin (10 nM), disaggregation was paralleled to dephosphorylation of many proteins, including those mentioned. Tyrosine phosphorylation and dephosphorylation of specific proteins may account for some of the diverse effects of local anesthetics on platelets and other cells. Addition of TMB-8 (0.5 mM) or dibucaine (0.5 mM) also inhibited activation of PKC, induced by alpha-thrombin (10nM), suggesting that some of the inhibitory effects of dibucaine or TMB-8 may be due to inhibitory effects of local anesthetics on PKC.

Blood Platelets↗