A hereditary bleeding disorder of dogs caused by a lack of platelet procoagulant activity.
暂无分享,去创建一个
[1] K. Ray,et al. von Willebrand disease phenotype and von Willebrand factor marker genotype in Doberman Pinschers. , 2001, American journal of veterinary research.
[2] K. Clemetson,et al. The GPIb thrombin-binding site is essential for thrombin-induced platelet procoagulant activity. , 2000, Blood.
[3] D. Wagner,et al. Insights from von Willebrand disease animal models , 1999, Cellular and Molecular Life Sciences CMLS.
[4] N. O. Solum,et al. Procoagulant expression in platelets and defects leading to clinical disorders. , 1999, Arteriosclerosis, thrombosis, and vascular biology.
[5] K Fujikawa,et al. Protease-activated receptor 1 is the primary mediator of thrombin-stimulated platelet procoagulant activity. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[6] D. Dekkers,et al. Lipid translocation across the plasma membrane of mammalian cells. , 1999, Biochimica et biophysica acta.
[7] H. Hemker,et al. Heterogeneity in microparticle formation and exposure of anionic phospholipids at the plasma membrane of single adherent platelets. , 1999, Biochimica et biophysica acta.
[8] J. Freyssinet,et al. Significance of capacitative Ca2+ entry in the regulation of phosphatidylserine expression at the surface of stimulated cells. , 1999, Biochemistry.
[9] N. Janel,et al. Assessment of the Expression of Candidate Human Plasma Membrane Phospholipid Scramblase in Scott Syndrome Cells , 1999, Thrombosis and Haemostasis.
[10] H. Hemker,et al. Fibrin-dependent platelet procoagulant activity requires GPIb receptors and von Willebrand factor. , 1999, Blood.
[11] T. Hoffmann,et al. The Xylum Clot Signature Analyzer: a dynamic flow system that simulates vascular injury. , 1998, Thrombosis research.
[12] P. Sims,et al. Expression of proteins controlling transbilayer movement of plasma membrane phospholipids in the B lymphocytes from a patient with Scott syndrome. , 1998, Blood.
[13] A. Nurden,et al. Microvesicle release is associated with extensive protein tyrosine dephosphorylation in platelets stimulated by A23187 or a mixture of thrombin and collagen. , 1998, The Biochemical journal.
[14] M. Callan,et al. Chrono-lume® and Magnesium Potentiate Aggregation of Canine but not Human Platelets in Citrated Platelet-Rich Plasma , 1998, Thrombosis and Haemostasis.
[15] J. Billheimer,et al. Impaired Ca2+-induced tyrosine phosphorylation and defective lipid scrambling in erythrocytes from a patient with Scott syndrome: a study using an inhibitor for scramblase that mimics the defect in Scott syndrome. , 1998, Blood.
[16] J. Freyssinet,et al. Aminophospholipid exposure, microvesiculation and abnormal protein tyrosine phosphorylation in the platelets of a patient with Scott syndrome: a study using physiologic agonists and local anaesthetics , 1997, British journal of haematology.
[17] A. Nurden,et al. Comparison between the loss of platelet membrane asymmetry, microvesiculation and the tyrosine phosphorylation of proteins. , 1997, Prostaglandins, leukotrienes, and essential fatty acids.
[18] J. Heemskerk,et al. Collagen but not fibrinogen surfaces induce bleb formation, exposure of phosphatidylserine, and procoagulant activity of adherent platelets: evidence for regulation by protein tyrosine kinase-dependent Ca2+ responses. , 1997, Blood.
[19] P. Sims,et al. Molecular Cloning of Human Plasma Membrane Phospholipid Scramblase , 1997, The Journal of Biological Chemistry.
[20] H. Weiss,et al. Platelet prothrombinase activity and intracellular calcium responses in patients with storage pool deficiency, glycoprotein IIb-IIIa deficiency, or impaired platelet coagulant activity--a comparison with Scott syndrome. , 1997, Blood.
[21] F. Rodeghiero,et al. Characterization of a novel bleeding disorder with isolated prolonged bleeding time and deficiency of platelet microvesicle generation , 1997, British journal of haematology.
[22] A. Schroit,et al. Pathophysiologic implications of membrane phospholipid asymmetry in blood cells. , 1997, Blood.
[23] A. Lanevschi,et al. Evaluation of chromogenic substrate assays for fibrinolytic analytes in dogs. , 1996, American journal of veterinary research.
[24] P. Sims,et al. Isolation of an Erythrocyte Membrane Protein that Mediates Ca2+-dependent Transbilayer Movement of Phospholipid* , 1996, The Journal of Biological Chemistry.
[25] J. Freyssinet,et al. Scott syndrome, characterized by impaired transmembrane migration of procoagulant phosphatidylserine and hemorrhagic complications, is an inherited disorder. , 1996, Blood.
[26] C. Reutelingsperger,et al. Ultrastructural Detection of Surface Exposed Phosphatidylserine on Activated Blood Platelets , 1995, Thrombosis and Haemostasis.
[27] J. Freyssinet,et al. Calcium involvement in aminophospholipid exposure and microparticle formation during platelet activation: a study using Ca2+-ATPase inhibitors. , 1995, Biochemistry.
[28] P. Williamson,et al. The complex of phosphatidylinositol 4,5-bisphosphate and calcium ions is not responsible for Ca2+-induced loss of phospholipid asymmetry in the human erythrocyte: a study in Scott syndrome, a disorder of calcium-induced phospholipid scrambling. , 1995, Blood.
[29] Weiss Hj. Scott syndrome: a disorder of platelet coagulant activity. , 1994 .
[30] M. Scully,et al. Thrombin receptor activating peptide does not stimulate platelet procoagulant activity. , 1994, Biochemical and Biophysical Research Communications - BBRC.
[31] M. Brooks,et al. Buccal Mucosa Bleeding Time Is Prolonged in Canine Models of Primary Hemostatic Disorders , 1993, Thrombosis and Haemostasis.
[32] A. Nurden,et al. Annexin V as a probe of aminophospholipid exposure and platelet membrane vesiculation: a flow cytometry study showing a role for free sulfhydryl groups , 1993 .
[33] P. Comfurius,et al. Mechanism and function of changes in membrane-phospholipid asymmetry in platelets and erythrocytes. , 1993, Biochemical Society transactions.
[34] P. Comfurius,et al. Platelet procoagulant activity and microvesicle formation. Its putative role in hemostasis and thrombosis. , 1992, Biochimica et biophysica acta.
[35] K. Mann,et al. Surface-dependent hemostasis. , 1992, Seminars in hematology.
[36] J. Tait,et al. Collagen-induced exposure of anionic phospholipid in platelets and platelet-derived microparticles. , 1991, The Journal of biological chemistry.
[37] A. Schroit,et al. Transbilayer movement of phospholipids in red cell and platelet membranes. , 1991, Biochimica et biophysica acta.
[38] C. Esmon,et al. Assembly of the platelet prothrombinase complex is linked to vesiculation of the platelet plasma membrane. Studies in Scott syndrome: an isolated defect in platelet procoagulant activity. , 1989, The Journal of biological chemistry.
[39] Schalm Ow,et al. Schalm's Veterinary Hematology , 1986 .
[40] J. White,et al. Defective platelet-fibrinogen interaction in hereditary canine thrombopathia. , 1986, Blood.
[41] I. Kjønniksen,et al. Visualization of von Willebrand Factor Multimers by Enzyme-Conjugated Secondary Antibodies , 1986, Thrombosis and Haemostasis.
[42] S. Schreier,et al. A 2H-NMR study on the interactions of the local anesthetic tetracaine with membranes containing phosphatidylserine. , 1986, Biochimica et biophysica acta.
[43] A. Karniguian,et al. Collagen derived octapeptide inhibits platelet procoagulant activity induced by the combined action of collagen and thrombin. , 1985, Thrombosis research.
[44] P. Devaux,et al. ATP-dependent asymmetric distribution of spin-labeled phospholipids in the erythrocyte membrane: relation to shape changes. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[45] P. Comfurius,et al. Changes in membrane phospholipid distribution during platelet activation. , 1983, Biochimica et biophysica acta.
[46] H. Weiss,et al. Isolated deficiency of platelet procoagulant activity. , 1979, The American journal of medicine.
[47] P Latimer,et al. Application of light-scattering theory to the optical effects associated with the morphology of blood platelets. , 1977, Archives of biochemistry and biophysics.
[48] W. J. Dyer,et al. A rapid method of total lipid extraction and purification. , 1959, Canadian journal of biochemistry and physiology.
[49] P. Siljander,et al. Receptors and signalling mechanisms in the procoagulant response of platelets. , 2000, Platelets.
[50] D. Hickerson,et al. Characterization and quantitation by flow cytometry of membranous microparticles formed during activation of platelet suspensions with ionophore or thrombin , 2000, Platelets.
[51] Katherine A. High,et al. Long-term correction of canine hemophilia B by gene transfer of blood coagulation factor IX mediated by adeno-associated viral vector , 1999, Nature Medicine.
[52] M. Brooks,et al. A review of canine inherited bleeding disorders: biochemical and molecular strategies for disease characterization and carrier detection. , 1999, The Journal of heredity.
[53] J. Catalfamo,et al. A sensitive immunoassay for von Willebrand factor. , 1991, Journal of immunoassay.
[54] G. Ling,et al. Activated coagulation time (ACT) of whole blood in normal dogs. , 1976, American journal of veterinary research.