Platelets: production, morphology and ultrastructure.
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[1] J. Hartwig,et al. The spectrin-based membrane skeleton stabilizes mouse megakaryocyte membrane systems and is essential for proplatelet and platelet formation. , 2011, Blood.
[2] S. Watson,et al. Dasatinib enhances megakaryocyte differentiation but inhibits platelet formation. , 2011, Blood.
[3] J. Hartwig,et al. Cytoskeletal mechanics of proplatelet maturation and platelet release , 2010, The Journal of cell biology.
[4] F. De Haas,et al. The platelet interior revisited: electron tomography reveals tubular alpha-granule subtypes. , 2010, Blood.
[5] S. Watson,et al. Critical role of Src-Syk-PLC{gamma}2 signaling in megakaryocyte migration and thrombopoiesis. , 2010, Blood.
[6] O. McCarty,et al. Safety and Antithrombotic Efficacy of Moderate Platelet Count Reduction by Thrombopoietin Inhibition in Primates , 2010, Science Translational Medicine.
[7] R. Flaumenhaft,et al. Platelet alpha-granules: basic biology and clinical correlates. , 2009, Blood reviews.
[8] R. Shivdasani,et al. Regulation of platelet biogenesis: insights from the May–Hegglin anomaly and other MYH9‐related disorders , 2009, Journal of thrombosis and haemostasis : JTH.
[9] D. Bluteau,et al. Regulation of megakaryocyte maturation and platelet formation , 2009, Journal of thrombosis and haemostasis : JTH.
[10] A. Balduini,et al. Adhesive receptors, extracellular proteins and myosin IIA orchestrate proplatelet formation by human megakaryocytes , 2008, Journal of thrombosis and haemostasis : JTH.
[11] J. Folkman,et al. Angiogenesis is regulated by a novel mechanism: pro- and antiangiogenic proteins are organized into separate platelet alpha granules and differentially released. , 2008, Blood.
[12] Joseph E Italiano,et al. Dynamic Visualization of Thrombopoiesis Within Bone Marrow , 2007, Science.
[13] D. Ingber,et al. The May-Hegglin anomaly gene MYH9 is a negative regulator of platelet biogenesis modulated by the Rho-ROCK pathway. , 2007, Blood.
[14] J. Hartwig,et al. Mechanics of proplatelet elaboration , 2007, Journal of thrombosis and haemostasis : JTH.
[15] S. Watson,et al. Regulation of proplatelet formation and platelet release by integrin αIIbβ3 , 2006 .
[16] K. Kaushansky,et al. Lineage-specific hematopoietic growth factors. , 2006, The New England journal of medicine.
[17] Linheng Li,et al. The stem cell niches in bone. , 2006, The Journal of clinical investigation.
[18] W. Jochum,et al. Platelet-Derived Serotonin Mediates Liver Regeneration , 2006, Science.
[19] J. Hartwig,et al. Cytoskeletal mechanisms for platelet production. , 2006, Blood cells, molecules & diseases.
[20] S. Watson,et al. A product of their environment: Do megakaryocytes rely on extracellular cues for proplatelet formation? , 2006, Platelets.
[21] Niels Galjart,et al. Differential roles of microtubule assembly and sliding in proplatelet formation by megakaryocytes. , 2005, Blood.
[22] Joseph E Italiano,et al. Mechanisms of organelle transport and capture along proplatelets during platelet production. , 2005, Blood.
[23] Joseph E Italiano,et al. The biogenesis of platelets from megakaryocyte proplatelets. , 2005, The Journal of clinical investigation.
[24] J. Vermylen,et al. The TUBB1 Q43P functional polymorphism reduces the risk of cardiovascular disease in men by modulating platelet function and structure. , 2005, Blood.
[25] S. Rafii,et al. Chemokine-mediated interaction of hematopoietic progenitors with the bone marrow vascular niche is required for thrombopoiesis , 2004, Nature Medicine.
[26] R. Flaumenhaft. Molecular Basis of Platelet Granule Secretion , 2003, Arteriosclerosis, thrombosis, and vascular biology.
[27] J. Hartwig,et al. Mechanisms and implications of platelet discoid shape. , 2003, Blood.
[28] J. Hartwig,et al. α-Adducin dissociates from F-actin and spectrin during platelet activation , 2003, The Journal of cell biology.
[29] Johan W M Heemskerk,et al. Platelet Activation and Blood Coagulation , 2002, Thrombosis and Haemostasis.
[30] Matthew R. Jones,et al. Roads to polyploidy: The megakaryocyte example , 2002, Journal of cellular physiology.
[31] R. Shivdasani. Molecular and Transcriptional Regulation of Megakaryocyte Differentiation , 2001, Stem cells.
[32] J. Palmblad,et al. Angiogenesis Research: Guidelines for Translation to Clinical Application , 2001, Thrombosis and Haemostasis.
[33] J. Hartwig,et al. A lineage-restricted and divergent β-tubulin isoform is essential for the biogenesis, structure and function of blood platelets , 2001, Current Biology.
[34] E. Cramer,et al. Megakaryocyte dense granule components are sorted in multivesicular bodies. , 2000, Blood.
[35] J. Hartwig,et al. Blood Platelets Are Assembled Principally at the Ends of Proplatelet Processes Produced by Differentiated Megakaryocytes , 1999, The Journal of cell biology.
[36] J. Hartwig,et al. The Elegant Platelet: Signals Controlling Actin Assembly , 1999, Thrombosis and Haemostasis.
[37] A. Forer,et al. From megakaryocytes to platelets: platelet morphogenesis takes place in the bloodstream , 1998, European journal of haematology. Supplementum.
[38] P. Vyas,et al. Mice Lacking Transcription Factor NF-E2 Provide In Vivo Validation of the Proplatelet Model of Thrombocytopoiesis and Show a Platelet Production Defect That Is Intrinsic to Megakaryocytes , 1998 .
[39] N. Debili,et al. Multivesicular Bodies Are an Intermediate Stage in the Formation of Platelet α-Granules , 1998 .
[40] S. Nilsson,et al. Immunofluorescence Characterization of Key Extracellular Matrix Proteins in Murine Bone Marrow In Situ , 1998, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[41] T. Springer,et al. Neutrophil rolling, arrest, and transmigration across activated, surface-adherent platelets via sequential action of P-selectin and the beta 2-integrin CD11b/CD18. , 1996, Blood.
[42] T. Nagasawa,et al. Bone marrow stromal cells produce thrombopoietin and stimulate megakaryocyte growth and maturation but suppress proplatelet formation. , 1996, Blood.
[43] J. Hartwig,et al. Thrombin-induced GPIb-IX centralization on the platelet surface requires actin assembly and myosin II activation. , 1996, Blood.
[44] S. Orkin,et al. Transcription factor NF-E2 is required for platelet formation independent of the actions of thrombopoeitin/MGDF in megakaryocyte development , 1995, Cell.
[45] M. Hokom,et al. Platelets generated in vitro from proplatelet-displaying human megakaryocytes are functional. , 1995, Blood.
[46] D. Safer,et al. Beta thymosins as actin binding peptides , 1994, BioEssays : news and reviews in molecular, cellular and developmental biology.
[47] J. Hoxie,et al. Signaling through G Proteins and G Protein-coupled Receptors during Platelet Activation , 1993, Thrombosis and Haemostasis.
[48] M. Ogawa,et al. Differentiation and proliferation of hematopoietic stem cells. , 1993, Blood.
[49] A. Michelson. Thrombin-Induced Down-Regulation of the Platelet Membrane Glycoprotein Ib-IX Complex , 1992, Seminars in thrombosis and hemostasis.
[50] B. Coller,et al. Platelet fibrinogen and vitronectin in Glanzmann thrombasthenia: evidence consistent with specific roles for glycoprotein IIb/IIIA and alpha v beta 3 integrins in platelet protein trafficking [see comments] , 1991 .
[51] J. Hartwig,et al. The cytoskeleton of the resting human blood platelet: structure of the membrane skeleton and its attachment to actin filaments , 1991, The Journal of cell biology.
[52] F. Tablin,et al. Blood platelet formation in vitro. The role of the cytoskeleton in megakaryocyte fragmentation. , 1990, Journal of cell science.
[53] P. Stenberg,et al. Mechanisms of platelet production. , 1989, Blood cells.
[54] Ken-ichi Yoshida,et al. The Cytoskeleton of the Blood Platelet: A Dynamic Structure , 1988 .
[55] R. Leven,et al. Megakaryocyte motility and platelet formation. , 1987, Scanning microscopy.
[56] T. Farver,et al. Circulating proplatelets: isolation and quantitation in healthy rats and in rats with induced acute blood loss. , 1987, American journal of veterinary research.
[57] R. Linck,et al. The cystoskeleton of unstimulated blood platelets: structure and composition of the isolated marginal microtubular band. , 1985, Journal of cell science.
[58] J. Radley,et al. Fate of senescent megakaryocytes in the bone marrow , 1983, British journal of haematology.
[59] S. Rosenberg,et al. Isolation and characterization of actin and actin-binding protein from human platelets , 1981, The Journal of cell biology.
[60] G. Scurfield,et al. The mechanism of platelet release. , 1980, Blood.
[61] J. White. Interaction of membrane systems in blood platelets. , 1972, The American journal of pathology.
[62] O. Behnke. The morphology of blood platelet membrane systems. , 1970, Series haematologica.
[63] O. Behnke. An electron microscope study of the rat megacaryocyte. II. Some aspects of platelet release and microtubules. , 1969, Journal of ultrastructure research.
[64] White Jg. Effects of colchicine and Vinca alkaloids on human platelets. I. Influence on platelet microtubules and contractile function. , 1968 .
[65] A. Angrist,et al. Membrane Surface Specialization of Blood Platelet and Megakaryocyte , 1968, Nature.
[66] O. P. Jones. Origin of megakaryocyte granules from Golgi vesicles , 1960, The Anatomical record.
[67] W. H. Howell,et al. THE PRODUCTION OF BLOOD PLATELETS IN THE LUNGS , 1937, The Journal of experimental medicine.