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Thrombocytosis and recurrent hepatic outflow obstruction (Budd-Chiari syndrome) after successful thrombolysis: case report and literature review.

Approximately two thirds of cases of hepatic flow obstruction are due to myeloproliferative disorders. Restoration of hepatic blood flow is the essential goal of treatment. Thrombolytic therapy seems to achieve good results at least in selected cases. A 32-year-old woman is presented, with an intermittent increase in platelet count (526-725 x 10(9)/L), two previous spontaneous abortions and acute symptomatic occlusion of hepatic veins, and in whom a diagnosis of essential thrombocythemia was initially carried out in agreement with the polycythemia vera study group criteria. She received recombinant tissue plasminogen activator followed by heparin with restoration of normal hepatic outflow. Asymptomatic re-occlusion of the hepatic veins was observed 1 year later, despite adequate continuous warfarin treatment. Angiography showed marked narrowing of the intrahepatic cava vein due to extrinsic compression by an enlarged liver, not due to a new thrombosis so that no specific intervention could be performed. In the presence of a dearly documented hepatic vein thrombosis, thrombolytic therapy should be considered. The patient was given low-molecular-weight heparin with a dramatic reduction in previously elevated fibrinogen level and a good control of the hepatic function.

Adult↗

Effect of interleukin-11 with and without granulocyte colony-stimulating factor on in vivo neonatal rat hematopoiesis: induction of neonatal thrombocytosis by interleukin-11 and synergistic enhancement of neutrophilia by interleukin-11 + granulocyte colony-stimulating factor.

IL-11, a new hematopoietic cytokine isolated from primate stromal cells (PU-34), has been shown to act synergistically with IL-3 to induce proliferation of early hematopoietic stem cells and induce in vitro CFU-MEG proliferation. We hypothesize that recombinant human (rh)IL-11 alone or in combination with granulocyte colony-stimulating factor (G-CSF) might modulate newborn in vivo granulopoiesis and thrombopoiesis. Newborn Sprague-Dawley rats were given 14 d of intraperitoneal rhIL-11 (0-250 micrograms/kg x 14 d), rhIL-11 (250 micrograms/kg) + rhG-CSF (5 micrograms/kg simultaneously x 14 d), rhIL-11 x 7 d followed by G-CSF x 7 d, G-CSF x 14 d, PBS/human serum albumin x 7 d followed by G-CSF x 7 d, or PBS/human serum albumin x 14 d. rhIL-11 alone had no effect on the circulating hematocrit or absolute neutrophil count. There was, however, a significant increase in the circulating platelet count after rhIL-11 (100 and 250 micrograms/kg) versus PBS/human serum albumin (d 13: 1241 +/- 54, 1262 +/- 58 versus 939 +/- 38 k/mm3; p = 0.01). Sequential and simultaneous IL-11 + G-CSF caused a significant increase in the marrow neutrophil reserve and the circulating absolute neutrophil count above that observed when G-CSF alone was administered. IL-11 +/- G-CSF, however, failed to reduce the 96-h mortality rate during experimental group B streptococcal sepsis. These data suggest that IL-11 alone results in a significant elevation in the blood platelet concentration and, in combination with G-CSF, induces an increase in in vivo neonatal rat myelopoiesis.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Anagrelide for control of thrombocytosis due to myeloproliferative disorders.

Myeloproliferative disorders are characterized by overproduction of one or more blood lineages. The clinical course of the Philadelphia-negative myeloproliferative disorders, particularly essential thrombocythemia and polycythemia vera, are characterized by vascular symptoms and in the long-term, transformation to myelofibrosis and leukemia may occur. Control of myeloproliferation has traditionally been achieved using cytotoxic agents but many of these have a documented ability to increase the risk of leukemia. Anagrelide, initially developed as an antiaggregant, is an attractive alternative to these agents as it appears to be relatively selective in reducing the platelet count and is unlikely to be leukemogenic. This article reviews clinical studies in these patients and discusses the future scope for anagrelide.

Animals↗

Diagnostic and differential criteria of essential thrombocythemia and reactive thrombocytosis.

Among the chronic myeloproliferative disorders essential thrombocythemia (ET) is known to be a distinct clinical entity in which an excessive number of morphologically and functionally abnormal platelets are produced. The clonal nature of the disease is well established. Based on a review of the literature the present authors propose the following novel criteria for the diagnosis of ET: A1. Platelet count in excess of 600 x 10(9)/L. A2. No increase in red-cell mass (RCM) in the presence of stainable iron in the bone marrow or failure of iron trial (RCM < 36 mL/kg in males and < 32 mL/kg in females; or RCM < 25% above mean normal predicted value*). A3. No Philadelphia chromosome. A4. Megakaryocytic hyperplasia (= increased megakaryocyte number and size) in histological sections of bone marrow and/or increased megakaryocytic ploidy (two-color flow cytometry); no collagen fibrosis. B1. Splenomegaly on isotopic scan or echogram. B2. Unstimulated growth of BFU-E and/or CFU-Meg present. B3. Normal ESR/fibrinogen. The diagnosis of ET is considered to be established if A1 + A2 + A3 + A4 or A1 + A2 + A3 + two B-criteria are fulfilled. (* Br J Haematol 1995; 89:748-756.)

Blood Sedimentation↗