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[Coincidence of chronic idiopathic myelofibrosis and chronic lymphocytic leukaemia. A rare phenomenon?].

In 1986 we diagnosed chronic idiopathic myelofibrosis (CIMF) in a 45-year-old asymptomatic patient with hepatosplenomegaly. In 1996 splenectomy was performed because of hypersplenism, and chemotherapy with hydroxyurea was initiated. In 1999 generalised lymphadenopathy of chronic lymphocytic leukaemia (B-CLL) developed. A trephine biopsy showed leukaemic bone marrow infiltration. On heteroduplex analysis we found a clonal rearrangement of IgH in the leukaemic lymphocytes. The coincidence of chronic myeloproliferative and lymphoproliferative diseases in the same patient is a rare phenomenon. According to the relevant literature, seven cases with a combination of CIMF/CLL have been reported. Possible pathomechanisms for the development of such coincidences are: 1) a bilineage manifestation of a pluripotent stem cell proliferation, 2) independent proliferations of two distinct cell lines under a common leukaemogenic stimulus or 3) an accidental association. These coincidence cases often showed a mild clinical course and also in our case, the patient is still alive and in a stable disease condition 16 years after the initial diagnosis.

Diagnosis, Differential↗

Extramedullary hematopoiesis mimicking acute appendicitis: a rare complication of idiopathic myelofibrosis.

Extramedullary hematopoiesis (EMH) is rarely found in the gastrointestinal tract. To our knowledge, EMH involving the appendix was not described. We report a case with a previous history of idiopathic myelofibrosis, which presented with clinical findings of acute appendicitis that necessitate appendectomy after the relief of his anemia. Microscopic examination and immunohistochemistry revealed foci of EMH throughout the mucosa and the submucosa. In the latter, small clusters of hematopoietic cells were also detected in a few dilated vascular structures. The histopathological features of acute appendicitis were not observed. Our case supports that EMH might develop in organs that are not involved in hematopoiesis. Although in gastrointestinal system, obstruction and bleeding are the most common symptomatic manifestations, this case emphasizes that EMH might also present clinically as acute appendicitis. The absence of histopathological features of acute appendicitis raises the possibility that local production of some mediators from hematopoietic precursor cells might contribute to this clinical presentation.

Acute Disease↗

Acute myelofibrosis and malignant hypercalcemia.

A 33 year old man presented with symptoms of one week's duration; he had a serum calcium of 22.5 mg/dl and a markedly hypercellular bone marrow. Despite therapy with saline diuresis, furosemide mithramycin, total parathyroidectomy and corticosteroids, symptomatic hypercalcemia was poorly controlled. Inappropriate serum parathyroid hormone (PTH) levels were found before and after parathyroidectomy whereas assays of the peripheral blood for osteoclast-activating factor and prostaglandin E (PGE2) were negative. An elevated leukocyte alkaline phosphate level, the inability to aspirate marrow, the marked generalized hyperplasia of all hematopoietic marrow elements, the focal accumulations of blastic cells and increasing reticulin fiber formation led to the diagnosis of acute myelofibrosis. A single course of cytosine arabinoside and thioguanine therapy was followed by profound hyperphosphatemia, hypocalcemia and death. The rarity of hypercalcemia with myeloproliferative disorders is documented by a review of the world literature, and the possible mechanism for hypercalcemia in this patient is discussed.

Acute Disease↗

Myelofibrosis of the facial bones.

Idiopathic myelofibrosis is a hematologic myeloproliferative disorder characterized by progressive marrow fibrosis, extramedullary hematopoiesis, and a leukoerythroblastic anemia. Consequently there are frequent secondarily precipitated multiple systems problems. This is the first report of this entity presenting with orofacial findings. The histopathogenesis, clinical presentation, and the therapeutic goals of treatment are reviewed.

Aged↗

Proliferation in liquid culture of megakaryocytes from the blood of patients with primary myelofibrosis and other myeloproliferative disorders.

Using a short term liquid system we have shown that blood from some patients with primary myelofibrosis (PMF) and chronic granulocytic leukaemia (CGL) in megakaryoblastic transformation (CGL-Mk) gives rise to large numbers of progenitor cells committed to the megakaryocyte (Mk) lineage. As assessed by indirect immunofluorescence the number of cells reacting with three antiplatelet monoclonal antibodies, C17, J15 and AN51, increases during the culture period. There is no equivalent increase in cultures from the blood of normal individuals or patients with essential thrombocythaemia (ET). Furthermore plasma-free supernatants from cultures of the cells from patients with PMF and CGL-Mk stimulate the rate of proliferation of fibroblasts from normal bone marrow. These data provide further evidence for the involvement of the Mk lineage in PMF and CGL and suggest that the excess fibrosis seen in these conditions may be caused by a factor emanating from Mks.

Antibodies, Monoclonal↗

Blood and spleen haematopoiesis in patients with myelofibrosis.

Blood nucleated cells collected by leukapheresis and spleen cell suspension from patients with myelofibrosis with myeloid metaplasia (MMM) were studied for their haematopoietic capacity. Using committed progenitor cell assays (CFU-GM, BFU-e) and a one-stage long-term liquid stem cell system, we have shown: (1) a preferential expansion of the circulating committed progenitor cell pool above the more primitive stem cell compartment; (2) the absence of any development of a stromal adherent layer in long-term cultures of peripheral blood nucleated cells suggesting the self-sustaining capacity of the circulating primitive stem cells; (3) that the spleen is only a production site of committed progenitor cells but does not generate primitive stem cells; (4) the presence, in the spleen, of stromal progenitor cells. We conclude that the peripheral blood primitive stem cells in patients with MMM are not of splenic origin.

Cells, Cultured↗

Megakaryocyte colony formation in chronic myeloid leukemia and myelofibrosis.

Colony formation by megakaryocytic progenitors from the blood or bone marrow was studied in 22 patients with chronic myeloid leukemia (CML) and in 17 patients with idiopathic myelofibrosis (MF). Thirteen of the 22 CML patients showed megakaryocytic colony formation, when PHA-LCM and plasma of a patient with aplastic anemia were used as a source of colony stimulating activity. Twelve of these 13 patients also showed spontaneous megakaryocytic growth, i.e. colony formation when PHA-LCM was omitted and normal plasma was used instead of aplastic plasma. All the untreated CML patients exhibited both stimulated and spontaneous growth. Each patient without any megakaryocytic colony formation had recently received cytotoxic treatment. Thirteen of the 17 patients with MF grew megakaryocytic colonies and ten of these 13 patients also showed spontaneous megakaryocytic growth. The colony numbers were roughly similar in the stimulated and non-stimulated cultures. The present study shows that spontaneous megakaryocytic colony formation, previously shown to be common in PV and ET, is also seen in many patients with CML and MF.

Adult↗

Immunophenotype of blast cells in acute myelofibrosis.

The immunophenotype of peripheral blood blast cells from six patients with acute myelofibrosis was studied using a panel of monoclonal antibodies directed against granulocytic, erythroid, megakaryocytic and lymphoid antigenic determinants. In all patients most of the blast cells were labeled with anti-HLA-DR and with the early myelomonocytic antibodies My7 (CD13), My9 (CD33) and B1-3C5 (CD34) (3/3). In three cases, platelet antibodies Edu3 (CD41) and GPIIIa (CD61) reacted with about 30% of blast cells. TdT was positive in two out of six samples studied. Lymphoid markers T3 (CD3), Leu9 (CD7), J5 (CD10), B4 (CD19) and B1 (CD20) were negative in all cases. These results suggest that blast cells are mainly of immature myelocytic origin. However, the coexistence of megakaryoblasts cannot be ruled out in the cases with a proportion of cells that are positive with Edu3 and GPIIIa antibodies.

Acute Disease↗

Multiple active X chromosomes in myelofibrosis with myeloid metaplasia.

A woman with myelofibrosis and myeloid metaplasia had a karyotype of 47,X,del(X)(q22),+del(X)(q22) in unstimulated peripheral blood and bone marrow aspirate cultures. The normal X chromosome was late replicating, and the two deleted X chromosomes always replicated early and synchronously. The karyotype from phytohemagglutin-stimulated peripheral blood cultures was uniformly 46,XX. Structurally abnormal X chromosomes are exceedingly rare in myeloproliferative disease. The abnormal karyotype very likely reflects monoclonal proliferation of an abnormal myeloid cell line. The X chromosome inactivation process, which acts upon embryonic somatic cells of all mammals, apparently does not react to postembryonic nondisjunction of the active X chromosome.

Bone Marrow↗

Cytogenetic studies in twelve patients with primary myelofibrosis and myeloid metaplasia.

Chromosome studies on bone marrow and/or peripheral blood cells without phytohemagglutinin were performed on 12 patients with primary myelofibrosis with myeloid meta-plasia (PMMM) between 1980 and 1984. Abnormal clones were found in six patients (50%). In five cases the abnormal clone involved the long arm of chromosome #7, two of which also had partial trisomy of chromosome #1 and trisomy of 9. Additional abnormalities involving chromosomes #3, #5, #11, #13, #15, and #21 were each found once. Review of the literature showed few studies on the cytogenetics of PMMM. No specific chromosomal pattern can be established; however, abnormalities described are nonrandom.

Aged↗

Isochromosome 17q in a case of myelofibrosis with myeloid metaplasia terminating in blastic transformation.

A case of myelofibrosis with myeloid metaplasia in a 61-year-old female patient is reported. Cytogenetic studies were performed using short-term culture without phytohemagglutinin. A chromosomal aberration of an isochromosome 17q, [i(17q)], was revealed in 88% of the metaphases of peripheral blood cells in the blastic phase. However, all metaphases of bone marrow cells in the chronic phase showed a normal karyotype. Furthermore, i(17q) was also observed in 10% of the metaphases of spleen cells examined 8 months before blastic transformation. In this case, therefore, the cells with i(17q) were associated with an abnormal clone of blastic transformation, with the abnormal clone originating in the spleen with myeloid metaplasia.

Aged↗

Possible cytogenetic marker associated with myelofibrosis in chronic granulocytic leukemia and its prognostic significance.

An association between myelofibrosis (MF) and chronic granulocytic leukemia (CGL) has been recognized. MF is usually a sign of a poor prognosis but its relation to other important parameters of CGL is not known. We observed a 54-year-old, white male patient who was well until May 1983 when he began developing gradually increasing right hip and left shoulder pain. Clinical evaluation 3 months later revealed splenomegaly and a white blood count of 126,000 with 29 segmented neutrophils, 22 bands, 7 metamyelocytes, 11 myelocytes, 6 promyelocytes, 5 blasts, 2 eosinophils, 5 basophils, and 3 lymphocytes. Cytogenetic analysis by G-banding technique showed a male karyotype with all 20 bone marrow cells examined positive for the Philadelphia chromosome. The patient was placed on busulfan therapy with good symptomatic improvement, but later suffered severe thrombocytopenia. At the end of October 1983, he was admitted with blast crisis and thrombocytopenia and was initiated on vincristine and cytosine arabinoside therapy. His bone marrow was repeatedly inaspirable and the biopsy was characterized by diffuse fibrosis. Chromosome analysis of 16 spontaneously dividing cells in the blood at this time revealed that 86% of cells had a karyotype of 46,XY,t(9;22)(q34;q11),t(1;3)(p32;p21) with the rest of the cells having only the Ph chromosome. The patient died 4 months later of intracranial hemorrhage. Chromosome #3 involvement has been reported in acute MF and essential thrombocytosis, but no specific cytogenetic abnormalities have been found in MF associated with CGL. It is unclear whether t(1;3) in this case represents a cytogenetic marker of MF or blast transformation, but it is certainly associated with poor prognosis and short survival.

Blast Crisis↗

Idiopathic myelofibrosis in blast transformation with 4;12 and 5;12 translocations and a 7q deletion.

A case of a patient who developed a leukemic transformation following an 8.5-year history of idiopathic myelofibrosis (IMF) with myeloid metaplasia is presented. Surface marker analysis identified the blast cells as myeloid in lineage. The karyotype of unstimulated peripheral blood cells was 46,XY,t(4;12)(q26;15),t(5;12)(q13;q24),del(7)(q22). In the literature, the 7q- has a minor association with IMF, and the t(5;12) translocation has been reported in one case of acute nonlymphocytic leukemia, but neither the t(4;12) nor the combination of these three abnormalities has been reported in IMF.

Aged↗

Translocation t(6;9) occurring in acute myelofibrosis, myelodysplastic syndrome, and acute nonlymphocytic leukemia suggests multipotent stem cell involvement.

The cytological and cytogenetic features of six patients with myeloid neoplasia and t(6;9)(p23;q34) including a case of acute myelofibrosis (AMF), a refractory anemia with excess of blasts (RAEB), and four cases of acute nonlymphocytic leukemia (ANLL) are described. Two patients in this series, both affected by ANLL type M2, presented an increase of bone marrow basophils, suggesting that this cytological-cytogenetic association is not absolute and that it may be more frequently observed in ANLL with maturation. All patients with de novo ANLL showed associated myelodysplastic features, and one patient presented a dysmyelopoietic syndrome, later evolving into ANLL. The presence of the t(6;9) in a range of myeloid neoplasias, with either concurrent myelodysplastic features or a preleukemic phase in cases of ANLL, provide evidence that this chromosome aberration may always involve a multipotent myeloid stem cell. Data on toxic exposure of the patients suggests that myeloproliferative disorders with the t(6;9) may frequently represent environmentally induced neoplasias.

Adolescent↗

Cytogenetic and molecular studies in primary myelofibrosis.

Cytogenetic and molecular data of three patients affected by primary myelofibrosis with myeloid metaplasia (PMMM) evolving to blastic crisis are reported. The cytogenetic findings were uncommon. The first patient (female) showed an idic(X)(q13) as the sole alteration in chronic phase, with an additional r(7) in 67% of the cells of the blast crisis; the other two patients showed, in blast crisis, a partial trisomy of the long arm of chromosome 1, without translocation, as a unique structural abnormality. These findings confirm the presence of nonrandom, although nonspecific, alterations in PMMM that, in our cases, seem to be related to the multistep progression of the neoplastic process. Molecular investigations have been applied to study the genomic organization and the level of expression of genes such as bcr and calcyclin and c-fms protooncogene possibly involved in the molecular mechanisms underlying cell proliferation in hematopoietic cells. The data obtained are discussed with respect to the myeloproliferative disorder.

Aged↗

Trisomy 8 and an unbalanced t(5;17)(q11;p11) characterize two karyotypically independent clones in a case of idiopathic myelofibrosis evolving to acute nonlymphoid leukemia.

In a patient with idiopathic myelofibrosis (MFI) that had progressed to acute nonlymphoid leukemia (ANLL) after a long-lasting cytotoxic treatment, we observed two karyotypically independent cell populations, one showing trisomy of chromosome 8 as the only anomaly and one with an unbalanced translocation t(5;17)(q11) resulting in partial monosomy of 5q and 17p. The overall karyotypic configuration suggested that chromosome changes occurred as secondary events during the multistep process of leukemogenesis. The probable sequence of cytogenetic events in this patient and a review of the literature indicated that the t(5;17) may represent a therapy-induced abnormality nonrandomly related to the terminal phase of myeloid disorders.

Aged↗

Multiple chromosomal changes and karyotypic evolution in a patient with myelofibrosis.

Several subclones were identified in unstimulated peripheral blood cells from a patient with chronic myeloproliferative disease, which was classified as myelofibrosis by morphologic terms. These subclones were characterized by an unusual number of different karyotype anomalies. Some of the more complex chromosomal rearrangements could be clearly defined by fluorescence in situ hybridization. Chromosome arms involved in clonal aberrations were 1q, 3p, 6p, 7q, 11q, 13q, 15q, 17q, 18p, and 20q. Reconstruction of karyotype evolution was attempted by karyotypic analysis of 100 metaphase spreads each in two separate investigations.

Aged↗