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Idiopathic acquired sideroblastic anemia terminating in acute myelofibrosis: case report and review of leterature.

Acute myelofibrosis is a rare but distinct accelerated variant of agnogenic myeloid metaplasia that is characterized by marked anemia, peripheral blood myeloblastosis and normoblastosis, a lack of teardrop poikilocytosis, and prominent myelofibrosis. There is usually no palpable hepatosplenomegaly or lymph node enlargement. The clinical course is remarkable short. We describe a 63-year-old man who presented with idiopathic acquired sideroblastic anemia and subsequently developed acute myelofibrosis. Intensive polychemotherapy with vincristine, cytosine arabinoside, and prednisone and a later trial of oxymetholone therapy were ineffective. He died 134 days after the diagnosis of acute myelofibrosis was established. The 11 previously reported cases of acute myelofibrosis are reviewed, and the relationships of acute myelofibrosis to other myeloproliferative disorders and to idiopathic acquired sideroblastic anemia are discussed.

Acute Disease↗

Frequent association of idiopathic myelofibrosis with plasma cell dyscrasias.

In a retrospective analysis of 199 cases of myeloproliferative diseases a concomitant plasma cell dyscrasia was found in three out of 46 patients with idiopathic myelofibrosis. Chronic myeloid leukemia, polycythemia vera or unclassifiable myeloproliferative disorders were in no case associated with monoclonal gammopathy. One patient with idiopathic myelofibrosis had primarily coexistent IgG-lambda paraproteinemia and increasing osteolytic lesions; histologic evidence of multiple myeloma, however, was insufficient. In the second patient the interval between diagnosis of idiopathic myelofibrosis and IgG-kappa paraproteinemia was 11 years. After a stable period of 9 years' duration the paraprotein level rapidly increased, associated with depression of normal background immunoglobulins and progressive bone marrow failure. The exact nature of this patient's malignant plasma cell dyscrasia remained uncertain. In the third case benign monoclonal gammopathy of the IgM-lambda type was diagnosed 13 years after idiopathic myelofibrosis. A review of the literature confirms a remarkably high incidence of monoclonal gammopathies in idiopathic myelofibrosis. Benign monoclonal gammopathy seems to occur in at least 8% of the patients while only a few cases of concomitant multiple myeloma have been reported. It may be speculated that plasma cell dyscrasias in idiopathic myelofibrosis reflect involvement of the lymphoid lineage in the neoplastic stem cell disorder.

Female↗

[The development of myelofibrosis in prefibrotic cIMF. An investigation of the progression by sequential bone marrow biopsies in 38 patients].

Overt myelofibrosis in bone marrow biopsies as a diagnostic postulate in cIMF has been discarded only recently by the WHO. Therefore, only a few studies have been performed on the evolution of myelofibrosis in "prefibrotic" cIMF by means of sequential bone marrow biopsies. We carried out this study on 38 patients, split up into two groups, A and B according to treatment modalities, to evaluate the dynamics and frequency of myelofibrosis in both groups. Our results indicate a step-wise development of myelofibrosis from a "prefibrotic" to a "classical" cIMF, as 75-80% of the respective patients in both groups progressed to myelofibrosis. However, this evolution seems to be heterogeneous and unpredictable in individual patients, since myelofibrosis could be seen as early as less than 2 years after diagnosis in 12/38 (31.6%) patients, whereas 3 patients remained "prefibrotic" even after up to 6 years of follow-up.

Biopsy, Needle↗

Diagnosis, pathogenesis and treatment of the myeloproliferative disorders essential thrombocythemia, polycythemia vera and essential megakaryocytic granulocytic metaplasia and myelofibrosis.

According to strict clinical, hematological and morphological criteria, the Philadelphia (Ph) chromosome negative chronic myeloproliferative disorders essential thrombocythemia (ET), polycythemia vera (PV), and agnogenic myeloid (megakaryocytic/granulocytic) metaplasia (AMM) or idiopathic myelofibrosis (IMF) are three distinct disease entities with regard to clinical manifestations, natural history and outcome in terms of life expectancy. As clonality studies have clearly demonstrated that fibroblast proliferation in AMM, as well as in many other conditions such as advanced stages of Ph(+)-essential thrombocythemia, Ph(+)-granulocytic leukemia, and Ph(-)-polycythemia vera, is polyclonal indicating that myelofibrosis is secondary to the megakaryocytic granulocytic metaplasia in these various conditions, AMM is illogically labeled as IMF. As abnormal megakaryocytic granulocytic metaplasia is the essential feature preceding the early prefibrotic stage of AMM, the term essential megakaryocytic granulocytic metaplasia (EMGM) can readily be used to characterize this condition more appropriately at the biological level. Clinical, hematological and morphological characteristics, in particular megakaryocytopoiesis and bone marrow cellularity, reveal diagnostic features, which enable a clear-cut distinction between ET, PV and EMGM or classical IMF. The characteristic increase and clustering of enlarged megakaryocytes with mature cytoplasm and multilobulated nuclei and their tendency to cluster in a normal or only slightly increased cellular bone marrow represent the hallmark of ET. The characteristic increase and clustering of enlarged mature and pleiomorphic megakaryocytes with multilobulated nuclei and proliferation of erythropoiesis in a moderate to marked hypercellular bone marrow with hyperplasia of dilated sinuses are the specific diagnostic features of untreated PV. EMGM, including the early prefibrotic stages as well as the various myelofibrotic stages of classical IMF appear to be a distinct neoplastic dual proliferation of abnormal megakaryopoiesis and granulopoiesis. The histopathology of the bone marrow in prefibrotic EMGM and in classical IMF is dominated by atypical, enlarged and immature megakaryocytes with cloud-like immature nuclei, which are not seen in ET and PV at diagnosis and during follow-up. Myelofibrosis in ET, PV and EMGM is graded into: no reticulin fibrosis (MF0), early reticulin fibrosis (MF1), advanced reticulin sclerosis with minor or moderate collagen fibrosis (MF2) and advanced collagen fibrosis with osteosclerosis (MF3). Myelofibrosis is not a feature of ET at diagnosis and during long-term follow-up. Myelofibrosis may be present in a minority of PV-patients at diagnosis and usually becomes apparent during long-term follow-up in the majority of PV-patients. Myelofibrosis secondary to the abnormal megakaryocytic and granulocytic myeloproliferation constitutes a prominent feature in the majority of EMGM/IMF at time of diagnosis and usually progresses more or less rapidly during the natural history of the disease. Life expectancy is normal in ET, normal during the 1st ten years and compromised during the 2nd ten years follow-up in PV, but significantly shortened in the prefibrotic stage of EMGM as well as in the various myelosclerotic stages of classical IMF. First line treatment options in prospective randomized clinical trials of newly diagnosed MPD-patients are control of platelet function with low-dose aspirin versus reduction of platelet count with anagrelide, interferon or hydroxyurea in ET; control of platelet and erythrocyte counts by interferon alone versus bloodletting plus hydroxyurea on indication in PV; interferon versus no treatment in the early stages of EMGM; a wait and see strategy in the fibrotic stages of EMGM or classical IMF with favorable prognostic factors, and bone marrow transplantation in classical IMF with poor prognostic factors at presentation or during short-term follow-up.

Aspirin↗

Bone marrow hypervascularity in patients with myelofibrosis identified by infra-red thermography.

Infra-red thermography was used to assess bone marrow vascularity in six patients with myelofibrosis secondary to myeloproliferative disorders (four primary myelofibrosis and two primary proliferative polycythaemia). The technique was evaluated with conventional static and dynamic radio-isotopic imaging and with immunohistochemical staining of bone marrow biopsies. Infra-red thermography identified increased bone marrow blood flow in patients with established myelofibrosis and correlated with dynamic radio-isotopic studies of blood flow and hypervascularity identified by immunohistochemistry. Increased bone marrow blood flow and vascular proliferation was not confined to the central bone marrow but also extended into the peripheral marrow of the long bones. Endothelial cell proliferation may be an initiating event in the pathogenesis of myelofibrosis but evaluation of bone marrow vascularity and blood flow has hitherto relied on invasive and complicated techniques. This study has identified bone marrow hypervascularity in patients with myelofibrosis and shown infra-red thermography to be a simple non-invasive method of assessing vascularity. This non-invasive technique may be used to study disease progression and response to therapeutic regimens in patients with myelofibrosis and to study bone marrow blood flow in other bone marrow disorders.

Biopsy↗

Myelofibrosis in primary myelodysplastic syndromes: clinical and biological significance.

In a retrospective study of 236 patients with primary myelodysplastic syndromes (MDS), 130 cases (55.1%) revealed myelofibrosis in bone marrow biopsies. It was observed that fibrosis mostly occurs focally or patchy, and collagen deposits were found very rarely (only four patients). The histopathology of bone marrow biopsies revealed several differences between fibrotic and non-fibrotic MDS: cellularity is significantly higher, dysmegakaryopoiesis is more pronounced, plasmocytes and mast cells are more often increased, and disturbance of marrow topography (particularly of the MK- and G-line) can be found more frequently in MDS with myelofibrosis. Reticulin fibrosis occurred in all subtypes of MDS; however, there was a higher incidence in chronic myelomonocytic leukemia. The frequency of abnormal growth of GM-progenitors was significantly higher in the MDS cases with myelofibrosis, compared to the cases without fibrosis. Clinical data showed significantly higher WBC, more frequent presence of immature granulocytes, and higher percentage of myeloblasts in peripheral blood and bone marrow in MDS with myelofibrosis compared to cases without myelofibrosis. Life expectancy was reduced to 13 mo, compared with 35 mo in MDS without fibrosis (p=0.00055). Time to leukemic transformation was 32 mo in MDS with fibrosis, compared with >56 mo in MDS without fibrosis (p=0.015). Myelofibrosis therefore seems to herald a poor prognosis.

Adult↗

[Werner's syndrome associated with acute myelofibrosis].

A 47-year-old man was admitted to our hospital in June 1997 because of nasal bleeding. He presented with anemia in addition to physical characteristics of Werner's syndrome (WS). Peripheral blood examination disclosed pancytopenia with 4% blasts. Bone marrow aspiration was a dry tap; biopsy specimens revealed myelofibrosis. Chromosomal analysis of peripheral blood revealed hypodiploidy with complex abnormalities including -5 and del(7)(q21). Serum levels of PDGF, FGF, and TGF beta 1 were normal. A diagnosis of acute myelofibrosis was made. The patient's condition became quickly deteriorated and he died of pneumonia in October 1997. In the literature, we found 6 reported cases of myelofibrosis associated with WS. Considering that only approximately 1,100 cases of WS have been reported so far, the incidence of myelofibrosis in WS seems relatively high. This case suggested a link between WS and myelofibrosis, and the mechanism of myelofibrosis in WS was discussed.

Acute Disease↗

[Myelofibrosis caused by cancer: presentation of a clinical case with a very difficult diagnosis].

Fibrosis of the bone marrow or myelofibrosis, is a connective tissue response of the bone marrow, giving rise to alterations of various nature. From an etiological point of view, it may be divided into primitive or secondary forms. Since the therapeutic implications differ, it is important to make a correct differential diagnosis between the 2 forms. With this in mind, particular importance must be given to myelofibrosis secondary to neoplastic metastasis since it frequently presents with a clinical and hematological picture and bone marrow morphology typical of acute or chronic idiopathic myelofibrosis. In such a situation the particular course of the disease and the description fibrosis-sclerosis of the bone marrow are highly suggestive of myelofibrosis secondary to neoplastic metastasis. On the basis of these considerations, we found it interesting to report a case which came under our observations. The patient in this case presented a complex differential diagnosis which offered us the occasion to review and highlight the clinical and histological criteria fundamental to the 2 forms. The patient, a 40 year old woman, presented with a clinical picture typical of myelofibrosis following surgery for a cystic ovary. For 3 years she had felt violent bone pains and had progressively declined in her physical state to the point of cachexia. A careful histological exam of the bone marrow revealed metastasis from the gastric tumor thus giving a clear diagnosis of secondary myelofibrosis.

Adult↗

Autoimmune myelofibrosis. A steroid-responsive cause of bone marrow fibrosis associated with systemic lupus erythematosus.

Autoimmune myelofibrosis is an uncommon disorder in which patients present with anemia and thrombocytopenia in conjunction with limited clinical manifestations of autoimmune disease or an exacerbation of previously established SLE. The presence of leukoerythroblastosis in a patient with SLE may suggest the presence of myelofibrosis. Conversely, the absence of splenomegaly in a patient with presumed idiopathic myelofibrosis may suggest an autoimmune etiology. Patients with autoimmune myelofibrosis universally have a positive ANA test and frequently have either elevated anti-DNA titers or a positive LE cell preparation. Because physical manifestations of autoimmune disease may not be evident at presentation, all patients found to have myelofibrosis should have an ANA test. Peripheral blood cytopenias in autoimmune myelofibrosis frequently respond to glucocorticoids but regression of bone marrow fibrosis may be incomplete. Hematologic response to treatment parallels that of the associated autoimmune disease.

Adolescent↗

Involvement of the fibrogenic cytokines, TGF-beta and bFGF, in the pathogenesis of idiopathic myelofibrosis.

Idiopathic Myelofibrosis (IMF), is a chronic myeloproliferative disorder characterized by the association of myeloproliferation and myelofibrosis. The pathophysiological mechanisms resulting in this disease remain still unclear. The myeloproliferation appeared to result from the clonal amplification of hematopoietic progenitors. In contrast, fibroblasts participating in myelofibrosis were shown to be polyclonal, thus suggesting that myelofibrosis was a reactive process. We studied the role of two growth factors TGF-beta and bFGF, which display potent fibrogenic properties and are major regulators of primitive hematopoiesis, in IMF pathogenesis. We demonstrated an increase of TGF-beta and bFGF expression in circulating megakaryocytic cells and platelets, together with alterations of the expression of these cytokines and their receptors in hematopoietic CD34+ progenitor cells from IMF patients. Our results suggested that TGF-beta and bFGF are involved both in myelofibrosis and myeloproliferation which characterize IMF.

Autocrine Communication↗

A distinct subtype of idiopathic myelofibrosis with bone marrow features mimicking hairy cell leukemia: evidence of an autoimmune pathogenesis.

A young female patient presented with severe anemia and myelofibrosis. The spleen was not enlarged on clinical examination and no leukoerythroblastosis or tear-drop poikilocytosis was found. A bone marrow biopsy disclosed severe myelofibrosis and many megakaryocytes, which appeared morphologically normal. A striking feature was a heavy spongy infiltration by large lymphocytic cells, which were tartrate-resistant acid phosphatase negative and without hairy projections. This bone marrow appearance highly resembled the clear cell appearance of the hairy cell infiltrate in hairy cell leukemia. A diagnosis of acute autoimmune myelofibrosis was made. During high-dose glucocorticoid therapy the bone marrow fibrosis completely resolved and there was an improvement of peripheral blood values. The disorder is supposed to feature a distinct clinicopathological entity within the syndrome of idiopathic myelofibrosis. The disease should be considered in the differential diagnosis of patients with myelofibrosing disorders, including acute myelofibrosis and hairy cell leukemia.

Adult↗

Plasma cell leukemia with myelofibrosis.

We describe a case of plasma cell leukemia associated with myelofibrosis. A 60-year-old woman was admitted due to lumbago and monoclonal hypergammaglobulinemia. Peripheral blood showed about 40% of plasma-cell-like cells. A bone marrow aspiration was dry tap. The patient was diagnosed as having plasma cell leukemia with myelofibrosis by bone marrow biopsy. Plasma cell leukemia as well as myelofibrosis improved with combination chemotherapy using vincristine, pirarubicin, and dexamethasone. However, when plasma cell leukemia became resistant to chemotherapies, myelofibrosis also reappeared. This case strongly suggests the pathogenetic relationship between plasma cell leukemia and myelofibrosis.

Antineoplastic Combined Chemotherapy Protocols↗

Vitamin D-deficiency rickets and myelofibrosis.

This study was aimed at detecting the early appearance of myelofibrosis by bone marrow biopsy examination in children with vitamin D-deficiency rickets. Twelve children, aged 4 to 18 months, were evaluated. Only a minimal increase of the reticulin was shown in rachitic children without anemia in whom no other laboratory evidence of myelofibrosis was present. Early signs of myelofibrosis with increase of reticulin were present in rachitic infants with anemia. In patients of the same age with iron deficiency anemia, the bone marrow reticulin findings were normal. Bone marrow biopsy after successful treatment of rickets could be repeated in one patient with myelofibrosis; results indicated that the myelofibrosis with anemia associated with vitamin D-deficiency rickets is reversible by vitamin D treatment.

Anemia, Hypochromic↗

Involvement of transforming growth factor-beta and thrombopoietin in the pathogenesis of myelodysplastic syndrome with myelofibrosis.

We investigated the cause of myelofibrosis and proliferation of megakaryocytes in myelodysplastic syndrome with myelofibrosis (MDS-MF (+)). Plasma-transforming growth factor-beta1 (PTGF-beta1) concentrations closely correlated with myelofibrosis grade in MDS-MF (+) and were higher than those in idiopathic myelofibrosis (IMF), essential thrombocythemia (ET), idiopathic thrombocytopenic purpura (ITP), MDS-without MF (MDS-MF (-)) or healthy volunteers (HV). Peripheral blood mononuclear cells from MDS-MF (+) patients expressed more TGF-beta1 mRNA than those from IMF, MDS-MF (-) or HV. When we immunostained bone marrow specimens of MDS-MF (+) for TGF-beta, the intensity of blasts was apparently higher than that of megakaryocytes, while in MDS-MF (-), megakaryocytes were immunostained with a similar intensity as that in MDS-MF (+), but blasts were negative for staining. In IMF, megakaryocytes, monocytes and small mononuclear cells representing CD34+ cells were all similarly stained with a much lower intensity than that of blasts in MDS-MF (+). The number of bone marrow megakaryocytes were increased the most in MDS-MF (+), followed by ET, ITP, MDS-MF (-) and NHL and correlated with plasma thrombopoietin (TPO) levels or with plasma TGF-beta1 levels, respectively, in each disease. Thus, in MDS-MF (+), both myelofibrosis and the increased megakaryocytes were ascribed to overproduction of TGF-beta1 from blasts.

Adult↗

Dynamics of fibrosis in chronic idiopathic (primary) myelofibrosis during therapy: a follow-up study on 309 patients.

Controversial issues in chronic idiopathic myelofibrosis (IMP) are amongst others the evolution of the disease process and the influence of therapy on the dynamics of fibrosis. For this reason, a multicenter observational study was performed on 309 patients with IMF that had a long follow-up including 822 bone marrow biopsies at a median interval of 32 months. In addition to a control group (156 patients) with symptomatic treatment, monotherapy consisted of busulfan (30 patients), hydroxyurea (52 patients), interferon (26 patients) and various combinations (48 patients). Density and quality (reticulin/collagen) of fibers was determined by a semiquantitative scoring system. Independent of therapeutic regimens at the time of the last bone marrow biopsy 67% of the patients with grades 0-2 fibrosis revealed a progression, 42% stable state and 6% regression of myelofibrosis. Because of significant differences concerning frequencies of biopsies and endpoints of examinations, individual changes in the grades of fibrosis were evaluated with regard to treatment applied at standardized intervals of 20 months. According to this calculation no relevant differences in the dynamics of myelofibrosis (progression, stable state) was detectable in the control group compared to the other therapeutic modalities. The few patients with a regression of myelofibrosis usually presented with severe hypoplasia compatible with a myelo-ablative effect by aggressive chemotherapy. In conclusion, persuasive evidence has been produced that myelofibrosis in IMF is characterized by a stepwise progression and that this process is not significantly influenced by current treatment strategies.

Biopsy↗

Spontaneous resolution of myelofibrosis and pancytopenia followed by the development of acute myeloid leukemia with an extramedullary mass.

PURPOSE: Spontaneous resolution of myelofibrosis is extremely rare. A patient with myelofibrosis and pancytopenia that spontaneously resolved with subsequent development of acute myelomonocytic leukemia and an extramedullary mass of the ovary is described. PATIENT AND METHODS: A 2-year-old girl had severe pancytopenia and myelofibrosis without signs of myeloid metaplasia. The patient was transfused with packed red blood cells and platelets and monitored. RESULTS: The pancytopenia and myelofibrosis resolved spontaneously within 1 month after initial presentation and her blood counts normalized. The patient developed a chloroma of the ovary and acute myelomonocytic leukemia 13 months later and eventually died from disease. CONCLUSIONS: This patient initially had acute myelofibrosis which was most likely secondary to occult acute myelomonocytic leukemia. The transfusions may have been a contributing factor in the spontaneous remission.

Child, Preschool↗

New insights into the pathogenesis and drug treatment of myelofibrosis.

PURPOSE OF REVIEW: Myelofibrosis with myeloid metaplasia was first described in 1879, classified as a myeloproliferative disorder in 1951, and characterized as a clonal stem cell disorder in 1978. Despite the passing of time, the molecular basis of the disease has remained elusive although substantial progress has been made regarding the pathogenesis of the associated bone marrow stromal reaction. Advances have also been meager in terms of treatment for disease complications, including anemia, splenomegaly, and leukemic transformation. RECENT FINDINGS: At the molecular level, a JAK2 tyrosine kinase mutation (JAK2) has recently been described in a spectrum of myeloproliferative disorders including myelofibrosis with myeloid metaplasia with the reported mutational frequency ranging from 35% to 57% with 9-29% homozygosity. To date, the presence of JAK2 in myelofibrosis with myeloid metaplasia has not been shown to have prognostic relevance. Other recent observations of potential pathogenetic relevance in this disease include the description of a highly specific chromosomal translocation {der(6)t(1;6)(q23;p21)}, the demonstration of an epigenetic downregulation of the retinoic acid receptor-beta2 expression in CD34 cells, and the direct implication of transforming growth factor-beta1 in thrombopoietin-driven experimental myelofibrosis in mice. From a therapeutic standpoint, benefit to a subset of patients has been demonstrated for both allogeneic stem cell transplantation and novel drugs, including thalidomide and lenalidomide. SUMMARY: Recent advances in the pathogenesis of myelofibrosis with myeloid metaplasia are expected to facilitate the development of molecularly targeted therapy. In the mean time, current management strategies include observation, participation in experimental drug therapy, and allogeneic stem cell transplantation for low-risk, intermediate-risk, and high-risk disease, respectively.

Anemia↗

Immunoreactive prolyl hydroxylase in patients with primary and secondary myelofibrosis.

Prolyl hydroxylase (PH) is an important enzyme in collagen synthesis. It is required for the hydroxylation of prolyl residues in peptide chains in collagen synthesis. Serum PH activity was measured in patients with primary myelofibrosis (agnogenic myeloid metaplasia and myelofibrosis with prior history of polycythaemia vera), in patients with secondary myelofibrosis (in association with carcinoma metastasis), in patients with other myeloproliferative disorders and in controls (anaemia patients and normal volunteers). Both primary and secondary myelofibrosis had significantly elevated PH values, while other myeloproliferative disorders did not differ from normal controls. Increased PH levels in patients with primary and secondary myelofibrosis may signify increased collagen synthesis and may serve as an indicator for the development of fibrosis in the course of myeloproliferative disease.

Aged↗