Reversible pure red-cell aplasia in pregnancy.
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Ferrokinetic studies and external organ measurements of radioiron were performed on five patients with pure red-cell aplasia (PRCA) in remission. One patient with PRCA in relapse was also studied. Of those in remission, one patient had erythroid hyperplasia and ineffective erythropoiesis after the remission occurred. This was indicated by a very short 59Fe clearance rate and reduced red-cell 59Fe incorporation, a marked increase of the erythron iron turnover over the fixed red-cell iron turnover, and a prolonged marrow transit time. These indices were normal three years later. Four patients had normal effective erythropoiesis while in remission. Two patients had an extended marrow distribution. These studies indicate that some cases of PRCA evolve into a state of ineffective erythropoiesis with erythroid hyperplasia. It is possible that in some patients, primary refractory anemia with ineffective erythropoiesis may be related to PRCA because of the evolution from one state into the other. Alternatively, a second pathologic process may have been acquired between the PRCA and normal hematopoiesis.
OBJECTIVE: To determine (1) the proportion of cases of transient aplastic crisis (TAC) in patients with sickle cell disease due to B19 parvovirus infection in several years, (2) longitudinally, the immune response to B19 parvovirus infection, and (3) whether patients with sickle cell disease experience recurrent or chronic B19 parvovirus infection. DESIGN: Prospective evaluation of patients with sickle cell disease and TAC to find evidence of B19 parvovirus infection and, if present, to document the pattern of serologic response with time. SETTING: Large urban teaching hospital. PATIENTS: Patients younger than 18 years with sickle cell disease who were admitted to the hospital with a diagnosis of TAC or who developed TAC while in the hospital for other reasons. Follow-up serologic studies of B19 parvovirus infection were done in eight patients. MEASUREMENTS/MAIN RESULTS: Serum was tested for B19 parvovirus DNA/viral particles and specific anti-B19 parvovirus IgM and IgG antibodies. B19 parvovirus DNA/viral particles were detected in 11 (21%) of 53 patients with TAC. Specific anti-B19 parvovirus IgM antibodies were detected in 34 (64%) of the 53 patients. Overall, 36 (68%) of 53 patients with TAC had evidence of acute B19 parvovirus infection as shown by the detection of B19 DNA parvovirus and/or specific anti-B19 parvovirus IgM antibodies in acute-phase serum. Follow-up serologic studies in eight patients with acute infection revealed disappearance of B19 parvovirus DNA/viral particles and anti-B19 parvovirus IgM antibodies and persistence of anti-B19 parvovirus IgG antibodies for up to 3 1/2 years after the diagnosis of acute B19 parvovirus infection. No patient had evidence of recurrent or chronic B19 parvovirus infection. CONCLUSIONS: Approximately 70% of cases of TAC in patients with sickle cell disease identified in a 7-year period were caused by acute B19 parvovirus infection. Once detected, anti-B19 parvovirus IgG antibodies remain detectable for several years. There was no evidence of chronic or recurrent B19 parvovirus infection in patients with sickle cell disease.
A patient with granular lymphocyte leukemia (GLL) of the CD3+, CD4-, CD8+ phenotype accompanied by pure red cell aplasia (PRCA) is described. Surface marker analysis, nonmajor histocompatibility complex (MHC)-restricted cytotoxicity assay, gene analysis, and in vitro colony assay were performed on the granular lymphocytes before and after treatment. Cyclophosphamide therapy was highly effective, and after remission clonal granular lymphocytes were no longer identified by T-cell antigen receptor (TCR) gene analysis or surface marker analysis. Lymphocytes obtained after remission did not exhibit elevated levels of non-MHC-restricted cytotoxicity, nor did they demonstrate a suppressive effect on erythroid colony formation. TCR gene analysis proved to be a sensitive parameter for evaluating the residual malignant granular lymphocytes. Gene analysis will be useful both for timing the discontinuation of treatment and for the early detection of relapse. Various factors possibly related to the development of PRCA in this patient were investigated and their significance is discussed.
We describe the characteristics of response to treatment with cyclosporine (CYA) plus prednisone in seven episodes of pure red cell aplasia (PRCA) in four patients with B cell chronic lymphocytic leukemia (CLL). Fourteen episodes of PRCA occurred in four patients with CLL. Eleven episodes were treated with conventional therapies which included an alkylating agent and prednisone. Four episodes that failed to respond to conventional therapies and an additional three episodes were treated with CYA and prednisone. Six of the seven episodes, including three of four which had failed conventional therapies, responded to CYA plus prednisone compared with six of eleven episodes treated with conventional therapies. Response to CYA and prednisone occurred without a reduction in leukemic mass. In contrast, PRCA remission did not occur until after leukemic mass reduction in three of four patients treated successfully with conventional therapies. Time to response was shorter (14 +/- 3 days) with CYA plus prednisone than with conventional therapies (154 +/- 97 days) in three of four patients. These results indicate that CYA plus prednisone is an effective therapy for the induction of remission from PRCA in patients with CLL.
Molecular analysis of the human erythropoietin receptor (EpoR) promises to yield a greater mechanistic understanding of erythropoiesis and disease states that affect red cell production. The cloned receptor molecule is a 66 kDa membrane protein that is structurally related to a large superfamily of haemopoietin/growth factor receptors. The 66 kDa EpoR alone is capable of binding to erythropoietin (Epo) with nanomolar affinity. The native EpoR may form dimers before or after binding Epo. EpoR dimers and/or associated molecules are probably necessary for high-affinity Epo binding. The 66 kDa EpoR probably exists as a protein complex with as yet unidentified proteins of 100 and 85 kDa. The molecular mechanism of Epo signal transduction remains largely undefined. The possible role of the EpoR in human diseases has been studied in a variety of clinical conditions. A structurally abnormal EpoR gene has been identified in a human erythroleukemia cell line. In polycythemia vera, red cell progenitors exhibit exaggerated sensitivity to Epo and express only low-affinity EpoR. Some cases of hereditary polycythemia may be due to a mutant EpoR conferring enhanced Epo sensitivity. Other pathologic conditions may also be associated with abnormalities of the EpoR or its associated molecules. Soluble, immunoreactive EpoR is detectable in human serum, but its physiological significance is unknown.
A 63-year-old man with decompensated liver cirrhosis and pure red cell aplasia complained of pyrexia, abdominal distention and abdominal pain. A diagnosis of spontaneous bacterial peritonitis (SBP), Conn's syndrome, was made upon the isolation of an anaerobe Clostridium perfringens from both ascitic fluid and peripheral blood. The bacteria were found to be susceptible to piperacillin, and administration of the antimicrobial agent markedly improved his SBP. The anaerobes should be kept in mind as one of the possible pathogens of SBP, although anaerobic infection has been reported to be quite rare in the disease.
A patient who presented with pure red cell aplasia as the initial manifestation of human immunodeficiency infection is described. The patient had no signs of other autoimmune processes or immunologic or histologic evidence of parvovirus B19 infection, although we detected parvovirus B19 DNA in his serum. This patient had a complete, although temporary, response to a single course of immunoglobulin therapy and is currently responding to a second treatment.
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We report a case of chronic myelomonocytic leukemia (CMMoL) with unusual features and an isochromosome 14q as the sole abnormality. A review of the literature suggests that isochromosome 14q (or trisomy 14) is a marker of leukemia with dysplastic features.
To assess the effects of decreased erythrocyte production on the levels of serum erythropoietin in children, we measured simultaneous hemoglobin concentrations and erythropoietin in 18 children with iron deficiency anemia, 17 children with transient erythroblastopenia of childhood (TEC), and 7 children with aplastic anemia. In all but two patients (one with TEC; one with aplastic anemia), erythropoietin was measured at diagnosis, before institution of specific therapy for the anemia. There was a statistically significant inverse linear correlation between log10 erythropoietin and hemoglobin values for all patient groups (r = 0.904 to 0.912; p less than 0.005). A comparison of the slopes of the regressions for each patient group by analysis of covariance revealed a significantly steeper slope for the iron deficiency group (-0.553) versus the TEC (-0.287) and aplastic anemia (-0.256) groups (p = 0.0001). The difference in erythropoietin levels appeared greatest in patients whose presenting hemoglobin level was greater than 5 gm/dl. Decline in serum erythropoietin levels was more precipitous in the less severely anemic patients with iron deficiency anemia than in the patients with TEC or aplastic anemia. These data reveal quantitative and qualitative differences in the relationship between serum erythropoietin and hemoglobin levels when children with severe iron deficiency anemia versus those with TEC or aplastic anemia are considered, even though all three conditions are characterized by hypoproliferation of erythrocytes.
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Bone marrow transplantation was performed on a 15 year old girl with chronic myelogenous leukemia. The bone marrow was obtained from her younger sister, who was human leukocyte antigen haplo-identical but major ABO incompatible. As a result, the condition of pure red cell aplasia (PRCA) persisted over a long period of time. In order to overcome major ABO incompatibility, erythrocytes were eliminated from the bone marrow graft before transplantation, and methotrexate and cyclosporine (CsA) were used to prevent graft-versus-host disease (GVHD). Administration of erythropoietin proved ineffective. B19 parvovirus infection could not be detected during that time. Agglutinin titers decreased to less than fourfold in parallel with the recovery of erythrocytes. Reports on similar PRCA have been limited to cases of transplantation with ABO incompatibility and cases where CsA was administered to prevent GVHD. This suggests that ABO incompatibility and CsA might be related to the development of PRCA.