GATA 1 mutations as clonal markers of minimal residual disease in acute megakaryoblastic leukemia of Down syndrome--a new tool with significant potential applications.
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Biomedical subjects
Publications and source records attributed to A Zipursky.
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Millions of children die every year from malaria, tuberculosis, diarrhoea, neonatal disorders, and many other diseases found primarily in low and mid income countries. Many devoted clinicians and scientists have contributed significantly to the understanding and care of these diseases, however research remains disproportionately aimed at diseases affecting those in high income countries.
Approximately 10% of newborns with Down syndrome develop Transient Leukemia (TL), a disorder that is unique to infants with constitutional trisomy 21 (or trisomy 21 mosaicism). TL blasts disappear spontaneously within the first 3 months of life in the majority of cases. Despite the resolution of TL, 20-30% of these newborns will go on to develop acute megakaryoblastic leukemia (AMKL) later in life. In this study, samples from both TL and AMKL patients were examined using cDNA microarrays to study the pathogenic progression from TL to AMKL. TL and AMKL samples partition separately by cluster analysis, and AMKL samples had substantial increases in apolipoprotein C-I, transporter 1, myosin alkali light chain 4, and spermidine/spermine N-acetyltransferase, compared to TL samples. Although these findings will require validation in an independent series of TL and AMKL samples, they indicate that TL and AMKL have distinct gene signatures, and provide a basis for studies of the different mechanisms underlying either the resolution of TL or its progression to AMKL.
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Sequence analysis of the p53 tumor suppressor gene was performed on diagnostic blood and bone marrow samples from nine children with Down syndrome and acute megakaryoblastic leukemia. p53 sequence alterations were not observed in any of seven cases of transient leukemia; however, samples from two of three patients with acute megakaryoblastic leukemia harbored sequence alterations. The acquisition of both mutations (Gly245Val and Arg72Pro) in the transformation from transient leukemia to overt acute megakaryoblastic leukemia suggests a functional role of mutant p53 in the evolution of this disease.
Multi-agent immunosuppressive therapy has produced improved survival for severe acquired aplastic anemia in children. Recently, some investigators have suggested that immunosuppressive therapy may replace bone marrow transplantation as first-line therapy for this disorder. To assess its validity, we compared the outcomes of bone marrow transplantation vs immunosuppressive therapy in one institution from 1987 to 1997. We studied 46 consecutive patients less than 18 years of age who presented between January 1987 and April 1997. Inherited marrow failure syndromes and myelodysplastic syndromes were excluded. Patients received immunosuppressive therapy vs bone marrow transplantation based on availability of HLA-matched donors. The main outcome measures were survival, complete marrow and hematological remission, or partial remission but achieving independence from transfusional support. Twenty patients received multi-agent immunosuppressive therapy (cyclosporine, antithymocyte globulin and methylprednisolone); 11 attained complete remission and three partial remission for a transfusion-independent survival of 70%. Six patients died of infectious and hemorrhagic complications. Twenty-six patients were transplanted and 24 (93%) achieved complete remission; one achieved a PR, 25 remain transfusion independent with a median follow-up of 5.9 years or 70 months. One patient developed AML 34 months after successful transplant and one patient died due to graft failure and complications of transplant. There has been a striking improvement in survival for pediatric patients treated with multi-agent immunosuppression in the last decade. However, transplantation results have also improved and this remains the definitive first-line therapy for severe acquired aplastic anemia in this age group.
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Newborn babies are born vitamin K deficient; however, the deficiency is not sufficiently severe to cause a vitamin K deficiency coagulopathy and haemorrhagic disease of the newborn (HDN). Severe vitamin K deficiency can develop quickly in breast-fed newborns and can result in the appearance of classic HDN during the first week of life or late HDN during the first 2 months of life. Both forms of the disease can be severe, causing brain damage and death. Classic and late HDN are prevented by the intramuscular administration of vitamin K at birth. Oral prophylaxis prevents classic HDN but is ineffective in preventing late HDN. Despite proven effectiveness of intramuscular vitamin K prophylaxis there have been concerns about the need for, and safety of, this therapy. This review provides evidence that there is need for intramuscular vitamin K prophylaxis for all babies in order to eradicate haemorrhagic disease of the newborn and concludes that there is no evidence that this therapy is harmful.
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Transient Myeloproliferative Disorder (Transient Leukemia) is found in approximately 10% of newborn infants with Down Syndrome. It is characterized by the large numbers of megakaryoblasts in the peripheral blood, variable thrombocytopenia and, in a minority of cases, by a lethal course with hydrops fetalis or progressive hepatic fibrosis. Evidence is presented that this disease is truly leukemia, which, in most cases, recovers spontaneously. There is evidence that hematopoiesis is abnormal in Down Syndrome children who do not have leukemia. These abnormalities of red cells, platelets, and granulocytes are reviewed.
Immune thrombocytopenic purpura (ITP) is a disorder for which management remains controversial. The ongoing goal is to define the minimal therapy required for children with acute ITP. A pilot study of short-course oral prednisone (4 mg(-1) kg(-1) d(-1) for 4 d with no tapering) was undertaken in 25 consecutive children with acute ITP and platelet counts under 20 x 10(9) l(-1). Of the 25 children, 22 responded to the prednisone therapy by achieving a platelet count higher than 20 x 10(9) l(-1) within 1 week of commencing treatment. This regimen was found to be safe, inexpensive and effective in increasing the platelet count of children to a haemostatically safe level.
OBJECTIVE: We tested the hypothesis that vitamin C supplementation of premature neonates is associated with hemolysis. STUDY DESIGN: A double-blind, randomized, controlled trial of vitamin C supplementation (50 mg/day) was undertaken in premature neonates (birth weight, 1000 to 1500 gm). Infants were randomly assigned to receive vitamin C (Ce-Vi-Sol) (n = 32) or placebo (n = 24) for 14 days. Twenty-three subjects per group were required to detect a difference of 1 SD in corrected carboxyhemoglobin values (alpha = 0.05, beta = 0.10). RESULTS: Day 14 vitamin C levels were lower in control subjects than in supplemented neonates (62 +/- 24 vs 125 +/- 62 micromol/L, p = 0.005). There was no difference in corrected blood carboxyhemoglogin concentrations (0.72 +/- 0.44 vs 0.72 +/- 0.23%; p = 0.95), other parameters of hemolysis, weight gain, blood sampled, presumed septic episodes, necrotizing enterocolitis, feeding intolerance, or transfusion. On day 14, bilirubin values were higher in control subjects than in the supplemented group (77 +/- 37 vs 55 +/- 33 micromol/L; p = 0.04). When a distant outlier in the nonsupplemented group was excluded (163 micromol/L), statistical significance was lost (73 +/- 32 vs 55 +/- 33 micromol/L; p = 0.09). CONCLUSION: Oral supplementation of premature infants with vitamin C is not associated with evidence of increased erythrocyte destruction, hyperbilirubinemia, or other morbidity.
Approximately 10% of newborn infants with Down Syndrome develop a form of megakaryoblastic leukemia which usually disappears spontaneously during the first months of life. The evidence that this "Transient Leukemia" is truly leukemia includes the following: it is clonal proliferation, it can be fatal and tissue infiltration of leukemic cells occurs. Also in approximately 25% of cases that recover, Acute Megakaryoblastic Leukemia will develop in the first four years of life, which, if not treated, is fatal. Evidence regarding the megakaryoblastic nature of the leukemic cells is presented as well as a description of the lethal forms of the disease. The study of Transient Leukemia is of considerable importance because it can provide insight into both the nature of leukemia and its relation to trisomy 21.