OBJETIVOS: descrever características clínico-laboratoriais, determinar taxas de resposta ao tratamento e identificar fatores de risco que influenciaram na sobrevida de pacientes pediátricos com leucemia linfóide aguda (LLA). MÉTODOS: estudo retrospectivo do tipo série de casos com 108 pacientes de idade até 18 anos, admitidos para tratamento de LLA na Fundação de Hematologia e Hemoterapia de Pernambuco (HEMOPE), Brasil, de janeiro de 1993 a dezembro de 2001. As variáveis analisadas foram: sexo, idade, principais sintomas e sinais, leucometria, imunofenótipo e grupo de risco ao diagnóstico, taxas de remissão e recaída, óbito e sobrevida global, local de recaída e fatores de risco para a sobrevida. Medidas descritivas foram usadas para a análise estatística. O tempo de sobrevida dos pacientes foi estimado através da função de sobrevida de Kaplan-Meier e Log-Rank. O efeito de fatores de risco no tempo de sobrevida foi avaliado através do Modelo de Regressão de Cox. RESULTADOS: foi encontrada a relação masculino:feminino de 1,7:1, mediana de idade ao diagnóstico de oito anos, freqüência de queixas músculo-esqueléticas (51%), infiltração do sistema nervoso central (8%), LLA-Precursor B (81%) e LLA-T (19%). A distribuição dos grupos correspondeu a Risco Básico Verdadeiro (12%), Risco Básico (21%) e Alto Risco (67%). As principais taxas foram: remissão (86%), óbitos na indução (5,5%), recaída (24%) e sobrevida global (62,5%). CONCLUSÕES: a variável de impacto na sobrevida foi a leucometria. A taxa de sobrevida global foi influenciada pela freqüência elevada de pacientes considerados de alto risco.
The influence of genic polymorphisms involved in metabolism of chemotherapeutic agents as the methotrexate (MTX) has been studied mainly in acute lymphoblastic leukemia (ALL) of childhood. Advances in treatment may be attributed to identification of prognostic factors added to chemotherapy protocol. The aim of this study was to analyze the association of the C677T, A1298C, and G80A polymorphisms on MTHFR gene and on the overall survival of pediatric patients (n = 126)
with lymphoblastic leukemia treated with MTX according to the Brazilian protocol in 187 months. The C677T and G80A polymorphisms were genotyped by PCR-RFLP and A1298C polymorphism by allele-specific PCR. We observed that ALL patients presented rate (dead/alive) of 0.36 for the 677CC genotype, corresponding also to lower overall survival (P = 0.0013);
on the other hand, the 677TT genotype showed a better survival (98%). Thus, we believe that patients with 80AA genotype presented a small reduction in MTX plasma level, suggesting that ALL children, carrying the 80AA genotype, showed a high toxicity to MTX (P < 0.0001).
We report a case of invasive infection due to Saprochaete
capitata in a patient with hematological malignancies after
chemotherapy treatment and empiric antifungal therapy with caspofungin. Although
severely immunocompromised the patient survived been treated with amphotericin B
lipid complex associated with voriconazole.
The association of lymphoma with necrotic granuloma can pose diagnostic challenges and delay treatment, especially in settings with a high burden of infection. In these settings, the timely use of cytogenetic and molecular methods is most relevant. Here, we report a case of B-cell lymphoma with t (8;14) in a 5-year-old male child. The lymphoma was associated with necrotic granuloma and was initially misdiagnosed as tuberculosis. Polymerase chain reaction was used to detect clonal lymphoproliferation and to rule out Mycobacterium tuberculosis infection. Tumor cells harbored Epstein-Barr virus and expressed CD20, CD10, BCL6, and Ki67 (30%), leading to the diagnosis of B-cell lymphoma with features intermediate between diffuse large B-cell lymphoma and Burkitt lymphoma.
Myeloid malignancies can be either primary or secondary, whether or not a specific cause can be determined. Fanconi anemia (FA), a rare constitutional bone marrow failure, usually presents an increased possibility of clonal evolution, due to the increase in chromosomal instability, TP53 activation, and cell death. The evolution of FA may include aplastic anemia by the progressive failure of the bone marrow and myelod neoplasias, such as acute myeloid leukemia and myelodysplastic syndrome. Chromosome abnormalities, particularly of chromosomes, 1, 3, and 7, during the aplastic phase of the disease are predictive of evolution to acute myeloid leukemia/myelodysplastic syndrome. Cytogenetic studies are indispensable to characterize chromosome abnormalities, and thus an important part of the clinical management, and for planning of therapeutic interventions. Here, clinical data and outcomes of 4 FA, 3 of them with myeloid malignances and 1 asymptomatic, and detailed characterization of their chromosome abnormalities using cytogenetics techniques are described.
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