Leukemic pericardial effusion causing cardiac tamponade.
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Biomedical subjects
Publications and source records attributed to L S Arya.
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OBJECTIVE: In order to study the clinical profile of children presenting with superior vena cava syndrome (SVCS), case records of all children presenting with SVCS over a 10-year period were retrospectively analyzed. METHODS: Twenty one children (20 males and 1 female) with a median age of 10.0 years (range 5.0 to 12.0 years) were detected to have an underlying hematological malignancy. T-cell acute lymphoblastic leukemia accounted for a major share (57%) in the underlying etiology; 33% of the subjects had non-Hodgkin's lymphoma (T-cell lymphoblastic lymphoma). RESULT: No Patient required radiotherapy or urgent thoracotomy. Among survivors (n=11), who were alive and well at the time of writing this report, the median follow-up was 6.5 years, (range 0.5-9.6 years). T-cell ALL and lymphoblastic lymphoma are common underlying causes of SVCS in Indian children. CONCLUSION: The value of diagnostic interventions performed under local anaesthesia and prebiopsy corticosteroids usage was found to be reassuring since long-term survival without disease is achievable.
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We report here a case of congenital syphilis presenting in a newborn infant at birth. A negative infant VDRL test, pseudoparesis and more notably, joint swellings (arthritis) were features seen uncommonly. Florid skeletal involvement, which is rarely seen in the early neonatal period, prompted us to draw attention to the varied presentation of this disease, rightly referred to as the "master masquerader".
In a series of 185 patients (median age 7 years) of acute lymphoblastic leukaemia (ALL) from India, the overall incidence of ALL-1 gene rearrangement using the Southern blot technique was 11.4% (21/185). The incidence amongst the infants (age < or = 1 year, 70%) was significantly higher when compared to patients > 1 - < or = 10 years (7.4%, P = 0.00001) as well as > 10 years old (9.3%, P = 0.0001). ALL-1 gene rearrangement was associated with significantly higher WBC count (P = 0.01) and CD10 negativity (P = 0.00000001). Complete remission (CR) and relapse rates in 98 patients evaluable for response to therapy on a uniform therapy protocol was independent of ALL-1 gene status.
OBJECTIVE: To evaluate the role of radiation therapy in the management of retinoblastoma. DESIGN: Retrospective analysis. METHOD: From January 1993 to March 1994, one hundred and eleven children (150 eyes) of retinoblastoma were referred for radiotherapy. The diagnosis was based on clinical examination and ocular ultrasonogram for both the eyes. The radiation treatment policy involved 40 Gy in 20 fractions over 4 weeks delivered with sedation for children under 1 year of age, 36 Gy in 9 fractions over 3 weeks under ketamine anesthesia for 1-4 years of age and for >4 years of age, a dose of 50 Gy in 25 fractions over 5 weeks. The initial tumor regression was evaluated by A and B mode ultrasonography and/or CT scan. RESULTS: The age distribution ranged from two months to six years (median - 20 months). Bilaterality was observed in 39 out of 111 cases (35%). The male to female ratio was 1.8:1. Eighty two of the 111 children were treated by definitive external beam radiation to one or both eyes. Fifteen cases received adjuvant radiotherapy after enucleation, and 14 had extensive disease for which palliative radiotherapy was offered. We observed a complete response in 54% of cases, partial response in 32%, and none in 14% of cases. Forty per cent (40%) eye survival was documented at the end of 28 months. The complication rate encountered was about 15%. CONCLUSION: Radiotherapy is an effective modality of treatment in significant number of patients with retinoblastoma. However, it requires appropriate fractionation, precise colimation and careful immobilization with general anesthesia.
Cytogenetics investigations, mostly from peripheral blood, were carried out in 30 children with CML. Amongst a sample of 30 patients, 18 had chronic myeloid leukemia of adult variety (ACML), while the remaining 12 children had the juvenile type of chronic myeloid leukemia (JCML). Sixteen (88.9%) out of the 18 patients suffering from ACML tested positive for the classical Philadelphia chromosome translocation t(9; 22). Of the remaining two ACML patients, one tested positive for t(9; 13; 22) while no visible chromosomal changes were observed in the other patient. The activity of Nucleolar Organizer Region (NOR) was significantly reduced in 11 (61.1%) of the 18 patients suffering from ACML, when compared to that of 21 normal healthy controls. Ten out of the 12 patients suffering from JCML had normal karyotypes, while monosomy 8 and 21 q deletion were seen in the remaining two patients respectively. Amongst the 30 CML patients, chromosomal abnormalities were observed in 19 patients. Variant Philadelphia chromosome translocation (9; 13; 22) and monosomy B were observed in ACML and JCML, respectively. In two ACML patients, cytogenetic studies were helpful in diagnosis of the disease.
A four-year-old boy presented with marked peripheral blood eosinophilia (absolute eosinophil count of 54 x 10(9)/1), features of hypereosinophilic syndrome, and acute lymphoblastic leukemia (ALL-L2), the latter characterized by the presence of granular blasts. Blasts were negative for myeloperoxidase, non-specific esterase, acid phosphatase, periodic-acid Schiff stain, and toluidine blue. They exhibited an early pre-B immunophenotype (TdT, CD19, CD10, CD20 and CD22 positive) and stained negative for T (CD7, CD2, CD5 and CD3) and myeloid markers (MPO, CD33 and CD13). Chromosomal analysis revealed a normal karyotype. To the best of our knowledge, this case represents the first report of the coexistence of granular ALL and hypereosinophilic syndrome.
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Thirty-two children with extramedullary myeloid cell tumour (EMT) who constituted 41 per cent of children with acute myeloid leukaemia (AML) were studied to ascertain their laboratory characteristics and potential problems in diagnosis. The diagnosis, established by peripheral blood smear and/or bone marrow examination, was AML (n = 29) and refractory anaemia with excess blasts in transformation (RAEB-t; n = 3). The six referred patients in whom the diagnosis had been missed, and two cases wrongly reported as histiocytosis on aspiration cytology, were those in whom a peripheral blood smear had not been examined. It is concluded that diagnostic work-up of proptosis must include a full haemogram, meticulous peripheral blood smear examination, repeated if necessary, and bone marrow examination where relevant. RAEB-t cases with extramedullary myeloid cell tumour should be classified as acute myeloid leukaemia.
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