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Biomedical subjects

J Barredo

Publications and source records attributed to J Barredo.

11 recordsLinked to original sources

Improved survival of children with isolated CNS relapse of acute lymphoblastic leukemia: a pediatric oncology group study .

PURPOSE: Isolated meningeal relapse in children with acute lymphoblastic leukemia (ALL) usually has been followed by bone marrow relapse and limited survival. The purpose of this study was to prevent marrow relapse by administering intensive therapy before delayed craniospinal radiation. PATIENTS AND METHODS: Eighty-three patients with ALL in first bone marrow remission with an isolated CNS relapse were treated with systemic chemotherapy known to enter into the CSF and intrathecal chemotherapy for 6 months. Craniospinal irradiation (24 Gy cranial/15 Gy spinal) was then administered, followed by 1.5 years of maintenance chemotherapy. RESULTS: All 83 patients achieved a second remission. The 4-year event-free survival (EFS) rate was 71.1% +/- 5.3%. There was a fourfold increased risk of relapse for children whose initial remission was less than 18 months. The 4-year EFS rate for patients with a first complete remission >/= 18 months was 83.3% +/- 5.3%, and for those with a first complete remission less than 18 months, it was 46.2% +/- 10.2% (P =.0002.) There was a low incidence of neurologic toxicity and an unexpectedly high rate of allergic reactions to L-asparaginase. Five patients developed secondary malignancies: two with acute nonlymphoblastic leukemia during therapy, one with myelodysplasia after therapy, and two with brain tumors 1.5 to 2 years after cessation of therapy. CONCLUSION: For children with ALL and an isolated CNS relapse, treatment that delays definitive craniospinal irradiation by 6 months to allow for more intensive systemic and intrathecal chemotherapy results in better EFS than has been previously reported. Using this approach, the long-term prognosis for children with first complete remission >/= 18 months is comparable to that at the time of original diagnosis of ALL.

Adolescent↗

Effects of antisense-based folypoly-gamma-glutamate synthetase down-regulation on reduced folates and cellular proliferation in CCRF-CEM cells.

The effect of down-regulation of folylpoly-gamma-glutamate synthetase (FPGS) activity on intracellular reduced folate accumulation and cellular proliferation was examined, using an inducible antisense expression system in the human T-lymphoblastic leukemia cell line CCRF-CEM. FPGS catalyzes the addition of gamma-glutamyl residues to natural folates and classical antifolates, which results in their enhanced cellular retention and increased cytotoxicity. As such, this enzyme has become a focus as a potential anticancer drug target. However, direct evidence to support this concept has been elusive. Hence, a study was undertaken using an antisense-based expression system to down-regulate FPGS activity. This inducible expression system was used to demonstrate that lower FPGS activity can lead to substantially lower intracellular folate content, which coincides with suppression of thymidylate synthesis and inhibition of cellular proliferation.

DNA Primers↗

Pleuropulmonary blastoma: a marker for familial disease.

OBJECTIVE: To catalog and evaluate patterns of disease in families of children with pleuropulmonary blastoma (PPB). METHODS: Data have been collected since 1988 on 45 children with PPB and their families. All pathologic materials were centrally reviewed. Preliminary molecular genetic analyses were performed when possible. RESULTS: In 12 of 45 patients, an association was found between PPB and other dysplasias, neoplasias, or malignancies in the patients with or in their young relatives. The diseases found to be associated with PPB include other cases of PPB, pulmonary cysts, cystic nephromas, sarcomas, medulloblastomas, thyroid dysplasias and neoplasias, malignant germ cell tumors, Hodgkin disease, leukemia, and Langerhans cell histiocytosis. Abnormalities of the p53 tumor suppressor gene, Wilms tumor suppressor gene (WT1), and the putative second genetic locus for Wilms tumor (WT2) were not found in preliminary investigations. CONCLUSIONS: The occurrence of PPB appears to herald a constitutional and heritable predisposition to dysplastic or neoplastic disease in approximately 25% of cases. All patients with PPB and their families should be investigated carefully. Further research of this new family cancer syndrome may provide insight into the genetic basis of these diseases.

Adult↗

Myelodysplasia associated with Turner syndrome.

PURPOSE: This study reports the association of myelodysplasia with Turner syndrome. PATIENT AND METHODS: An 11-year-old girl with Turner syndrome was found to have mild macrocytic anemia that persisted during 2 years. RESULTS: Examination of the bone marrow revealed dyserythropoietic features with multinucleation consistent with refractory anemia. Levels of hemoglobin F were also markedly elevated (57%). She also had transient neutropenia and thrombocytopenia, as well as abnormal platelet function studies. The hematopoietic abnormalities were mild and may have been missed were she not followed for her hypertension and aortic coarctation. CONCLUSIONS: Myelodysplastic syndromes in children are frequently associated with chromosomal abnormalities, but an association with Turner syndrome has not been previously described. This could be due to the fact that mild hematopoietic abnormalities in these patients may not be investigated.

Anemia↗

Neurologic complications following bone marrow transplantation for sickle cell disease.

A boy with sickle cell anemia underwent bone marrow transplantation (BMT). He was normal on neurological examination, but had radiologic evidence of an old left frontal lobe infarct, multiple cerebral vascular stenoses and moyamoya collaterals. After BMT he developed seizures with extension of the infarct and subarachnoid hemorrhage. One year later angiography revealed worsening stenosis of the M1 segments of both middle cerebral arteries. At that time an increase in von Willebrand's factor with decreased large molecular weight multimers (LvWF) was observed. We speculate that LvWF dependent, shear-induced platelet aggregation, together with endothelial damage may have contributed to the development of neurologic complications in this patient.

Anemia, Sickle Cell↗

Bone marrow transplantation for sickle cell anemia.

PURPOSE: To investigate the role of bone marrow transplantation in patients with severe sickle cell anemia (SCA). PATIENTS AND METHODS: We have designed a protocol for selecting patients with severe SCA who may benefit from bone marrow transplantation (BMT). On the basis of this protocol, a girl 3 9/12 years of age who had severe recurrent pain crises and splenic dysfunction received a BMT from her brother, who is homozygous for hemoglobin A. RESULTS: Transplantation resulted in prompt engraftment, followed by durable hematologic and immunologic reconstitution with donor cells. One year after BMT, the patient continued to do well. She did not experience any graft versus host disease, her growth velocity increased, and recovery of splenic function was demonstrated. Since undergoing BMT, she has not experienced any painful crises. CONCLUSIONS: Bone marrow transplantation is an effective therapeutic modality that should be considered in patients with severe SCA.

Anemia, Sickle Cell↗

A dideazatetrahydrofolate analogue lacking a chiral center at C-6, N-[4-[2-(2-amino-3,4-dihydro-4-oxo-7H-pyrrolo[2,3-d]pyrimidin-5- yl)ethyl]benzoyl]-L-glutamic acid, is an inhibitor of thymidylate synthase.

N-[4-[2-(2-Amino-3,4-dihydro-4-oxo-7H-pyrrolo[2,3-d]pyrimidin-5- yl)ethyl]benzoyl]-L-glutamic acid (15), prepared in five steps from 2-pivaloyl-7-deazaguanine, has been found to be an antitumor agent with its primary site of action at thymidylate synthase rather than purine synthesis. This compound appears to be a promising candidate for clinical evaluation.

Animals↗

Determinants of antifolate cytotoxicity: folylpolyglutamate synthetase activity during cellular proliferation and development.

Previous studies have documented the metabolism of a broad range of folate antimetabolites to polyglutamate derivatives by the enzyme folylpoly-gamma-glutamate synthetase (FPGS). The activity of the more recently developed classes of antifolates directed against thymidylate synthase and de novo purine synthesis is sufficiently dependent on polyglutamation that these compounds should be specifically cytotoxic to any normal or malignant proliferating cell expressing this enzyme. We have studied the patterns of expression of FPGS in mammalian cells and tissues during rapid growth, growth arrest, differentiation, and embryonic development. During embryogenesis in the rat, FPGS levels in liver and brain were higher during the period of proliferative activity and then dropped to a level characteristic of the adult organs. However, the levels in liver were substantially higher than those in brain at any given time. This pattern was mimicked in mouse C3H 10T1/2 embryo fibroblast cells, in which FPGS activity decreased after cessation of growth but then remained at a lower steady state level during an extended period of postconfluent culture. Enzyme activity also dropped after the differentiation of human HL-60 promyelocytic leukemia cells. In a human homolog of these experimental systems, FPGS levels were below the limits of detection in circulating mature human hematopoietic cells of the granulocytic, lymphoblastic, and erythrocytic lineages. In striking contrast, substantial levels of FPGS were found in circulating lymphoblasts from eight patients with acute lymphoblastic leukemia. The levels of FPGS found in these transformed stem cells would help to explain the sensitivity of many acute lymphoblastic leukemias to folate antimetabolites. We concluded that expression of FPGS is regulated by at least two mechanisms, one of which is linked to proliferation and the other of which controls enzyme levels after differentiation and is tissue specific.

Age Factors↗

Hereditary erythrocyte adenylate kinase deficiency: a defect of multiple phosphotransferases?

Adenylate kinase (AK) modulates the interconversion of adenine nucleotides (AMP + adenosine triphosphate----2 ADP). We evaluated the fifth kindred with hereditary erythrocyte (RBC) AK deficiency. The proband had chronic hemolytic anemia. Her RBC had undetectable AK activity when measured spectrophotometrically, whereas those of her parents had half-normal AK activity. AK electrophoresis showed only AK-1 in the parents. The activities of pyruvate kinase and phosphoribosylpyrophosphate synthetase were decreased given the young age of the proband's RBC. Despite the absence of spectrophotometric AK activity, the proband's RBC were able to incorporate 14C-adenine into 14C-adenine nucleotides at 50% of the rate expected for her young RBC population, suggesting the possibility of an alternative pathway for the formation of ADP from AMP. Normal hemolysate had AMP:guanosine triphosphate (GTP) phosphotransferase activity, which produced ADP at 8% to 9% of the rate of AK (6.8 +/- 0.8 IU/mL RBC). AMP:GTP phosphotransferase activity was not detectable in the proband's or parent's hemolysates. These additional biochemical defects in the AK-deficient RBC further support the concept that AK deficiency per se may not cause hemolytic anemia. We propose that defects occur in multiple phosphotransferases in the AK-deficient RBC and that these other biochemical defects may produce deleterious lesions that promote the shortened RBC survival in AK deficiency.

Adenosine Diphosphate↗

A microassay for mammalian folylpolyglutamate synthetase.

A new assay for the enzyme folylpoly-gamma-glutamate synthetase (FPGS) that offers significant advantages over other published procedures has been developed. This assay is based on the addition of high specific activity [3H]glutamic acid to (6-S)-tetrahydrofolate followed by trapping of the labeled tetrahydropteroyldiglutamate product as a covalently bound macromolecular complex by the addition of formaldehyde, fluorodeoxyuridylate, and pure bacterial thymidylate synthase. This complex is then separated from excess labeled glutamic acid by centrifugal elution of a 1-ml Sephadex G-50 column. The assay was found to be useful for the measurement of FPGS on small tissue samples and is amenable with the assay of FPGS in cell sonicates. Typically, blank values of 100-200 cpm are seen with a signal normally more than 10 times higher. Analysis of 20-30 samples can be accomplished in less than 90 min. As a result, this assay has proven useful for detection of enzyme in elution fractions from chromatographic columns.

Animals↗