Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0027819 (neuroblastoma)
27,800 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

In order to determine the incidence and causes of death during the first 100 days after BMT (early deaths) in a pediatric population we have examined data reported in the AIEOP BMT Registry. Up to July 1990, data on 486 children who underwent allogeneic (180) or autologous (306) BMT were evaluable. The children had acute lymphoblastic leukemia (148 cases), acute non-lymphoblastic leukemia (127 cases), neuroblastoma (82 cases), chronic myelogenous leukemia (15 cases), aplastic anemia (nine cases), solid tumors, lymphoma, immunodeficiency or storage diseases. The overall survival is 55% for allogeneic HLA matched and 38% for autologous transplants at 5 years, 24% for HLA mismatched graft at 2 years. Out of the 486 children, 70 (14%) died during the first 100 days after BMT: 33/306 (11%) after autologous BMT, 24/150 (16%) after allogeneic matched BMT and 13/30 (43%) after mismatched BMT. Causes of early death were as follows: disease progression: 12 children (10/306 after autologous and 2/180 after allogeneic BMT); infection: 12 children (five after autologous and seven after allogeneic BMT); interstitial pneumonitis: 21 children (seven after autologous and 14 after allogeneic BMT); cardiac failure: five children (four after autologous BMT); veno-occlusive disease: eight children (three after autologous, five after allogeneic BMT); acute renal failure: three children (one after autologous and two after allogeneic BMT); multiple organ failure: two cases (one after autologous BMT); cerebral hemorrhage: three children (one after autologous BMT); hypertension: one child; acute GVHD: three children (12% of early deaths after allogeneic BMT).
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PMID:Early deaths in children after BMT. Bone Marrow Transplantation Group of the Italian Association for Pediatric Hematology and Oncology (AIEOP) and Gruppo Italiano Trapianto di Midollo Osseo (GITMO). 146 3

Diagnosis- and/or prognosis-related alterations of (proto) oncogenes may be detected in neuroblastoma (N-myc), carcinoma of breast and ovary (HER2/neu), NHL (c-myc, bcl-2), CML (c-abl/bcr), and some other neoplasias. A wide variety of methods for the detection of gene alterations can be applied. The methods of detection have to be chosen according to the expected mechanisms of oncogene activation, the availability of adequately prepared tissue, and the technical standard of the laboratory. The sensitivity, specificity, and quantitation of morphological techniques (immunohistochemistry and in situ hybridization) is restricted and their results have to be interpreted most carefully. Whenever possible, at least two different techniques should be used, preferably on two different levels, i.e. RNA/DNA and protein. Furthermore, the combination of morphological and non morphological methods should be aspired.
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PMID:[Oncogenes and oncogene products--possibilities and significance of their detection]. 170 8

Using a database comprising 13,266 cytogenetically abnormal neoplasms, the geographic heterogeneity of neoplasia-associated chromosomal abnormalities was investigated by comparing the frequencies of characteristic aberrations in consecutive series of patients with the same diagnosis. Significant frequency differences between geographic areas were found for the aberrations +8, i(17q), +19, and an additional Ph1 chromosome in chronic myeloid leukemia (CML); -5, 5q-, and +8 in acute nonlymphocytic leukemia (ANLL); t(8;21) in ANLL-M2; t(15;17) in ANLL-M3; 5q- and -7 in myelodysplastic syndromes (MDS); t(9;22) and +21 in acute lymphocytic leukemia (ALL); t(14;18) in follicular lymphoma; -8 and -22/22q- in meningioma; and structural abnormalities of 12q in pleomorphic adenoma of the salivary glands (PAS). No geographic incidence variation was detected for -7 and +21 in ANLL; +8 in MDS; 6q- and +8 in ALL; +12 in chronic lymphocytic leukemia; 6q- in non-Hodgkin's lymphoma (NHL); t(8;14) in Burkitt's lymphoma; t(11;22) in Ewing's sarcoma; i(12p) in germ cell tumors; 1p- in neuroblastoma; structural abnormalities of 3q, 8q, and 9p in PAS; or 3p- in renal cell carcinoma. Intraregional frequency similarities between cytogenetically identical abnormalities in related tumor types were also analyzed. No significant correlations were found regarding the incidence of 5q- in ANLL and MDS, 6q- in ALL and NHL, -7 in ANLL and MDS, +8 in ANLL and CML, +8 in ANLL and MDS, +8 in ALL and ANLL, or +21 in ALL and ANLL. The findings indicate that some geographic heterogeneity of tumor-associated aberrations exists both in hematologic neoplasms and in solid tumors.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Geographic heterogeneity of neoplasia-associated chromosome aberrations. 195 98

With increasing survival rates of children grafted for different malignancies concerns about the longterm side effects of this treatment are growing. Therefore, investigations on the function of endocrine systems were conducted in a total 28 patients grafted for various reasons: ALL (N = 18), AML (N = 1), SAA (N = 3), CML(N = 4), neuroblastoma (N = 2). The results can be summarized as follows: 1. The extent of hormonal derangements is primarily dependent on the extent of irradiation prior to BMT. Integrity of hormonal systems was found in cases without irradiation (SAA) or if TBI did not exceed 3 Gy. 2. Primary hypogonadism was present in 18 patients. 3. Primary hypothyroidism was present in 2 patients. 4. Growth impairment was observed in 8 patients. In four of these cases growth hormone deficiency was the cause. In four other cases with graft-versus-host-disease and hepatic involvement SmC/IGF I levels were severely diminished. The data suggest that in most cases BMT itself has relatively few negative effects on the endocrine regulatory system. However, more detailed investigations before and after BMT will be needed to further validate these observations.
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PMID:Influence of allogeneic bone marrow transplantation on the endocrine system in children. 248 Mar 5

Many cancers have been cured by chemotherapeutic agents. However, other cancers are intrinsically drug resistant, and some acquire resistance following chemotherapy. Cloning of the cDNA for the human MDR1 gene (also known as PGY1), which encodes the multidrug efflux protein P-glycoprotein, has made it possible to measure levels of MDR1 RNA in human cancers. We report the levels of MDR1 RNA in greater than 400 human cancers. MDR1 RNA levels were usually elevated in untreated, intrinsically drug-resistant tumors, including those derived from the colon, kidney, adrenal gland, liver, and pancreas, as well as in carcinoid tumors, chronic myelogenous leukemia in blast crisis, and cell lines of non-small cell carcinoma of the lung (NSCLC) with neuroendocrine properties. MDR1 RNA levels were occasionally elevated in other untreated cancers, including neuroblastoma, acute lymphocytic leukemia (ALL) in adults, acute nonlymphocytic leukemia (ANLL) in adults, and indolent non-Hodgkin's lymphoma. MDR1 RNA levels were also increased in some cancers at relapse after chemotherapy, including ALL, ANLL, breast cancer, neuroblastoma, pheochromocytoma, and nodular, poorly differentiated lymphoma. Many types of drug-sensitive and drug-resistant tumors, including NSCLC and melanoma, contained undetectable or low levels of MDR1 RNA. The consistent association of MDR1 expression with several intrinsically resistant cancers and the increased expression of the MDR1 gene in certain cancers with acquired drug resistance indicate that the MDR1 gene contributes to multidrug resistance in many human cancers. Thus, evaluation of MDR1 gene expression may prove to be a valuable tool in the identification of individuals whose cancers are resistant to specific agents. The information may be useful in designing or altering chemotherapeutic protocols in these patients.
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PMID:Expression of a multidrug resistance gene in human cancers. 256 56

The susceptibility of human neuroblastoma cells to direct cellular cytotoxicity has not been previously established. This is of particular interest because of their aggressive growth and low HLA expression. Neuroblastoma lines CHP 100 and CHP 126 were found to be excellent targets in 4-hr CML assays. Natural killer (NK) cells from fresh PBL and from an NK clone, 3.3, have high lytic activity against both cell lines. We also studied mixed lymphocyte culture-generated cytotoxic lines containing allo-specific cytotoxic T lymphocytes (CTL) directed against HLA antigens present on the neuroblastoma target cell lines. These lines did show excellent lytic activity, but cold target competition studies indicated that all of the lysis resulted from NK activity. This was verified by using inhibition studies with the use of monoclonal antibodies. OKT 3 and anti-HLA antibodies that block CTL function caused no reduction in kill. In contrast, anti-lymphocyte function antigen-1 (anti-LFA-1), which blocks both NK and CTL function, significantly inhibited lysis. These results serve as a functional confirmation of earlier findings of a very weak expression of HLA-A,B,C and beta 2-microglobulin on neuroblastoma cells.
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PMID:Human neuroblastoma cell lines are susceptible to lysis by natural killer cells but not by cytotoxic T lymphocytes. 315 2

It is clear that there are at least two classes of cancer-related genes. The more characterized of these are the oncogenes, whose activation appears to play a major role in human neoplasia. There are now two families of oncogenes, the myc and ras families, whose cooperation seems capable of transforming normal cells in culture to tumorigenic cells. As such, they appear to form complementation groups with immortalizing and transforming properties, respectively. Moreover, the oncogenes can be subclassified as tyrosine kinases or kinase related, GTP binding proteins, growth factors or growth factor receptors or nuclear proteins. More than 20 viral oncogenes have been identified, for which more than 30 proto-oncogenes or pseudogenes exist in the human genome. Many of these have been cloned, characterized to some extent, and mapped to particular chromosomes or regions of chromosomes. Further, more than 20 additional putative oncogenes or transforming genes have been identified by tumor DNA transfection studies or at sites of integration or translocation for which no viral transforming gene cognates exist. Oncogenes can be activated by increased or unregulated expression, increased copy number (duplication, amplification), or somatic mutation resulting in a protein with increased oncogenic potential. Examples of all of these mechanisms can be found in several specific human cancers or leukemias. The cytogenetic correlate of enhanced expression is a translocation between two chromosomes at specific breakpoints with no net loss of genetic material (e.g., increased c-myc expression resulting from the 8;14 translocation in Burkitt's lymphoma). The phenomenon of increased gene copy number can sometimes be visualized as trisomy or tetrasomy for a particular chromosome but more dramatically as the development of extrachromosomal DMs or as chromosomally integrated HSRs (e.g., the N-myc gene amplification seen in neuroblastoma). Finally, certain somatic mutations can be associated with translocations (e.g., the bcr/abl fusion product created as a result of the 9;22 translocation in chronic myelogenous leukemia), but they are more commonly submicroscopic (as characterized by point mutations in the ras gene family). Evidence is accumulating for a second class of cancer-related genes whose absence or inactivation is associated with tumorigenesis. These genes are associated at the cytogenetic level with chromosomal deletions, in which the breakpoints may be variable, but specific, common regions are consistently deleted.(ABSTRACT TRUNCATED AT 400 WORDS)
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PMID:The involvement of oncogenes and suppressor genes in human neoplasia. 331 93

Histocompatible bone marrow transplantation (BMT) is the treatment of choice for pediatric patients with second remission acute lymphoblastic leukemia or acute myelogenous leukemia (AML) and has been successfully used to treat patients with first remission AML and stable-phase chronic myelogenous leukemia. The principle causes of transplantation failure are recurrent leukemia and therapeutic toxicities, including idiopathic interstitial pneumonitis and graft versus host disease (GVHD). The likelihood of leukemic relapse is related primarily to the remission status of the patient; patients in first remission have a lower relapse rate than patients in second remission, and the relapse rate of both is less than that of patients in relapse. Interstitial pneumonitis is due, in part, to the total body irradiation (TBI) that is used to cytoreduce the patients. TBI administration has been modified to reduce its toxicity. Acute and chronic GVHD are due to the immuno-aggression of donor T-lymphocytes against recipient non-HLA antigens. The in vitro removal of the T-lymphocytes from the donor bone marrow inoculum reduces the incidence of acute and chronic GVHD but may have the adverse effect of reducing hematopoietic engraftment and increasing leukemic relapse since the graft versus leukemia effect may be eliminated. The expanding role of BMT includes its use in the treatment of nonleukemic neoplasms (neuroblastoma, solid tumors) and the use of histoincompatible BMT for eligible patients without histocompatible donors.
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PMID:Current status of bone marrow transplantation in pediatric oncology. 352 38

The case histories of 72 subsequently treated patients - 44 with acute leukemia, 10 with chronic myeloid leukemia, 16 with severe aplastic anemia and 2 with neuroblastoma - were analyzed after bone marrow transplantation (BMT) with respect to pulmonary diseases. Thirty-eight patients suffered from a total of 51 pulmonary complications, which led to death in 20. Of 13 patients, 3 died of bacterial pneumonia, all of them during granulocytopenia; 2 of 6 patients died of fungal pneumonia and 2 out of 3 of a mixed bacterial-mycotic infection. Adult respiratory distress syndrome (ARDS) led to death in 2 patients. A granulocyte count under 500/microliter correlated significantly (P less than 0.002) with the fatal outcome of bacterial, fungal and ARDS pneumonia as well as with bronchitis. Viral pneumonia led to death in 8 of 9 patients; in each there was a significant correlation (P less than 0.05) with graft-versus-host disease (GvHD). Patients with repeated episodes of pulmonary illness had significantly more chronic GvHD (P less than 0.05); several of these patients displayed a reduction in helper T cells and an increase in suppressor T cells in the peripheral blood. The natural killer (NK) cells were reduced and the percentage of activated NK cell level lay between 6% and 69%. B-cells were absent or deficient. These findings explain in part the absence of specific antibody reactivity. Five of these patients also contracted GvHD-associated obstructive bronchiolitis, which did not respond to therapy. Pulmonary infiltrates of unknown origin (including idiopathic interstitial pneumonia) occurred in 8 of the patients (11.1%), with a fatal outcome in 3 patients. Significant changes (P less than 0.05) in lung function after BMT appeared in the form of reduced vital capacity (VC) increased residual volume (RV) and an increase in RV expressed as the percentage of total lung capacity. Pulmonary diseases were the most common complication and cause of death in our patients after BMT.
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PMID:Lung diseases after bone marrow transplantation. Results of a clinical, radiological, histological, immunological and lung function study. 352 53

Unexpected sudden cardiac death among children with a history of Kawasaki disease has come to be reported in Japan. Death occurred between 2 months and 8 years after complete recovery from Kawasaki disease according to our study material. To study the lesions of Kawasaki disease sequelae we examined 61 cases of Kawasaki disease which came to autopsy. In 17 of these the deaths apparently to be due to sequelae of this disease, were characterized by cardiac insufficiency caused by ancient coronary aneurysm with organized thrombotic occlusion and superimposed acute ischemic myocardial degeneration and/or necrosis. The age of the lesions appears to correlate with the interval period between complete recovery from this disease and death. Six cases succumbed incidentally of other causes: one traffic accident, one hemophilus meningitis, one chronic myeloid leukemia, one neuroblastoma, one meningeal hemorrhage due to rupture of basilar arterial aneurysm, and one acute lymphatic leukemia. Even in these cases, definite sequelae of arteritis were detected. A surgically resected coronary aneurysm and a ventricular aneurysm were also examined. It was disclosed by mass physical check-up of school children that 0.1% had a history of Kawasaki disease, among which 5-6% showed cardiac and/or coronary abnormality including aneurysms. The high incidence of cardiac involvement in Kawasaki disease has been proved in this study and this kind of lesion has the possibility of resulting in unexpected cardiac death of children.
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PMID:Pathological study of sequelae of Kawasaki disease (MCLS). With special reference to the heart and coronary arterial lesions. 379 88


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