Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023473 (chronic myeloid leukemia)
18,916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The chromosome 22 derivative, the Philadelphia (Ph) chromosome, results from the reciprocal translocation t(9;22) (q34;q11). On DNA level a BCR/ABL rearrangement involving the so-called major BCR (Mbcr) from chromosome 22 has been associated with chronic myeloid leukemia (CML). For Ph+ ALL a site of rearrangements in the 5' part of the BCR (breakpoint cluster region) gene on chromosome 22, the so-called minor bcr region (mbcr) has been described within the first intron in a 10.8 kb region (=bcr2 or m-BCR1). The BB1 probe detects two Eco fragments of 8.5 and/or 11 kb, which may appear as monomorphic or heteromorphic alleles, both covering bcr2. We have analyzed EcoRI restriction polymorphisms within bcr2 in 42 patients with a rearrangement in M-bcr (including 39 Philadelphia chromosome-positive (Ph+) CML patients and 3 ALLs) and in 18 healthy unrelated volunteers. Of the 42 patients tested, 52.4% (22) had the 8.5 kb bcr2 allele, 21.4% (9) had the 11 kb bcr2 allele, and 26.2% (11) had both the 8.5 and the 11 kb allele. In addition to normal allelic polymorphisms in bcr2, rRFs (rearranged bcr2 restriction fragments) were found in bcr2 as shown in 33% (14 of 42) of our patients. By contrast, no rRFs were found in 18 healthy volunteers. Our results indicate, that heterogeneous rearrangements in bcr2 may appear in addition to BCR/ABL rearrangements involving M-bcr in Ph+CML.
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PMID:Minor BCR (m-bcr) rearrangements may appear in major BCR (M-bcr)-positive CML cases. 136 28

The BCR/ABL oncogene in chronic myelogenous leukemia produces an activated tyrosine kinase fusion protein (p210). Like other tyrosine kinase oncogenes, BCR/ABL can abrogate the interleukin-3 (IL-3) dependence of lymphoid cell lines. To investigate the ability of BCR/ABL to generate growth factor independence in myeloid cells, the IL-3 dependent myeloid cell line NFS/N1.H7 (H7) was transfected with the p210BCR/ABL-containing plasmid, pGD210. Stable clones A54 and A74 were capable of IL-3 independent growth and tumor formation in syngeneic mice. Relief of growth factor dependence was not mediated by autocrine release of IL-3. The baseline proliferation rate of the BCR/ABL transformed cells was greater than that of the parental H7 cells maximally stimulated by IL-3. Abundant constitutive expression of c-myc, c-jun, and c-fos was observed in the p210BCR/ABL transfectants even in low serum conditions. In contrast, c-myc expression in H7 cells was dependent upon IL-3 stimulation, and neither c-jun nor c-fos was highly expressed following IL-3 stimulation in H7 cells. Thus, BCR/ABL transformation and relief of IL-3 dependence involve not only pathways that can substitute for IL-3 induced growth via tyrosine kinase mediated signals, but also pathways that recruit constitutive c-jun and c-fos expression.
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PMID:BCR/ABL confers growth factor independence upon a murine myeloid cell line. 137 13

We have analysed the results of treating 140 consecutive patients with chronic myeloid leukaemia (CML) in chronic phase by bone marrow transplantation (BMT) using marrow from HLA-identical siblings performed between February 1981 and July 1991. Three different regimens were used sequentially to prevent graft-versus-host disease (GVHD): cyclosporin A (CsA) alone (n = 39), T-cell depletion of donor marrow (n = 51) and CsA with methotrexate (MTX) (n = 50). Eighty-four patients (61%) survive at a median of 49 months from BMT (range 3-120). The actuarial overall and leukaemia-free survivals at 5 years were 52% and 41% respectively. The actuarial probabilities of leukaemia-free survival and haematological relapse at 2 years for the CsA only group were 65% and 4%, for the T-cell depletion group 40% and 41% and for the CsA/MTX group 68% and 6% respectively. For the T-cell depletion group the probability of leukaemia-free survival was significantly lower (P less than 0.001) and the probability of relapse significantly higher (P less than 0.001) than for other methods of GVHD prophylaxis; differences between the other two groups were not significant. Previous reports that T-cell depletion with Campath-1M results in a high rate of relapse are confirmed. Patients in the CsA/MTX group have been monitored with cytogenetic and polymerase chain reaction studies for residual BCR/ABL transcripts. We conclude that the combination of CsA/MTX is currently the best available approach to prevention of GVHD after BMT for CML and in our hands it is not associated with a major risk of relapse.
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PMID:HLA-identical sibling donor bone marrow transplantation for chronic myeloid leukaemia in first chronic phase: influence of GVHD prophylaxis on outcome. 139 Feb 11

Tissue macrophages derive from monocytes of bone marrow origin. Because monocytes from patients with chronic myelogenous leukemia (CML) contain the Philadelphia chromosome (Ph), it seemed probable that tissue macrophages in CML would originate from the malignant clone. Using powerful molecular techniques, we studied pulmonary alveolar macrophages (PAM) from two patients with CML. PAM from Patient 1, a patient in chronic phase studied before bone marrow transplantation (BMT), contained the Ph by Southern blot analysis. Patient 2, an accelerated phase patient, was studied after post-BMT relapse. PAM from this patient not only contained the Ph, but also expressed the BCR/ABL message documented by a new splice junction in situ hybridization technique. This new technique allows detection of BCR/ABL mRNA and determination of splice useage in individual cells. These data confirm the continued replenishing of PAM from peripheral blood monocytes in non-BMT settings and represent the first direct evidence that tissue macrophages are derived from the malignant clone in patients with CML.
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PMID:A new in situ hybridization technique for spliced RNA species documents the bone marrow origin of pulmonary macrophages in chronic myelogenous leukemia. 142 2

Twenty six patients with Philadelphia chromosome (Ph1) positive chronic myelogenous leukemia (CML) treated with IFN-alpha were classified on the basis of the fusion pattern of BCR/ABL chimeric mRNA determined by a reverse-transcriptase-polymerase chain reaction (RT-PCR) method. The relationship between the fusion pattern of BCR/ABL mRNA and the clinical outcome was also analysed. Twelve patients showed M-bcr exon 3/ABL exon 2 (B3/A2) chimeric mRNA and nine had M-bcr exon 2/ABL exon 2 (B2/A2) mRNA. Eleven of the 12 patients with B3/A2 achieved complete hematological response with IFN-alpha therapy, as did three of the nine patients with B2/A2. The mean duration to blastic crisis was significantly longer in the B3/A2 patients (mean 52.4 months) than in the B2/A2 patients (mean 26.2 months) (p less than 0.01). These results suggest that the fusion pattern of BCR/ABL mRNA may affect the therapeutic response to IFN-alpha and clinical outcome in CML patients.
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PMID:Possible correlation between fusion pattern of BCR/ABL mRNA and clinical response to alpha-interferon in chronic myelogenous leukemia. 151 6

Only a minority of all patients with CML can today be treated by allogeneic bone marrow transplantation (BMT) but the probability of cure for such patients is high. The complications of BMT are similar to those that occur following transplant for other diseases, notably GVHD, pneumonitis and infections. Of special interest is the demonstration that a graft-versus-leukaemia effect plays a role in the cure of CML. Studies using the polymerase chain reaction to detect minimal residual disease (BCR/ABL transcripts) may prove useful in predicting relapse and optimizing conditioning schedules. It is now important to test whether BMT can be equally successful in older patients (over 50 years) and in those lacking HLA-identical sibling donors. For other patients autografting may offer the possibility of achieving complete cytogenetic remission and perhaps prolonging life.
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PMID:Bone marrow transplantation for chronic myeloid leukaemia. 157 36

The Philadelphia (Ph) translocation is the most common cytogenetic abnormality in adult acute lymphoblastic leukemia (ALL) and is associated with an adverse prognosis. Using polymerase chain reaction (PCR) technology we recently observed a remarkably high incidence (55%) of BCR-ABL rearrangements in adult common ALL patients. In the present study we asked whether a subset of Ph-negative cALL, similarly to Ph-negative chronic myelocytic leukemia (CML) patients, exhibit BCR-ABL transcripts. PCR analysis of 58 adult Ph-negative cALL patients, including 47 cases with a normal karyotype revealed no evidence of chimeric BCR-ABL genes. We conclude that Ph-negative BCR/ABL-positive ALL is very rare entity if existing at all.
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PMID:Polymerase chain reaction analysis of BCR-ABL sequences in adult Philadelphia chromosome-negative acute lymphoblastic leukemia patients. 159 11

Forty-eight long-term disease-free chronic myelogenous leukemia (CML) patients, who had received unmanipulated allogeneic bone marrow transplants (BMT) for eradication of the Philadelphia (Ph1)-positive clone were studied by polymerase chain reaction (PCR), using a very sensitive PCR procedure and very stringent criteria for preventing and revealing contamination. Nine patients (18%) were positive at the first PCR examination, but only one patient remained PCR positive four years after. However, a second PCR analysis performed on new bone marrow samples obtained at a median interval of 14 months (range 6-16) after the first specimen collection from six of nine originally positive cases, and from 16 of 39 originally negative cases, showed that only one of the six positive cases remained positive, whereas negativity was confirmed in all the originally negative patients. These data are evidence that the Ph1-positive clone is apparently completely eradicated in the majority of CML patients who survive disease-free long-term after an unmanipulated allogeneic BMT and that only sporadic cases remain PCR-positive four years post-BMT. The data also show that at least two sequential bone marrow samples for each patient must be analyzed before drawing conclusions regarding the stable persistence of BCR/ABL transcripts and the minimal residual disease status.
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PMID:Minimal residual disease status in transplanted chronic myelogenous leukemia patients: low incidence of polymerase chain reaction positive cases among 48 long disease-free subjects who received unmanipulated allogeneic bone marrow transplants. 160 89

Fifteen chronic myelocytic leukemia patients in durable complete cytogenetic conversion (CCC) under interferon therapy, were monitored every three to six months by bone marrow (BM) karyotypes and/or reverse-transcription polymerase chain reaction (RT-PCR) on peripheral blood (PB) leukocytes (by a nested primer approach using two rounds of amplification, 30 cycles each). Special care was taken to minimize the risk of contamination. The median time of follow-up after first CCC was 12 months (range, 6-30). Thirty five BM karyotypes were performed. Only three patients demonstrated the transient reappearance of a few Philadelphia-positive metaphases, while other patients remained in CCC. Forty five PB samples were studied by RT-PCR. In two patients, no BCR/ABL transcript could be detected in three consecutive samples. In the 13 other cases, RT-PCR was intermittently negative, indicating a level of residual leukemic cells close to the threshold of sensitivity of the technique.
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PMID:Complete cytogenetic conversion in chronic myelocytic leukemia patients undergoing interferon alpha therapy: follow-up with reverse polymerase chain reaction. 160 97

The Philadelphia (Ph) translocation is responsible for the generation of the chimeric BCR/ABL oncogene. The Ph chromosome constitutes the earliest detectable chromosome abnormality in chronic myelogenous leukemia and is also found in acute lymphoblastic leukemia. Mice transgenic for a P190 BCR/ABL-producing DNA construct develop lymphoblastic leukemia/lymphoma and provide an opportunity to study early stages of the disease as well as progression. In this study, we have karyotyped the bone marrow of 10 19-day-old BCR/ABL P190 transgenic mice from a line that reproducibly develops leukemia/lymphoma. Leukemic cells from 17 terminally ill transgenic founders and progeny were also karyotyped as well as bone marrow transplant recipients of leukemic donor marrow. Karyotypically visible aberrations were absent from the early stages of BCR/ABL P190-generated leukemia and normal metaphases could be found even in the terminal stages of the disease. A high frequency of aneuploidy was found in advanced leukemia, with a marked preference for the gain of mouse chromosomes 12, 14, or 17. These results point to a primary role for BCR/ABL in leukemogenesis and suggest a destabilizing effect of the BCR/ABL gene on the regulation of cell division.
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PMID:Clonal development and karyotype evolution during leukemogenesis of BCR/ABL transgenic mice. 173 87


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