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Biomedical subjects

A Chase

Publications and source records attributed to A Chase.

53 records · Page 3Linked to original sources

Relapse of chronic myeloid leukemia after allogeneic bone marrow transplant: the case for giving donor leukocyte transfusions before the onset of hematologic relapse.

Fourteen patients with chronic myeloid leukemia (CML) relapsing after allogeneic bone marrow transplant (BMT) were treated with leukocyte transfusions from the original marrow donor (sibling, n = 9; volunteer unrelated, n = 5). The relapse was defined at the molecular level in two cases, cytogenetically in five cases and hematologically in seven cases. Ten patients responded, seven of seven patients with cytogenetic/molecular relapse compared with three of seven with hematologic relapse (P < .03). All five recipients of cells from unrelated donors responded. Eight of the 10 responders have achieved polymerase chain reaction-negative status and this persisted in three patients for more than 2 years; no responder has shown sign of relapse. Reversible marrow aplasia occurred in two patients, both treated in hematologic relapse. Severe graft-versus-host disease occurred in four patients and was fatal in one. We confirm previous reports that donor leukocyte transfusions are effective in the management of CML in relapse after BMT. In this series, therapeutic intervention before the onset of hematologic relapse was associated with an increased likelihood of response and no marrow aplasia.

Adult↗

Aplasia after donor lymphocyte infusion (DLI) for CML in relapse after sex-mismatched BMT: recovery of donor-type haemopoiesis predicted by non-isotopic in situ hybridization (ISH).

We report a patient with CML in relapse after a sex-mismatch bone marrow transplant who was treated with donor lymphocyte infusions and developed severe marrow aplasia 3 months later. As cytogenetic analysis at this point was not possible because of the very low number of marrow cells available, we used in situ hybridization (ISH) for sex chromosomes and the BCR/ABL gene together with quantitative PCR to monitor the patient's response. The results suggest that recovering haemopoiesis was derived from donor cells and contributed to the decision not to transfuse donor marrow cells on a second occasion.

Adult↗

No evidence for microsatellite instability or consistent loss of heterozygosity at selected loci in chronic myeloid leukaemia blast crisis.

The aim of the present study was to investigate loss of heterozygosity (LOH) or microsatellite instability in chronic myeloid leukaemia (CML) blast crisis at genomic locations which are known or postulated to harbour tumour suppressor genes. We studied 48 patients in blast crisis of myeloid (n = 31), lymphoid (n = 15), megakaryocytic (n = 1), or mixed lineage (n = 1) phenotype by comparing constitutional DNA extracted from buccal epithelial cells or chronic phase leucocytes with DNA obtained from blast crisis leucocytes. Twelve variable number tandem repeat loci from six different chromosomes were amplified by polymerase chain reaction using labelled primers, and fractionated on polyacrylamide gels. After autoradiography, length as well as intensity of the amplified products were compared between constitutional and blast crisis samples. LOH was scored as complete, partial or none in informative patients. Complete LOH was found in one patient at 8p22 and another at 13q14; partial LOH was detected in three patients at 11p13 and/or 11p15. No LOH was found at 6q27, 8p21, 18q21, 22q11-12 and 22q13 in any patient. Furthermore, no consistent difference in allelic length was observed in 517 paired amplifications indicating no microsatellite instability. We conclude that the Rb gene at 13q14, the Wilms tumour gene at 11p13, the DCC gene at 18q21, the neurofibromatosis 2 gene at 22q11-13 and uncloned tumour suppressor genes at 6q27, 8p21-22 and 11p15, as well as genes responsible for microsatellite instability, are unlikely to be involved in the progression of CML to blast crisis in the majority of patients.

Blast Crisis↗

T lymphocytes in chronic myelogenous leukaemia (CML): no evidence of the BCR/ABL fusion gene detected by fluorescence in situ hybridization in 14 patients.

Previous studies designed to identify the Ph chromosome in T lymphocytes from patients with chronic myelogenous leukaemia (CML) were mostly based on small numbers of patients. To examine the possibility that the occasional CML patient might have major penetration of the T-cell compartment by the leukaemic clone, we studied interphase T cells from the blood of 11 CML patients conventionally treated in chronic phase and three in relapse after allogeneic bone marrow transplant (BMT) by fluorescence in situ hybridization using BCR and ABL cosmid probes. Granulocytes from the same patient and cells from the SD-1 CML cell line served as positive controls. Cells with juxtaposition of BCR and ABL signals or with the two signals up to one signal diameter apart were scored as positive. In each CML patient the incidence of 'positive' T cells was much less than in positive controls and similar to that found in negative controls (mean values +/- 1 SD: 7.7 +/- 3.6; 91.2 +/- 3.1, and 5.6 +/- 2.2, respectively). We conclude that none of the patients studied by this technique had any appreciable proportion of BCR/ABL-positive T cells in the circulation.

Adult↗

Lack of reciprocal translocation in BCR-ABL positive Ph-negative chronic myeloid leukaemia.

We used fluorescence in situ hybridization (FISH) to metaphase chromosomes with BCR and ABL cosmid probes in conjunction with the polymerase chain reaction (PCR) to study the mechanism by which the ABL proto-oncogene is inserted into a morphologically normal chromosome 22 in patients with Ph-negative chronic myeloid leukaemia characterized by the BCR-ABL chimeric gene. In control patients with Ph-positive CML the ABL probe localized to 22q- and the 3' BCR probe localized to 9q+. In nine Ph-negative CML patients the ABL probe localized to one normal chromosome 9 and to one 'normal' chromosome 22. Both 5' and 3' BCR probes localized exclusively to the chromosomes 22. By PCR all had evidence of BCR-ABL transcripts, but none had evidence of the reciprocal ABL-BCR gene product that is seen in 70% of the Ph-positive CML patients. These data confirm the view that Ph-negative CML results from insertion of ABL-containing DNA sequences into a normal-appearing chromosome 22 without reciprocal translocation of sequences from chromosome 22 to chromosome 9.

Adult↗

Competitive polymerase chain reaction to estimate the number of BCR-ABL transcripts in chronic myeloid leukemia patients after bone marrow transplantation.

We have developed a competitive polymerase chain reaction (PCR) titration assay that estimates the number of BCR-ABL transcripts in chronic myeloid leukemia patients to monitor minimal residual disease after bone marrow transplantation (BMT). The assay gave reproducible results and allowed differences in BCR-ABL message levels of half an order of magnitude to be distinguished. Of 91 patients studied by nonquantitative PCR, 28 who had a positive PCR result on at least one occasion posttransplant were analyzed by competitive PCR. Seventeen patients had no evidence in their marrow of cytogenetic relapse during the period of observation; BCR-ABL transcript numbers in these cases ranged from approximately 10 to 800/micrograms RNA. Ten of the 11 patients who relapsed cytogenetically were studied when Philadelphia-positive metaphases were first detected in their marrow; transcript numbers ranged from 1,600 to 7 x 10(5)/micrograms RNA. Patients in hematologic relapse had between 9 x 10(4) and 10(6) BCR-ABL transcripts/micrograms RNA. Patients who progressed from cytogenetic remission to cytogenetic relapse and then to hematologic relapse had increasing numbers of BCR-ABL transcripts in their blood. Three patients had clear evidence of rising numbers of BCR-ABL transcripts before routine detection of cytogenetic relapse. Conversely patients without cytogenetic relapse generally had low or falling numbers of transcripts. We conclude that serial monitoring of residual disease post-BMT by estimating the number of BCR-ABL transcripts provides more information than conventional cytogenetics or nonquantitative PCR and may identify patients in need of therapeutic intervention before the onset of overt relapse.

Base Sequence↗

Inflammatory cells in the lungs of premature infants on the first day of life: perinatal risk factors and origin of cells.

Neither the origin of leucocytes in the premature newborn airway nor their relationship to perinatal factors has been adequately determined. In order to sample airway cells, modified bronchoalveolar lavage was performed on 74 intubated infants of < 32 weeks' gestation and < 24 hours of age. Cells were counted, stained and, in a small separate group of six infants, four boys and two girls, probed for the Y chromosome with suitable control samples. Perinatal risk factors for increased airway cellularity were analysed by multiple regression. Premature rupture of membranes of more than 24 hours' duration was independently associated with increased numbers of airway leucocytes (n = 74). More than 90% of airway leucocytes from four boys with pulmonary inflammation were positive for the Y chromosome indicating that the cells were of fetal rather than maternal origin.

Bronchoalveolar Lavage Fluid↗

Phenotypic characterization of normal and CML CD34-positive cells: only the most primitive CML progenitors include Ph-neg cells.

We studied the sequence of acquisition of CD33, CD38 and HLA-DR antigens on CD34+ cells from marrow and blood of Ph-chromosome positive CML patients and normal marrow. We examined the Ph status of the various CML cell populations. The mean proportions of normal and CML CD34+ cells expressing CD33 and CD38 were not significantly different. However, a significantly greater proportion of CML CD34+ cells expressed HLA-DR antigens compared with normal CD34+ cells and the level of HLA-DR expression per CML cell was abnormally high. When the sequence of acquisition of these antigens on normal and CML CD34+ cells was evaluated using 3-colour fluorescence analysis, the results suggested that HLA-DR was expressed earlier than CD38 or CD33 and these findings were confirmed by following the acquisition of CD38 and CD34+/DR+/CD38-subpopulation during liquid culture. We performed cytogenetic studies on CD34+ subpopulations in 6 cases. In 4 cases there were some Ph-negative metaphases detectable in the CD34+/DR-subpopulation (range 12.5 to 60%). In the CD34+/DR+ fractions, however, all 6 patients had only Ph-positive metaphases and only 1/5 patients had detectable Ph-negative metaphases in the CD34+/CD38-subpopulation. We conclude that expression of HLA-DR antigens may precede the expression of CD38 on CD34+ cells during normal stem cell differentiation. In CML DR may be expressed aberrantly and Ph-negative cells are found predominantly in the DR negative subpopulation.

ADP-ribosyl Cyclase↗

p53 in chronic myeloid leukemia cell lines.

Four human chronic myeloid leukemia (CML) cell lines, BV173, K562, KCL-22, and KYO-1, were studied for inactivation of human tumor suppressor gene p53. Southern blotting showed allele deletion in KCL-22 and cytogenetic studies showed a chromosome 17 deletion in KYO-1 but no gross structural abnormalities in the other two lines. Northern blotting showed increased amounts of normal size p53 mRNA in BV-173 and KYO-1, trace amounts in KCL-22, and none in K562. Direct sequencing of p53 cDNA revealed a missense point mutation in KYO-1 and a single base pair deletion consistent with a coding frame shift in KCL-22. Both abnormalities in these myeloid cell lines were located in the highly conserved region of p53. Studies with two monoclonal antibodies showed that the three cell lines with p53 mRNA had readily detectable p53 proteins. In KYO-1 and BV173 cells the p53 protein was located mainly in the nuclei but KCL-22 cells had weak staining in the cytoplasm. Our data support the assumption that inactivation of p53 tumor suppressor function in myeloid blast transformation of CML may result from point mutations or deletions that produce mutant proteins.

Base Sequence↗

Inactivation of the retinoblastoma susceptibility gene in a human high grade non-Hodgkin's lymphoma cell line.

We studied the expression of the retinoblastoma (RB) gene product (p105) in a B-cell line established from a patient with non-Hodgkin's lymphoma (large cell type). The karyotype of this cell line, named Ri-1, showed amongst other changes an apparent deletion of one chromosome 13 on band q14. No p105 could be detected by immunoprecipitation analysis and Western blotting in Ri-1 cells. Northern blotting revealed that RB mRNA is not expressed in Ri-1. Southern blotting confirmed the loss of one RB allele but showed a normal gross structure of the remaining allele. This suggests that the inactivation of the RB gene in Ri-1 cells is due to deletion of one allele and point mutations or small deletions in the other, as is often the case in retinoblastomas. Our findings imply that inactivation of the RB gene may play a role in the pathogenesis of high grade malignant lymphomas and that studies of RB in primary lymphoma samples would be of interest.

Cell Line↗

Origin and function of adherent lymphokine activated killer cells in patients with chronic myeloid leukaemia who relapse following bone marrow transplantation.

Adherent lymphokine activated killer (ALAK) cells are a subpopulation of activated natural killer (NK) cells with MHC unrestricted antitumour activity distinguished by their propensity to adhere to plastic in the presence of interleukin-2 (IL-2). We generated ALAK cells from seven patients with chronic myeloid leukaemia (CML) following Campath-1-depleted bone marrow transplantation (BMT). Five had relapsed and were in chronic phase, one had cytogenetic evidence of relapse and one had prior evidence of cytogenetic relapse but was in complete remission at time of study. Phenotypically the ALAK cells included both CD56+/CD3- NK cells and CD56-/CD3+ T cells. The CD3- subpopulation were studied cytogenetically and their functional activity tested in a 4 h 51Cr release cytotoxicity assay using the pretransplant leukaemia cells as targets. Cytogenetic studies showed that the ALAK cells from six patients were Ph negative, and where donor and recipient were sex mismatched, ALAK cells were exclusively of donor origin. In one patient ALAK cells were Ph positive and of recipient origin in eight of nine metaphases. In the 51Cr release assay the ALAK cells showed significant lysis of the pretransplant leukaemia in five of the seven patients tested. These data indicate that in CML patients who relapse post-BMT the NK cells are usually of donor origin but may be recipient-derived. In most patients these ALAK cells have antileukaemic activity in vitro.

Antigens, Neoplasm↗

Mutants of Chinese hamster ovary (CHO) cells with altered colcemid-binding affinity.

Clones of CHO cells stably resistant to colcemid have been isolated in the presence of the nonionic detergent Tween 80 after mutagen treatment. Successive single-step selections for increasing resistance were performed resulting in lines after three selection steps about 10 fold more resistant to colcemid than the parental cells. Three observations indicate that these colcemid-resistant (CMR) mutants are different from the colchicine-resistant permeability mutants isolated previously. First, their relative resistance to colcemid was not diminished in the presence of detergent which promoted increased drug permeability. Second, the CMR clones displayed limited cross-resistances only to tubulin-binding compounds. Third, the binding affinity of labeled colcemid by cytoplasmic extracts from CMR clones was reduced, and the reduction was greater in the more resistant clones. No reduction in binding of labeled colcemid was observed in the membrane-altered colchicine-resistant mutants. All these observations are consistent with the CMR clones being tubulin-altered mutants. In further support of this conclusion, we observed that tubulin purified from a CMR mutant still possessed reduced colcemid-binding affinity compared with that from parental cells.

Animals↗