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A Cork

Publications and source records attributed to A Cork.

At least 55 records · Page 3Linked to original sources

Cytogenetics for detection of minimal residual disease in acute myeloblastic leukemia.

Bone marrow samples collected from acute myeloblastic leukemia (AML) patients in complete clinical and hematological remission were studied for the persistence of cytogenetic abnormalities. AML patients from the three favorable cytogenetic categories [inv 16, t(8;21) and t(15;17)] and patients from the unfavorable cytogenetic categories (+8, -5, -7 and Philadelphia-positive) were studied. Seventy-one patients had evaluable metaphase spreads in remission marrows and 20 (28%) had one or more abnormal metaphases identical to that present in the pretreatment marrow. All 20 of these patients relapsed within 78 weeks, thus there were no false positive studies. Fifty-one patients had only diploid metaphases in their complete remission marrow, 25 relapsed, and 21 remained in continuous complete remission. Thus there was a 49% false negative rate of this study. These data indicate that the failure to detect residual chromosomally abnormal cells in the bone marrow does not guarantee continuous complete remission. Cytogenetic study was most useful in the favorable cytogenetic groups and least useful in the unfavorable groups. The persistence of normal metaphases in pretreatment marrows did not affect outcome or risk of recurrence. Twenty-five of 34 evaluable patients who relapsed after remission had either the identical cytogenetic abnormality present in the pretreatment marrow or showed the identical abnormality with additional chromosomal changes. Thus study indicates that cytogenetic examinations of complete remission bone marrow samples in patients with AML provides an objective method for detecting residual leukemia, and identifies patients with a potential for prolonged disease-free survival.

Bone Marrow↗

8;20 chromosomal translocation in a case of acute leukemia. Cytogenetic, immunophenotypic, ultrastructural, and molecular characteristics.

An 8;20 chromosomal translocation was observed in the leukemia cells of a 3-year-old girl. To our knowledge, this is the first report of this translocation in de novo acute leukemia. This chromosomal defect was present in the leukemia cells at diagnosis and also at relapse, but remission bone marrow cells had the 46,XX karyotype. By morphologic and cytochemical criteria the leukemia was myeloid but these features were more lymphoid when the leukemia recurred. However, the immunophenotype was consistent with myeloid leukemia and did not change at relapse. No evidence for either immunoglobulin or TCR gene rearrangement was observed.

Biomarkers, Tumor↗

RAS mutations are rare events in Philadelphia chromosome-negative/bcr gene rearrangement-negative chronic myelogenous leukemia, but are prevalent in chronic myelomonocytic leukemia.

Previous reports have indicated that mutations of the RAS oncogenes are not associated with the chronic phase of Philadelphia chromosome-positive chronic myelogenous leukemia (Ph1+ CML). However, further studies were needed to determine their association with Ph1- CML and chronic myelomonocytic leukemia (CMML). Therefore, 6 patients with Ph1- CML who were also negative for BCR rearrangements (Ph1-/BCR- CML) and 30 patients with CMML were analyzed for the presence of RAS oncogene point mutations to determine the similarities of these diseases at the molecular level. The assay used the polymerase chain reaction for amplification of the target RAS sequences and panels of specific synthetic oligonucleotide probes for hybridization to wild type and/or mutated sequences. None of the six Ph1-/BCR- CML patients had mutations in the RAS oncogenes, while 17 of 30 (57%) of the CMML patients had RAS oncogene mutations. Eighty percent of the mutations involved substitution of aspartic acid for glycine (G----A) in the 12th or 13th codons of N-ras or K-ras. Furthermore, although not statistically significant, survival studies raise the possibility of shortened survival in patients with RAS oncogene point mutations, with the average survival being 33 months for Ph1-/BCR- CML, 35 months for CMML without point mutations, and 11 months for CMML with RAS mutations. Thus, RAS mutations appear to be associated with CMML and not Ph1-/BCR- chronic phase CML, there is a high propensity for the K-ras or N-ras mutations to involve an G----A substitution in the 12th or 13th codons, and RAS mutations in CMML may relate to prognosis and require further studies.

Gene Rearrangement↗

Interferon affects nuclear proteins in cells of clinically sensitive chronic myelogenous leukemia patients.

Cytoplasmic protein extracts from chronic myelogenous leukemia (CML) cells contained an activity that altered the electrophoretic mobility of complexes formed between nuclear proteins and the transcriptional enhancers of interferon (IFN)-inducible genes. Exposure of CML cells to IFN-alpha diminished the effect of the CML cytoplasmic proteins on these nuclear protein-DNA complexes. The presence of clinical responsiveness to IFN-alpha correlated with the sensitivity to the IFN-induced change in the electrophoretic mobility of nuclear protein-DNA complexes. These data suggest that the action of IFN-alpha in CML may be linked to a pathway that can result in posttranslational modification of nuclear proteins.

Base Sequence↗

Rearrangement and expression of p53 in the chronic phase and blast crisis of chronic myelogenous leukemia.

We tested a population of over 60 patients with chronic myelogenous leukemia (CML) for changes in the structure and expression of the p53 gene, which is located on chromosome 17. Six of 27 (22%) blast crisis samples and 3 of 5 (60%) accelerated phase samples had rearrangements of chromosome 17, whereas only 3 of 42 (7%) chronic phase patients had cytogenetic changes in chromosome 17. There was no loss of heterozygosity during the transition to blastic crisis among seven individuals who were informative for polymorphic probes for regions in or around the p53 gene on 17p. One patient in the chronic phase and one patient in the blastic phase of the 61 CML patients studied exhibited rearrangements of the p53 gene that were detectable by Southern analysis. One p53 allele was rearranged in the chronic phase patient and both p53 alleles were rearranged in the blastic phase patient. The p53 messenger RNA (mRNA) was of normal size (2.8 kb) in chronic phase and blast crisis, and the expression of the p53 gene was at least as high or higher in blast crisis as in the chronic phase of CML. The high incidence of abnormalities of chromosome 17 in blast-crisis CML found in our studies and the discovery of rearrangements of the p53 gene in two CML patients studied suggest that further study with probes for the p53 gene and anonymous polymorphic sites in chromosome 17 should be conducted in CML.

Blast Crisis↗

The importance of cytogenetic studies in adult acute lymphocytic leukemia.

PURPOSE: The prognostic importance of pretreatment bone marrow cytogenetic studies in adults with acute lymphocytic leukemia treated at a single institution, with an identical treatment program, is described. PATIENTS AND METHODS: A total of 105 patients with a documented morphologic diagnosis of acute lymphocytic leukemia were reviewed for the purpose of this analysis. All patients had an extensive workup at presentation, and cytogenetic analysis was performed in 103 patients, using the Giemsa banding technique with trypsin pretreatment on 24-hour cultured cells. RESULTS: The specific cytogenetic classification in the 103 patients who had the karyotypic analysis was as follows: diploid 27%; Philadelphia chromosome-positive 13%; hyperdiploid 12%; B-cell karyotype 6%; 6q- and 14q+ abnormalities 4%; pseudodiploid 8%; hypodiploid 2%; and insufficient metaphases 28%. B-cell, 6q- or 14q+, and Philadelphia chromosome-positive karyotypes tended to correlate with other known negative prognostic factors. Patients with diploid, hyperdiploid, pseudodiploid, and hypodiploid karyotypes or with insufficient metaphases could be combined into one group with a favorable prognosis. In this group, the remission rate with induction chemotherapy was 89%, the median complete remission duration was 26 months, and the median survival was 25 months, with a 3-year survival rate of 45%. Patients with Philadelphia chromosome-positive, B-cell, and 6q- or 14q+ abnormalities collectively had an unfavorable prognosis. Their response rate to induction chemotherapy was 65%, the median response duration was 7 months, and the median survival was 8 months, with a 3-year survival rate of less than 10%. CONCLUSION: We conclude that the pretreatment bone marrow karyotype is an important part of the evaluation of adults with acute lymphocytic leukemia and provides significant prognostic information.

Adolescent↗

Strategy for breakpoint cluster region analysis in chronic myelocytic leukemia in a routine clinical laboratory.

Despite the increasing reliance on breakpoint cluster region (bcr) determinations in diagnosis of chronic myelocytic leukemia (CML), few reports have dealt with the practical aspects of specimen analysis. In the setting of a routine molecular diagnostics laboratory, samples from 68 patients with active CML were evaluated for bcr rearrangements, with the use of a variety of enzymes and two probes. The data have been used to develop an efficient strategy for bcr screening and breakpoint determination. Screening with the universal bcr (UBCR) probe on Xba I and BgI II digests yielded bcr rearrangements in 100% of the Ph1-positive patients and three of the seven Ph1-negative patients, giving bcr analysis a sensitivity of 100%. A single-enzyme screen using the UBCR probe would have resulted in a false negative rate of 10%. The false negative rate was determined during the breakpoint site analysis from additional digests hybridized to both the 3' and UBCR probes. The false negative rate for the 3' probe was 26.5%, because of deletions or 5' rearrangements. The method of breakpoint site determination was dependent on screening results. In 78% of cases, one additional hybridization with two enzyme digests was required. During breakpoint site analysis, a rare false negative result was also demonstrated with Bam HI and Eco RI. This screening strategy has made bcr analysis competitive with cytogenetic analysis at the authors' institution; although turnaround time may be slightly longer, bcr analysis can yield information (such as detecting bcr-positive/Ph1-negative patients and determining breakpoint site) that cannot be obtained by cytogenetics.

Chromosome Mapping↗

Molecular heterogeneity in acute leukemia lineage switch.

Six cases of acute leukemia that underwent lineage switch from acute lymphocytic leukemia to acute myelogenous leukemia are reported. The mean age of the patients was 24 years, time to conversion was 36 months, and survival after conversion was only 3 months. Of the three cases which showed abnormal metaphases at both diagnosis and conversion, two (cases 2, 5) showed related cytogenetic abnormalities, and the third showed (case 3) independent chromosomal changes. Molecular analysis for immunoglobulin heavy chain and T-cell receptor beta chain genes showed that five of the six cases had rearrangement of at least one of these lymphoid associated genes at conversion to acute myelogenous leukemia. The single case (case 3) in which there were no lymphoid gene rearrangements at conversion was also the only case in which independent karyotypic abnormalities at diagnosis and conversion were demonstrated. Our findings suggest that lineage switch can represent either relapse of the original clone with heterogeneity at the molecular level or the emergence of a second new leukemic clone without molecular heterogeneity.

Antigens, CD↗

Differential nucleolus organizer activity in normal and leukemic bone marrow.

A cytochemical technique that uses silver nitrate staining has been used to study the nucleolus organizer activity in bone marrow cells from 13 patients with acute lymphocytic leukemia (ALL), 11 patients with chronic myelogenous leukemia (CML), 7 patients with acute myelogenous leukemia (AML), and 4 healthy persons. Our results indicate that the nucleolus organizer region (NOR) activity was significantly lower in the control group than in the ALL patients. The NOR activity level was significantly lower in both the CML patients in chronic phase and the AML patients than in the ALL group and similar to the control group. These disease-related differences in NOR activity as detected by silver staining can be used as diagnostic procedure in evaluating human leukemias.

Bone Marrow↗

Refractoriness to chemotherapy and poor survival related to abnormalities of chromosomes 17 and 7 in lymphoma.

PURPOSE: Lymphoma cells usually show cytogenetic abnormalities, but their relationship to prognosis has not been as extensively studied as in leukemia. A group of previously untreated cases of lymphoma with evaluable metaphases was examined for the association between cytogenetic abnormalities and clinical outcome. PATIENTS AND METHODS: The study consisted of 104 patients, from whom fresh tumor samples were obtained for cytogenetic tests. Because of the complexity of lymphoma karyotypes, the cases were divided into four patterns according to the type of abnormality of chromosome 17 or 7 present. Treatment of patients was given based on histologic grade and stage of disease. Response to treatment was evaluated according to previously described methods. RESULTS: Patients with true abnormalities of chromosome 17 or 7 (defined as those with either structural abnormalities of the short arm of these chromosomes or monosomy of these chromosomes with no associated unidentified markers) were observed to have an adverse prognosis. The overall response rate and tumor-related mortality were less favorable for patients with these cytogenetic abnormalities. By applying multivariate analysis, we found that this observation was independent of the effect of serum lactic dehydrogenase level, histologic grade, or tumor burden. CONCLUSION: True abnormalities of chromosome 17 or 7 in patients with lymphoma are associated with a poor response to chemotherapy, short time to treatment failure, and high tumor-related mortality rate. These findings raise the question of the potential involvement of some gene or oncogene, perhaps the p53 oncogene, which might impart a survival advantage to the malignant cells.

Adult↗

Association of granulocytosis with poor prognosis in patients with acute myelogenous leukemia and translocation of chromosomes 8 and 21.

Forty-three patients with acute myelogenous leukemia (AML) and a translocation 8;21 were reviewed. The patients' median age was 30 years, and 62% were men. Twenty-three patients (53%) had loss of a sex chromosome and ten (23%) had other chromosomal abnormalities in addition to the 8;21 translocation. Complete remission (CR) with induction chemotherapy was achieved in 40 patients (93%). The median CR duration was 18 months (range, 1 to 137+ months). Median survival time was 17 months (range, 0.5 to 138+ months) with a 3-year survival rate of 31%. Twenty-three patients (53%) relapsed between 1 and 58 months after entering remission with reinduction therapy resulting in 8 CRs (35%). Thirteen characteristics were examined for an effect on survival. The most striking finding was a significant association between elevated absolute granulocyte count and poor survival (P = .002). WBC count greater than 10,000/microL was also associated with shorter survival (P = .05). Patient age, albumin level, and platelet count showed trends for survival association. Although patients with AML and t(8;21) are regarded as a favorable group with respect to survival, we found a subset of patients who do very poorly. Intensive or more investigational approaches in first remission should be considered for these patients.

Adolescent↗

A lineage switch in acute monocytic leukemia. A case report.

A case of congenital monocytic leukemia that underwent a lineage switch to acute lymphocytic leukemia (ALL) is described. The original leukemia had typical monocytic features, as evidenced by morphology (FAB M5), cytochemistry (nonspecific esterase) and immunophenotype (My4 positive). Cytogenetic study showed a pseudodiploid clone t(9;11)(p22;q21) that could be interpreted as a variant of the t(9;11)(p22;q23) reported in patients with the M5 type of leukemia. After successful remission induction with single-agent chemotherapy (VM-26) and subsequent sustained remission for 12 months with alternating VM-26 and VP-16-213, lineage switch to ALL (FAB L1) occurred. The presence of both lymphoid and myeloid markers on leukemic cells at lineage switch suggested the biphenotypic character of the patient's ALL. Our observation indicates that a lineage switch can occur from monocytic leukemia to ALL, although most of the cases previously reported have been in the reverse direction. This case emphasizes again the need to carry out careful and comprehensive marker studies to gain insight into the possible prognostic significance and the application of appropriate therapy.

Bone Marrow↗

Myeloid surface antigen-positive acute lymphoblastic leukemia (My+ ALL): immunophenotypic, ultrastructural, cytogenetic, and molecular characteristics.

Leukemic blasts from 40 consecutively admitted adults with untreated acute lymphoblastic leukemia (ALL) were examined for myeloid surface antigen expression. Of these, 14 (35%) were reactive with one or more myeloid monoclonal antibodies. Each example of myeloid surface antigen-positive (My+ ALL) met the standard morphologic and cytochemical criteria for ALL. In addition, none of the 13 samples studied for ultrastructural evidence of myeloperoxidase met the criteria for acute myelocytic leukemia (AML). All patient samples reacted with lymphoid monoclonal antibodies: CD10+ (8 patients), CD19+ CD10- (2 patients), T cell+ (2 patients), and T cell+ CD10+ (2 patients). Coexpression of myeloid and lymphoid determinants was established by two-color immunofluorescence studies using flow cytometry in five of five samples analyzed. Cytogenetic abnormalities that have been associated with myeloid and mixed leukemias were common, including t(9;22), 7q-, abnormalities of 11q with or without a translocation, 20q-, and -5. Blasts from seven patients were studied at the molecular level. Immunoglobulin heavy chain gene rearrangements were detected in five of five samples with B cell+ T cell- phenotypes. One sample that was T cell+ CD10+ was germline for the immunoglobulin heavy chain and the T cell receptor gamma- and beta-chain genes. The other patient with T cell+ CD10+ blasts relapsed with AML following allogeneic bone marrow transplantation. The leukemia cells at the time of diagnosis and the cells at relapse demonstrated similar cytogenetics and the same immunoglobulin gene rearrangement, suggesting a clonal relationship. As a group, the My+ ALL patients had a significantly decreased complete remission rate when compared to My- ALL patients. Further studies at the molecular level will be required to determine the significance of karyotype abnormalities in My+ ALL.

Adolescent↗

Frequent nonrandom chromosome abnormalities in 27 patients with untreated large cell lymphoma and immunoblastic lymphoma.

Fresh tumor samples from 27 patients with large cell lymphoma, either previously untreated (26 patients) or minimally treated (one patient), were processed for cytogenetic studies. Cytogenetic abnormalities were observed in all patients, most commonly in chromosomes 1, 3, 7, 12, 14, 17, and 18. Nine chromosomal breakpoints appeared frequently: 14q32 in 14 instances; 18q21 in seven; 9p13-21, 17p11-13, and 3q21-23 in six each; 1p11-21 in five instances; 1p36 in four; and 2p21-23 in three. The most common structural abnormalities were t(14;18)(q32;q21) in seven patients (26%) and 17p- in six (22%). The presence of 17p- was associated with a significantly higher proliferative capacity as manifested by the percentage of S phase = 22% versus 11% for cases without 17p-(P less than 0.05). Trisomy 12, typical of small lymphocytic lymphoma, was seen in five patients in this series, all of whom had diffuse large cell lymphoma; frequently, it appeared simultaneously with t(14;18). The two patients with immunoblastic lymphoma of B-cell type had an abnormality involving chromosome 2p21-23. Deletions in the long arm of chromosome 6, previously described as typical of diffuse large cell lymphoma and B-cell immunoblastic lymphoma were observed infrequently in this series. However, this abnormality has been present in 50% of patients with large cell lymphoma previously exposed to therapy, suggesting that it may be related to effects of chemotherapy or to clonal evolution.

Chromosome Aberrations↗

Chronic myelomonocytic leukemia with trisomy 8 and a related clone with trisomy 8 and t(15;17).

We describe a patient with chronic myelomonocytic leukemia who showed trisomy 8 in 100% of his bone marrow metaphases. Of interest was the finding that 20% of the Giemsa-banded metaphases also showed t(15;17)(q22;q21), with breakpoints indistinguishable from those seen in cases of acute progranulocytic leukemia (APL). The patient showed no morphologic or clinical evidence of APL, and he died after 6 months, with no evidence that the disease had progressed to acute leukemia. Although cytogenetically the breakpoints appeared to be the same as those in APL, we suspect that this patient's translocation may have differed at the molecular level from the t(15;17) commonly seen in APL.

Aged↗

Cytogenetic pattern in acute myelogenous leukemia: a major reproducible determinant of outcome.

An analysis was conducted of clinical and laboratory variables associated with response to remission induction therapy and remission duration in 440 patients with acute myelogenous leukemia treated between 1975 and 1983. The complete remission rate was 259/440 (59%). Specific cytogenetic abnormalities such as t(8;21), t(15;17), and inv16 were found to be favorable for response to therapy and/or remission duration, whereas those with a normal (diploid) karyotype had an intermediate prognosis. All other karyotypic abnormalities were associated with lower response rates and short complete remission durations. The karyotypes were classified as favorable, intermediate, and unfavorable groups for response and remission duration after allowing for all the other observed clinical and laboratory values related to prognosis. The cytogenetic classification was prospectively validated in an independent test group of 130 patients treated between 1983 and 1986 and showed a consistent relationship to response and remission duration. Logistic regression and proportional hazard models developed from the initial 440 patients were prospectively evaluated in the test group of 130 patients. Clear stratifications of patients into good, intermediate, and poor risk groups were obtained in the prospective tests. The karyotype of the leukemia cells is an independent prognostic variable for response and remission duration in acute myelogenous leukemia.

Analysis of Variance↗

Heterogeneity in acute undifferentiated leukemia.

From January 1985 to May 1987, we studied 256 adults with newly diagnosed acute leukemia. Acute undifferentiated leukemia (AUL) was diagnosed in 12 of the 256 (4.6%) cases when lineage could not be delineated by light microscopy and light cytochemistry. To further characterize the blasts, immunophenotyping, ultrastructural myeloperoxidase (UMPO), and ultrastructural platelet peroxidase parameters were examined in 10, 11, and 6 of the 12 cases, respectively. Five cases demonstrated UMPO and were reclassified as acute myeloblastic leukemia (AML). Of the six UMPO-negative cases, three had a myeloid and one had a mixed immunophenotype. One UMPO-negative patient with a myeloid immunophenotype was probed for the immunoglobulin heavy chain gene (JH) and the beta chain of the T-cell receptor gene (Tcr beta) with no evidence of rearrangement. Six cases were treated with standard acute lymphoblastic leukemia (ALL) chemotherapy and failed to achieve complete remission (CR). Various AML chemotherapeutic regimens produced CR in only 3 of the 12 cases. One case was treated with gamma interferon and the other 2 with high-dose Ara-C. Our findings indicate a myeloid lineage can be detected by UMPO (5/12) in some cases of AUL. A germline configuration with JH and Tcr beta in one case as well as a myeloid immunophenotype in 3 UMPO-negative cases raises the possibility that myeloid lineage commitment may occur in the absence of myeloid peroxidase (MPO) cytochemical positivity.

Acute Disease↗

Lineage heterogeneity in acute leukemia with the t(4;11) abnormality: implications for acute mixed lineage leukemia.

Acute leukemia associated with the t(4;11)(q21;q23) abnormality demonstrates marked lineage heterogeneity, including cases with features of acute mixed lineage leukemia. We report 7 patients with acute leukemia with the t(4;11) abnormality in which we have defined the range of lineage commitment associated with this disease utilizing a variety of cell characterization techniques. Each case could be classified either as acute lymphoblastic leukemia (ALL) (5 cases) or acute myelogenous leukemia (AML) (2 cases) based on standard light microscopic criteria supplemented by ultrastructural determination of myeloperoxidase. Evidence for acute mixed lineage leukemia was found in one of the AML patients in which coexpression of CD14 and CD19 surface antigens was demonstrated. Overall, the findings further confirm the lineage heterogeneity previously reported in association with t(4;11) acute leukemia. The implications of the findings as to the pathogenesis of t(4;11) acute leukemia are discussed.

Adult↗