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Differences in the frequency of normal and clonal precursors of colony-forming cells in chronic myelogenous leukemia and acute myelogenous leukemia.

Acute myelogenous leukemia (AML) is a clonal disease that is heterogeneous with respect to the pattern of differentiative expression of the leukemic progenitors. In some patients, the involved stem cells manifest pluripotent differentiative expression, whereas in others, the involved progenitors manifest differentiative expression mainly restricted to the granulocytic pathway. This is in contrast to chronic myelogenous leukemia (CML) which is a clonal disease known to arise in a pluripotent stem cell. Therefore, we tested whether these leukemias could be distinguished with respect to their involvement of immature precursors by studying colony-forming cells (CFC) and their precursors from four glucose-6-phosphate dehydrogenase (G6PD) heterozygous patients with AML and five patients with CML. CFC were separated from their precursors by FACS for expression of CD33 and CD34 followed by growth in a long-term culture (LTC) system. The vast majority of CFC express both the CD33 and CD34 antigens, but their less mature precursors, detected by their ability to give rise to CFC in LTC, express only CD34. In three of the four patients with AML, the CD33-CD34+ cells produced CFC in LTC that appeared to be predominantly or completely normal (ie, nonclonal) in origin. In the fourth patient, a significant enrichment of nonclonal progenitors was obtained in the CD33-CD34+ population, but these cells may also have included significant numbers of clonal cells. In contrast, in four of five patients with CML, cultures of both the CD33-CD34+ and CD33+CD34+ populations produced CFC in LTC that were almost entirely clonal in origin, whereas in the fifth patient a substantial number originated from nonclonal stem cells. These data indicate that granulocyte/monocyte progenitors are predominantly clonally derived in CML and AML. In CML, their precursors are also predominantly clonal, but in some cases of AML they are not. These findings may have implications for understanding the success or failure of current therapies of AML and CML.

Antigens, CD↗

Lineage involvement by BCR/ABL in Ph+ lymphoblastic leukemias: chronic myelogenous leukemia presenting in lymphoid blast vs Ph+ acute lymphoblastic leukemia.

Chronic myelogenous leukemia (CML) can sometimes present in lymphoid blast phase (L-BP), and can be difficult to distinguish from Philadelphia chromosome-positive (Ph+) acute lymphoblastic leukemia (ALL). Some have suggested that the determination of cell lineages involved by the Ph chromosome may be used for distinguishing CML presenting in L-BP (presumably multilineage disease) from Ph+ ALL (presumably lymphoid-restricted), although others have suggested the term 'stem cell ALL' for the multilineage process. Because it has been difficult to perform lineage studies of the Ph chromosome, we investigated the use of fluorescence in situ hybridization (FISH) with probes for BCR (on chromosome 22) and ABL (on chromosome 9) to study lineage involvement in Ph+ lymphoblastic malignancies. We analyzed routine blood and marrow specimens from eight patients who presented with Ph+ lymphoblastic leukemia and found that FISH recognized the 9;22 translocation, distinguished between the two common molecular variants, and readily identified multilineage vs lymphoblast-restricted disease. In our series, four patients had multilineage and four had lymphoblast-restricted disease. Multilineage disease was associated with morphologic features of CML at diagnosis and/or reversion to chronic phase CML after treatment leading us to consider it as CML presenting in L-BP. Patients with lymphoid-restricted disease lacked such findings. The survival of three of our four patients with multilineage disease was prolonged, at 25, 28+, and 126+ months, and when data from our entire series are added to those of 18 previously reported cases that were studied for lineage involvement (reviewed in Leukemia 1993; 7: 147), the difference in overall survival between patients with multilineage and lymphoblast-restricted disease is significant (median overall survival of 47 months vs 8 months, respectively; P=0.013, log rank). Our findings illustrate that FISH analysis can be used to recognize lineage involvement in patients presenting with Ph+ lymphoblastic malignancies, and they provide further support to the notion that multilineage and lymphoblast-restricted disease are distinct clinically as well as biologically.

Adolescent↗

WT1 in acute leukemia, chronic myelogenous leukemia and myelodysplastic syndrome: therapeutic potential of WT1 targeted therapies.

Among clinicians, initial awareness of the Wilms' tumor gene was limited mostly to pediatric oncologists. Almost a decade ago, overexpression of Wilms' tumor 1 (WT1) was observed in adult acute leukemia. Subsequent studies indicated that WT1 overexpression occurs in most cases of acute myelogenous leukemia, acute lymphoblastic leukemia, chronic myelogenous leukemia (CML), and myelodysplastic syndrome (MDS). Limited tissue expression of WT1 in adults suggests that WT1 can be a target for leukemia/MDS therapy. WT1 expression in stem/progenitor cells remains unsettled. However, lack of progenitor cell suppression by WT1 antisense or WT1-specific cytotoxic T cells provide some assurance that WT1 expression in progenitor cells is minimal or absent. Immunotherapy-based WT1 approaches are furthest along in preclinical development. WT1-specific cytotoxic lymphocytes can be generated from normals and leukemic patients. In mice, WT1 vaccines elicit specific immune responses without evidence of tissue damage. In this paper, we review studies validating the immunogenicity of WT1 and propose that leukemia and MDS may be a good clinical model to test the efficacy of a WT1 vaccine.

Acute Disease↗

Structures of O-linked oligosaccharides isolated from normal granulocytes, chronic myelogenous leukemia cells, and acute myelogenous leukemia cells.

O-Linked oligosaccharides were isolated from normal granulocytes, chronic myelogenous leukemia cells, and acute myelogenous leukemia cells by alkaline borohydride treatment. Oligosaccharides were fractionated by Sephadex G-50 gel filtration and QAE-Sephadex column chromatography, and their structures were elucidated by fast atom bombardment-mass spectrometry after permethylation and methylation analysis before and after specific exoglycosidase treatments. Results show that normal granulocytes and chronic myelogenous leukemia cells contain a series of O-linked oligosaccharides with the following structure, (formula: see text) where, in normal granulocytes n = 0 is major and n = 1 or 2, and thus polylactosaminyl oligosaccharides are present as minor components. However, these polylactosaminyl oligosaccharides were barely detectable in chronic myelogenous leukemia cells. On the other hand, acute myelogenous leukemia cells, which represent poorly differentiated myeloid cells, mainly contain short O-linked oligosaccharides with 2----6-linked sialic acid as follows. (formula: see text) These results suggest that structures of O-linked oligosaccharides vary in the different maturation stages along the same cell lineage.

Carbohydrate Conformation↗

Increased risk of acute myelogenous leukemia (AML) and chronic myelogenous leukemia (CML) in a county of Hesse, Germany.

The incidence of acute and chronic myelogenous leukemia has been compared for the two neighbouring regions of Marburg and Giessen in Hesse (Germany). The investigation was based on the incident cases of the years 1983-1989 which have been diagnosed in the hematological departments of the universities of the two regions. The epidemiological evaluation of the data has been carried out in terms of a historical follow-up study, and shows an increased relative risk for the region around Marburg with a particular elevation for one community within this region. Potential determinants are discussed and focus on trinitrotoluene (TNT) and decomposition products which are known to contaminate the soil of this community, in some places severely, due to insufficient removal of remnants of the TNT production in large underground plants during World War II.

Adult↗

A phase II study of VP-16, intermediate-dose Ara-C and carboplatin (VAC) in advanced acute myelogenous leukemia and blastic chronic myelogenous leukemia.

Thirty-one patients with either advanced AML (18) or blastic CML (13) were treated with an intensive timed sequential combination of VP-16 (100 mg/m2/day i.v., days 1-3 and 8-10), intermediate-dose Ara-C (500 mg/m2 i.v. over 1 h q 12 h, days 1-3 and 8-10) and carboplatin (150 mg/m2/day i.v. continuous infusion, days 1-3 and 8-10). CR rates were 9/18 (50%) for patients with AML and 9/13 (69%) for those with blastic CML, for an overall CR rate of 58%. Among patients with AML, CR rates for specific subgroups were: primary resistant disease 2/6; resistant relapse 1/5; second relapse 6/7. Ten patients were refractory to VAC and three (10%) died of complications during marrow hypoplasia. Median overall survival was 7 months, and median DFS of the 18 responders 4 months. The major toxicity was myelosuppression and infection. The VAC regimen has significant activity and acceptable toxicity in myelogenous leukemias. The very high response rate observed in blastic CML warrants further testing of carboplatin-based regimens in this poor-risk form of leukemia.

Adolescent↗

Total body irradiation in acute myeloid leukemia and chronic myelogenous leukemia: influence of dose and dose-rate on leukemia relapse.

From June 1981 to March 1987, 106 patients--59 with acute myeloid leukemia (AML) and 47 with chronic myelogenous leukemia (CML)--were treated with Cyclophosphamide 60 mg/kg X 2 d and total body irradiation (TBI-990 cGy/3fr/3d described dose) before allogeneic bone marrow transplantation. Seventy-nine patients are evaluable for risk of relapse: 32 with chronic myelogenous leukemia (23 in first chronic phase, 9 in accelerated phase) and 47 with acute myeloid leukemia (38 in first complete remission, 9 in subsequent phases). Actual TBI doses delivered to these patients varied between 839 and 1250 cGy (mean 956 +/- 101)/3 fr/3d, with dose rates between 2.7 and 7.25 cGy/min (mean 4.2 +/- 1.8). Patients receiving high (greater than 990 cGy) and low (less than or equal to 990) dose and/or dose rate (greater than 4 cGy/min and less than or equal to 4, respectively) have been evaluated overall and stratified by type of leukemia and phase of disease. When the patients are considered altogether, high total dose is significantly correlated with decreased risk of relapse (p = 0.0005) as well as high dose rate (p = 0.03). When considering specific subgroups, the influence of total dose on relapse rate is evident both for "early" and "advanced" leukemias, while an impact of dose rate appears only for chronic myelogenous leukemia in 1st chronic phase. Pertinent radiobiological and clinical literature is reviewed, and a possible role of dose fractionation and dose rate in leukemic control rate is evidenced; in this TBI setting, total dose not less than 990 cGy/3fr/3d and dose rate not less than 4 cGy/min have to be guaranteed.

Adolescent↗

Myeloblastic and lymphoblastic markers in acute undifferentiated leukemia and chronic myelogenous leukemia in blast crisis.

Blast cells were obtained from 17 patients with acute undifferentiated leukemia and 13 patients with chronic myelogenous leukemia in blast crisis. The blasts were tested with anti-i serum in cytotoxicity tests and with antisera to myeloblastic leukemia-associated antigens in immunofluorescence tests. The terminal deoxynucleotidyl transferase (TDT) content of the blasts was also measured. Lymphoblasts react strongly with anti-i, do not react with anti-myeloblast serum, and have high levels of TDT; myeloblasts react weakly with anti-i, do not react with anti-myeloblast serum, and have very low levels of TDT. Of the 17 patients with acute undifferentiated leukemia, there were six with blasts which reacted like lymphoblasts, six with blasts which reacted like myeloblasts, and five with blasts bearing different combinations of these lymphoblastic and myeloblastic markers. Eight of the 11 patients with lymphoblastic or mixed lymphoblastic-myeloblastic markers, but only one of the six with myeloblastic markers, achieved complete or partial remission in response to therapy. Thus, in acute undifferentiated leukemia, classification of blasts with these markers may be of prognostic value. Of the 13 patients with chronic myelogenous leukemia in blast crises, the markers were concordant (for myeloblasts) in only two cases. Three of the 13 patients had TDT-positive blasts, but the reactions of these cells with anti-i and with anti-myeloblast serum differed from those seen with lymphoblasts from patients with acute lymphoblastic leukemia. Although the cell involved in "lymphoid" blast crisis of chronic myelogenous leukemia is similar in many respects to that involved in acute lymphoblastic leukemia, these cells are not identical.

Adult↗

Alterations of the p53 gene in Philadelphia chromosome-positive leukemia including chronic myelogenous leukemia and acute leukemia.

We analyzed the structural alteration of the p53 gene, by Southern blotting with conventional and/or pulsed-field gel electrophoresis, in patients with Philadelphia chromosome-positive leukemia (chronic myelogenous leukemia; CML, 34 cases and acute leukemia; AL, 5 cases). We found an alteration of the p53 gene in one of 5 AL patients. Loss of heterozygosity was detected in two CML patients with i(17q) chromosome, but we could find no other alterations in the remaining CML patients.

Acute Disease↗

Detection of both T-cell and Ia-like antigens on cells from patients with acute myelomonocytic leukemia and chronic myelogenous leukemia in blast crisis.

Appropriately absorbed antisera to the lymphoblastoid cell lines HSB and SB detect a human T-lymphocyte-associated antigen (TLAA) and the human Ia-like antigens, respectively. Cells from some patients with acute myelomonocytic leukemia (AMML) and chronic myelogenous leukemia in blast crisis expressed both TLAA and Ia antigens when tested in a complement-dependent microcytotoxicity assay (greater than 90% lysis with both antisera). When patients were in remission, expression of TLAA and Ia antigens returned to normal values. Quantitative absorption of anti-TLAA serum with increasing numbers of AMML cells showed that these cells could remove reactivity of the serum for both HSB and human thymocytes. Similarly, absorption of anti-Ia serum with AMML cells removed all serological reactivity when this serum was tested on chronic lymphocytic leukemia cells or normal B-cells. These serological findings were confirmed by immunoprecipitation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis studies using radiolabeled antigens. Cells from an AMML patient were labeled with 125I using lactoperoxidase; both the TLAA and Ia antigens were precipitated from the resulting solubilized membrane preparation. Leukemic cells from one AMML patient and one patient with chronic myelogenous leukemia in blast crisis were studied for Ia and TLAA antigens with a double fluorescence technique. Over 80% of the cells showed dual fluorescence.

Antigens, Neoplasm↗

Apoptosis, bcl-2 expression and p53 accumulation in myelodysplastic syndrome, myelodysplastic-syndrome-derived acute myelogenous leukemia and de novo acute myelogenous leukemia.

Apoptosis and its dysregulation have been implicated in dysplastic and ineffective hematopoiesis and the neoplastic transformation of bone marrow in myelodysplastic syndrome (MDS). To explore the role of apoptosis in hematological disorders, we examined the frequency of apoptotic cells by the in situ end labeling method in bone marrow specimens from 37 patients with MDS [refractory anemia (RA) 10 cases, RA with excess of blasts (RAEB) 27 cases including 12 cases with leukemic transformation], 12 patients with MDS-derived acute myelogenous leukemia (AML) and 13 patients with de novo AML. In addition, we investigated the relationship of apoptosis to the immunohistochemical expression of bcl-2 and p53 in these cases, and the association of apoptosis, bcl-2, and p53 with the leukemic evolution of MDS by examining sequential bone marrow samples of the same patient from the time of initial diagnosis to the time of overt leukemia. The percentage frequency of apoptotic cells was significantly greater in MDS (RA: 9.46 +/- 2.99%, m +/- SD; RAEB: 5. 60 +/- 3.09) as compared with those in MDS-derived AML (0.62 +/- 0. 37), de novo AML (0.28 +/- 0.11) and controls (1.00 +/- 0.59). On the other hand, the cases of RAEB with leukemic transformation exhibited a lower frequency of apoptotic cells and a higher frequency of bcl-2- and p53-positive cells than those without transformation. When the RAEB cases transformed to AML, the frequency of apoptotic cells was significantly reduced (2.96 +/- 1. 54 --> 0.62 +/- 0.37), while the frequencies of bcl-2-positive cells and p53-positive cells were greater (10.88 +/- 3.66 --> 30.54 +/- 7. 14, and 20.21 +/- 6.21 --> 32.34 +/- 14.71, respectively). In contrast to MDS-derived AML, over a half of de novo AML cases showed few p53-positive cells. These findings corroborate the earlier notion that apoptosis may play a substantial role in dysplastic and ineffective hematopoiesis in MDS. It is also suggested that the suppression of apoptosis associated with enhanced bcl-2 expression and p53 accumulation increases the probability of developing leukemia in MDS, and that oncogenetic development might be different between MDS-derived AML and de novo AML.

Adolescent↗

Chronic myelogenous leukemia.

Chronic myelogenous leukemia involves clonal expansion of hematopoietic progenitor cells associated with the characteristic translocation between chromosomes 9 and 22, resulting in the generation of an aberrant bcr-abl protein with enhanced tyrosine kinase activity. The bcr-abl protein can induce cell proliferation, induce transformation of immature hematopoietic cells, and suppress apoptosis in vitro. Abnormalities of stromal cell and progenitor cell interaction may be central to the pathogenesis of the abnormal hematopoiesis in chronic myelogenous leukemia. Therapy with interferon alpha in chronic-phase chronic myelogenous leukemia can result in hematologic responses in up to 70% to 80% of patients and partial or complete cytogenetic responses in up to 50%; many studies show a significant overall survival advantage for patients treated with interferon. Allogeneic marrow transplantation can result in long-term survival for patients with chronic myelogenous leukemia, particularly younger patients undergoing transplantation early in the course of disease, and unrelated donor or autologous marrow transplantation may be an option for patients without a matched sibling donor. Future therapy will likely involve selection and expansion ex vivo of Ph- stem cells for reinfusion as part of a strategy for autologous marrow transplantation. Other areas of current investigation include in vitro assessment of the activity of antisense oligonucleotides and of the immunologic responses to chronic myelogenous leukemia cells.

Humans↗

Update on the diagnosis of and therapy for acute promyelocytic leukemia and chronic myelogenous leukemia.

PURPOSE/OBJECTIVES: To present information about recent Food and Drug Administration (FDA)-approved indications regarding drug therapy for acute promyelocytic leukemia (APL) and chronic myelogenous leukemia (CML) and about the nursing care of patients receiving these therapies and to review the significance of the use of polymerase chain reaction (PCR) assays in the management of patients with these leukemias. DATA SOURCES: Published articles, book chapters, and production information. DATA SYNTHESIS: Two agents with newly approved FDA indications are changing the focus of leukemia treatment from the cytotoxicity of specific drugs to the reversal of arrested maturation of myeloid cells. All-trans-retinoic acid (ATRA) induces remission in patients with relapsed or refractory APL. Interferon alfa (IFN-alpha) administered to patients with chronic-phase, Philadelphia-chromosome-positive CML produces improved survival rates and delays disease progression as compared to standard therapy. PCR assays are used with both of these diseases to confirm diagnosis, monitor response to these agents, and predict disease progression. CONCLUSIONS: The care of patients with leukemia continues to change as new agents such as ATRA and are approved for treatment and new assays such as PCR become available for diagnosis and treatment monitoring. IMPLICATIONS FOR NURSING PRACTICE: The nursing care of patients with leukemia requires keeping knowledgeable about the latest information regarding the molecular biology of the disease, the mechanism of action of newly approved agents, and the clinical implications of developing tests. This knowledge allows nurses to assimilate new therapies into practice, which, in turn, enables them to help patients to understand and cope with treatment through patient education and innovative interventions for symptom management.

Adolescent↗

Acute bilineage leukemia after chronic myelogenous leukemia.

Blastic transformation of chronic myelogenous leukemia may involve any hematopoietic lineage, including that of lymphocytes. In a minority of cases, the blasts express characteristics of both myeloid and lymphoid cells (biphenotypic) or comprise two separate populations of myeloid and lymphoid cells (bilineage leukemia). In a coordinated effort, we used a sequence of morphologic, cytochemical, immunocytochemical, and molecular biological studies to identify a case of bilineage blastic transformation of CML with a predominance of lymphoid blasts. The patient was treated for ALL and responded. The case presented illustrates the need for greater flexibility by the physician and laboratory to determine the specific diagnostic requirements for patients with hematologic malignancy with unusual phenotypic characteristics.

Aged↗

A case of avascular necrosis of the femoral head as initial presentation of chronic myelogenous leukemia.

Chronic myelogenous leukemia (CML) is a malignant clonal disorder of hemopoietic stem cells characterized by abnormal proliferation and accumulation of immature granulocyte. Leukostasis is one of the complications of CML and is characterized by partial or total occlusion of microcirculation by aggregation of leukemic cells and thrombi leading to respiratory, ophthalmic or neurologic symptoms. We experienced a rare case of avascular necrosis of the femoral head as the initial presentation of chronic myelogenous leukemia. A 24-year-old male patient was admitted to our hospital with pain in the right hip joint. The patient was diagnosed to be suffering from chronic myelogenous leukemia by packed marrow with granulocytic and megakaryocytic hyperplasia and the presence of Philadelphia chromosome. The right hip joint pain was attributed to avascular necrosis of the femoral head. And the avascular necrosis could be considered as the complication of chronic myelogenous leukemia due to microcirculatory obstruction of the femoral head. The avascular necrosis of the right femoral head was treated with bipolar hemiarthoplasty.

Adult↗

Simultaneous chronic lymphocytic leukemia and chronic myelogenous leukemia. Evidence of a separate stem cell origin.

The authors studied a patient with the simultaneous occurrence of chronic lymphocytic leukemia (CLL) and chronic myelogenous leukemia (CML). The coexistence of these two hematologic malignancies leads to questions about their cell of origin. Through analysis of this patient's DNA, the authors studied the derivation of the two malignancies. They separated the blood into a myeloid-rich fraction and a fraction containing the malignant lymphocytes. JH and bcr probes were used to study these loci in the myeloid and lymphoid fractions and in unfractionated white blood cells. The authors found that the unfractionated leukocytes contained the bcr and JH rearrangements. Conversely, the lymphoid fraction contained only the JH rearrangement, and the myeloid fraction contained only the bcr rearrangement, suggesting that these malignancies arose from separate stem cells. This is the first reported patient with simultaneously occurring CML and CLL definitively shown to arise from distinct progenitors, and this report raises questions about the origin of these two cell lines.

Aged↗