Treatment of myelodysplastic syndromes with AML-type chemotherapy.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to M Beran.
Explore the source record for details and available documents.
The major complication during therapy of chronic lymphocytic leukemia (CLL) with the purine nucleotide analogue fludarabine is infection, which is also the main cause of morbidity and mortality in the disease. As the incidence of infectious episodes during therapy correlated with severity of neutropenia, stage of disease, and response to therapy, an effort was made to reduce therapy-related myelosuppression and improve response by altering the conventional therapy regimen. The protocol which yielded a response rate of 57% in previously treated patients with CLL consisted of five consecutive daily doses of 25-30 mg/m2 fludarabine given every three to four weeks. Based on observations from intracellular pharmacology studies it was hypothesized that repetitive single weekly doses of fludarabine would allow normal bone marrow cells to recover while maintaining cytotoxic levels in the leukemic cells. The cumulative four-week dose of the once-weekly regimen was approximately 80% of the original protocol. Eleven out of 46 evaluable patients (24%) responded to the therapy. Seven patients (15%) achieved a complete remission, and four (9%) a partial remission. While myelosuppression was reduced by about 30% compared with the original protocol, the incidence of febrile episodes was increased by 17%. Pretreatment serum IgG levels below the normal range correlated significantly with a high incidence of infectious episodes and with a short median survival time. These observations suggest that in addition to myelosuppressive therapy, disease related depressed immune function causes morbidity and mortality due to infections. The results further show that changes in the scheduling of the therapy regimen, associated with a slightly lower dose, resulted in reduced efficacy as measured by the response rate.
The nucleoside analogs fludarabine monophosphate, 2-chlorodeoxyadenosine, and 2-deoxycoformycin (pentostatin) all have activity in chronic lymphocytic leukemia. The most widely studied drug is fludarabine which is able to obtain complete or partial responses in more than 50% of previously treated patients. The response rate is 44% for 2-CDA and approximately 25% for pentostatin. Fludarabine has also been used to treat patients as initial therapy, and has resulted in overall response rate of 79% with 75% of the patients achieving complete remission. The NCI and International Working Group for CLL criteria for complete remission allow for persistent nodules or lymphoid infiltrates in the bone marrow biopsy. Studies have now demonstrated persistent lymphoid aggregates are associated with a shorter time to progression for responders but no survival disadvantage. There is a strong association of documented refractoriness to alkylating agents with probability of response to fludarabine and also survival. The major morbidity associated with the use of these drugs are infections, which, in some circumstances, are associated with neutropenia but in other circumstances are probably related to the hypogammaglobulinemia and T-cell immunodeficiency which are part of the disease. The T-cell immunodeficiency is aggravated by the nucleoside analogs. Even after discontinuation of therapy the immunodeficiency as measured by CD4 cell number is sustained for 12 to 24 months. Opportunistic organisms such as herpes simplex, herpes zoster, Listeria monocytogenes, and pneumocystis carinii are being noted in patients treated with these agents. The potency of these drugs and low incidence of toxicities to other organs suggests that they will be effectively combined with other agents.(ABSTRACT TRUNCATED AT 250 WORDS)
The retinoblastoma (RB) protein levels in blast-enriched mononuclear fractions from the peripheral blood of 33 newly diagnosed patients with acute myelogenous leukemia were studied. Ten patients who had previously been treated were also analyzed, nine of whom had achieved prior complete remission. Low RB protein expression was found in 13 of 43 (30%) of the acute myelogenous leukemia patients as determined by Western blotting and immunochemical analysis. Of particular interest among the 20 newly diagnosed patients treated with the same therapeutic regimen, the median survival was 39 days for those with low RB protein expression compared to 333 days for those with high levels of RB protein expression in their leukemic cells (P less than or equal to 0.02). This preliminary study suggests that decreases of RB protein expression in peripheral blood of myeloid leukemic cells occur frequently and may be associated with shortened survival of acute myelogenous leukemia patients.
We examined the effects of CI-973 (supplied by Parke-Davis) on several human leukemia cell lines and a Chinese hamster ovary (CHO) line and their drug-resistant counterparts. The cell lines used were HL-60, HL-60/mAMSA, HL-60/DOX, KBM3, KBM3/mAMSA 6, KBM3/mAMSA 6(85), CHO, and CHO/AC-7. DOX, mAMSA, and AC-7 indicate resistance to doxorubicin, amsacrine, or 1-beta-D-arabinofuranosylcytosine, respectively. Cells were incubated with CI-973, and the effect was evaluated by two methods: growth inhibition assay and inhibition of colony formation. All cell lines examined were inhibited by CI-973; two of three amsacrine-resistant lines and the one cytarabine-resistant line demonstrated collateral sensitivity. At equivalent dosages, a 4-day exposure provided much greater cell kill than a 1-h exposure. Clonogenic assay showed exponential killing over 3 log units. Maximum CI-973 levels required to kill 50% of cells were 10-fold lower than the peak plasma levels achieved in a phase I solid tumor study. A continuous infusion phase I study in acute leukemia has been initiated.
We gave 56 patients with newly diagnosed acute myelogenous leukemia (AML) granulocyte-macrophage colony-stimulating factor (GM-CSF) 20 or 125 micrograms/m2 once daily subcutaneously before (for up to 8 days or until GM-CSF-related complications developed) and during, or only during (patients presenting with blast counts greater than 50,000 or other leukemia-related complications) ara-C (1.5 g/m2 daily x 4 by continuous infusion) and daunorubicin (45 mg/m2 daily x 3) chemotherapy. Because results seemed independent of GM-CSF schedule, we compared results in these 56 patients with results in 176 patients with newly diagnosed AML given the same dose and schedule of ara-C without GM-CSF (110 patients ara-C alone, 66 patients ara-C + amsacrine or mitoxantrone). Comparison involved fitting a logistic regression model predicting probability of complete remission (CR) and a Cox regression model to predict survival (most patients in all three studies were dead) with treatment included as a covariate in both analyses. After adjusting for other prognostically significant covariates [presence of an antecedent hematologic disorder, an Inv (16), t(8;21), or abnormalities of chromosomes 5 and/or 7, performance status, age, bilirubin], treatment with ara-C + daunorubicin + GM-CSF was predictive of both a lower CR rate and a lower survival probability. There were no treatment-covariate interactions, suggesting that the negative effect of this GM-CSF treatment regime was not an artifact of some imbalance in patient characteristics. The unadjusted Kaplan-Meier hazard rate of the ara-C + daunorubicin + GM-CSF group was not uniquely high during the initial 4 weeks after start of therapy, but was highest among the three treatment groups throughout weeks 5 to 16, suggesting that the negative effect of this treatment was not caused by acute toxicity. Patients who did not enter CR with this treatment tended to have persistent leukemia rather than prolonged marrow aplasia, suggesting that this treatment and, in particular, GM-CSF may increase resistance of myeloid leukemia cells to chemotherapy. To date, relapse rates are similar in all three groups (P = .43) (as are survival rates once patients are in CR) but much of the remission duration data is heavily censored, unlike the survival data. Our results suggest caution in the use of GM-CSF to sensitize myeloid leukemia cells to daunorubicin + ara-C chemotherapy.
Cloning and sequencing of cDNA segments of human TOP2 gene encoding the 170 kDa form of human DNA topoisomerase II show that Arg486 of the enzyme has been mutated to a lysine in the enzyme from two human leukemia cell lines HL-60/AMSA and KBM-3/AMSA, which were independently selected for resistance to the antitumor drug amsacrine (4'-[9-acridinylamino]-methanesulfon-m-anisidide, mAMSA). Sequence identity comparisons between eukaryotic DNA topoisomerase II and bacterial gyrase (bacterial DNA topoisomerase II) indicate that the position of the common mutation observed in mAMSA-resistant human TOP2 corresponds to that of the point mutation nal-31 in the Escherichia coli gyrase B gene, which confers resistance to nalidixic acid. Because mAMSA and nalidixic acid are known to act on their respective targets by a common mechanism of trapping the covalent enzyme-DNA intermediates, these results provide strong evidence that the 170 kDa form of human DNA topoisomerase II is a major cellular target of mAMSA, and that Arg486 of this enzyme is involved in mAMSA-mediated trapping of the covalent enzyme-DNA complex.
We administered one course of 2-chlorodeoxyadenosine (2CdA) at 4 mg/m2 daily for 7 days by continuous intravenous infusion to 46 patients with hairy cell leukemia. Complete remissions occurred in 36 patients (78%; 95% confidence limits, 63% to 89%), partial remissions in five (11%), and a minor response in one. One patient died of candida sepsis 3 weeks after beginning treatment and three patients were clearly resistant to therapy. These three either had morphologically atypical hairy cells, less than 20% of which expressed Ig light chain on the cell surface, or had failed prior treatment with deoxycoformycin and interferon-alpha. At a median of 37 weeks since discontinuation of therapy, recurrent thrombocytopenia has developed in one patient, whose marrow remains normal, while a bone marrow relapse has occurred in another patient, whose blood counts remain normal. Treatment produced a greater than 50% decrease in neutrophil count in 26 patients, which lasted 3 to 4 weeks and was associated with an increased incidence of febrile episodes. These episodes occurred in 21 patients but were associated with documented infection in only four patients. Decreases in the number of CD4+ lymphocytes appeared to occur regularly after treatment and have persisted for a median of 18 weeks without obvious clinical significance. Although years of follow-up will be needed, our results confirm Piro et al's observation (N Engl J Med 322: 1117, 1990) that 2CdA appears to be highly effective in the treatment of hairy cell leukemia.
Thirty-four adults with refractory acute lymphocytic leukemia received salvage therapy with mitoxantrone 5 mg/m2 intravenously over 1 hour daily for 5 days and cytosine arabinoside (ara-C) 3 g/m2 intravenously over 2 hours every 12 hours for six doses, followed by granulocyte-macrophage colony-stimulating factor (GM-CSF) 125 microgram/m2 intravenously over 4 hours daily until recovery of granulocytes above 2.0 x 10(3)/microL. Their outcome was compared with 29 prognostically similar historical control patients treated with the identical chemotherapy without GM-CSF. Overall, the complete response rates were similar in the treatment and control groups (13 of 34 [38%] v 11 of 29 [38%]). There was a trend for less remission induction mortality in the GM-CSF-treated patients (2 of 34 [6%] v 6 of 29 [21%]; P = .08), but, conversely, a higher rate of resistant disease (19 of 34 [56%] v 10 of 29 [34%]; P = .09). Recovery of granulocyte counts above 500/microL was significantly faster in the GM-CSF-treated group (25 days v 33 days; P less than .01), but there was no reduction in the incidence of febrile episodes (91% v 93%) or of documented infections (59% v 59%). Survival was prolonged in the GM-CSF-treated patients but was not of clinical relevance (31 v 20 weeks; P = .05). In summary, the addition of GM-CSF to intensive chemotherapy in refractory adult ALL was associated with a reduction in the remission induction mortality, probably secondary to a shorter duration of granulocytopenia, but not with an improvement in complete response rates.
PURPOSE: Elevated serum beta-2 microglobulin (beta 2M) levels are associated with poor prognosis in several lymphoproliferative disorders including multiple myeloma and lymphoma. Their prognostic relevance in acute lymphocytic leukemia (ALL) is unknown. We analyzed the associations of serum beta 2M levels at diagnosis with pretreatment characteristics and with prognosis in adult ALL. PATIENTS AND METHODS: One hundred fifty-nine adults with newly diagnosed ALL were investigated. Serum beta 2M levels were determined at diagnosis, on fresh peripheral blood samples, using a radioimmunoassay, the Pharmacia beta 2 Micro RIA (Pharmacia Diagnostics, Uppsala, Sweden). Statistical correlations were assessed by standard methods, and further independent prognostic value of serum beta 2M was determined by multivariate analysis. RESULTS: Patients with beta 2M levels of 4.0 mg/L or above had a lower complete response rate (61% versus 80%; p = 0.02), a significantly worse survival (p < 0.01), and a significantly higher association with development of central nervous system (CNS) leukemia (p < 0.01). High beta 2M levels were more common among patients with older age, with elevated creatinine, bilirubin, and alkaline phosphatase levels, with low albumin levels, and with B-cell disease. Multivariate analysis for survival indicated the beta 2M level to be an independent prognostic variable (after adjusting for pretreatment creatinine level and age). The evaluation of beta 2M levels within low- and high-risk groups for CNS disease suggested an association of elevated beta 2M levels with a worse incidence of CNS disease in the high-risk patients. CONCLUSION: Monitoring serum beta 2M levels may provide significant prognostic information in adults with ALL and should be included in their pretreatment evaluation. Its importance in childhood ALL requires investigation.
Immunosuppression due to antineoplastic drugs or malignant tumor leaves patients extremely vulnerable to infection. Opportunistic fungi that rarely infect healthy persons can have very severe consequences in these patients. Candida albicans is the pathogen found most often, but several other Candida species may cause infection as well. Aspergillosis is the second most frequently seen fungal infection of the face and mouth in patients receiving chemotherapy. Less commonly seen but equally dangerous are infections with Torulopsis glabrata, Mucor, Absidia, Rhizopus oryzae, Histoplasma capsulatum, Cryptococcus neoformans, Coccidioides immitis, Fusarium species, and Trichosporon cutaneum. Restoration of impaired host defenses and use of nystatin (Mycostatin, Nilstat, O-V Statin), clotrimazole (Mycelex), amphotericin B (Fungizone Intravenous), and flucytosine (Ancobon) when appropriate are methods of control.
A 61-year-old female patient, treated for hyperthyroidism with thiamazole, developed a severe maturation arrest in the granulocytic lineage and a total agranulocytosis. Subcutaneous GM-CSF was started immediately and given for 6 days. Bone marrow samples were taken before GM-CSF therapy and on days 3 and 8. An increased number of colonies per 10(5) bone marrow cells documented before institution of GM-CSF treatment was followed by a gradual decline to normal values. An increase of granulocyte count to > 0.5 x 10(9) l-1 was recorded on the 4th day of treatment and was preceded by an increase in the number of immature granulocyte precursors in the bone marrow on day 3. The patient was discharged on day 8 and experienced no adverse effects of GM-CSF treatment. Haematopoietic growth factor therapy has a place in the management of patients with drug induced neutropenia/agranulocytosis, which should be further delineated by prospective studies.
PURPOSE: The study was undertaken to improve the results of intensive chemotherapy in chronic myelogenous leukemia (CML) in accelerated (CML-AP) and blastic phases (CML-BP) by the addition of granulocyte-macrophage colony-stimulating factor (GM-CSF) as supportive therapy. PATIENTS AND METHODS: Forty-eight patients were treated with daunorubicin 120 mg/m2 intravenously on day 1, cytarabine (ara-C) 1.5 g/m2/d by continuous infusion over 24 hours for 4 days, and Solu-Medrol (methylprednisolone; The Upjohn Co, Kalamazoo, MI) 100 mg/d for 5 days, followed on day 5 by GM-CSF 125 micrograms/m2/d over 6 hours until recovery of granulocyte count above 2.0 x 10(3)/microliters. Twenty-four patients had CML-BP, and 24 had CML-AP. RESULTS: During remission induction, 45 patients (94%) developed febrile episodes (fever of unknown origin, 23 patients [48%]; documented infections, 22 patients [46%]). The median time to recovery of granulocyte count above 0.5 x 10(3)/microliters was 29 days and to platelet count above 30 x 10(3)/microliters, 28 days. Overall, 14 of 48 patients (29%) achieved a complete hematologic remission (CHR), and seven (15%) reverted to a second chronic phase. CHR was noted in eight of 24 patients with CML-BP (33%), and in six of 24 patients with CML-AP (25%). Cytogenetic responses were observed in 11 patients (23%), but were transient. Sixteen patients developed either fluid retention, hypotension, pleuropericardial effusions, or pericarditis, or a combination of these side effects. These side effects were severe in four patients and are likely to be disease-associated, as a similar regimen of intensive chemotherapy and GM-CSF at the same dose and schedule in acute lymphocytic leukemia was not associated with these side effects. CONCLUSIONS: The results pertinent to remission rates, induction mortality, myelosuppression profile and related complications, and overall survival were not significantly improved compared with previous experience. In summary, the results of intensive chemotherapy in CML-transformed phases remain poor, despite the addition of GM-CSF as a supportive measure.
PURPOSE: To evaluate the efficacy of interferon-alpha (IFN-A) and low-dose cytarabine (ara-C) combination chemotherapy in patients with chronic myelogenous leukemia (CML). PATIENTS AND METHODS: Sixty patients with advanced phases of Philadelphia chromosome (Ph)-positive CML received combination therapy with IFN-A 5 x 10(6) U/m2 daily, and low-dose ara-C 15 mg/m2 daily for 2 weeks every 4 weeks until remission, then for 1 week every month as maintenance. Forty patients were in late chronic-phase CML, and 20 were in accelerated-phase CML (16 with clonal evolution only, four with other criteria). Their outcome was compared with 58 patients (39 late chronic-phase CML and 19 accelerated-phase CML) who had been previously treated with IFN-A alone in the same dose schedule. RESULTS: In late chronic-phase CML, patients receiving IFN-A plus ara-C had a better complete hematologic response (CHR) rate compared with those treated with IFN-A alone (55% v 28%; P = .02), a trend for better Ph suppression (15% v 5%; P = .13), and a longer survival (3-year survival rate 75% v 48%; P less than .01). These differences do not seem to be caused by imbalances in prognostic factors between the two treatment groups. In accelerated-phase CML, the addition of ara-C to IFN-A did not improve the response rate of treated patients, and the difference in survival was accounted for by different patient characteristics. Suppression of clonal evolution was observed in five patients (25%). Patients with clonal evolution as the only criterion for disease acceleration had a longer survival than those with other or additional accelerated-phase criteria (3-year survival rate 67% v 22%; P less than .01). CONCLUSION: The results with the combination of IFN-A plus ara-C in late chronic-phase CML are encouraging, and suggest the need for its evaluation in early chronic-phase CML.
Leukemic cells from seventy patients with various types of human leukemias were examined for expression of the WT1 gene, the Wilms' tumor gene located at chromosome 11p13. WT1 was expressed in 7 of 16 cases of acute lymphoblastic leukemia, 15 of 22 with acute myelogenous leukemia and 8 of 10 in blast crisis of chronic myelogenous leukemia. No detectable WT1 RNA was found in chronic leukemias, including chronic lymphocytic leukemia, plasma cell leukemia, hairy cell leukemia and chronic myelogenous leukemia in chronic phase. The expression pattern of WT1 in these human leukemia samples indicates the involvement of this gene in the early stage of hematological cell differentiation.
A human acute myelomonocytic leukemia cell line, KBM-3, was developed to study the pathophysiology of human acute myeloid leukemia. This cell line was characterized by morphology, immunophenotype, Giemsa-banding pattern, in vitro proliferation capacity, and tumorigenicity in nude mice. The KBM-3 cell line was established in the presence of exogenous lymphokines (human placenta-conditioned medium, HPCM), but medium for later passages did not contain HPCM. We found high cellular expression of the mRNA message for granulocyte-macrophage colony-stimulating factor (GM-CSF), which we suggest may be important for the immortalization of the cell line. KBM-3 cells have an immature myelomonocytic phenotype. Cytogenetic analysis revealed a pseudodiploid karyotype with five characteristic marker chromosomes and ranging in total number from 45 to 49. In suspension cultures, the cells had a doubling time of 23 h and a cloning efficiency of about 30% in soft agar independent of exogenous lymphokines. Two-thirds of nude mice injected with 1 x 10(4) KBM-3 cells and all animals injected with 1 x 10(5) cells developed S.C. granulocytic sarcomas within 6-8 weeks. These tumors were locally invasive but did not give rise to distant metastases. When transplanted to a new set of nude mice, all tumors formed secondary sarcomas at the site of implant. We conclude that the KBM-3 cell line may have value for studying the molecular events that underlie the neoplastic transformation in human myeloid leukemia.
Explore the source record for details and available documents.
Evidence suggests that prognosis in patients with myelodysplastic syndromes (MDS) or acute myelogenous leukemia (AML) depends more on karyotype than on formal classification as either MDS or AML according to the French-American-British (FAB) system. We provide further evidence of overlap between these two entities, reporting 4 patients who presented with either inv(16) (p13q22), del(16) (q22), or t(8;21) despite an FAB diagnosis of MDS rather than the diagnosis of AML with which these abnormalities are generally associated. In 3 patients, disease was relatively long-standing (3-10 months) prior to diagnosis, suggesting that the association between MDS and these cytogenetic abnormalities may not merely reflect a transient phenomenon. Two patients with inv(16) and the MDS subtype refractory anemia with excess blasts in transformation (RAEB-t) received AML-type chemotherapy as did a patient with t(8;21) and RAEB-t. All entered CR paralleling the high CR rate seen in patients with AML and these abnormalities. Our data support the concept that MDS and AML may be different manifestations of the same disease.