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M Talpaz

Publications and source records attributed to M Talpaz.

At least 73 records · Page 4Linked to original sources

A pilot study of recombinant human interleukin-4 therapy of myelofibrosis.

Twelve patients with myelofibrosis were treated with recombinant human interleukin-4 (IL-4) administered subcutaneously thrice weekly. Dosage ranged from 1 microg/kg to 4 microg/kg. Median patient age was 65 years (range 36-74). Five patients had transient minor responses, and 5 patients had progressive disease. One patient had a transient minor response, rapidly followed by progressive disease. One patient suffered angioneurotic edema with first injection. Other significant toxicities included fever, flu-like symptoms, peripheral edema, and ascites. IL-4 at this schedule was toxic and had no significant activity in myelofibrosis.

Adult↗

Treatment of Philadelphia chromosome-positive early chronic phase chronic myelogenous leukemia with daily doses of interferon alpha and low-dose cytarabine.

PURPOSE: To evaluate the efficacy of the combination of interferon alpha (IFN-alpha) and daily low-dose cytarabine (ara-C) in the treatment of patients with early chronic-phase chronic myelogenous leukemia (CML) (within 1 year of diagnosis). Improving the degree of hematologic and cytogenetic response in patients with Philadelphia chromosome (Ph)-positive CML may improve prognosis. Both IFN-alpha and ara-C induce cytogenetic responses as single-agent therapy in CML. PATIENTS AND METHODS: One hundred forty patients with Ph-positive early chronic-phase CML received subcutaneous injections of IFN-alpha 5 megaunits/m2 daily and ara-C 10 mg daily. Their median age was 46 years; 53% had good-risk disease, 33% had intermediate-risk disease, and 14% had poor-risk disease. Their results were compared with those of patients receiving IFN-alpha with or without intermittent ara-C (7 days/mo). RESULTS: A complete hematologic response (CHR) was achieved in 92% of patients. A cytogenetic response was seen in 74%: it was major in 50% (Ph-positive < 35%) and complete in 31% (Ph-positive 0%). With a median follow-up of 42 months, the 4-year estimated survival rote was 70% (95% confidence interval, 61% to 79%). Significant side effects included fatigue (43%; grade 3/4, 11%), weight loss (19%; grade 3/4, 11%), muscle and bone aches (20%; grade 3/4, 7%), oral ulcers (4%), diarrhea (6%), and neurologic changes (27%, grade 3/4, 6%). The median dose of IFN-alpha was 3.7 megaunits/m2 daily, mainly because of reductions for myelosuppression (70% of cases); the median ara-C dose was 7.5 mg daily. Prognostic risk groups were predictive for response to the IFN-alpha plus ara-C combination. The incidence of CHR was higher with IFN-alpha plus daily ara-C compared with IFN-alpha plus intermittent ara-C and IFN-alpha alone (no ara-C) (92% v 84% v 80%, P = .01), as were the incidences of cytogenetic response (74% v 73% v 58%; P = .003) and major cytogenetic response (50% v 38% v 38%; P = .06). The median time to achievement of major cytogenetic response was significantly shorter than that for previous IFN-alpha regimens (7 v 10 v 12 months; P < .01). However, with the present follow-up, the survival and time to blastic transformation were similar. CONCLUSION: The combination of IFN-alpha plus daily low-dose ara-C seems to be promising for the treatment of CML. High rates of CHR and cytogenetic response were observed with acceptable toxicity and a lower daily dose of IFN-alpha compared with our previous studies.

Antineoplastic Combined Chemotherapy Protocols↗

Cutaneous ulcers associated with hydroxyurea therapy in myeloproliferative disorders.

Hydroxyurea (HU) is an established chemotherapeutic agent in the treatment of myeloproliferative disorders (MPD) including chronic myelogenous leukemia (CML), polycythemia vera and essential thrombocythemia (ET). It is well tolerated, has minimal toxicities, and produces hematological response in most patients treated. Side effects of hydroxyurea are few and include myelosuppression, oral ulcers and skin rashes. Cutaneous toxicity is rare. This study aims to describe the occurrence of cutaneous ulcerations attributed to HU therapy in patients with MPD, and familiarize the oncology community with this unusual but disturbing toxicity of HU. Five patients with MPD receiving HU therapy at doses of 0.5 to 4 g/day who developed skin ulceration were reviewed (median age was 53 years). Three patients had Philadelphia positive CML, and two had ET. Cutaneous ulcers developed after a long period of HU therapy (median 36 months, range 7 to 96 months). The time after discontinuation of HU to the healing of the ulcers was 1 to 4 months. Ulcers developed mainly in the lower extremities particularly adjacent to the malleoli, indicating a possible relation to trauma. In conclusion, cutaneous ulceration represents a poorly recognized and rare HU-related side effect. Discontinuation of HU usually leads to slow resolution of the ulcers over several months. The etiology of this rare side effect remains poorly understood.

Adult↗

A phase I study of recombinant interferon-beta in patients with advanced malignant disease.

To evaluate the safety, toxicity, and maximum tolerated dose (MTD) of IFN beta-1a (Rebif, Serono Laboratories, Inc.) in patients with malignant diseases unresponsive to standard therapies and to assess the pharmacodynamics and pharmacokinetics associated with IFN beta-1a administration, an open-label, single-center phase I study was designed. Thirty-four patients were enrolled and treated with IFN beta-1a. All had measurable solid neoplasms or evaluable hematological malignancies. All patients received a single i.v. bolus dose of IFN-beta-1a on day 1, followed 7 days later by daily s.c. injections for 28 consecutive days. Successive groups of three patients received increasingly higher doses (in geometric progression from 1.5 million international units (MIU)/m2 to 24 MIU/m2) until dose-limiting toxicities were noted. Pharmacokinetic and biological studies, including measurement of the activity of 2',5'-oligoadenylate synthetase (2',5'-OAS) in peripheral blood mononuclear cells and serum levels of soluble Tac (CD 25) and beta-2 microglobulin, were performed on patients who agreed to participate. i.v. and s.c. doses of IFN beta-1a up to 24 MIU/m2 were administered. The most frequent adverse events (AEs) were constitutional symptoms. Grade III AEs during i.v. dosing included fever, elevation of bilirubin, and infection unrelated to therapy. No grade IV events were seen. AEs noted during continuous s.c. therapy included fever, liver transaminase increase, albuminuria, fatigue, nausea, myalgia, and rigors. Dose-limiting toxicities were encountered during s.c. dosing at the 24-MIU/m2 and 18-MIU/m2 dose levels and included gastrointestinal toxicity, elevations of aspartate aminotransferase and alanine aminotransferase, and albuminuria. The s.c. MTD was determined to be 12 MIU/m2, although there was great variability in the individual patient's ability to tolerate IFN beta-1a. 2',5'-OAS activity, thought to be indicative of IFN activity, increased within hours after i.v. and s.c. dosing, with the level remaining persistently elevated during the s.c. daily injections. The highest peak level was attained in the 6-MIU/m2 group. There was no evidence that the increase in 2',5'-OAS activity decayed with repetitive dosing, nor was there evidence of accumulation in this pharmacodynamic marker. Serum beta-2-microglobulin levels showed a modest time- and dose-dependent increase after s.c. administration of IFN beta-1a, with the largest increase seen at the 24-MIU/m2 dose level. There were no clear dose-dependent responses noted in soluble Tac serum levels. IFN beta-1a was well-tolerated when administered by a single i.v. bolus injection at doses up to and including 24 MIU/m2. Daily s.c. injections for at least 28 days were well-tolerated at doses up to and including 12 MIU/m2, with some patients tolerating doses twice as high as this. The MTD for the i.v. route could not be clearly determined according to the guidelines of the protocol. However, i.v. bolus doses up to 24 MIU/m2 were relatively well-tolerated. For the s.c. route, the MTD was determined to be 12 MIU/m2, but there was great interpatient variability, with some patients able to tolerate higher doses.

2',5'-Oligoadenylate Synthetase↗

Caspase 2 and caspase 3 as predictors of complete remission and survival in adults with acute lymphoblastic leukemia.

Dysregulation of apoptosis is an important mechanism in leukemogenesis. Caspases are cysteine proteases that play a major role in the activation of apoptotic pathways and chemotherapy-induced cell death. High levels of inactive, uncleaved caspase 2 and caspase 3 have recently been associated with poor survival in patients with acute myelogenous leukemia. We hypothesized a similarly significant role for caspase 2 and caspase 3 in patients with acute lymphoblastic leukemia. We determined levels of uncleaved caspase 2 and caspase 3 by quantitative Western blot analysis in peripheral blood samples of 45 adults with newly diagnosed ALL. We evaluated patient prognostic variables and caspase levels using multivariate logistic and Cox regression models to determine their impact on complete remission rate and overall survival probability. Levels of caspase 2 and, to a lesser degree, caspase 3 were highly associated with cytogenetic abnormalities, with lower levels in the diploid group (P = 0.016 and P = 0.10, respectively). No association between either caspase level and the percentage of bone marrow blasts was found. A high level of caspase 3 (>0.37 as determined graphically) was significantly associated with achieving complete remission (CR; P = 0.006). A multivariate logistic regression analysis including age, WBC count, percentage of peripheral and marrow blasts, hemoglobin, albumin, lactate dehydrogenase, bilirubin, and creatinine determined that a high level of caspase 3 was the most significant predictor of CR (P = 0.025, adjusted), with albumin the only other significant variable (P = 0.031). Caspase 2 levels were not associated with probability of CR. In a multivariate Cox model for survival, however, levels of caspase 2 above 0.37 were associated with a lower survival probability than were levels below that threshold (P = 0.064). High levels of caspase 3 may have a significant effect on achieving CR. Because of the limited power (n = 45) of our study, the significance of caspase 2 and caspase 3 on overall survival remains to be validated by further investigations.

Adolescent↗

Significance of FHIT expression in chronic myelogenous leukemia.

Loss or reduced expression of the fragile histidine triad (FHIT) gene, a tumor suppressor gene localized at chromosome 3p14.2, is common in several solid and hematological cancers and has been associated with tumor progression and worse prognosis. The role of the FHIT gene in the pathogenesis of chronic myelogenous leukemia (CML) or its progression from a chronic phase to the accelerated and blastic phases is not known. The aim of this study was to evaluate whether Fhit protein expression is altered in CML, and whether it plays any role in CML progression, disease responsiveness to therapy, or prognosis. A total of 195 patients with Philadelphia chromosome-positive CML were evaluated, including 129 patients in early chronic phase (time from diagnosis to study, 12 months or less), 30 patients in late chronic phase, and 36 patients in the accelerated and blastic phases. The levels of cellular Fhit protein expression were determined using Western blot analysis and solid-phase RIA and compared to the levels in 31 normal marrows. The median Fhit expression in normal marrows was assigned a value of 1, and the levels in CML samples were normalized to the median of the normal control. Fhit levels in CML samples were evaluated in relation to CML phase and patient characteristics and prognosis in the early chronic phase. The median Fhit value in CML samples was 0.89 (range, 0.34-2.62). Eight of the 195 (4%) CML samples showed Fhit levels <0.5 and lacked detectable Fhit protein by Western blot. There was no difference in the levels of Fhit expression by different CML phases. In early chronic phase, reduced Fhit expression tended to be associated with leukocytosis (P = 0.04) and lower platelet counts (P = 0.01), but not with poorer-risk groups. No differences in response to IFN-alpha therapy or in survival were observed by different Fhit levels. Lack of Fhit protein expression was detected in 4% of CML cases, and reduced expression occurred in a subpopulation of patients. However, reduced Fhit expression is not associated with progression, response to therapy, or prognosis in CML.

Acid Anhydride Hydrolases↗

Caspase 2 and caspase 3 protein levels as predictors of survival in acute myelogenous leukemia.

Because caspase activation is an essential step in programmed cell death (apoptosis) and cytotoxic drug-induced apoptosis is mediated by caspase 2 and caspase 3, we hypothesized that caspase 2 and 3 levels predict clinical outcome in acute myelogenous leukemia (AML). Using quantitative Western blot analysis, we studied the levels of nonactivated (uncleaved) caspase 2 and 3 in peripheral blood low-density cells from 185 patients with newly diagnosed AML. We also measured the level of activated (cleaved) caspase 3 in 41 randomly selected samples from the 185 patients. Finally, we analyzed the effect of caspase 2 and 3 levels and other prognostic variables on patient survival using a multivariate Cox model. We found that median levels of nonactivated caspase 2 and 3 were higher in AML than in normal peripheral blood cells (P < .001 and P <.02, respectively). There was no association between caspase level and either the percentage of peripheral blasts or any specific type of leukemia cell cytogenetic abnormalities. When the effect of each uncleaved caspase was considered individually, a high level of uncleaved caspase 3 (P = .04), but not of caspase 2 (P = .16), was associated with decreased survival. Conversely, a high level of cleaved caspase 3 denoted improved survival and correlated with the inactivation of the DNA-repair enzyme poly(ADP-ribose) polymerase. Thus, cleaved caspase 3 could stimulate the apoptotic cascade further, and lack of its activation likely caused an accumulation of the uncleaved caspase. Although uncleaved caspase 2 level per se had no prognostic significance, the interactive effect of high levels of both uncleaved caspase 2 and 3 denoted very poor survival (P < .001) and had the largest effect of all prognostic variables (P < .001; estimated relative risk, 2.49; 95% confidence interval, 1.59 to 3. 90). Taken together, caspase 2 and caspase 3 protein levels obtained at diagnosis may constitute a reliable prognostic factor in AML.

Acute Disease↗

Loss of imprinting in disease progression in chronic myelogenous leukemia.

The pathophysiologic role of the Philadelphia chromosome translocation in chronic myelogenous leukemia (CML) has been known for nearly 20 years. However, the most significant morbidity and mortality in CML are caused by progression to blast crisis, about which comparatively little is known at the molecular level. Genomic imprinting is a chromosomal modification leading to parental-origin-specific gene expression in somatic cells. Recently, we and others have described loss of imprinting (LOI) of the insulin-like growth factor-II gene (IGF2), leading to biallelic rather than monoallelic expression in a wide variety of solid tumors. We have now examined the imprinting status of IGF2 in samples from CML patients in stable phase, accelerated phase, and blast crisis. Five of six stable-phase patients showed normal imprinting, but LOI was found in all six cases of advanced disease (three accelerated phase, three blast crisis), which was statistically highly significant (P < .01). Thus, LOI represents a novel type of genetic alteration in CML that appears to be specifically associated with disease progression.

Blast Crisis↗

Interleukin-1 increases expression of the LYT-10 (NFkappaB2) proto-oncogene/transcription factor in renal cell carcinoma lines.

The LYT-10 gene was initially cloned by virtue of its disruption by the translocation breakpoint in some t(10;14) lymphoid neoplasms. LYT-10 is now known to encode a component of the NF-kappaB family of transcriptional activators and has therefore also been designated NFkappaB2. Activation of NF-kappaB is generally associated with its transfer to the nucleus and is followed by a rapid increase in expression of its target genes, which include cytokines such as interleukin-6 (IL-6). IL-6 can also be induced by other transcription factors such as NF-IL6. We studied the interaction of IL-1 and these transcription factors in two renal cell carcinoma cell lines (ACHN and Caki-1). These lines produce high levels of IL-6, show endogenous chloramphenicol acetyltransferase activity for the IL-6 promoter, and have high basal levels of transcripts encoding the NF-kappaB components Lyt-10, p50, and p65 as well as the NF-IL6 transcription factor. IL-1alpha and IL-1beta markedly increased steady-state levels of LYT-10 (NFkappaB2) transcripts and nuclear Lyt-10 protein in both cell lines. Levels of the NFkappaB1 (p50-encoding), p65, and NF-IL6 transcripts also increased after IL-1 exposure. These changes were accompanied by a 20-fold or greater increase in levels of IL-6 messenger ribonucleic acid (mRNA) and protein. Our observations suggest that the mechanism by which IL-1alpha or IL-1beta induces IL-6 may be mediated through increases in LYT-10 mRNA and protein levels as well as increases in expression of other transcription factors (NFkappaB1, p65, and NF-IL6), in addition to the known ability of IL-1 to post-translationally activate NF-kappaB.

Blotting, Northern↗

Z-138: a new mature B-cell acute lymphoblastic leukemia cell line from a patient with transformed chronic lymphocytic leukemia.

We describe a new mature B-cell acute lymphoblastic leukemia (ALL) cell line designated Z-138 that was derived from a patient with chronic lymphocytic leukemia (CLL) whose disease underwent transformation to a rare, aggressive form of mature B-cell ALL. This cell line has an L3 morphology, ultrastructural characteristics of lymphoblasts, B-lineage surface markers and an immunoglobulin heavy-chain gene rearrangement identical to the rearrangement observed in the patient's blasts from whom the cell line was derived. Z-138 cells produce granulocyte-macrophage colony-stimulating factor (GM-CSF) and high levels of granulocyte-CSF (G-CSF), but they do not exhibit a proliferative response to either cytokine. Both the patient's lymphoblasts and Z-138 cells exhibited cytogenetic abnormalities including t(8;14), t(14;18) and a chromosome 11 abnormality similar to the t(11;14) of the parental cells, resulting in marked overexpression of cyclin D1 (BCL-1 (PRAD1)) mRNA in Z-138 cells. Since these karyotypic anomalies have been associated with low grade (t(14;18)), intermediate grade (t(11;14)) and high grade (t(8;14)) lymphomas, their development may be involved in the unusual aggressive transformation of this patient's CLL.

Aged↗

Clinical course and therapy of chronic myelogenous leukemia with interferon-alpha and chemotherapy.

This article begins with a review of the natural history of chronic myelogenous leukemia (CML), with an emphasis on prognostic features. Current standard therapy of CML with interferon-alpha based regimens, and interferon-alpha, in the context of allogenic stem cell transplantation is then discussed. Finally, some potentially effective novel agents including homoharringtonine, decitabine, ATRA, and topotecan are described.

Antineoplastic Combined Chemotherapy Protocols↗

Effect of interferon-alpha therapy on bone marrow fibrosis in chronic myelogenous leukemia.

The aim of this study was to investigate the influence of interferon-alpha (IFN-alpha) on bone marrow fibrosis associated with chronic myelogenous leukemia (CML). Eighty-two bone marrow biopsies from 41 patients in chronic phase CML were stained with Snook's reticulin stain for argyrophilic fibers. Grading of reticulin fibrosis (scale of 1 to 4) was according to the quantity and pattern of distribution of reticulin. The interval between biopsies was a median of 25 months (range 12 to 40 months). Patients had been treated with IFN-alpha for at least 12 months, were still on IFN-alpha therapy during the study, and had achieved at least a complete hematological response. Before the start of IFN-alpha therapy, reticulin fibrosis was grade 1-2 in 23 patients (56%) and grade 3-4 in 18 (44%). During IFN-alpha therapy, reticulin fibrosis in bone marrow did not worsen or was reduced in 33 patients (80%) and increased by one grade in eight patients (20%). Only five patients (12%) with limited fibrosis (grade 1-2) before start of IFN-alpha therapy showed an increase towards significant fibrosis (grade 3-4), while eight of the 18 patients (44%) with grade 3-4 fibrosis achieved a decrease of fiber content in bone marrow. In summary, IFN-alpha was not associated with an enhancing effect on myelofibrosis in patients with CML and may have prevented increasing fibrosis in patients who respond to therapy.

Adult↗

DNA in situ hybridization of individual colonies to determine lineage derivation in leukemia.

The degree of lineage commitment of the hematopoietic stem cell in chronic myelomonocytic leukemia (CMML) and in acute myelogenous leukemia (AML) remains debatable and may be heterogeneous depending on the patient subgroup. In this study, we have used a modification of DNA in situ hybridization which adapts this technique to the analysis of karyotype in single hematopoietic colonies. By utilizing a digoxigenin-labeled chromosome 7 probe, we demonstrate that, in patients with monosomy 7, both erythroid and myelomonocytic progenitors can be karyotypically aberrant. In addition, significant levels of diploid clonogenic cells persist (as reflected by the presence of between 14% and 43% diploid colonies) despite the detection of only monosomy 7-bearing bone marrow metaphases as assessed by standard cytogenetic techniques. Our observations demonstrate that digoxigenin-based DNA in situ hybridization (DISH) can be performed on individually microaspirated colonies for determination of lineage derivation. This technique may also be applicable to the detection of minimal residual disease with clonogenic potential and for assessing the interaction between normal and leukemic precursors.

Aged↗

Evidence for specific immune response against P210 BCR-ABL in long-term remission CML patients treated with interferon.

Interferon-alpha treatment induces complete cytogenetic remission in 25% of Philadelphia chromosome (Ph)-positive chronic myelogenous leukemia (CML) patients. These remissions are durable unlike remissions induced with other therapies and yet residual leukemia is detectable in most of these patients. Total peripheral blood mononuclear cells (PBMCs) from CML patients in long-term remission following interferon treatment exhibited significantly higher proliferative responses (four- to 15-fold over background) than normals directed against P210 BCR-ABL in extracts of transfected monkey fibroblast cells. Surprisingly, similar enhanced levels of specific proliferative responses were observed with extracts from cells expressing Bcr and/or Abl proteins. In contrast, extracts from vector only or v-Mos-expressing cells had background level responses. Control monkey fibroblast cells lacking BCR-ABL expression failed to induce proliferation over background levels. Normal individuals had no significant responses to Bcr/Abl extracts. On the other hand, peripheral blood mononuclear cells from allogeneic bone marrow transplant CML patients had proliferative responses to cell extracts independent of Bcr-Abl. These data indicate that patients in remission due to alpha-interferon treatment have significantly higher levels of specific cellular immunoreactivity against Bcr/Abl sequences than normal controls, which could play a role in maintaining cytogenetic remission in Ph-positive CML patients.

Adult↗

Association of HLA phenotype and response to interferon-alpha in patients with chronic myelogenous leukemia.

Twenty to 25% of patients with chronic myelogenous leukemia (CML) treated with interferon-alpha (IFN-A) achieve a complete cytogenetic response (CCR). However, cells bearing rearrangement of BCR/ABL can still be detected many years after achieving a CCR despite the absence of clinical evidence of active disease. It has been suggested that the disease is kept in a dormant state by immune mechanisms. How this is achieved is not known, but it has been speculated that p210BCR/ABL might be presented by malignant cells through HLA molecules, thus making them the target for specific immune cell killing. Because specific peptides will be expressed in association with certain HLA molecules, different HLA phenotypes could be associated with different response rates to IFN-A. The response to IFN-A-based therapies in 239 patients with chronic phase CML was analyzed according to their HLA phenotype. One hundred and ninety-four (81%) achieved complete hematologic response, 142 (59%) had a cytogenetic response which was major (MCR) in 93 patients (39%): complete (CCR) in 71 (30%) and partial (PCR) in 22 (9%). Patients with an HLA-B27 phenotype had the best response rate to IFN-A: 10 of 14 (71%) had an MCR, including eight (57%) with a CCR (P=0.02). Patients with HLA-B35, -A3, and -A31 also showed a trend towards a higher response rate, whereas patients with HLA-B18 had the lowest response rate (MCR 17%). Patients with HLA-B27 and those with HLA-A31 showed a trend for better survival, whereas patients with HLA-A2, -B7, or -B18 had a trend for shorter survival. We conclude that response to IFN-A in patients with CML may be associated with the HLA phenotype. However, a much larger population would be required to determine if the impact of HLA phenotype on survival is independent of other clinical prognostic features. These findings could be relevant for the understanding of immune mechanisms of control of CML and possibly the design of immune therapy for this disease.

Adolescent↗

GM-CSF can improve the cytogenetic response obtained with interferon-alpha therapy in patients with chronic myelogenous leukemia.

Patients with chronic myelogenous leukemia (CML) who achieve a major cytogenetic remission when treated with interferon-alpha (IFN-A) have a survival advantage when compared to patients with no cytogenetic response. We investigated the effect of combining granulocyte-macrophage colony-stimulating factor (GM-CSF) with IFN-A in the cytogenetic response of patients with minor responses to IFN-A alone. CML patients were eligible if they had shown sensitivity to IFN-A as determined by achievement of a hematologic or cytogenetic response, but failed to achieve or lost a major cytogenetic response after a minimum of 12 months of therapy with IFN-A alone. Patients received GM-CSF 30 microg/m2 daily, subcutaneously and the dose was escalated to 60 microg/m2 if tolerated. IFN-A was continued at the same dose being received by the patient and escalated when possible. Fourteen evaluable patients were included, 13 in chronic phase and one in accelerated phase. The best response prior to GM-CSF was a transient major cytogenetic response in two patients (14%), minor cytogenetic response in nine (64%), and complete hematologic response in three (22%). The median time on IFN-A prior to the start of GM-CSF was 39 months (range 12-72 months). Four patients achieved a significant cytogenetic response, including two complete (14%) and two partial (14%) cytogenetic remissions during therapy. One partial cytogenetic remission converted to complete shortly after therapy was discontinued. Two other patients had a significant reduction in the percentage of Philadelphia chromosome-positive metaphases. The dose of IFN-A could be escalated in half of the patients treated. No toxicity could be attributed to the addition of GM-CSF. We conclude that the addition of GM-CSF to the treatment with IFN-A in CML patients who are sensitive to IFN-A alone but fail to achieve a major cytogenetic response may be beneficial in some patients and should be further investigated.

Adult↗