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J Gutterman

Publications and source records attributed to J Gutterman.

At least 19 recordsLinked to original sources

Chronic myelogenous leukemia--progress at the M. D. Anderson Cancer Center over the past two decades and future directions: first Emil J Freireich Award Lecture.

The purpose of this study was to review the progress in clinical and translational research in chronic myelogenous leukemia (CML) over the past 20 years at M.D. Anderson Cancer Center. The CML database updating the clinical and basic research investigations was reviewed as the source of this report. Publications resulting from these investigations were summarized. The long-term results with intensive chemotherapy, IFN-alpha therapy alone or in combination, autologous stem cell transplantation, and new agents such as homoharringtonine and decitabine showed encouraging results. Biological studies related to the BCR-ABL molecular abnormality, other molecular events, and the detection of minimal residual disease were detailed. Future strategies with potential promise in CML were outlined. Significant progress in understanding CML biology and in treating patients afflicted with the disease has occurred. Several therapeutic and research tools are currently investigated, which should hopefully improve further the prognosis of patients with CML.

Antineoplastic Agents↗

Role of granulocyte-macrophage colony-stimulating factor as adjuvant treatment in neutropenic patients with bacterial and fungal infection.

The results are presented of two preliminary studies conducted to assess the role of GM-CSF as adjuvant treatment in neutropenic patients with bacterial or fungal infections. In the first study the effect of GM-CSF on the rate of response to antibiotics was assessed. Febrile neutropenic patients (n = 91) were randomized to receive ticarcillin-clavulanate plus netilmicin with or without GM-CSF (60 micrograms/m2). Response rates were significantly higher in patients who received antibiotics plus GM-CSF (p = 0.05). An increase in neutrophil count was seen in 89% of GM-CSF patients with initial low neutrophil counts (< 100/microliters) compared with 67% of control patients (p = 0.04). In the second study the activity of GM-CSF in patients with fungal infections was assessed. Neutropenic patients with documented fungal infections received amphotericin B plus GM-CSF. Of the eight evaluable patients, six responded and four had a complete response to treatment. The neutrophil counts of the two non-responding patients did not increase substantially during GM-CSF treatment and both died of their fungal infection. The prognosis of neutropenic patients with fungal infections is usually poor and the results of this pilot study are therefore very encouraging. The two studies show that GM-CSF is able to stimulate neutrophil recovery in neutropenic patients and may improve the response to antibiotic and antifungal treatment.

Adolescent↗

Role of granulocyte-macrophage colony-stimulating factor as adjuvant therapy for fungal infection in patients with cancer.

A pilot study was conducted to evaluate the role of granulocyte-macrophage colony-stimulating factor (GM-CSF) as adjuvant therapy for fungal infections in patients with cancer. GM-CSF was added to amphotericin B in the treatment of cancer patients with proven major-organ or disseminated fungal infection. The dose of GM-CSF ranged from 100 to 750 micrograms/(m2.d). Of eight evaluable patients, six had a neutrophil response to GM-CSF. Four of these patients were completely cured of the fungal infection, and two had a partial response. However, a capillary-leak syndrome developed in three patients, an adverse effect suggesting that the dose of GM-CSF was excessive.

Adult↗

Low-dose non-glycosylated rhGM-CSF is effective for the treatment of delayed hematopoietic recovery after autologous marrow or peripheral blood stem cell transplantation.

Twenty-six patients with hematologic malignancies (20) or solid tumors (six) were treated with non-glycosylated rhGM-CSF (E. coli) for delayed hematopoietic recovery (granulocytes < 0.1 x 10(9)/l on day 21 or < 0.5 x 10(9)/l on day 28) after autologous marrow or peripheral blood stem cell transplantation. Median pretreatment granulocytes were 0.1 x 10(9)/l (range 0-0.4 x 10(9)/l). Treatment with rhGM-CSF was initiated at 60-250 micrograms/m2 subcutaneously daily with dose escalation every 7 days if there was no response. Within 14 days, 21 (84%) of the 25 evaluable patients achieved granulocytes > 0.5 x 10(9)/l and 17 (68%) had granulocytes > 1.0 x 10(9)/l. For those who responded within 14 days, granulocytes were > 0.5 x 10(9)/l at a median of 3 days (range 1-13) and > 1.0 x 10(9)/l at 6 days (range 2-12). Sixteen of the 23 patients receiving an initial rhGM-CSF dose of 60-125 micrograms/m2 achieved granulocytes > 1.0 x 10(9)/l. Three patients discontinued use of rhGM-CSF because of toxicity, and four patients never recovered despite use of rhGM-CSF doses as high as 1000 micrograms/m2. Graft failure-related mortality was 16% at 4 months after transplantation. These results demonstrate that relatively low doses of non-glycosylated rhGM-CSF administered subcutaneously daily can be used to promote granulocyte recovery in patients with delayed engraftment after autologous transplantation. No beneficial effects were seen on red cell or platelet recovery.

Adolescent↗

Treatment of newly diagnosed acute myelogenous leukemia with granulocyte-macrophage colony-stimulating factor (GM-CSF) before and during continuous-infusion high-dose ara-C + daunorubicin: comparison to patients treated without GM-CSF.

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.

Antineoplastic Combined Chemotherapy Protocols↗

Intensive chemotherapy with mitoxantrone and high-dose cytosine arabinoside followed by granulocyte-macrophage colony-stimulating factor in the treatment of patients with acute lymphocytic 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.

Adult↗

Treatment of chronic myelogenous leukemia in accelerated and blastic phases with daunorubicin, high-dose cytarabine, and granulocyte-macrophage colony-stimulating factor.

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.

Adult↗

Intensive chemotherapy induction followed by interferon-alpha maintenance in patients with Philadelphia chromosome-positive chronic myelogenous leukemia.

In a pilot study, 32 patients with Philadelphia chromosome-positive chronic myelogenous leukemia were treated with intensive chemotherapy induction followed by interferon-alpha (IFN-A) maintenance. Intensive chemotherapy consisted of three cycles of daunorubicin 120 mg/m2 on day 1, cytarabine 80 mg/m2 daily for 10 days, vincristine 2 mg on day 1, and prednisone 100 mg daily for 5 days (DOAP). Maintenance therapy with IFN-A at a doses of 3 x 10(6) to 5 x 10(6) units/m2 daily was adjusted according to counts and toxicity. The outcome of patients was compared with a matched historic population of 64 patients treated with IFN-A alone. Overall, 60% of patients had a cytogenetic response (partial or complete) with induction chemotherapy, but only eight (25%) had a sustained cytogenetic response with IFN-A maintenance. After a median follow-up of 67 months, the 6-year survival rate of the 32 patients was 58%, compared with 36% for the matched historic group (P = 0.084). The incidence of lymphoid blastic transformation in the two groups was 25% and 48%, respectively (P = 0.10) and durable cytogenetic responses, 25% and 19%, respectively (P = 0.48). In summary, the addition of intensive chemotherapy induction to IFN-A maintenance does not improve the survival rate, incidence of lymphoid blastic transformation, or incidence of durable cytogenetic response compared with the results achieved with IFN-A therapy alone.

Adolescent↗

Alpha-interferon combination therapy of resistant myeloma.

Among 68 patients with resistant multiple myeloma, alpha-interferon was combined with either the VAD regimen for those in relapse, or high-dose dexamethasone for those who had never responded. Neither the response rate nor the survival time improved in comparison with similar treatments without interferon. Results affirmed no benefit with added interferon in myeloma patients with advanced disease resistant to standard therapies. Certain prognostic features for low likelihood of response and for short survival identified patients who should be considered early for intensive therapies that require bone marrow or blood stem cell support.

Aged↗

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↗

Effects of granulocyte-macrophage colony-stimulating factor in iatrogenic myelosuppression, bone marrow failure, and regulation of host defense.

In early studies, recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) has been found to reduce the depth and duration of granulocytopenia in the settings of cancer chemotherapy and autologous bone marrow transplantation. In patients with myelodysplastic syndrome or aplastic anemia. GM-CSF has produced increased marrow cellularity and marked leukocyte responses, and multilineage effects have been observed in some patients. The available data suggest that the use of GM-CSF in these settings is associated with a decreased incidence of infection as compared with that in historical controls or pretreatment periods and that it may enhance the ability to deliver optimal doses of cancer chemotherapy. Other findings suggest that GM-CSF may be useful in regulating host response to infection when used in combination with antimicrobial therapy in neutropenic patients. However, a precise determination of the ability of this agent to significantly affect patient morbidity or mortality in these various contexts awaits the results of larger, longer-term, randomized, controlled trials.

Bone Marrow Diseases↗

Concomitant administration of recombinant human interleukin-2 and recombinant interferon alpha-2A in cancer patients: a phase I study.

Twenty-seven patients with metastatic cancer were treated with a daily continuous intravenous (IV) infusion of recombinant human interleukin-2 (rhIL-2) along with daily intramuscular recombinant interferon-alpha-2a (rIFN-alpha-2a) 4 days per week for 4 weeks with repeated treatment after 2 to 4 weeks of rest. The maximum-tolerated dose (MTD) was 3 million U/m2/d of rhIL-2 with 5 to 10 million U/m2/d of rIFN-alpha-2a. The dose-limiting toxicities are moderate hypotension requiring low doses of pressors and chronic fatigue associated with decreased performance status. Other common side effects included fever, chills, fluid retention, nausea/vomiting, erythrodermia, weight loss, elevated liver transminase levels, anemia, thrombocytopenia, and CNS toxic effects. There were seven objective responses among 25 evaluable patients. Four major responses (one complete response and three partial responses) were observed among 10 patients with melanoma treated with the MTD level. These data suggest that for cancer patients, concomitant rhIL-2 and rIFN-alpha-2a therapy is tolerable and has manageable side effects. Further phase II studies will be needed to define the antitumor activity of this combination.

Antineoplastic Combined Chemotherapy Protocols↗

Therapy of chronic myelogenous leukaemia with interferons.

Therapy of Philadelphia positive chronic myelogenous leukaemia (CML Ph1) with alpha interferon (IFN-alpha) resulted in a high frequency of haematological remissions. Effective suppression of the malignant Ph1 clone and concomitant partial or complete restoration of normal haemopoiesis is reproducibly noted in a proportion (30%-50%) of the patients. This and the low incidence of blast crisis underscore the profound effect this therapy has on the disease. Marked heterogeneity in the response to IFN-alpha was noted as well, and sensitivity or resistance to interferon was phenotypically indistinguishable. Studies of the IFN-resistant disease failed to disclose alteration in IFN receptors or in IFN-inducible genes and are suggestive, therefore, of a limited alteration in IFN-induced intracellular pathways.

Humans↗

Significance and correlations of molecular analysis results in patients with Philadelphia chromosome-negative chronic myelogenous leukemia and chronic myelomonocytic leukemia.

PURPOSE: Several investigators have documented a rearrangement of the breakpoint cluster region (bcr) in selected patients with a morphologic diagnosis of chronic myelogenous leukemia (CML) but no abnormality of the Philadelphia chromosome (Ph) by cytogenetic studies. Our intention was to systematically investigate the incidence of the bcr rearrangement in such patients, and to correlate the findings with patient characteristics, response to therapy (especially alpha interferon treatment), and overall prognosis. PATIENTS AND METHODS: Molecular analysis studies were performed in 40 patients with Ph-negative CML (23 patients) and myelomonocytic leukemia (CMML; 17 patients). RESULTS: Rearrangement of the breakpoint cluster region (bcr) was detected in 11 of the 23 patients with Ph-negative CML (48 percent), indicating the presence of the abnormal molecular events in Ph-positive CML without documentation of the Ph cytogenetic abnormality. None of the 17 patients with CMML had the bcr rearrangement. Patients with Ph-negative CML and the bcr rearrangement had characteristics similar to those of patients with Ph-positive disease. These included a younger age, higher white blood cell counts, a higher incidence of thrombocytosis and basophilia, and a lower occurrence of thrombocytopenia. The leukocyte alkaline phosphatase score was not a helpful distinguishing feature. Among 21 patients receiving alpha interferon-based regimens, response to therapy was significantly better among patients with Ph-negative disease and the bcr rearrangement (seven of seven, 100 percent), compared with those without the bcr rearrangement (one of six, 17 percent), or patients with CMML (two of eight, 25 percent) (p less than 0.01). At this time of follow-up, only one of the 11 patients with Ph-negative CML and the bcr rearrangement had died from complications of allogeneic bone marrow transplantation, compared with three deaths among the 12 patients with Ph-negative CML and no bcr rearrangement, and 11 deaths among the 19 patients with CMML. CONCLUSION: We conclude that molecular studies help in better understanding the nosology of Ph-negative CML, and define a subgroup of patients with clinical, therapeutic, and prognostic correlations similar to those of patients with Ph-positive CML.

Adolescent↗