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E Estey

Publications and source records attributed to E Estey.

At least 109 records · Page 6Linked to original sources

Clinical experience with fludarabine in hemato-oncology.

Fludarabine monophosphate (Fludara) is a purine analogue which entered clinical trials in 1982. Although inactive in solid tumors, Fludara has marked activity in indolent lymphoproliferative disorders. The exact mechanism of action of Fludara is uncertain. Fludara has been established as the most active single agent in chronic lymphocytic leukemia (CLL) in single arm and comparative clinical trials. The activity has been demonstrated in both previously treated and initially treated patients. Marked activity has been noted in patients with low grade lymphoma, in particular, those with a follicular morphology and in Waldenstrom's macroglobulinemia. Combinations of fludarabine with alkylating agents, anthracyclines, and anthraquinones have led to clinically useful combination approaches. The ability of fludarabine to modulate the levels of the triphosphate form of cytosine arabinoside (ara-C) in acute leukemia cells has led to the development of combinations of fludarabine and ara-C. These combinations have demonstrated marked activity in treatment of relapsed and previously untreated patients with acute myelogenous leukemia (AML) and myelodysplastic syndrome (MDS). The ability to modulate the activity of pyrimidines and to inhibit repair of DNA damage caused by alkylating agents, anthracyclines, and other DNA active drugs suggest that the future of fludarabine will be in combination approaches to modulate the activity of other agents. These activities may extend its role to use in solid tumors.

Antineoplastic Agents↗

Telomerase activity in human acute myelogenous leukemia: inhibition of telomerase activity by differentiation-inducing agents.

The terminal regions of human chromosomes, the telomeres, shorten with each cell division in most normal somatic cells. Telomerase, a ribonucleoprotein that synthesizes telomeric DNA onto chromosomal ends, is activated in germline cells and almost all tumor cells. Telomerase activity maintains the stability of telomere length, resulting in indefinite cellular proliferation (immortality). In the present study, telomerase activity was analyzed in leukemic mononuclear blood cells obtained from 56 patients with acute myelogenous leukemia (AML) with known cytogenetic alterations. Heterogenous levels of telomerase activity were observed and generally correlated with cytogenetic status. Patients with 11q abnormalities and -5/-7 (unfavorable cytogenetics) tended to have high telomerase activity compared with cells obtained from AML patients with other types of cytogenetics. Additional studies with a larger cohort of patients will determine whether these differences are statistically significant. Chemotherapy agents that result in differentiation of leukemic cells also resulted in inhibition of telomerase activity. Knowledge of telomerase activity in patients with AML, before and throughout therapy, may have clinical utility for following disease progression and may predict early cancer relapse.

Adult↗

Relapse of acute myelogenous leukemia during low dose interleukin-2 (IL-2) therapy. Phenotypic evolution associated with strong expression of the IL-2 receptor alpha chain.

BACKGROUND: Interleukin-2 (IL-2) has produced remissions in patients with solid tumors, predominantly malignant melanoma and renal cell carcinoma. Recently, clinical trials have assessed the therapeutic benefit of this cytokine in acute myelogenous leukemia (AML). However, little is known about the potential of IL-2 to promote the growth of leukemic cells in vivo. METHODS: A patient with acute myelocytic leukemia whose leukemic blasts displayed lymphoid (TdT+ and CD4+) and myeloid features (myeloperoxidase [MPO]+ and CD13+) is reported. The IL-2 receptor alpha chain (CD25 antigen) was present on 28.9% of his blasts. After entering complete remission with chemotherapy, he was treated on a protocol using IL-2 maintenance. RESULTS: Six weeks after beginning low-dose IL-2, his leukocyte count increased to 448,000/microliters with 86% blasts. The phenotype of these blasts was different from that at diagnosis with expression of the CD25 antigen and the CD33 antigen on 75.9% and 74.8 of the blasts, respectively. Furthermore, 30% of the cells were TdT+, whereas MPO was not detectable. CONCLUSION: The rapid course of relapse, phenotypic evolution, and the high expression of CD25 antigen on the blasts after IL-2 therapy raise the possibility that the cytokine therapy may have promoted the growth of leukemic cells.

Humans↗

Topotecan in chronic lymphocytic leukemia.

BACKGROUND: Topotecan is one of a new class of agents that targets topoisomerase I (Topo I) and stabilizes the DNA-topo1 complex, ultimately resulting in cell death. The rationale for the use of topotecan in chronic lymphocytic leukemia (CLL) is based on the finding that levels of Topo I are elevated in the lymphocytes of patients with this disease. METHODS: Twelve patients with CLL were treated with topotecan to assess its clinical efficacy; in addition, DNA-protein cross-linking was measured after exposure of the cells to topotecan, in an attempt to correlate potential anti-CLL effects with this parameter. The median age of the patients was 63 years; all had received prior therapy with fludarabine and four (33%) were resistant to fludarabine. Four patients (33%) had also received therapy with chlorambucil, and three of them were resistant to this agent. Seven patients (58%) were Rai stage I-II and five (42%) were Rai stage III-IV. Topotecan was given as a 30-minute infusion at a daily dose of 2 mg/m2 for 5 days, and courses were repeated monthly. Cells were obtained from the patients before treatment and exposed to 2 microM topotecan or control in vitro. In addition, cells were obtained from patients after they received the first dose of topotecan and protein-bound DNA was measured with the same technique. RESULTS: No patient responded to therapy with topotecan (95% confidence interval, 0-27%). Nonhematologic toxicity was mild and thrombocytopenia occurred in four of eight patients whose conditions could be evaluated. One patients died of myocardial infarction and another died of fungal pneumonia. DNA-protein cross-linking was detected in all nine patients whose cells were assessed in vitro, with levels of cleavable complex ranging from twofold to 7.5-fold that of the control cells. Only two of eight patients with evaluable conditions had increased cross-linking detectable in circulating cells after the first dose of topotecan, which was consistent with the drug's lack of effect in vivo. CONCLUSIONS: Although exposure of cells from patients with CLL to topotecan in vitro at 2 microM resulted in detectable protein-DNA cross-linking, this effect was not seen in patients who received a bolus dose of 2 mg/m2, and no remissions were noted in 12 patients.

Adult↗

Cytokine expression in adherent layers from patients with myelodysplastic syndrome and acute myelogenous leukemia.

We have previously shown that long-term cultures of adherent layers derived from patients with chronic myelogenous leukemia in blast crisis express high levels of interleukin (IL)-1 beta and that this cytokine may participate in disease progression. In this study, we analyzed cytokine expression in bone marrow adherent layers derived from patients with myelodysplastic syndrome (MDS) and acute myelogenous leukemia (AML). IL-6 messenger RNA (mRNA) was expressed in adherent layers established from four of nine MDS patients, and from 10 of 17 AML patients (including all four individuals in whom AML had evolved from an antecedent MDS state). Similarly, IL-1 beta mRNA was expressed in adherent layers derived from two of nine MDS patients and from three of 17 AML patients. Cultures from two of 10 AML patients who expressed IL-6 also expressed granulocyte (G) colony-stimulating factor (CSF) mRNA. In contrast, IL-1 beta, IL-6, and G-CSF mRNA were not discernible in adherent layers from any of 14 normal volunteers. Transforming growth factor-beta 1, macrophage (M) CSF, IL-7, and leukemia inhibitory factor mRNA as well as IL-6 protein were constitutively expressed in adherent layers derived from both MDS patients, AML patients, and normal bone marrows, whereas IL-1 alpha, tumor necrosis factor-alpha, and GM-CSF were not expressed in either the normal-, MDS- or AML-derived adherent layers. These results indicate that cultured stroma from a subset of MDS and AML patients produce IL-1 beta and/or IL-6. Although, exposure of adherent layers to exogenous IL-1 beta was able to induce IL-6 expression, in 9 of the 14 samples constitutively expressing cytokines, IL-6 transcript levels were elevated without a concomitant increase in IL-1 beta, suggesting that IL-6 transcription was independently dysregulated.

Adolescent↗

Isolated leukemia cutis and CNS involvement in combination with cytogenetic findings of trisomy 8--two case reports.

We describe two patients who showed a very similar, but atypical course of acute myelogenous leukemia. They demonstrated skin nodules, spinal fluid and CNS involvement whereas bone marrow and blood remained clear. Nonetheless both had cytogenetic findings of trisomy 8 in the marrow and were resistant to a combination of cytarabine, idarubicin, fludarabine, and granulocyte-colony stimulating factor.

Adult↗

Analysis of CD7 expression in acute myelogenous leukemia: martingale residual plots combined with 'optimal' cutpoint analysis reveals absence of prognostic significance.

Conflicting results exist regarding the prognostic importance of CD7 expression in acute myelogenous leukemia (AML). Differences in the method of determining CD7 positivity, the antibody used, the therapy administered, and the CD7 level used as a cutoff point to reduce it to a binary variable have all been postulated to account for the discordant findings. We determined the level of CD7 expression by flow cytometric analysis using the Leu9 monoclonal antibody in 331 patients with newly diagnosed AML and attempted to determine the impact of CD7 on AML prognosis. This study used the same methodology and antibody as three of the four studies that reported a positive association between CD7 expression and prognosis in AML. Optimal cutpoint analysis was used to divide the population into CD7-positive (CD7+) (>10.5% expression) and CD7-negative (CD7-) (< 10.5% expression) groups with the largest survival difference. At the optimal cutpoint, the difference in survival was not statistically significantly different (P = 0.068 uncorrected, P = 0.244 corrected for optimal cutpoint search). There was a marked imbalance in the distribution of favorable cytogenetic abnormalities [t(8;21), inversion 16, t(15;17)], with 95% segregating to the CD7- group. Analysis excluding patients with favorable cytogenetic abnormalities revealed no prognostic importance for CD7 expression (P = 0.24 uncorrected). The response rate (CR) and survival experiences of CD7+ and CD7- patients were similar with six different regimens. CD7 expression was not a significant independent prognostic factor in a Cox regression model that included cytogenetics as a predictive variable, but it was marginally significant when cytogenetics was excluded. We conclude that regardless of the antibody used, the therapy received, or the cutoff point selected to determine CD7 expression, CD7 is not associated with response rate, prognosis, or survival in AML. The 'optimal cutoff point analysis' utilized in this study has applicability to other biologic parameters as well.

Adolescent↗

Cytogenetic and clinical correlates in AML patients with abnormalities of chromosome 16.

Abnormalities of chromosome 16 in AML include del(16q), inv(16) and t(16;16). These three groups have been categorized together and have been associated with high complete remission (CR) and survival rates following Ara-C-based chemotherapy. We have reviewed the 63 AML or MDS patients with an abnormality of chromosome 16 treated at MD Anderson Cancer Center (MDACC) over the past 18 years. Marked differences in survival and remission duration (RD) were noted between the inv(16) or t(16;16) patients and those with del(16q), whose outcome was no better than other M4 AML or MDS patients treated during the same period. Other differences characterizing del(16q) included a lack of CNS relapses, lower incidences of eosinophilia and M4 FAB subtype. Half the inv(16) patients had additional karyotypic abnormalities. The overall survival and remission duration for those patients were no different from those for patients with inv(16) alone, although the probability of remaining in first CR at 2 years was higher in the inv(16) alone group. There was no difference in overall survival for the 45 patients who received HDAC vs those who did not. The incidence of CNS relapse was, however, markedly reduced for the HDAC patients. Eosinophilia did not correlate with improved survival. We conclude that del(16q) confers a different prognosis from inv(16) and t(16;16) and for the purposes of prognostication or treatment recommendations should no longer be categorized with them. Additional karyotypic changes however, which accompany inv(16) in 50% of cases do not influence the overall outcome compared to patients with inv(16) alone.

Acute Disease↗

Change in karyotype between diagnosis and first relapse in acute myelogenous leukemia.

We compared karyotype at first relapse with presenting karyotype in 212 patients with AML seen at MD Anderson Cancer Center (Houston, TX, USA) between 1975 and 1994. In 38% the karyotypes at diagnosis and relapse were identical. A stable karyotype was most frequent (70%) among patients who presented without cytogenetic abnormalities, suggesting that the finding of a normal karyotype is usually not due to sampling error. In contrast, a finding of insufficient metaphases at diagnosis was repeated at relapse in only 6% of cases. A change in karyotype occurred in 67% of 101 patients who presented with an abnormal karyotype and had sufficient metaphases for evaluation at relapse. The great majority of changes involved clonal evolution, clonal devolution (regression), or both; a purely normal karyotype and unrelated clones were seen in 11 and three of the 101, respectively. Change in karyotype between diagnosis and relapse and type of change were unrelated to remission duration. The only group in which karyotype at relapse vs that at diagnosis had a possible bearing on achievement of second CR were patients who presented with abnormalities other than inv(16), t(8;21) or t(15;17) and who at relapse had only normal metaphases; such patients had higher CR rates than comparable patients who retained their presenting abnormalities.

Chromosome Aberrations↗

Phase II study of interleukin-6 in patients with smoldering relapse of acute myelogenous leukemia.

We gave interleukin-6 (IL-6) to eight patients with AML in first relapse after a median remission of 20.5 weeks and one patient with AML refractory to initial induction therapy. All nine patients had 5-29% blasts in the marrow together with < 5000 circulating blasts/microliter (smoldering disease) with a median platelet count of 19,000/microliters at a median of 7 weeks after initiation of last chemotherapy. The dose was 3.75 micrograms/kg by subcutaneous injection daily for 14 days. None of the nine responded, with response defined as at least a doubling in platelet count to > 30,000/microliters provided neither the marrow nor circulating blast count doubled to > 30% or > 10,000/microliters respectively. Given these data, the likelihood of a 15% response rate in patients whose disease is in smoldering relapse after a short first CR is only 27%, with 15% being the expected average CR rate following chemotherapy in these patients. Rises in platelet count unrelated to spontaneous recovery after prior chemotherapy were seen in three patients and a rise in marrow blast percent in four. Our results suggest that IL-6 might be used in stimulating platelet recovery in AML patients who remain thrombopenic without evidence of leukemia after chemotherapy, unlike our patients whose marrow had 5-29% blasts prior to starting IL-6.

Adult↗

Clinical and prognostic significance of trisomy 21 in adult patients with acute myelogenous leukemia and myelodysplastic syndromes.

Trisomy 21 is the second most common trisomy in patients with acute myelogenous leukemia (AML) and myelodysplastic syndromes (MDS). However, its clinical and prognostic significance is not known. We analyzed the records of 1187 consecutive patients with untreated AML or MDS. Thirty-seven (3.3%) had trisomy 21: four (0.3%) as the only cytogenetic abnormality and 33 (2.7%) with other cytogenetic abnormalities (-5 and/or -7 in 15, +8 in nine, t(15;17) in three, inv(16) in three, t(8;21) in one, and hyperdiploid with several other additional chromosomes in two). Twenty-eight patients had AML and nine MDS. No patients had megakaryocytic phenotype (M7), common in patients with constitutional trisomy 21 (Down's syndrome) and AML. Overall, 57% achieved complete remission (CR), with median CR duration of 39 weeks, and median survival of 31 weeks. When patients with additional cytogenetic abnormalities were compared to patients with similar abnormalities but no trisomy 21, their clinical features as well as their CR rate, CR duration and survival were similar, with or without trisomy 21. We conclude that trisomy 21 in AML typically presents in conjunction with other cytogenetic abnormalities, especially -5/-7 and +8 whose presence rather than the presence of +21 dictates the clinical outcome.

Adolescent↗

Interferon-alpha and interleukin-2 as treatment for leukemia relapse after allogeneic bone marrow transplantation.

We treated 12 patients with leukemia relapse after allogenic bone marrow transplantation with a combination of interferon-alpha (IFN-alpha) ((2.5-5.0) x 10(6) u/m2 subcutaneously three times a week) and interleukin-2 (IL-2) ((1.8-3.6) x 10(6) IU/m2 subcutaneously five times a week) to determine the toxicity and efficacy of combination cytokine therapy in this setting. The median age of the patients was 39 years (range: 16-50). There were nine females and three males. The median time to relapse from BMT was 98 days (range: 0-963). At the time of relapse, six patients had AML, four patients had CML (two in blast crisis and two in chronic phase with clonal evolution), and one patient had lymphoblastic lymphoma. Combination cytokine therapy was started a median of 108 days post BMT (range: 37-2404). Nine patients treated at the higher dose level required a 50% dose reduction because of toxicity or GVHD (three CNS, two GVHD, one high fever, one diarrhoea with hypotension, and one pericarditis). At a lower dose level, 2 of 10 patients had their treatment discontinued because of toxicity or GVHD. Six patients developed clinical findings consistent with acute GVHD while on combination cytokine therapy. Two patients responded to combination cytokine therapy: one with CML and one with AML. Combination cytokine therapy is feasible in the setting of relapse post allogeneic BMT. The combination of IL-2 1.8 x 10(6) IU/m2 five times a week with IFN-2 2.5 x 10(6) U/m2 three times a week seems to be tolerable, and merits further study in this setting.

Acute Disease↗

Modulation of the cellular metabolism of cytarabine and fludarabine by granulocyte-colony-stimulating factor during therapy of acute myelogenous leukemia.

Previous in vitro investigations demonstrated that human leukemia cells, when incubated with hematopoietic growth factors such as granulocyte-colony-stimulating factor (G-CSF), augment the accumulation of the triphosphate 1-beta-D-arabinofuranosylcytosine (ara-C cytarabine). To test whether G-CSF infusion prior to ara-C infusion would biologically modulate the accumulation of ara-9-beta-D-arabinofuranosylcytosine 5'-triphosphate (ara-CTP) and other ara nucleotides in the leukemia blasts during therapy, protocols were designed to infuse G-CSF prior to fludarabine (9-beta-D-arabinofuranosyl-2-fluoroadenine monophosphate) and ara-C to increase the accumulation of the active triphosphates [9-beta-D-arabinofuranosyl-2-fluoroadenine 5'-triphosphate (F-ara-ATP) and ara-CTP] in acute myelogenous leukemia (AML) blasts during therapy. To complement these in vivo studies, ex vivo accumulation of ara-CTP was also investigated before and after G-CSF infusion. Patients (n = 5) treated on the fludarabine/ara-C/G-CSF regimen received a 30 mg/m2 dose of fludarabine followed by a 2 g/m2 dose of ara-C infused i.v. for 4 h. Beginning at 24 h, and every day, patients received a 6-h infusion of 400 microgram/m2 G-CSF. At 48 h, the fludarabine and ara-C couplet was repeated. Comparison of F-ara-ATP pharmacokinetics in circulating AML cells of patients on the fludarabine/ara- C/G-CSF regimen demonstrated that the area under concentration time curve (AUC) of F-ara-ATP increased significantly (median, 1.4-fold; range, 0.9-1.5; P = 0.045) after G-CSF infusion. This was due to an increased rate of F-ara-ATP accumulation by AML cells. The AUC of ara-CTP, on the other hand, was not affected (median, 1.0-fold; range, 1.0-1.2; P = 0.571) after G-CSF infusion. Because fludarabine potentiates the accumulation of ara-CTP, the effect of G-CSF on ara-CTP metabolism may not be evident in the AML blasts of patients on the fludarabine/ara-C/G-CSF regimen. To determine the effect of G-CSF when ara-C was infused alone, four additional patients were treated on a pilot protocol in which ara-C (2 g/m2) was infused on days 1 and 3 and G-CSF on day 2. The AUC of ara-CTP accumulation in these patients decreased by a median of 48% after G-CSF infusion. Consistent with these in vivo investigations, ex vivo ara-CTP accumulation was decreased in the AML blasts after G-CSF infusion. Based on these data it could be concluded that (a) infusion of G-CSF before fludarabine augmented the rate of F-ara-ATP synthesis in circulating AML blasts during therapy, suggesting that G-CSF may benefit fludarabine therapy by biological modulation; (b) G-CSF did not increase ara-CTP accumulation, rather it may have caused it to decrease; and (c) these data imply that when G-CSF and ara-C are used in combination, administration of fludarabine prior to ara-C may maintain the ara-CTP AUC.

Antineoplastic Combined Chemotherapy Protocols↗

2-Chlorodeoxyadenosine therapy in patients with T-cell lymphoproliferative disorders.

Mature T-cell lymphoproliferative disorders comprise a heterogenous group of diseases for which there is no standard therapy. These disorders are uncommon, and are usually treated similarly to their B-cell counterparts, but with less success. Nucleoside analogues have proven effective in indolent B-cell disorders but have been less well explored in T-cell malignancies. We treated 22 patients with mature T-cell lymphoproliferative diseases with 2-chlorodeoxyadenosine (2-CDA) administered as a continuous infusion at a daily dose of 4 mg/m2 over 7 days. Nineteen of the patients had received prior therapy with a median number of prior regimens of three. Eleven patients had leukemia or large granular lymphocytosis, eight patients had mycosis fungoides, and three had T-cell lymphoma. Nine patients (41%) responded to 2-CDA. Four of the patients had responses that were complete remissions, and three of these four patients remain in remission at 23, 24, and 23 months. The only important toxic effects were fever or infection, seen during 38% of courses. In conclusion, 2-CDA appears to be an effective therapy in T-cell lymphoproliferative disorders and deserves wider evaluation in this subset of patients.

Adult↗

Levels of retinoblastoma protein expression in newly diagnosed acute myelogenous leukemia.

The relationship between the level of retinoblastoma protein (RB) expression and the survival of 113 newly diagnosed acute myelogenous leukemia (AML) patients was studied. Western blotting was used to determine the level of RB protein present in peripheral blood leukemia cells and results were confirmed in 26 patients by immunohistochemistry. The leukemic cells from 22/113 AML patients (19%) contained RB protein at levels that were equal to or less than the level of RB observed in the mononuclear cell fraction of peripheral blood from normal individuals (Low RB). Levels of RB greater than that of normal blood (Elevated RB) were seen in 91 patients (81%). The median survival of patients with low RB was significantly shorter than that seen in patients with elevated RB, 12 weeks versus 40 weeks (P = .02). Remission induction frequency was 36% in low RB patients compared with 68% in AML patients with elevated RB (P = .01). Multivariate analysis showed that low RB protein level was an independent prognostic factor predictive or poor survival after allowing for other known prognostic factors. These data suggest that a low level of the RB protein at the time of diagnosis is associated with shortened survival in AML patients because of inferior response to conventional therapy. Monitoring of the RB level could identify a subgroup of AML patients with an extremely poor prognosis when treated with chemotherapy alone, who would be eligible for alternative therapeutic strategies.

Adolescent↗

All-trans retinoic acid followed by chemotherapy for salvage of refractory or relapsed acute promyelocytic leukemia.

BACKGROUND: All-trans retinoic acid (ATRA) is effective in the treatment of relapsed or refractory acute promyelocytic leukemia (APL), but relapse is the rule if response is unmaintained. METHODS: Seventeen patients with APL were salvaged with ATRA at a dosage of 50 mg/m2/day for 3 months or until complete remission (CR) was achieved; idarubicin (12 mg/m2/day for 4 days) was added if blast plus promyelocyte count either was or reached > or = 10 x 10(3)/microliters. After CR was achieved, patients received three courses of idarubicin (12 mg/m2 daily for 3 days) followed by three courses of mitoxantrone (5 mg/m2 daily for 3 days) and etoposide (250 mg/m2 daily for 3 days). Maintenance was with 6-mercaptopurine and methotrexate. RESULTS: A CR was achieved in 14 patients (82%), the disease was refractory in 2 patients, and one patient died during induction. Three patients underwent allogeneic bone marrow transplant during CR. After a median follow-up of 26 weeks, six patients remain in CR. Median CR duration is 40 weeks (range 8-56+). Patients treated with ATRA plus chemotherapy in first salvage, when compared to a historic control group treated with chemotherapy alone, had a significantly better CR rate (87% vs. 57%; P = 0.04) and a lower induction death rate (7% vs. 29%; P = 0.08), resulting in longer median survival (26 vs. 17 weeks; P = 0.13). Four patients developed the "retinoic acid syndrome", which was fatal in one case. Three patients developed thrombotic events. CONCLUSIONS: ATRA followed by chemotherapy is effective treatment for patients with APL who relapse after conventional therapy, and it may be superior to chemotherapy alone.

Adolescent↗

Antifungal prophylaxis during remission induction therapy for acute leukemia fluconazole versus intravenous amphotericin B.

BACKGROUND: Fungal infection is a frequent and often fatal complication in patients undergoing remission induction therapy for acute leukemia. Although candidiasis is the most common infection, mold infections are increasing in frequency. Fluconazole (FLU) is a new antifungal agent that has been used successfully to treat Candida infections and has modest activity against aspergillosis in animal models. Subtherapeutic doses of amphotericin B (AMB) have been considered effective as prophylaxis in these patients. This study was designed to compare the efficacy and toxicity of these agents as antifungal prophylaxis. METHODS: Adults with acute leukemia undergoing remission induction chemotherapy randomly were assigned to receive antifungal prophylaxis with AMB (0.5 mg/kg three times weekly) or FLU (400 mg daily). Trimethoprim-sulfamethoxazole was administered as an antibacterial prophylaxis. Prophylaxis was continued until the patient achieved complete remission or was treated for 8 weeks without antileukemic response. Prophylaxis was discontinued if the patient experienced a possible or proven fungal infection or a serious toxicity. RESULTS: Overall, 58% of the 36 patients assigned to AMB successfully completed prophylaxis compared with 80% of the 41 patients assigned to FLU (< 0.05). Proven, probable, or possible fungal infections occurred in 31% and 17% of the patients, respectively. The risk of discontinuing prophylaxis due to fungal infection or toxicity increased with time in the study and was significantly greater for AMB (P = 0.02). CONCLUSIONS: At the dose used in this study, AMB was no more effective and was more toxic than FLU for prophylaxis of fungal infections in patients undergoing remission induction chemotherapy for acute leukemia.

Acute Disease↗