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Susan O'Brien

Publications and source records attributed to Susan O'Brien.

At least 109 records · Page 6Linked to original sources

Phase I study of oral topotecan in hematological malignancies.

PURPOSE: In this Phase I, dose-seeking study, we investigated the dose-limiting toxicities (DLTs) and maximal tolerated dose (MTD) of oral topotecan in patients with hematological malignancies. EXPERIMENTAL DESIGN: Patients with myelodysplastic syndromes, myeloproliferative disorders, or relapsed acute myelogenous leukemia were treated with 0.6-1.9 mg/m(2)/day oral topotecan for 5 consecutive days on and 2 days off, for 3 weeks (15 doses/course) followed by 2-4 weeks of rest. The DLTs occurring during the first course of treatment were considered for defining the MTD. Preliminary results of antitumor activity were assessed by examining bone marrow status and peripheral blood cell counts. RESULTS: All 26 patients enrolled in the study were evaluable for toxicity, and 24 patients were evaluable for response. A total of 54 courses were administered. The most frequently reported nonhematological toxicities (percentage of courses) were diarrhea (57%), nausea/vomiting (50%), fatigue (24%), and mucositis (9%). DLTs included grade 3 or 4 nausea/vomiting and diarrhea at 1.9 mg/m(2)/day. The MTD for oral topotecan in patients with hematological malignancies was defined at 1.4 mg/m(2)/day. Hematological toxicity was noted in all 26 patients and with all courses but was not considered dose-limiting. Four (17%) patients achieved a complete response, and six (25%) patients experienced hematological improvement. CONCLUSIONS: Protracted administration of oral topotecan is safe and well tolerated in patients with hematological malignancies. At the dose-schedule used, single-agent oral topotecan has a definite activity in patients with myelodysplastic syndrome and acute myelogenous leukemia and warrants further investigation alone or in combination with other agents.

Adult↗

Mylotarg, fludarabine, cytarabine (ara-C), and cyclosporine (MFAC) regimen as post-remission therapy in acute myelogenous leukemia.

PURPOSE: Mylotarg, a humanized anti-CD33 antibody linked to an antitumor antibiotic, is approved for the treatment of patients with relapsed acute myeloid leukemia (AML). Its role as a component of post-remission therapy in AML has not been established. The Mylotarg, fludarabine, cytarabine, and cyclosporine (MFAC) regimen was evaluated in patients in complete remission following Mylotarg-containing regimens. METHODS: The MFAC regimen comprised: Mylotarg 4.5 mg/m2 intravenously (i.v.) over 2 h after a loading dose of cyclosporine A (CSA) on day 1; fludarabine 15 mg/m2 i.v. over 30 min every 12 h for six doses on days 2 through 4; ara-C 0.5 g/m2 over 2 h every 12 h for six doses on days 2 through 4, 4 h after fludarabine started; CSA 6 mg/kg over 2 h, followed by 16 mg/kg continuous i.v. infusion on days 1 and 2. Patients in complete remission (CR) commenced idarubicin and ara-C (IA) alternating with MFAC or vice versa for 9 months from the date of CR. Idarubicin was administered at 8 mg/m2 on days 1 and 2 and ara-C at 1.5 g/m2 on days 1 and 2. RESULTS: A total of 22 patients received 76 courses of MFAC (35 courses) alternating with IA (41 courses) or vice versa. The interval between courses, and degrees of myelosuppression, were equivalent in the alternating regimens. Failure-free and 12-month survival rates of were 32% and 55%, respectively. Grade 3/4 toxicities, including sepsis, neutropenic fever, and nausea/vomiting, were equivalent with MFAC and IA. CONCLUSIONS: Post-remission therapy with MFAC is feasible and well tolerated in patients with AML.

Acute Disease↗

Results of triple therapy with interferon-alpha, cytarabine, and homoharringtonine, and the impact of adding imatinib to the treatment sequence in patients with Philadelphia chromosome-positive chronic myelogenous leukemia in early chronic phase.

BACKGROUND: Before the discovery of imatinib mesylate, a Bcr-Abl selective tyrosine kinase inhibitor, three agents, interferon-alpha (IFN-alpha), cytarabine (ara-C), and homoharringtonine (HHT), had demonstrated activity against Philadelphia chromosome (Ph)-positive chronic myelogenous leukemia (CML) as single agents and in couplet combinations. The goals of the current study were to evaluate the efficacy of the triple combination regimen with IFN-alpha, ara-C, and HHT in newly diagnosed Ph-positive CML and to assess the impact of the added sequential therapy with imatinib on overall prognosis. METHODS: Ninety patients with Ph-positive CML in early chronic phase received the triple regimen. Therapy consisted of 5 million units (MU)/m(2) IFN-alpha subcutaneously (s.c. daily, ara-C 10 mg s.c. daily, and HHT 2.5 mg/m(2) by continuous infusion over 24 hours daily x 5 every month. After a median duration of 16.5 months of therapy, 78 patients had their therapy changed to 400 mg orally administered imatinib daily. RESULTS: With the triple regimen, 85 patients (94%) achieved complete hematologic response and 67 patients (74%) had a cytogenetic response (Ph suppression to < or = 90%) which was complete (Ph 0%) in 20 patients (22%) and major in 42 patients (46%). Myelosuppression was significant, resulting in considerable reductions in the dose schedules. After 12 months of therapy, the median IFN-alpha dose was 1.6 MU/m(2) daily, the median ara-C dose was 1.85 mg daily, and the median number of HHT days was 2 every month. Only three patients developed blastic phase while receiving the triple regimen. With the change to imatinib therapy, currently 57 patients (63%) are in complete cytogenetic response and 69 patients (76%) in major cytogenetic response. With a median follow-up time of 46 months for the total study group, the estimated 5-year survival rate was 88%, and only 8 patients (9%) to date have developed blastic phase. CONCLUSIONS: The sequence of IFN-alpha, ara-C, and HHT followed by imatinib (imposed by the discovery of the latter drug) resulted in an estimated 5-year survival rate of 88%. This finding suggests that imatinib combination regimens may improve the prognosis in CML.

Adult↗

Results of decitabine (5-aza-2'deoxycytidine) therapy in 130 patients with chronic myelogenous leukemia.

BACKGROUND: General and site-specific DNA methylation is associated with tumor progression and resistance in several cancers, including chronic myelogenous leukemia (CML). Decitabine is a hypomethylating agent that has shown encouraging preliminary anti-CML activity. This study evaluated the activity and toxicity of decitabine in different phases of CML. METHODS: One hundred and thirty patients with CML were treated: 123 with Philadelphia chromosome (Ph)-positive CML (64 blastic, 51 accelerated, 8 chronic) and 7 with Ph-negative CML. Decitabine was given at 100 mg/m(2) over 6 hours every 12 hours x 5 days (1000 mg/m(2) per course) in the first 13 patients, 75 mg/m(2) in the subsequent 33 patients, and 50 mg/m(2) in the remaining 84 patients. RESULTS: A total of 552 courses were given to the 130 patients. Only four patients (3%) died during the first course from myelosuppressive complications (three patients) or progressive disease (one patient). Of 64 patients in the CML blastic phase, 18 patients (28%) achieved objective responses. Of these 18 patients, 6 achieved complete hematologic responses (CHR), 2 achieved partial hematologic responses (PHR), 7 achieved hematologic improvements (HI), and 3 returned to the second chronic phase (second CP). Five patients (8%) had cytogenetic responses. Among 51 patients in the accelerated phase, 28 patients (55%) achieved objective responses (12 CHR, 10 PHR, 3 HI, and 3 second CP). Seven patients (14%) had cytogenetic responses. Among eight patients treated in the chronic phase, five (63%) had objective responses. Of seven patients treated for Ph-negative CML, four (57%) had objective responses. There was no evidence of a dose-response effect. The estimated 3-year survival rate was less than 5% in the blastic phase and 27% in the accelerated phase. The only significant toxicity reported was severe myelosuppression, which was delayed, prolonged, and dose dependent. With decitabine 50-75 mg/m(2), the median time to granulocyte recovery above 0.5 x 10(9)/L was about 4 weeks. Myelosuppression-associated complications included febrile episodes in 37% and documented infections in 34%. CONCLUSIONS: Decitabine appears to have significant anti-CML activity. Future studies should evaluate lower-dose, longer-exposure decitabine schedules alone in imatinib-resistant CML, as well as combinations of decitabine and imatinib in different CML phases.

Adolescent↗

Transient down-modulation of CD20 by rituximab in patients with chronic lymphocytic leukemia.

Lymphoid cells in most patients with chronic lymphocytic leukemia (CLL), when treated with rituximab, become CD20-. This is thought to be due to masking of CD20 by rituximab. We used specific antimouse immunoglobulin antibodies to detect rituximab on the surface of CLL lymphocytes and we demonstrate that rituximab is rarely detectable after therapy. Only 3 of 65 patients with CLL had rituximab detectable on their lymphocytes after rituximab therapy despite the fact that most had no detectable CD20 expression. In vitro mixing of CLL or Raji cells with rituximab demonstrated that rituximab was detectable on the surface of cells due to its binding to CD20. However, the addition of plasma led to the down-modulation of CD20 expression, and the rituximab became undetectable. This down-modulation of CD20 protein expression was associated with a down-modulation of CD20 mRNA. CLL cells that lost their CD20 expression regained CD20 expression after 24 hours in culture. These data suggest that rituximab therapy leads to a substantial but transient down-modulation of CD20 expression and that negativity for CD20 in cells from patients treated with rituximab is not necessarily due to CD20 masking. The importance of this down-modulation in the efficacy of current therapy with rituximab needs further investigation.

Antibodies, Monoclonal↗

Sudden onset of the blastic phase of chronic myelogenous leukemia: patterns and implications.

BACKGROUND: Therapeutic options in Philadelphia chromosome-positive chronic myelogenous leukemia (Ph-positive CML) in chronic phase include allogeneic stem cell transplantation (SCT) and treatments other than allogeneic SCT. The choice of therapy often depends on the mortality risk of allogeneic SCT. Delaying SCT until the disease demonstrates resistance to other strategies (e.g., imatinib mesylate or interferon-alpha) entails the risk of the development of a sudden blastic phase, which may not permit enough time to perform a SCT. METHODS: The current study was performed to define the incidence and patterns of sudden-onset blastic-phase CML in relation to the risk inherent in delaying allogeneic SCT. Of a study group of 1286 patients who were referred in early chronic-phase CML between 1981-2001 and who received therapies other than allogeneic SCT, 1093 patients had regular follow-up at the study institution. A sudden onset of blastic phase was defined as having its onset within 3 months from a previously documented complete hematologic response. RESULTS: Among the 1093 patients, 183 patients developed blastic-phase disease, which was of sudden onset in 46 patients (25%; 4% of the total). The incidence of sudden blastic phase was 0.4% in the first year, 1.8% in the second year, and 2.6% in the third year. Patients with sudden blastic-phase disease were found to have more often low-risk features at the time of presentation, including low incidences of blasts and thrombocytosis. Sudden blastic-phase CML was found to be associated with a higher incidence of lymphoid blastic morphology (67% vs. 22%; P < 0.0001), which resulted in a higher response rate to blastic-phase therapy (70% vs. 29%; P < 0.0001) and significantly longer survival from the onset of blastic-phase disease (median of 12 months vs. 6 months; P < 0.01). Twenty-four of the 42 patients with sudden blastic-phase disease who were treated at the M. D. Anderson Cancer Center were able to undergo allogeneic SCT in second chronic phrase (n = 13) or transformed phase (n = 11); at the time of last follow-up, 6 patients were alive without evidence of disease at a median of 18 months. CONCLUSIONS: The low rates of sudden blastic transformation in the first 3 years of the course of disease for CML and the salvage rate of these patients with allogeneic SCT should be considered in relation to the transplantation mortality in patients with early chronic-phase disease and the early promising results with imatinib mesylate therapy.

Adult↗

Rituximab in relapsed or refractory hairy cell leukemia.

The purpose of this study was to investigate the efficacy and safety of the monoclonal antibody, rituximab, in relapsed or refractory hairy cell leukemia (HCL). Fifteen patients with relapsed or primary refractory HCL after nucleoside analogs received rituximab 375 mg/m2 weekly for a total of 8 planned doses. An additional 4 doses could be administered to responders who had not achieved complete response (CR). The overall response rate was 80%. Eight patients (53%) achieved CR, 2 (13%) attained CR by hematologic parameters with residual marrow disease (1% to 5% marrow hairy cells), and 2 (13%) had a partial response. Of the 12 responders followed for a median of 32 months (range, 8 to 45+ months), 5 patients (42%) had progression of disease 8, 12, 18, 23, and 39 months from the start of therapy. Three patients failed to respond (after 4, 6, or 8 doses). Reductions in serum interleukin-2 receptor (sIL-2R) levels correlated with response. Toxicity was minimal, and no infectious episodes were observed. Rituximab has significant activity and minimal toxicity in HCL and warrants further study. Rituximab should be explored further in HCL with regard to eradication of minimal residual disease and in combination with nucleoside analogs.

Adult↗

Treatment of Philadelphia chromosome-positive chronic myelogenous leukemia with weekly polyethylene glycol formulation of interferon-alpha-2b and low-dose cytosine arabinoside.

BACKGROUND: To evaluate the activity and toxicity of weekly Schering 54301, a polyethylene glycol formulation of interferon- alpha-2b (PEG-IFN-alpha-2b), with cytosine arabinoside (ara-C) in patients with chronic myelogenous leukemia (CML). METHODS: Seventy-six patients with Philadelphia chromosome (Ph)-positive early chronic-phase CML were treated with the combination of PEG-IFN-alpha-2b and ara-C (10 mg daily subcutaneously [s.c.]). The starting dose of PEG-IFN-alpha-2b was 6 microg/kg s.c. weekly in the first 24 patients but was reduced to 4.5 microg/kg in the next 52 patients. RESULTS: Overall, 73% of patients had a complete hematologic response, 35% of patients had a major cytogenetic response (Ph < 35%), and 21% of patients had a complete cytogenetic response (Ph = 0%). With a median follow-up of 19 months, the estimated 2-year survival rate was 89%. Therapy was discontinued in 24% of patients due to Grade III-IV toxicity. Frequent severe side effects that required dose reductions included neutropenia (49%), fatigue (43%), and neurologic toxicity (17%). The median PEG-IFN-alpha-2b and ara-C doses delivered were 3 microg/kg weekly and 7.5 mg daily, respectively, at 12 months of therapy. The activity and toxicity profiles of this combination was similar to those observed in historical patients treated with IFN-alpha and cytarabine. CONCLUSIONS: The combination of PEG-IFN-alpha-2b and ara-C is active but has significant toxicity in patients with chronic-phase CML at the dose schedule used. The recommended dose of PEG-IFN-alpha-2b in future combination studies is 3 microg/kg or less.

Adult↗

Phase 2 clinical and pharmacologic study of clofarabine in patients with refractory or relapsed acute leukemia.

In a phase 2 study, 62 patients with relapsed and refractory acute myeloid leukemia (AML; n = 31), myelodysplastic syndrome (MDS; n = 8), chronic myeloid leukemia in blastic phase (CMLBP; n = 11), and acute lymphocytic leukemia (ALL; n = 12) received 40 mg/m2 clofarabine intravenously over 1 hour daily for 5 days, every 3 to 6 weeks. Twenty patients (32%) achieved complete response (CR), 1 had a partial response (PR), and 9 (15%) achieved CR but without platelet recovery (CRp), for an overall response rate of 48%. In AML, responses were noted in 2 (18%) of 11 patients in first salvage with short first CR (</= 12 months), in 7 (87%) of 8 patients with longer first CR, and in 8 (67%) of 12 patients in second or subsequent salvage. Responses were observed in 4 of 8 patients with high-risk MDS (50%), in 7 (64%) of 11 with CML-BP, and in 2 (17%) of 12 with ALL. Severe reversible liver dysfunction was noted in 15% to 25%. After the first clofarabine infusion, responders accumulated more clofarabine triphosphate in blasts compared with nonresponders (median 18 vs 10 microM; P =.03). This increased only in responders (median, 1.8-fold; P =.008) after the second clofarabine infusion. In summary, clofarabine is active in acute leukemias and MDS; cellular pharmacokinetics may have prognostic significance.

Adenine Nucleotides↗

Results of imatinib mesylate therapy in patients with refractory or recurrent acute myeloid leukemia, high-risk myelodysplastic syndrome, and myeloproliferative disorders.

BACKGROUND: Imatinib mesylate is a selective tyrosine kinase inhibitor of c-abl, bcr/abl, c-kit, and platelet-derived growth factor-receptor (PDGF-R). c-kit is expressed in most patients with acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS) and PDGF has been implicated in the pathogenesis of myeloproliferative disorders (MPD). METHODS: The authors investigated the efficacy of imatinib in patients with these disorders. Forty-eight patients with AML (n = 10), MDS (n = 8), myelofibrosis (n = 18), atypical chronic myeloid leukemia (CML; n = 7), chronic myelomonocytic leukemia (CMML; n = 3), or polycythemia vera (n = 2) were treated with imatinib 400 mg daily. RESULTS: None of the patients with AML or MDS responded. Among patients with myelofibrosis, 10 of 14 patients with splenomegaly (71%) had a 30% or greater reduction in spleen size, 1 patient had trilineage hematologic improvement, 2 had erythroid hematologic improvement, and 1 had improvement in platelet count. One patient with atypical CML had erythroid hematologic improvement. Both patients with polycythemia vera needed fewer phlebotomies (from 2-3 per year to none during the 8 months of therapy and from 3-6 per year to 1 during 9 months of therapy). None of the three patients with CMML responded. Treatment was well tolerated. The side effects were similar to those observed in patients with CML. CONCLUSIONS: Within these small subgroups of disease types, single-agent imatinib did not achieve a significant clinical response among patients with AML, MDS, atypical CML, or CMML without PDGF-R fusion genes. Preliminary data on polycythemia vera are promising and deserve further investigation. Responses among myelofibrosis patients were minor. Therefore, a combination treatment regimen including imatinib may be more effective.

Adult↗

Use of arsenic trioxide (As2O3) in the treatment of patients with acute promyelocytic leukemia: the M. D. Anderson experience.

BACKGROUND: Approximately 20-30% of patients with acute promyelocytic leukemia (APL) who are treated with all-trans retinoic acid (ATRA) and an anthracycline develop recurrent disease. It has been reported that arsenic trioxide (As(2)O(3)) is effective in this setting. The authors report the experience of The M. D. Anderson Cancer Center with As(2)O(3) in the treatment of patients with recurrent APL. METHODS: Twelve patients who developed recurrent APL after treatment with ATRA were included. Patients received intravenous As(2)O(3) 0.15 mg/kg per day until they achieved a complete remission (CR) or up to a maximum of 60 days. Their median age was 44 years (range, 26-72 years), and the median duration of first remission was 52 weeks (range, 23-292 weeks). RESULTS: All 12 patients achieved a CR. The median time to achieve CR was 52 days (range, 27-75 days). Seven of 10 evaluable patients achieved a molecular remission (i.e., polymerase chain reaction [PCR] analysis was negative for the gene encoding fusion of the nuclear receptor for retinoic acid to the PML gene at the time of CR; 70% of patients; 95% confidence interval, 0.35-0.93), and all other patients had negative PCR results after they received post-remission therapy. All patients received subsequent therapy: Four patients received As(2)O(3) alone, six patients received As(2)O(3) with other chemotherapeutic agents, and two patients received idarubicin plus ATRA without As(2)O(3). Eight patients continued in CR after a median follow-up of 24 months (range, 9-45 months). Side effects were mild, except for two patients who developed Grade 2 and 3 peripheral neuropathy, respectively; one of those patients required discontinuation of therapy. CONCLUSIONS: As(2)O(3) is effective and well tolerated therapy for patients with recurrent APL. Molecular remission may be achieved at the time of CR in the majority of patients, and remissions are durable.

Adult↗

Prediction of initial cytogenetic response for subsequent major and complete cytogenetic response to imatinib mesylate therapy in patients with Philadelphia chromosome-positive chronic myelogenous leukemia.

BACKGROUND: Obtaining a major (Philadelphia chromosome [Ph] of < 35%) or a complete cytogenetic response (Ph of 0%) has been associated with excellent long-term survival. Cytogenetic response may continue to improve with therapy. Because early allogeneic stem cell transplantation (SCT) may be associated with a better outcome, early parameters predicting for subsequent cytogenetic responses would optimize the treatment decision-making. METHODS: The current study was performed to analyze whether early cytogenetic responses may be predictive of later major or complete cytogenetic responses to imatinib mesylate therapy in patients with Ph-positive chronic myelogenous leukemia (CML). RESULTS: Two hundred sixty-one patients with Ph-positive, chronic-phase CML after failure with interferon therapy who were treated with imatinib mesylate therapy were analyzed. A persistence of 100% Ph-positive cells after > or = 6 months of imatinib mesylate therapy was associated with a major cytogenetic response rate of 9-13% and a complete cytogenetic response rate of 0-4%. However, a minor cytogenetic response after 3-12 months of therapy still was associated with high rates of major (68-83%) or complete (35-54%) cytogenetic response rates. CONCLUSIONS: Patients with Ph-positive, chronic-phase CML who have persistent 100% Ph-positive disease after > or = 6 months of imatinib mesylate therapy may be offered allogeneic SCT or considered for alternative investigational therapies.

Benzamides↗

Adaptive randomized study of idarubicin and cytarabine versus troxacitabine and cytarabine versus troxacitabine and idarubicin in untreated patients 50 years or older with adverse karyotype acute myeloid leukemia.

PURPOSE: Troxacitabine has activity in refractory myeloid leukemia, either as a single agent or when combined with cytarabine (ara-C) or with idarubicin. A prospective, randomized study was conducted in patients aged 50 years or older with untreated, adverse karyotype, acute myeloid leukemia (AML) to assess troxacitabine-based regimes as induction therapy. PATIENTS AND METHODS: Patients were randomized to receive idarubicin and ara-C (IA) versus troxacitabine and ara-C (TA) versus troxacitabine and idarubicin (TI). A Bayesian design was used to adaptively randomly assign patients to treatment. Thus, although there was initially an equal chance for randomization to IA, TA, or TI, treatment arms with a higher success rate progressively received a greater proportion of patients. RESULTS: Thirty-four patients were treated. Randomization to TI stopped after five patients and randomization to TA stopped after 11 patients. Defining success as complete remission (CR) that occurred within 49 days of starting treatment, success rates were 55% (10 of 18 patients) with IA, 27% (three of 11 patients) with TA, and 0% (zero of five patients) with TI. Because three CRs occurred after day 49, final CR rates were 55% (10 of 18 patients) with IA, 45% (five of 11 patients) with TA, and 20% (one of five patients) with TI. The probability that TA was inferior to IA was 70%, with a 5% probability that TA would have a 20% higher CR rate than IA. Survival was equivalent with all three regimens. CONCLUSION: Neither troxacitabine combination was superior to IA in elderly patients with previously untreated adverse karyotype AML.

Acute Disease↗

Clinical relevance of the expression of the CD31 ligand for CD38 in patients with B-cell chronic lymphocytic leukemia.

BACKGROUND: CD31 (platelet endothelial cell adhesion molecule-1 [PECAM-1]) is the ligand for CD38, a transmembrane glycoprotein that is expressed on the surface of leukemic cells in many patients with B-cell chronic lymphocytic leukemia (B-CLL). In a previous study, the authors showed that CD38 expression was correlated with a poor prognosis in patients with B-CLL. In the current study, blood samples from patients with B-CLL were examined to identify CD31 surface marker expression, and CD31 expression was correlated with several other known prognostic variables, including CD38. METHODS: Using flow cytometry, peripheral blood samples from 120 patients with B-CLL were analyzed for CD31 and CD38 expression on CD19 positive leukemic B cells. RESULTS: Thirteen of 120 patients (11%) had CD31 expression on < 20% of their B cells, and the remaining patients had various levels of CD31 expression. The median expression of CD31 was 76% of leukemic, CD19 positive cells. Levels of CD31 expression were not correlated with survival outcomes or with any of the known prognostic parameters when all patients were considered. Patients who had high CD38 expression (>or= 20%), as expected, had significantly shorter survival (P = 0.001) compared with patients who had low CD38 expression (< 20%). However, in patients with low CD38 expression, a subgroup with low CD31 expression (< 76%) had significantly longer survival compared with the survival for the entire group (P = 0.0001). Moreover, the survival pattern of patients with low CD38 expression and high CD31 expression was not significantly different from the survival pattern seen in patients with high CD38 expression. CONCLUSIONS: CD31 expression further defined a subgroup of patients with B-CLL who had a different survival outcome. Defining the interaction between CD31 expression and CD38 expression in patients with CLL will require further exploration.

ADP-ribosyl Cyclase↗

Gemtuzumab, fludarabine, cytarabine, and cyclosporine in patients with newly diagnosed acute myelogenous leukemia or high-risk myelodysplastic syndromes.

BACKGROUND: Gemtuzumab is used to treat patients with previously untreated or recurrent acute myelogenous leukemia (AML). The fludarabine and cytarabine (ara-C) regimen is active in these patients. Resistance to gemtuzumab is associated with blast multidrug resistance (MDR). The objectives of this study were to evaluate the efficacy and toxicity of a combination regimen of gemtuzumab, fludarabine, ara-C, and the MDR modifier (cyclosporine [CyA]) in patients with previously untreated AML, refractory anemia with excess blasts (RAEB), or RAEB in transformation (RAEBT). METHODS: The MFAC regimen was comprised of gemtuzumab (Mylotarg trade mark ) (6 mg/m(2) intravenously [i.v.] on Day 1); fludarabine and ara-C (15 mg/m(2) and 0.5 g/m(2), respectively, twice daily on Days 2-6); and CSA (6 mg/kg loading dose before gemtuzumab, followed by 16 mg/kg continuous i.v. infusion on Days 1 and 2). RESULTS: Fifty-nine evaluable patients were treated: 39 patients (66%) had AML and 20 patients (34%) had RAEB/RAEBT. Their median age was 57 years (range, 27-76 years). The MFAC regimen induced complete remission (CR) in 27 patients (46%) and CR with incomplete platelet recovery (CRp) in 1 patient (2%). The median survival period is 8 months. At 12 months, the survival rate is 38% and the event-free survival rate in patients with CR/CRp is 27%. Infections complicated 38% of the courses of chemotherapy. Grade 3/4 toxicity included hyperbilirubinemia in 31% and transaminitis in 7% of the patients. Four patients (7%) developed hepatic venoocclusive disease (VOD). CONCLUSIONS: The MFAC regimen may merit further study in patients with AML if measures to avoid and/or treat VOD can be incorporated into the regimen.

Adult↗

Phase I clinical and pharmacology study of clofarabine in patients with solid and hematologic cancers.

PURPOSE: To define the maximum-tolerated doses (MTDs) and dose-limiting toxicities (DLTs) of clofarabine, given as a 1-hour infusion daily for 5 days, in patients with solid tumors and with acute leukemia. PATIENTS AND METHODS: The initial part of the study defined the MTD and DLT in solid tumors. The second part of the study defined the MTD and DLT in acute leukemia. RESULTS: The starting dose of clofarabine (15 mg/m(2)) was myelosuppressive, requiring several dose de-escalations to 2 mg/m(2), the dose suggested for phase II studies in solid tumors. Dose escalation in acute leukemia started at 7.5 mg/m(2), with several escalations to 55 mg/m(2). The DLT was reversible hepatotoxicity at 55 mg/m(2). The recommended dose for acute leukemia phase II studies was 40 mg/m(2). Among 32 treated patients with acute leukemia, two achieved a complete response and three had a marrow complete response without platelet recovery (hematologic improvement), for an overall response rate of 16%. At 40 mg/m(2), the median plasma clofarabine level was 1.5 micro mol/L (range, 0.42 to 3.2 micro mol/L; n = 7). Cellular and plasma pharmacokinetic studies suggested dose proportionality but showed a wide variation in intracellular concentrations of clofarabine triphosphate. CONCLUSION: This phase I study defined the following two MTDs for clofarabine given as a 1-hour infusion daily for 5 days: 2 mg/m(2) for solid tumors, the DLT being myelosuppression; and 40 mg/m(2) for acute leukemia, the DLT being hepatotoxicity. Encouraging activity was observed in acute leukemia.

Adenine Nucleotides↗

Result of high-dose imatinib mesylate in patients with Philadelphia chromosome-positive chronic myeloid leukemia after failure of interferon-alpha.

Imatinib at 400 mg daily is effective in chronic-phase chronic myeloid leukemia (CML) after interferon failure, although only a few patients achieve a molecular remission. We investigated whether higher doses of imatinib may be more effective. Thirty-six patients with chronic-phase CML after failure on interferon-alpha were treated with 400 mg imatinib twice daily. Median time from diagnosis was 25 months (range, 10-135 months); 4 patients (11%) had clonal evolution. All 11 patients with active disease achieved complete hematologic response. Excluding patients with fewer than 35% Ph-positive metaphases before the start of therapy, 19 (90%) of 21 evaluable patients achieved a major cytogenetic response. Of 27 evaluable patients, 24 (89%) achieved a complete cytogenetic response. Quantitative polymerase chain reaction was performed in bone marrow every 3 months. Of 32 evaluable patients, 18 (56%) showed BCR-ABL/ABL percentage ratios lower than 0.045%, including 13 (41%) with undetectable levels. With a median follow-up of 15 months, all patients were alive in chronic phase. Toxicities were similar to those reported with standard dose; 71% of patients continue to receive 600 mg or more of imatinib daily. In conclusion, high-dose imatinib induces complete cytogenetic responses in most patients with chronic-phase CML after interferon failure. This is accompanied by a high rate of molecular remission.

Adult↗