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Recognition of drug resistance during remission induction therapy for acute non-lymphocytic leukemia: utility of day 6 bone marrow biopsy.

While the majority of patients under 70 years of age with acute non-lymphocytic leukemia enter remission when treated with a combination of cytosine arabinoside and an anthracycline antibiotic, 20-45% of patients do not. The reasons for treatment failure in these patients vary from drug resistant disease to death from infection or bleeding shortly after remission induction therapy is initiated. Clearly, more intensive remission induction therapy should be administered only to those patients for whom the therapy being employed is of insufficient intensity. Bone marrow biopsies after six days of therapy have been performed on 53 patients who received 65 courses of remission induction therapy. Eighty-eight per cent of the remissions occurred in patients whose marrow cellularity was less than 62.5% on day 6 while 78% of patients who had drug resistant disease had day 6 marrow cellularities which exceeded 62.5%. Hence, a bone marrow biopsy performed after six days of therapy permits the recognition of the majority of patients who will enter complete remission or alternatively who need more aggressive therapy.

Acute Disease↗

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↗

Unexpected mortality from the use of E. coli L-asparaginase during remission induction therapy for childhood acute lymphoblastic leukemia: a report from the Taiwan Pediatric Oncology Group.

The relative efficacy and toxicity of E. coli L-asparaginase and epidoxorubicin used in remission induction therapy for childhood acute lymphoblastic leukemia (ALL) were assessed in a randomized trial conducted in Taiwan. All patients had standard-risk ALL, defined as a leukocyte count <10 x 10(9)/l and were aged between 1 and 2 or 7 and 10 years, or a leukocyte count <50 x 10(9)/l and were aged between 2 and 7 years, without evidence of a T cell or mature B cell immunophenotype, central nervous system leukemia or expression of two or more myeloid-associated antigens. Ninety-three patients were randomized to receive E. coli L-asparaginase at 10,000 IU/m2 thrice weekly for nine doses and 108 to receive epidoxorubicin at 20 mg/m2 weekly for two doses during remission induction with daily prednisolone, weekly vincristine and, on day 22, a dose of etoposide plus cytarabine. Patients treated with L-asparaginase had a significantly higher rate of fatal infection with or without hemorrhage than did those who received epidoxorubicin during remission induction (six of 93 vs none of 108, P = 0.009), resulting in a lower rate of complete remission in the former group (93.6 vs 99.1%, P = 0.05). In addition, patients treated with L-asparaginase had a higher frequency of hyperglycemia and hypoalbuminemia. The overall rate of event-free survival was lower in patients treated with L-asparaginase than in other patients (P = 0.06); estimated 3-year rates were 72% (95% confidence interval, 55-89%) and 87.2% (78-96%), respectively. We conclude that L-asparaginase (Leunase) given at 10,000 IU/m2 for nine doses was poorly tolerated and resulted in excessive toxicity, both through its effects as a single agent and possibly through potentiation of etoposide.

Adolescent↗

Poor prognosis acute myelogenous leukemia: 3--biological and molecular biological changes during remission induction therapy.

This is the third paper in a series which describes a new remission induction regimen for patients with 'poor prognosis' acute myelogenous leukemia (AML). Twenty-four patients were treated with two one day pulses of chemotherapy separated by 96 h. Each pulse consisted of two doses of cytarabine and a single dose of mitoxantrone. Amifostine was administered three times a week after the second pulse of chemotherapy until treatment outcome became known. The first paper described the outcome of treatment while the second described the relationship of treatment outcome to the pretherapy characteristics of the leukemia. This paper describes the changes in the leukemia cells which occur during remission induction therapy. While only a limited number of specimens were available for each post treatment study, the studies demonstrated a profound fall in blood counts, BM cellularity, and telomerase activity in leukemia cells after pulse #1 of treatment. This fall was usually accompanied by a coordinate rise in IL6, TNFalpha, and IL1beta transcripts within the AML cells which survived chemotherapy. High levels of telomerase activity in the day 5 marrow was correlated with high levels of IL1beta transcripts which in turn were associated with treatment failure ascribable to resistant disease.

Antineoplastic Agents↗

Multivariate analysis of factors associated with invasive fungal disease during remission induction therapy for acute myelogenous leukemia.

The clinical courses of 54 consecutive adult patients with acute myelogenous leukemia (AML) who underwent 67 courses of intensive remission induction therapy were analyzed to assess factors associated with development of serious fungal and bacterial infections. Fever developed in 65 of 67 remission induction attempts and was due to bacterial, bacterial-fungal, and fungal etiologies in 49%, 14%, and 9% of cases, respectively. No etiology of fever was found in 28% of cases. Bacteremia occurred in 54% of remission induction attempts. Invasive fungal disease (IFD) occurred in 22% of cases with an overall mortality of 60%, including 45% of the patients who died during treatment. Using multivariate logistic regression analysis, a mathematical model was constructed which correlated with the risk of IFD. Major factors associated with patients who ultimately develop IFD included the duration of chemotherapy, the number of sites colonized with fungi and the number of fungal species isolated on certain surveillance cultures, particularly Aspergillus species. These studies define characteristics of patients at high risk for development of IFD for whom early initiation of empiric antifungal therapy is strongly recommended.

Adolescent↗

Acute leukemia in adults: assessment of remission induction with combination chemotherapy by clinical and cell-culture criteria.

Remission induction was assessed by clinical and cell-culture criteria for 65 patients with acute myelogenous leukemia (AML), 11 patients with chronic myelogenous leukemia (CML) in blast crisis and 19 patients with acute lymphoblastic leukemia (ALL). Cyclophosphamide, cytosine arabinoside and vincristine (CAV) therapy resulted in complete remission in 23 of 50 previously untreated patients with AML and in 3 of the 11 patients with CML. Fourteen patients with ALL responded to vincristine-prednisone induction therapy and two to induction therapy with CAV. The median duration of survival of the responding patients was 2.2 years, compared with 4 months for the patients who did not respond to treatment. Granulopoietic colony formation, assessed by assay of colony-forming units dependent on colony-stimulating activity in culture (CFU-C), was abnormal in 37 of 42 bone marrow aspirates from patients with AML before treatement. CFU-C concentration increased when leukocyte-conditioned medium (LCM) was added to the cultures; 13 cultures had normal or elevated CFU-C concentration with LCM. Marrow cells of patients with ALL or CML in blast crisis demonstrated a similar pattern. Serial studies of marrow CFU-C concentration of 31 patients with AML demonstrated a change to a normal pattern with successful remission induction. Results of this study suggest that administration of purified LCM to leukemic patients might increase granulocyte production from potential but unstimulated granulopoietic precursors. This therapy would lessen the probability of death from infection during remission induction.

Acute Disease↗

Remission induction chemotherapy induces in vivo caspase-dependent apoptosis in bone marrow acute myeloid leukemia blast cells and spares lymphocytes.

BACKGROUND: The goal of new therapeutic strategies is to adapt the treatment of acute myeloid leukemia (AML) patients to the prognostic and/or to the hematological response. METHODS: We analyzed in vivo apoptosis induction in blast cells and in lymphocytes of AML patients receiving remission induction treatment. RESULTS: We show, on 12 peripheral blood samples, that the increase of peripheral apoptotic blast cells cannot be considered as the earliest marker of the treatment efficiency, because the significant increase of apoptosis followed the white blood cell and the peripheral blast cell count reductions, probably due to an efficient clearance of circulating apoptotic cells. Furthermore, the study of 65 bone marrow samples at d15 showed that the treatment induced apoptosis of blast cells while sparing the lymphocytes. This apoptosis was evidenced both at the caspase and at the membrane levels using respectively fmk-VAD-FITC and Annexin V binding assays. We found that less than 50% of apoptosis, measured with the fmk-VAD-FITC, in the d15 residual bone marrow blast cells, correlated with lower disease-free survival probability. CONCLUSION: More studies are needed in larger series and earlier during the remission induction treatment to confirm the possible prognostic significance of in vivo apoptosis induction.

Acute Disease↗

Humoral immunity of the oral cavity during remission-induction therapy in patients with acute myeloid leukaemia.

To evaluate whether local oral humoral immunity changes during remission-induction therapy of newly diagnosed acute myeloid leukaemia, 10 consecutive adult patients were investigated during 4 weeks. The concentrations of the oral secretory immunoglobulins A and M were increased during the first 7 days but, when corrected for changes in the salivary flow rate, the secretion rates of S-IgA and S-IgM remained unchanged, relative to the values before chemotherapy. In comparison, the concentrations of the serum immunoglobulins A, G and M were decreased, like the leukocyte and thrombocyte counts, during the first 14 d. It is concluded that the chemotherapeutic agents appear to act differently upon the local plasma cells associated with oral secretory glands and plasma cells in the bone marrow, and that the secretion rate of oral immunoglobulins remains constant during remission-induction therapy.

Adult↗

Prediction of response of patients with acute nonlymphocytic leukaemia to remission induction therapy: use of clinical measurements.

Two hundred patients with acute nonlymphocytic leukaemia received remission induction therapy consisting of cytosine arabinoside and an anthracycline antibiotic. Analysis of the pretherapy characteristics of the patients demonstrated that patient age was the most important factor in determining whether or not the patient would survive remission induction therapy. Assessment of the characteristics of the bone marrow after 6 d of therapy permitted the recognition of patients who were likely to fail to enter remission because of persistent leukaemia. Taken together, these observations demonstrate that it is possible to identify patients for whom conventional chemotherapy is not likely to be of benefit either because it is too intensive or because it is not intensive enough to produce a complete remission.

Acute Disease↗

A randomized controlled trial of filgrastim during remission induction and consolidation chemotherapy for adults with acute lymphoblastic leukemia: CALGB study 9111.

Recombinant human granulocyte colony-stimulating factor (G-CSF; filgrastim) shortens the time to neutrophil recovery after intensive chemotherapy, but its role in the treatment of adults with acute lymphoblastic leukemia (ALL) is uncertain. We randomly assigned 198 adults with untreated ALL (median age, 35 years; range, 16 to 83) to receive either placebo or G-CSF (5 microgram/kg/d) subcutaneously, beginning 4 days after starting intensive remission induction chemotherapy and continuing until the neutrophil count was >/=1, 000/microL for 2 days. The study assignment was unblinded as individual patients achieved a complete remission (CR). Patients initially assigned to G-CSF then continued to receive G-CSF through 2 monthly courses of consolidation therapy. Patients assigned to placebo received no further study drug. The median time to recover neutrophils >/=1,000/microL during the remission induction course was 16 days (interquartile range [IQR], 15 to 18 days) for the patients assigned to receive G-CSF and 22 days (IQR, 19 to 29 days) for the patients assigned to placebo (P < .001). Patients in the G-CSF group had significantly shorter durations of neutropenia (<1, 000/microL) and thrombocytopenia (<50,000/microL) and fewer days in the hospital (median, 22 days v 28 days; P = .02) compared with patients receiving placebo. The patients assigned to receive G-CSF had a higher CR rate and fewer deaths during remission induction than did those receiving placebo (P = .04 by the chi-square test for trend). During Courses IIA and IIB of consolidation treatment, patients in the G-CSF group had significantly more rapid recovery of neutrophils >/=1,000/microL than did the control group by approximately 6 to 9 days. However, the patients in the G-CSF group did not complete the planned first 3 months of chemotherapy any more rapidly than did the patients in the placebo group. Overall toxicity was not lessened by the use of G-CSF. After a median follow-up of 4. 7 years, there were no significant differences in either the disease-free survival (P = .53) or the overall survival (P = .25) for the patients assigned to G-CSF (medians, 2.3 years and 2.4 years, respectively) compared with those assigned to placebo (medians, 1.7 and 1.8 years, respectively). Adults who received intensive chemotherapy for ALL benefited from G-CSF treatment, but its use did not markedly affect the ultimate outcome.

Adolescent↗

[AML-7 study of the value of intensive remission induction in aged patients with acute myelocytic leukemia].

The intensity of modern protocols for remission induction of acute nonlymphocytic leukemia presents a major problem in elderly patients because of toxicity. Most studies concerning this question indicate that in higher age groups (greater than 60 yrs.) remission incidence worsens and the death rate increases. Therefore, the purpose of this multicenter study is to prospectively compare survival and quality of life of two different therapeutic strategies: immediate intensive remission induction using Daunomycin and Cytosine Arabinoside (branch I) versus supportive care, "wait and see" policy, and palliative cytoreduction (branch II) with Hydroxyurea and Ara C when necessary. During the first 8 months after activating this study, 27 patients entered, 13 were randomized to branch I and 14 to branch II. It is too early to report meaningful results.

Aged↗

[A case of pulmonary aspergillosis by immunodiagnosis during remission induction therapy of acute myelocytic leukemia].

The frequency of a visceral mycosis grows definitely higher with an immunocompromised host. Invasive fungal infection can be controlled by means of development of early diagnosis and antifungal therapy. In these types of cases, it is difficult to establish an antemortem diagnosis of invasive pulmonary aspergillosis and most of them were diagnosed postmortem. A patient was diagnosed as aspergillosis from the clinical and serological features. This patient underwent successful therapy during remission induction therapy of acute myelocytic leukemia (AML). A 26-year-old male was admitted to our hospital because of leukocytosis with a diagnosis of AML made by reviewing peripheral blood smears and bone marrow aspirate. After remission induction therapy, he was still febrile in spite of treatment with a broad spectrum antibiotics and empiric therapy of fluconazole. Unfortunately shadowing appeared on the chest radiograph and aspergillus antigen was detected from the serum and the sputum. Consequently, the patient who suffered from invasive pulmonary aspergillosis was diagnosed and treated with intravenous amphotericin B and flucytosine. The radiological shadow improved but AML relapsed, therefore, remission induction therapy of AML was started again but he died of sepsis caused MRSA. In the postmortem histopathological examination the lung tissues, the hyphae could not be confirmed while, in immunohistochemical examinations of the lesion at the left S8, aspergillus antigens were detected around the small necrotic lesions and in the polymorphologic giant cells. We emphasize that invasive pulmonary aspergillosis is very difficult to diagnose whereas active examinations and clinical early diagnosis may lead to more effective therapy and the prognosis.

Adult↗

High-dose cytarabine, idarubicin, and granulocyte colony-stimulating factor remission induction therapy for previously untreated de novo and secondary adult acute myeloid leukemia.

This report describes the preliminary results of the remission induction phase of a protocol for previously untreated de novo and secondary acute myeloid leukemia (AML) designed to deliver very intensive therapy over a brief period of time using hematopoietic growth factor support. Remission induction therapy consisted of cytarabine 3 g/m2 (1.5 g/m2 for age > 50 years) intravenously over 1 hour every 12 hours for 12 doses and idarubicin 12 mg/m2 over 30 minutes on days 2, 3, and 4 of cytarabine, followed by 10 micrograms/kg granulocyte colony-stimulating factor subcutaneously daily until the absolute neutrophil count increased to > or = 5.0 x 10(9)/L on 2 consecutive days. Twenty-seven patients received all the planned doses of chemotherapy. The complete remission (CR) rate to a single course of therapy was 65% in 20 patients with de novo AML (median age, 60.5 years; age range, 26 to 78 years); for those aged less than 60 and > or = 60 years, the CR rates were 90% and 40%, respectively. In contrast, only two of 10 patients with secondary AML (median age, 68 years; age range, 35 to 77 years) achieved a CR. The median time from initiation of chemotherapy to recovery of 0.5 x 10(9)/L neutrophils in de novo AML patients achieving CR was 20 days (range, 18 to 23 days). Median times to last platelet transfusion and to 100 x 10(9)/L platelet count were 23 days (range, 18 to 41 days) and 28 days (range, 24 to 97 days), respectively. The major nonhematologic toxicity was transient hyperbilirubinemia, which was observed in 64% of patients. Reversible cerebellar toxicity was seen in three patients. Thus, idarubicin at full dose (12 mg/m2 x 3 days) may be safely administered with high-dose cytarabine, even in elderly patients. The use of granulocyte colony-stimulating factor is associated with rapid neutrophil recovery without obvious toxicity. The CR rate for de novo AML patients treated with a single course of high-dose cytarabine, idarubicin, and granulocyte colony-stimulating factor is at least comparable to CR rates achieved with standard-dose cytarabine and anthracycline regimens. The response of secondary AML patients remains inferior.

Acute Disease↗

The role of intensive remission induction and consolidation therapy in patients with acute myeloid leukaemia.

Sixty-one patients with AML, 59 adults and two children, were treated with intensive remission induction and consolidation therapy. The median age was 36 years. Forty-four (72%) patients entered complete remission (CR); 11 patients received a bone marrow transplantation. The median survival of complete remitters was 26.5 months; the probability of remaining in CR at respectively 1 and 2 years was 75% and 62%. The only factor significantly correlated with the outcome of remission induction, survival and duration of CR was age. Patients less than 30 years fared significantly better than those 30 years or older; no difference in outcome was observed between patients aged 30-50 and those over 50 years. In patients less than 30 years the CR rate was 95%; 75% of them were still alive at 2 years and only one (5%) has relapsed. In contrast, in patients 30 years or older the CR rate was 60% and the median survival only 11.5 months, 50% of the complete remitters in this age group have relapsed. Morbidity from intensive consolidation therapy was considerable; more than 50% of consolidation courses were complicated by high fever, needing urgent admission; only four (3%) courses had a fatal event. It is concluded that intensive consolidation therapy may be considered as a major advance in the treatment of younger patients with AML, while its role in older individuals remains questionable. A possible explanation for the completely different outcome in younger and older patients with AML is discussed.

Adolescent↗

[The successful surgery of lung abscess formed from pulmonary aspergilloma in a patient with recurrence of acute promyelocytic leukemia during remission induction therapy].

This is a case report of a successful case of surgical treatment of a lung abscess formed from pulmonary aspergilloma in a patient with a recurrence of acute promyelocytic leukemia during remission induction therapy. A 39 year-old woman was admitted to our hospital for remission induction therapy of a recurrence of acute promyelocytic leukemia. We were successful in bringing her to a state of complete remission by a therapy of a intermediate-dose of Ara-C. Pulmonary aspergilloma was formed in the right lung during therapy. We performed transbronchial infusions to Amphotericin B which dissipated the fungus ball. However, a lung abscess was formed. We needed radical therapy, and there were no complications in the following surgical treatment. Recently, along with the tendency for the use of stronger chemotherapy treatment regimes for acute leukemia, there has been an increase of the number of mycosis cases such as the pulmonary aspergilloma case reported here. Accordingly, surgical treatment is becoming more and more a matter of necessity in the clinical course of leukemia patients.

Adult↗

Low-dose cytarabine maintenance therapy vs observation after remission induction in advanced acute myeloid leukemia: an Eastern Cooperative Oncology Group Trial (E5483).

The Eastern Cooperative Oncology Group (ECOG) conducted a prospective phase III study in patients with relapsed/refractory acute myeloid leukemia (AML) to evaluate whether administration of repeated courses of low-dose cytarabine (LDAC) maintenance therapy after induction of complete remission in advanced AML would improve disease-free and overall survival. Patients with AML in second/later relapse or refractory disease were first treated with a combination of high-dose cytarabine and amsacrine. Those who achieved complete remission were then randomized to observation or to receive LDAC, 10 mg/m2 subcutaneously twice a day x2 21 days every 2 months until relapse occurred. Of 86 patients eligible for randomization, 41 patients were assigned to receive LDAC and 45 patients to observation. The median disease-free survival was 7.4 months for patients assigned to LDAC compared to 3.3 months for patients receiving no additional therapy, P= 0.084. The median survival from randomization was 10.9 months and 7.0 months for patients receiving LDAC maintenance chemotherapy and observation, respectively (P= 0.615). The data from this study suggest that LDAC maintenance therapy given to patients with advanced AML who achieve complete remission can increase disease-free survival compared to observation, but does not improve overall survival. Nevertheless, because of the ineffectiveness and toxicity of intensive post-remission chemotherapy in this circumstance, LDAC maintenance therapy, a tolerable outpatient regimen, offers the potential for improved quality of life.

Acute Disease↗

Improved remission induction rate with D-ZAPO but unimproved remission duration with addition of immunotherapy to chemotherapy in previously untreated children with ANLL.

In 163 children with acute nonlymphocytic leukemia (ANLL), a D-ZAPO induction program consisting of daunomycin, 5-azacytidine, cytosine arabinoside, prednisone, and vincristine resulted in a remission rate of 71.8%. Immunologic therapy was employed during maintenance with the aim of prolonging remission and improving survival. The administration of immunotherapy consisting of a mixture of bacillus Calmette-Guérin (BCG) and allogenic acute myelomonocytic leukemic cells injected intradermally on day 14 of each of the first three monthly cycles of 6-thioguanine for ten days, 5-azacytidine and cytosine arabinoside for four days, and vincristine for one day did not improve remission duration or survival compared to that due to chemotherapy alone. Important prognostic factors identified in this study included a remission induction rate significantly better for females than males (P = 0.04), for children between the ages of 5 and 10 years compared to those greater than this age group (P = 0.01), and a prolonged remission duration (P = 0.04), and survival (P less than 0.01) for patients with initial white blood counts of less than 20 x 10(9)/liter.

Adolescent↗