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Biomedical subjects

W Hiddemann

Publications and source records attributed to W Hiddemann.

At least 19 recordsLinked to original sources

Treatment of relapsed or refractory adult acute lymphocytic leukemia.

Sixty-six adult patients were treated for relapsing or refractory acute lymphocytic leukemia (ALL). The induction treatment consisted in a (1) first phase with vindesine 3 mg/m2 intravenously (IV) on days 1, 8, and 15; daunorubicin 45 mg/m2 IV on days 1, 8, and 15; erwinia-asparaginase 10,000 U/m2 IV on days 7, 8, 14, and 15; and prednisone 60 mg/m2 orally on days 1 to 21 and a (2) second phase with cytarabine 3000 mg/m2 as a 3-hour infusion two times a day on days 1 to 4 (in patients greater than 50 years of age we used 1000 mg/m2), and etoposide 100 mg/m2 IV on days 1 to 5. Side effects of induction Phase I were predominantly hematologic with subsequent infections. In Phase II, some patients additionally had gastrointestinal, cutaneous, ocular, and hepatic toxicity. Five patients died during Phase I and another died during Phase II. Five of these patients had T-cell ALL. Thirty-four (64%) of 54 patients in their first relapse had a complete remission (CR) with a median disease-free survival (DFS) of 2.9 months. The median overall survival (OAS) was 6.6 months. Seven of 12 patients with primary refractory disease, a second relapse, or relapse after bone marrow transplantation (BMT) had a CR. The CR rate and survival after first relapse was significantly better in patients with a preceding CR of more than 18 months compared with those with a shorter preceding remission. The leukocyte count was a second significant but not independent risk factor. There was a negative correlation between the leukocyte count and the duration of the preceding CR. The duration of the preceding CR was the major prognostic factor for survival in multivariate analysis. Twenty-two patients received BMT. None of nine patients with autologous BMT is alive and disease-free; 5 of 13 who underwent allogeneic BMT are. It was concluded that this treatment efficiently induced remission with tolerable toxicity. The remission duration should be improved by optimized consolidation treatment.

Adult

Prednimustine and mitoxantrone (PmM) in patients with low-grade malignant non-Hodgkin's lymphoma (NHL), chronic lymphocytic leukemia (CLL), and prolymphocytic leukemia (PLL).

Thirty-five patients with a mean age of 60.6 years (44-78 years, 22 male, 13 female) with advanced low-grade non-Hodgkin's lymphoma (NHL), chronic lymphocytic leukemia (CLL), or prolymphocytic leukemia (PLL) were treated every 4 weeks with prednimustine 100 mg/m2 p.o. d 1-d 5 and mitoxantrone 8 mg/m2 i.v. d 1 and d 2. Seven patients had CLL, one lymphocytic NHL, two PLL, 13 immunocytoma, nine centroblastic/centrocytic NHL, and three centrocytic NHL. Twenty-five patients were pretreated. The subjective toxicity of the treatment was mild, with no WHO grade-3 alopecia, polyneuropathy, cardiotoxicity, mucositis, nausea, or vomiting. Hematologic side effects with WHO grade-4 granulopenia and thrombopenia were experienced by 26% and 23% of the patients, respectively. The overall response rate (CR+PR) was 72% for lymphoma patients and 37% for CLL patients, with a median remission duration of 14.6 months. The maximum response was achieved after a median of two treatment courses. Prednimustine with mitoxantrone is a subjectively well tolerated treatment for low-grade malignant NHL, to be further evaluated in phase-III studies. The regimen may shorten the duration of treatment, saving time-consuming out-patient visits and costs.

Adult

Endotoxin concentration in neutropenic patients with suspected gram-negative sepsis: correlation with clinical outcome and determination of anti-endotoxin core antibodies during therapy with polyclonal immunoglobulin M-enriched immunoglobulins.

We carried out a study in patients with severe neutropenia from hematologic malignancy and suspected gram-negative sepsis to evaluate the clinical significance of endotoxin concentrations in plasma before and during a therapeutic intervention with a human polyclonal immunoglobulin M (IgM)-enriched immunoglobulin preparation (Pentaglobin; Biotest, Dreieich, Germany). Twenty-one patients with acute leukemia or non-Hodgkin's lymphoma entered the study upon the development of clinical signs of gram-negative sepsis and received the IgM-enriched immunoglobulin preparation every 6 h for 3 days (total dose, 1.3 liter with 7.8 g of IgM, 7.8 g of IgA, and 49.4 g of IgG), in addition to standardized antibiotic treatment. Concentrations of endotoxin and IgM and IgG antibodies against lipid A and Re lipopolysaccharide (LPS) in plasma were determined by a modified chromogenic Limulus amebocyte lysate test and semiquantitative enzyme linked immunosorbent assay, respectively, before each immunoglobulin infusion and during the following 25 days. Seventeen patients were endotoxin positive; in five of these patients, gram-negative infection was confirmed by microbiologic findings. Prior to therapy, endotoxemia correlated significantly with the occurrence of fever, and a quantitative correlation between the endotoxin concentration and body temperature was found during the individual course of infection in 8 of the 17 patients. Overall mortality from endotoxin-positive sepsis was 41% (7 of 17) and 64% (7 of 11) in patients with symptoms of septic shock. Nonsurvivors had significantly higher maximum concentration of endotoxin in plasma compared with those of survivors at the first study day (median of 126 versus 34 pg/ml; P < 0.05) and during the whole septic episode (median of 126 versus 61 pg/ml; P < 0.05). In survivors, immunoglobulin therapy resulted in a significant decrease in endotoxin levels in plasma within the initial 18-h treatment period, from a pretreatment median value of 28 pg/ml to a value of 8 pg/ml (P< 0.05). In the seven patients who died from uncontrollable infection, no effect of therapy on endotoxin levels in plasma was observed. IgM and IgG antibodies against lipid A and Re LPS increased significantly under immunoglobulin treatment, with significant correlations between antibodies against lipid A and Re LPS. These data strongly suggest a prognostic significance of the endotoxin levels in plasma and a potential effect of treatment with a polyclonal IgM-enriched immunoglobulin preparation. Further studies are needed to substantiate these findings and to assess the impact on the clinical course by way of a prospective placebo-controlled clinical trial.

Adult

Flow cytometric characterization of acute myeloid leukemia: IV. Comparison to the differentiation pathway of normal hematopoietic progenitor cells.

Gradual increase of CD38 on cells expressing CD34 characterizes the early cell differentiation pathway of normal human hematopoietic progenitors. In this study the coordinated expression pattern of CD34 and CD38 was assessed on leukemic blasts from bone marrow aspirates of 95 patients with newly diagnosed acute myeloid leukemia (AML). Expression was divided into six categories analogous to the differentiation pathway of normal bone marrow. The CD38 antigen was expressed on the leukemic cells of all patients and CD34+ leukemic cells were found in 79 patients (83%). In 93 patients, the leukemic cells were found along the differentiation pathway defined by CD34 and CD38. In 33 of the 93 patients, a part of the CD34+ cells did not express the CD38 antigen (categories 1 and 2). In another 33 patients, all CD34+ cells expressed CD38 (categories 3 and 4). In the remaining 27 patients, only cells were found which dimly expressed CD34 or did not express CD34 (categories 5 and 6). Of the 93 patients, 88 were treated with intensive chemotherapy according to the protocol of the German AML Cooperative Group. Of these, 21 died early and were not evaluable for treatment response. Complete remission was achieved in 14 of 22 patients (64%) in categories 1 and 2, in 19 of 26 patients (73%) in categories 3 and 4, and in 18 of 19 patients (95%) in categories 5 and 6. The event-free survival was significantly longer in patients of categories 5 and 6 compared to patients in categories 1 and 2 (p less than 0.01) and categories 3 and 4 (p less than 0.05), respectively. We conclude that in the majority of AML patients the immunophenotype of leukemic cells follows the early cell differentiation pathways defined by coordinated expression of CD34 and CD38 similar to that of normal hematopoietic progenitors. The presence of cells in the late cell differentiation stages (CD34+/-, CD38 /+) identifies patients with a higher complete remission rate and longer complete remission duration.

ADP-ribosyl Cyclase

Combined effect of very early intensification and prolonged post-remission chemotherapy in patients with AML.

The study combines the effects of prolonged postremission chemotherapy with that of very early intensification. 900 adult patients at all ages with newly diagnosed AML uniformly received TAD for induction and consolidation followed by monthly myelosuppressive maintenance for 3 years. In patients of 60+ years with persistent bone marrow blasts a second TAD course was given. In all patients of less than 60 years a second induction course started on day 21 even in aplasia with no blasts. Second induction was randomly either TAD or HAM. In the younger age group 69% attained CR and similar in the two arms the CR rate after 5 years is 35%. Including the 50% patients attaining CR in the higher age group the CR rate after 5 years is 32%. In 40 patients receiving allogeneic BMT and 21 patients receiving autologous BMT in first CR relapse free survival is similar to that from chemotherapy alone in a matched pair analysis. We conclude that age adapted very early intensification followed by prolonged postremission chemotherapy represents a therapeutic progress.

Adolescent

Differences in the intracellular pharmacokinetics of cytosine arabinoside (AraC) between circulating leukemic blasts and normal mononuclear blood cells.

The increasing insights into the pharmacokinetics and the metabolism of cytosine arabinoside (AraC) have improved the rationale for its application in leukemia therapy and have led to a pharmacologically directed design of antileukemic treatment. The current study aims at adding to this approach by detecting differences in the intracellular metabolism of AraC 5'-triphosphate (AraCTP) between leukemic and normal mononuclear blood cells. Measurements of intracellular AraCTP levels were complemented by determinations of plasma AraC and AraU concentrations and were performed in 32 patients with acute myeloid leukemia undergoing combination therapy including either conventional (100 mg/m2 daily) or high-dose (1.0 or 3.0 g/m2 twice daily) AraC. Plasma AraC concentration showed a linear relationship to the applied AraC dose but did not correlate with intracellular AraCTP levels. During conventional-dose AraC therapy little interpatient variation was observed in AraCTP retention times in leukemic blasts from 5 patients with t1/2 values ranging from 1.70 to 2.50 h (median 2.14 h). In all cases AraCTP levels declined rapidly after the end of the AraC infusion. Substantial differences in AraCTP retention times were revealed, however, during 3 h infusions of either 1.0 or 3.0 g/m2 AraC in leukemic blasts from 10 patients with t1/2 values between 1.60 to 7.63 h (median 2.42 h). In addition, AraCTP levels declined in only one patient by > 10% within the first hour after the end of therapy and remained constant or even increased up to 1.5-fold in a post-treatment period of 1 to 2.5 h in the other nine cases. In contrast, AraCTP retention times were relatively uniform in normal mononuclear blood cells from 11 patients with t1/2 values of 3.34 to 5.29 h (median 3.85 h). More importantly, AraCTP levels dropped by > 10% within the first hour after the end of the high-dose AraC infusion in eight of 11 cases. A post-therapeutic increase > 10% was not observed in any patient. Similar findings emerged after in vitro exposure of normal bone marrow cells from six healthy volunteers to 20 mumol/l AraC for 3 h revealing a > 10% decrease of intracellular AraCTP within the first post-treatment hour in all cases with AraCTP retention times of 2.29 to 8.63 h (median 3.20 h). These differences in AraCTP pharmacokinetics between leukemic and normal blood cells may provide the basis for a modified timing of AraC administration with the aim of selectively maintaining cytotoxic AraCTP levels in leukemic blasts while allowing an intermittent drop of AraCTP levels in normal cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Acute Disease

Flow cytometric characterization of acute myeloid leukemia. Part II. Phenotypic heterogeneity at diagnosis.

The frequency and distribution of aberrant antigen expression are analyzed on bone marrow aspirates from 80 patients with newly diagnosed acute myeloid leukemia (AML) by multidimensional flow cytometry. Parameters examined are the light scatter profile of the leukemic cells and the correlative expression of different combinations of the CD2, 4, 5, 7, 11b, 11c, 13, 14, 15, 16, 33, 34, 38, and HLA-DR antigens. Antigen expression on leukemic cells in bone marrow is described by characteristic antigen expression patterns describing: (i) the percentage of cells expressing the antigen; (ii) the antigen density; and (iii) the distribution of the antigen on the leukemic cells. Typically the non-myeloid antigens are homogeneously expressed by the leukemic cells, whereas the myeloid associated antigen CD11b, CD11c, CD14, and CD15 are heterogeneously expressed. Comparison of the antigenic profiles of 80 bone marrow aspirates revealed an extreme interclonal heterogeneity. Comparison of the antigen expression patterns found in AML patients with the antigen expression in normal bone marrow revealed four patterns of aberrant antigen expression in AML: (i) expression of nonmyeloid antigens (i.e. CD2, CD5, and CD7 were present in 57, 60, and 37% of the patients, respectively); (ii) asynchronous expression of myeloid associated antigens (i.e. co-expression of CD34 and CD15 in 25% of the patients and expression of CD16 on immature myeloid cells in 15% of the cases); (iii) over-expression of myeloid associated antigens (e.g. CD34 in 16% of the cases and CD14 on neutrophilic cells in 19% of all patients); and (iv) absence of expression of myeloid associated antigens (e.g. lack of CD33 in 21% of the cases and lack of both CD11b and CD15 in 6% of all patients. Multidimensional flow cytometric analysis of bone marrow aspirates of AML patients disclosed that the leukemic cells of each AML patient had a unique antigenic profile and could be discriminated from their normal counterparts based on aberrant antigen expression and typical light scatter profiles. The ability to distinguish leukemic cells from normal cells allows the detection of residual leukemic cells during and after chemotherapy.

Acute Disease

Granulocyte-macrophage colony-stimulating factor and interleukin-3 enhance the incorporation of cytosine arabinoside into the DNA of leukemic blasts and the cytotoxic effect on clonogenic cells from patients with acute myeloid leukemia.

In the present study the effects of the 48-hour administration of granulocyte-macrophage colony-stimulating factor (GM-CSF) (100 U/mL) or interleukin-3 (IL-3) (100 U/mL) on the proliferative activity of leukemic cells and on the intracellular metabolism and cytotoxic efficacy of a subsequent 12-hour application of cytosine arabinoside (ara-C) at doses of 0.1, 1.0, 10.0, and 100.0 mumol/L were evaluated on bone marrow cells from 17 patients with acute myeloid leukemia. After GM-CSF or IL-3, a 1.2- to 2.4-fold increase in S-phase cells was observed in nine of 14 GM-CSF and seven of 11 IL-3 cases. 3H-Cytosine arabinoside incorporation into the DNA was enhanced 1.33- to 18.3-fold over respective controls in 14 of 17 patients. While in control specimens are ara-C dose-dependent increase in 3H-ara-C uptake was accompanied by a corresponding rise in intracellular ara-C-5' triphosphate (ara-CTP) levels, ara-CTP concentrations were not increased after GM-CSF or IL-3 exposure, resulting in a higher ara-C to ara-CTP ratio over controls. This finding may be explained by a stimulatory effect of GM-CSF and IL-3 on ara-C phosphorylating enzymes and a more rapid incorporation of ara-CTP into the DNA of leukemic blasts. These effects translated into a 2.2- to 229.0-fold increase in the cytotoxic activity of ara-C against clonogenic leukemic cells after GM-CSF or IL-3 pretreatment. Hence, GM-CSF and IL-3 enhance the intracellular metabolism of ara-C and its incorporation into the DNA of leukemic cells leading to a higher antileukemic activity of ara-C on clonogenic leukemic cells (CFU-L).

Acute Disease

Interferon alpha-2b, 5-fluorouracil, and folinic acid combination therapy in advanced colorectal cancer: preliminary results of a phase I/II trial.

We conducted a phase I/II trial of 5-fluorouracil (5-FU)/folinic acid (FA) and alpha-2b interferon (IFN) in 43 previously untreated patients with measurable metastatic colorectal cancer. Patients had disease progression prior to therapy consistent of 5-FU 500 mg/m2 (level A) or 600 mg/m2 (level B) as starting dose administered as a 2-hour infusion, FA 200 mg/m2, and alpha-2b IFN 5MU/m2 subcutaneously. All drugs were given on days 1 to 5 and cycles were repeated after 3 to 4 weeks. The aim of the study was to define the maximal tolerable dose (MTD) of 5-FU for this schedule. In the absence of toxicity above MTD, defined as diarrhea and mucositis of World Health Organization grade 2 and leukopenia of World Health Organization, grade 3 5-FU was increased in increments of 100 mg/m2 for further cycles. Twenty-four patients were started on level A; 18 were started on level B. Forty-two patients were evaluable for toxicity, 32 for response. Three of 32 patients achieved a partial response; in 22 of 32 patients, tumor stabilization occurred. Forty percent of patients started on level A developed grade 2 diarrhea; 28% of patients developed grade 2 or 3 mucositis. Of 18 patients on level B, two patients experienced grade 4 mucositis (11%) and grade 3 or 4 diarrhea (11%). One drug-related death in the presence of sepsis occurred. Due to 11% of patients with grade 4 toxicity when started on 600 mg/m2 5-FU and 40% of patients with grade 2 diarrhea when started on level A, MTD as starting dose for 5-FU is 500 mg/m2 as a 2-hour infusion when used in combination with FA and IFN on a day 1 to 5 active schedule. We observed a wide range of 5-FU dose tolerated by individual patients. While some patients experienced severe, mainly gastrointestinal, toxicity on lower levels of 5-FU, others tolerated much higher 5-FU doses (11 patients, 700 mg/m2; 5 patients, 800 mg/m2; and one patient, 900 mg/m2). Our data suggest that double modulation of 5-FU by FA and IFN may not be superior to modulation of 5-FU with either drug alone.

Adult

Interleukin-2 followed by fluorouracil and folinic acid in refractory colorectal cancer--results of a clinical phase II study.

In a clinical phase II study, 23 patients with progressive metastatic colorectal cancer and failure after first-line chemotherapy with fluorouracil (5-FU) and folinic acid (FA) were treated with a 5-day continuous infusion of recombinant interleukin-2 (IL-2), 3 x 10(6) cetus U/m2/d, followed after a rest period of 2 days by 5-FU, 600 mg/m2/d, and FA, 300 mg/m2/d over an additional 3 days. After two to four treatment cycles, eight of 22 evaluable patients (36%) revealed antitumor responses, with three partial remissions and five minor responses or stable disease. Side effects consisted most frequently of fever, nausea and vomiting, an elevation of liver enzymes, hypotension, and skin toxicity, and required a 50% reduction of IL-2 dose in 17 of 71 treatment courses (24%). In four of the 23 patients (18%), treatment had to be stopped completely. These data indicate a significant antitumor activity of IL-2 combined with 5-FU/FA therapy in chemotherapy-resistant colorectal cancer. Hence, in spite of a substantial treatment-related toxicity, further studies are warranted to substantiate these findings and to elucidate the underlying mechanisms of the IL-2-5-FU/FA combination therapy.

Adult

Longterm effects of prolonged maintenance and of very early intensification chemotherapy in AML: data from AMLCG.

In order to further improve the cure rate in AML we investigated the effect of more chemotherapy--in terms of its intensity and its duration--in 2 studies. In our 1981 study patients received TAD 1-2 courses for induction, 1 course for consolidation and randomly no further treatment or monthly myelosuppressive maintenance for 3 years. Evaluating 213 responders remission duration was clearly longer in the maintenance group with 24% CCR after 5 and 10 years. In our 1985 study the same successful strategy was further intensified by a second induction course given regardless of response to the first course to all patients up to 60 years of age while older patients received standard induction as before. This age-adapted concept resulted in a further increase of 5 years CCR in the 461 responders to as much as 34% not achieved for unselected patients in other multicenter trials. 20 patients receiving auto-BMT in first CR show the same relapse free survival as their counterparts receiving chemotherapy according to the 1985 protocol in a matched-pair analysis. We conclude that both very early intensification and prolonged maintenance contribute to a higher cure rate that is not further improved even by a maximum intensity short-term treatment. The limits of chemotherapy in AML may be overcome by modulating its myelotoxicity and antileukemic potency using GM-CSF as shown in 2 studies of our group.

Acute Disease

Intracellular cytosine arabinoside accumulation and cytosine arabinoside triphosphate formation in leukemic blast cells is inhibited by etoposide and teniposide.

Cytosine arabinoside (ara-C) is one of the most active compounds in the treatment of acute leukemias. In the majority of current protocols ara-C is combined with other cytotoxic agents in an attempt to increase antileukemic activity. The present study investigated the impact of etoposide, teniposide, amsacrine, mitoxantrone, anthracyclines, and asparaginase on the cellular accumulation of ara-C and its intracellular metabolism in order to provide a better rationale for combination therapy. Intracellular accumulation and phosphorylation of ara-C were determined in peripheral blast cells from twenty patients with acute leukemias after exposure to 1 and 10 mumol/l ara-C alone and after preincubation with 1 and 10 micrograms/ml etoposide, 10 and 100 micrograms/ml teniposide, 10 mumol/l amsacrine, 500 ng/ml mitoxantrone (or daunorubicin or doxorubicin) or 10 mumol/l asparaginase. Ara-C accumulation at 10 mumol/l was decreased by 1 microgram/ml etoposide (67 +/- 18% of control), 10 micrograms/ml etoposide (30 +/- 22%), 10 micrograms/ml teniposide (12 +/- 23%), 100 micrograms/ml teniposide (10 +/- 18%), and amsacrine (51 +/- 21%). Intracellular ara-CTP formation was determined at an extracellular concentration of 10 mumol/l and preincubation with these drugs. The intracellular formation of ara-CTP was decreased by 1 microgram/ml etoposide (77 +/- 15% of control), 10 micrograms/ml etoposide (32 +/- 22%), 10 micrograms/ml teniposide (10 +/- 9%), 100 micrograms/ml teniposide (0 +/- 0%), but not by amsacrine. These data indicate that prior exposure to etoposide and teniposide influence ara-C metabolism and possibly cytotoxicity, and thus should not immediately precede ara-C administration in clinical trials.

Acute Disease

Recombinant human granulocyte-macrophage colony-stimulating factor after chemotherapy in patients with acute myeloid leukemia at higher age or after relapse.

To reduce critical neutropenia after chemotherapy (CT) for acute myeloid leukemia (AML) we administered recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) to patients over the age of 65 years with newly diagnosed AML and to patients with early or second relapse. CT was 9-day 6-thioguanine, ara-C, and daunorubicin (TAD9) in newly diagnosed AML and sequential high-dose ara-C and mitoxantrone (S-HAM) for relapse. In patients whose bone marrow was free from blasts a continuous intravenous infusion of GM-CSF 250 micrograms/m2/d started on day 4 after CT. Thirty-six patients entered the study and 30 of them did receive GM-CSF. For comparison, a historical control group of 56 patients was used. Complete remission rate was 50% (18 of 36) versus 32% in controls (P = .09), and early death rate was 14% versus 39% (P = .009). Treatment with GM-CSF was not associated with major adverse events. Two patients showed a marked leukemic regrowth that was completely reversible in one patient and appeared to be GM-CSF independent in the other patient. Remission duration does not seem to be reduced after GM-CSF. Under GM-CSF the blood neutrophils recovered 6 and 9 days earlier in the TAD9 (P = .009) and S-HAM (P = .043) groups associated with a rapid clearance of infections in most patients. We conclude that GM-CSF was of therapeutic benefit to our patients and this provides a basis for larger controlled trials.

Acute Disease

Antifungal treatment by amphotericin B and 5-fluorocytosine delays the recovery of normal hematopoietic cells after intensive cytostatic therapy for acute myeloid leukemia.

Systemic fungal infections are recognized at increasing frequency during the course of intensive therapy for acute leukemias and require parenteral antifungal treatment mostly by amphotericin B (ampho B) alone or in combination with 5-Fluorocytosine (5-FC). Because of the potential myelosuppressive side effects of 5-FC it was the aim of the current study to evaluate the recovery of hematopoietic cells after intensive antileukemic therapy in patients receiving ampho B and 5-FC treatment for proven or suspected systemic fungal infections. The study population comprised 87 patients who were treated by standard chemotherapy for acute myeloid leukemia (AML) at first diagnosis or relapse. Twenty-two patients underwent systemic antifungal therapy consisting of ampho B (3 to 10 mg/kg/d) and 5-FC (150 mg/kg/d) for 3 to 33 days (median, 12 days). The remaining 65 patients served as controls to assess the hematologic recovery time (TR) as defined by the interval between the onset of chemotherapy and the post-treatment rise of granulocyte levels to greater than 500 cmm and thrombocyte levels to greater than 20,000 cmm. In patients receiving antifungal therapy, a significant prolongation of TR was observed with a median TR of 29 days compared with a median TR of 24 days (P = 0.0016) for the control group. No correlation was found between TR and the total dose of either ampho B or 5-FC or the type of antileukemic regimen. A possibly direct myelosuppressive effect of a fungal infection was unlikely to explain the findings because the ampho B/5-FC treatment was started in patients with proven or only suspected fungal infections, causing a similar delay of TR in both groups. The present data strongly suggest a myelosuppressive effect of ampho B/5-FC antifungal treatment in patients after intensive chemotherapy for acute leukemias.

Acute Disease

Cytosine arabinoside in the treatment of acute myeloid leukemia: the role and place of high-dose regimens.

Cytosine arabinoside (AraC) is one of the most active drugs in the treatment of acute leukemias and is widely applied at all phases of therapy. In spite of extensive clinical and experimental investigations, its intracellular metabolism and especially its mechanism of action are still not fully elucidated. Controversy also continues about the most appropriate way and dose of administration; which differs by more than 100 fold in clinical studies ranging from low-dose, over standard and intermediate dose regimens, to high-dose protocols. The present review is focused on the role and place of high-dose AraC treatment in acute myeloid leukemia (AML). Based on available clinical and experimental data, the following conclusions can be drawn: Not considering possible but not yet demonstrated beneficial long-term effects, the incorporation of high-dose AraC into induction therapy has not resulted in an improvement of overall remission rate, with the possible exception of patients with slow initial cytoreduction after a first course of conventional treatment. Promising results, however, emerge from high-dose AraC-based consolidation protocols, which need confirmation in prospectively randomized comparative trials. In relapsed and refractory AML, higher than conventional doses undoubtedly enhance the efficacy of AraC salvage therapy. The question of whether the antileukemic activity of intermediate-dose regimens with 500-1,000 mg/m2 AraC is equivalent to that of high-dose protocols applying 2,000-3,000 mg/m2 AraC, however, remains open but may soon be answered by ongoing controlled clinical and pharmacologic investigations.

Cytarabine