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Oral idarubicin pharmacokinetics--correlation of trough level with idarubicin area under curve.

Idarubicin is the first anthracycline that can be successfully administered via the oral route and thus may facilitate antineoplastic chemotherapy at an improved quality of life. These perspectives are somewhat hampered by the large variation in bioavailability between individual patients and the obvious requirement to monitor plasma concentration and area-under the curve values (AUC) for an appropriate adjustment of idarubicin dose. In this study we describe the pharmacokinetics of idarubicin and its main metabolite idarubicin in 12 patients after oral application of 20 mg/m2 idarubicin on 3 consecutive days and demonstrate that the 24-h trough levels shows high correlation with AUC and may thus allow a rapid and easy determination of individual drug concentrations and an appropriate dose adjustment. The average terminal half-life was 30.5h for idarubicin and 66.9 h for idarubicinol. The AUC for idarubicin and its main metabolite idarubicinol revealed a substantial interpatient variation with AUC values ranging from 25.7 to 114 ng x h/ml (average 58.1 ng x h/ml) for idarubicin and from 109.4 - 445.2 ng x h/ml (average 287.3 ng x h/ml) for idarubicinol. However, the ratio of idarubicin/idarubicinol differed only two-fold from 1:3.7 to 1:7.7 with an average of 1:5.1. Both idarubicin and idarubicinol concentrations were highly reproducible, however, upon measurements after repeated applications within individual patients. Moreover, idarubicinol and idarubicin AUCs showed a good correlation with r=0.78, indicating that the interindividual variations of idarubicin AUC reflects differences in absorptions rather than metabolism. In order to describe the interindividual bioavailability of idarubicin - represented by AUC - measurement of a single data point with a high correlation with the AUC would be ideal. Our study demonstrates that the 24-h trough level shows such an excellent correlation (r=0.96) with AUC, making it the perfect candidate for fast estimates of the individual bioavailability in a given patient. On this basis, the longitudinal measurement of the 24-h trough level may allow the assessment of the impact of interindividual variations in AUC of clinical outcome and toxicity.

Acute Disease↗

Oral idarubicin pharmacokinetics--correlation of trough level with idarubicin area under curve.

Idarubicin is the first anthracycline that can be successfully administered via the oral route and thus may facilitate antineoplastic chemotherapy in an improved quality of life. These perspectives are somewhat hampered by the large variation in bioavailability between individual patients and the obvious requirement to monitor plasma concentration and area-under-the-curve values (AUC) for an appropriate adjustment of idarubicin dose. In this study we describe the pharmacokinetics of idarubicin and its main metabolite idarubicinol in 12 patients after oral application of 20 mg/m2 idarubicin on 3 consecutive days and demonstrate that the 24 h trough levels show a high correlation with AUC and may thus allow a rapid and easy determination of individual drug concentrations and an appropriate dose adjustment. The average terminal half-life was 30.5 h for idarubicin and 66.9 h for idarubicinol. The AUC for idarubicin and its main metabolite idarubicinol revealed a substantial interpatient variation with AUC values ranging from 25.7 to 114 ng x h/ml (average 58.1 ng x h/ml) for idarubicin and from 109.4-445.2 ng x h/ml (average 287.3 ng x h/ml) for idarubicinol. However, the ratio of idarubicin/idarubicinol differed only two folds from 1:3.7 to 1:7.7 with an average of 1:5.1. Both idarubicin and idarubicinol concentrations were highly reproducible, however, upon measurements after repeated applications within individual patients. Moreover, idarubicinol and idarubicin AUCs showed a good correlation with r = 0.78, indicating that the interindividual variation of idarubicin AUC reflects differences in absorption rather than in metabolism. In order to describe the interindividual bioavailability of idarubicin - represented by the respective AUC - measurement of a single data point with a high correlation with the AUC would be ideal. Our study demonstrates that the 24 h trough level shows such an excellent correlation (r = 0.96) with AUC, making it the perfect candidate for fast estimates of the individual bioavailability in a given patient. On this basis, the longitudinal measurement of the 24 h trough level may allow assessment of the impact of interindividual variations in AUC on clinical outcome and toxicity.

Administration, Oral↗

[A pharmacokinetic study of idarubicin hydrochloride, a new anthracycline anti-tumor drug, in patients with acute leukemia. Idarubicin Study Group].

In 21 patients with acute leukemia, idarubicin hydrochloride, a new anthracycline antitumor drug, was administered i.v. for 3 consecutive days to study the pharmacokinetics. The terminal half-lives (t1/2) of the drug in these patients were 6.40-15.10 hrs. in plasma, and 8.09-16.34 hrs. in blood cells. Its main metabolite idarubicinol remained longer in blood; t1/2 values were 43.46-51.01 hrs. in plasma and 36.61-54.70 hrs. in blood cells. After 2-4 hrs, the concentrations of idarubicinol in both plasma and blood cells exceeded those of idarubicin. The AUCs of idarubicinol in plasma were 5.16-8.36 times higher than those of idarubicin, and AUCs of idarubicinol in blood cells were 2.05-4.57 times higher than those of idarubicin. Among the doses ranged from 5 to 15 mg/m2/day, the AUCs of both idarubicin and idarubicinol increased dose-dependently. In 2-compartment multiple dose models, plasma t1/2 alpha and t1/2 beta of idarubicin were 0.25 +/- 0.13 hrs. and 9.4 +/- 3.4 hrs., respectively. The steady-state volume of distribution (Vdss) was 934.9 +/- 370.7 l/m2, and the plasma clearance was 82.3 +/- 29.7 l/hr/m2. The urinary excretion of the drug was comparatively low. Until 7 days after administration, the mean cumulative urinary recovery rates of idarubicin and idarubicinol were 2.04% and 11.53%, respectively, and 13.57% in total.

Acute Disease↗

Idarubicin in patients with diffuse large cell lymphomas: a randomized trial comparing VACOP-B (A = doxorubicin) vs VICOP-B (I = idarubicin).

BACKGROUND AND OBJECTIVE: Idarubicin is an effective drug in acute leukemia but its use in non-Hodgkin lymphomas (NHLs) is not yet well established. We evaluated its efficacy in patients with diffuse large cell lymphoma (DLCL) by means of a randomized trial comparing two 12-week regimens (VACOP-B and VICOP-B) which differed only in the anthracycline drug used (doxorubicin vs idarubicin). METHODS: From January 1992 to December 1994, 104 patients aged less than 65 years with de novo advanced stage DLCL were enrolled. Fifty-two patients were treated with VACOP-B (doxorubicin 50 mg/sqm) and 52 with VICOP-B (idarubicin initially 8 mg/sqm and thereafter 10 mg/sqm). RESULTS: Clinical characteristics of the two groups were not significantly different. One HBsAg+ patient died of hepatic necrosis in the VICOP-B arm, and severe (WHO grade > 2) toxicities occurred in 7 patients treated with VACOP-B and in 5 treated with VICOP-B; the only significant difference was for mucositis (p = 0.02). Complete remission (CR) was obtained in 79% of patients receiving VACOP-B and in 56% (idarubicin 8 mg/sqm) and 75% (idarubicin 10 mg/sqm) of those in the VICOP-B group (p = n.s.). Prognostic factors that negatively affected CR were advanced stage in VACOP, bone marrow infiltration in both schedules. At a median follow-up of two years, overall survival (67% VACOP and 61% VICOP) and disease-free survival (65% and 67%, respectively) were not significantly different. INTERPRETATION AND CONCLUSIONS: Idarubicin is slightly less toxic than doxorubicin; at a dose of 10 mg/sqm the former is easily tolerated and shows the same efficacy as doxorubicin in the treatment of DLCL.

Adolescent↗

[Early phase II study of Idarubicin combined with cytarabine in acute myelogenous leukemia. Idarubicin Study Group].

An early phase II study of a combination regimen consisting of Idarubicin and Cytarabine was performed in patients with acute myelogenous leukemia. Idarubicin at a dose of 10 mg/m2 or 12 mg/m2 was given by 5-min. iv bolus, once daily for 3 consecutive days and Cytarabine at a dose of 80 mg/m2 was given by 2-hour iv infusion, twice daily for 7 consecutive days. Of 19 patients treated, 17 were evaluable for responses. The patients who showed a response (complete or partial remission) were 4 of 10 (40.0%) in the 10 mg/m2 group, 6 of 7 (85.7%) in the 12 mg/m2 group, and in total, 10 of 17 patients (58.8%), respectively. Analysing relationship between prior chemotherapy and responses, all of 3 patients without pretreatment, 6 of 10 patients (60.0%) in the first relapse, and 1 of 4 patients (25.0%) whose disease had been refractory to induction therapy after relapse responded. Seven of 14 patients (50%) who had received prior anthracycline therapy, showed a response. The principal adverse effects were gastrointestinal symptoms, alopecia, fever and infection, similarly to those observed in Idarubicin single therapy. When combined with Cytarabine, Idarubicin increased the incidence and severity of gastrointestinal symptoms. Considering effectiveness and safety, the clinical optimal dosage of Idarubicin when used concomitantly with Cytarabine was judged to be 12 mg/m2 once daily for 3 consecutive days.

Adult↗

Oral treatment of acute myeloid leukaemia with etoposide, thioguanine, and idarubicin (ETI) in elderly patients: a prospective randomised comparison with intravenous cytarabine, idarubicin, and thioguanine in the second and third treatment cycle.

A randomised multicentre study was conducted among patients over 65 yr of age with newly diagnosed acute myeloid leukaemia (AML) to compare oral treatment with etoposide 80 mg/m(2) and thioguanine 100 mg/m(2) twice daily on 5 d and idarubicin 15 mg/m(2) on 3 d (ETI) to a mainly i.v. combination of cytarabine 100 mg/m(2) twice daily on 5 d, idarubicin 12 mg/m(2) x 1, and thioguanine (TAI). Ninety-two patients were enrolled. Their median age was 72 yr, range 65-84 yr. Sixty-five patients had de novo AML, 21 AML subsequent to myelodysplastic syndrome, and six treatment-related AML. They received at first a 6-d i.v. treatment with cytarabine and idarubicin. After the first treatment, 68 patients were randomised to receive two cycles of ETI (n = 36) or TAI (n = 32) and thereafter maintenance with mercaptopurine and methotrexate. Of the 92 patients, 52 (57%) achieved remission at some stage. The median survival was 10 months. There were no significant differences between the patients randomised to ETI or TAI in the remission rate (67% vs. 72%), survival (12 months from randomisation in both arms), event-free survival or relapse rate. The patients randomised to receive ETI spent significantly fewer days at hospital during the two randomised cycles (20 vs. 41 d, P = 0.010), and they had fewer days with infusions, shorter neutropenias and thrombocytopenias and fewer and less severe infections. In conclusion, treatment with oral ETI resulted in a similar antileukaemic effect as obtained with mainly i.v. TAI, with less toxicity and reduced need for hospitalisation.

Administration, Oral↗

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↗

[A late phase II study of idarubicin hydrochloride in adult patients with acute lymphocytic leukemia. Idarubicin Study Group].

A late phase II study of idarubicin hydrochloride combined with vincristine and prednisolone was conducted in adult patients with acute lymphocytic leukemia (ALL) in the first relapse as a multi-center joint research project. The dosages used were idarubicin 12 mg/m2/day i.v. for 3 consecutive days (day 1-3), vincristine 1.4 mg/m2 i.v. (day 1) and prednisolone 60 mg/m2/day po for 5 consecutive days (day 1-5). The number of evaluable patients was 20. The patients showed responses including 3 complete remissions (CR) and 10 partial remissions (PR), with an efficacy rate (CR + PR) of 65.0%. Adverse reactions occurred in 19 of 20 patients. The main symptoms were gastrointestinal symptoms including anorexia, nausea/vomiting, and stomatitis and fever, infection, and alopecia. Abnormal laboratory data were observed in 6 of 20 patients with 13 events. Although one case of an increase in GPT with WHO grade 3 was observed, the other cases were not of significance. From the above study, idarubicin hydrochloride was considered to be effective in relapsed ALL patients in combination therapy with vincristine and prednisolone.

Adolescent↗

[Early phase II study of Idarubicin, a new anthracycline anticancer drug, in acute leukemia. Idarubicin Study Group].

An early phase II study of Idarubicin was performed in patients with acute leukemia. The dosages administered were 10 mg/m2, 12 mg/m2, or 15 mg/m2 by iv bolus, once daily for 3 consecutive days. The treatment was given to 47 patients who were in relapse or whose diseases had been refractory to remission induction therapy. Of the 47 patients, 35 were evaluable for response. The patients who showed a response (complete or partial remission) were 9 of 14 patients (64.3%) in the 10 mg/m2 group, 1 of 12 patients (8.3%) in the 12 mg/m2 group, and 3 of 9 patients (33.3%) in the 15 mg/m2 group, respectively. Remissions were achieved in 10 of 23 (43.5%) patients with acute myelogenous leukemia, and in 3 of 6 (50.0%) of those with chronic myelogenous leukemia in blast crisis. However, no remission was achieved in 6 patients with acute lymphocytic leukemia. As for patients who had received prior anthracycline therapy, remissions were achieved in 11 of 29 patients (37.9%), and so clinical cross resistance between idarubicin and other anthracyclines was thought to be partial. The principal adverse effects were gastrointestinal symptoms, alopecia, fever and infection. In the 15 mg/m2 group, there was an increased number of adverse events of WHO's grade 3 or over. The result indicated that Idarubicin is a useful drug for the treatment of acute leukemia, and the clinical optimal dosage estimated was either 10 mg/m2 or 12 mg/m2 once daily for 3 consecutive days.

Adult↗

Multicentre phase III trial on fludarabine, cytarabine (Ara-C), and idarubicin versus idarubicin, Ara-C and etoposide for induction treatment of younger, newly diagnosed acute myeloid leukaemia patients.

Fludarabine plus cytarabine (Ara-C) and idarubicin (FLAI) is an effective and well-tolerated induction regimen for the treatment of acute myeloid leukaemia (AML). This phase III trial compared the efficacy and toxicity of FLAI versus idarubicin plus Ara-C and etoposide (ICE) in 112 newly diagnosed AML patients <60 years. Fifty-seven patients received FLAI, as the first induction-remission course, and 55 patients received ICE. Post-induction treatment consisted of high-dose Ara-C (HDAC). After HDAC, patients in complete remission (CR) received a second consolidation course (mitoxantrone, etoposide, Ara-C) and autologous stem cell transplantation (auto-SCT) or allogeneic (allo)-SCT, according to the age, disease risk and donor availability. After a single induction course, CR rate was 74% in the FLAI arm and 51% in the ICE arm (P = 0.01), while death during induction was 2% and 9% respectively. Both haematological (P = 0.002) and non-haematological (P = 0.0001) toxicities, especially gastrointestinal (i.e. nausea, vomiting, mucositis and diarrhoea), were significantly lower in FLAI arm. In both arms, relapses were more frequent in patients who were not submitted to allo-SCT. After a median follow-up of 17 months, 30% and 38% of the patients are in continuous CR in FLAI and ICE arm respectively. Our prospective randomised study confirmed the anti-leukaemic effect and the low toxic profile of FLAI as induction treatment for newly diagnosed AML patients.

Acute Disease↗

[A late phase II comparative study of idarubicin + cytarabine and daunorubicin + cytarabine in adult patients with acute non-lymphocytic leukemia. Idarubicin Study Group].

In adult patients with acute non-lymphocytic leukemia (ANLL), idarubicin (IDA) and daunorubicin (DNR) were compared for efficacy and safety in combination with cytarabine (Ara-C). IDA 12 mg/m2/day and DNR 40 mg/m2/day were administered iv bolus for 3 consecutive days (day 1-3), respectively, in combination with Ara-C 80 mg/m2 given by 2-hour intravenous infusion, every 12 hours for 7 consecutive days. The number of evaluable patients was 32 for each group previously untreated. The rates of complete remission (CR) were 59.4% (19/32) in the IDA group and 40.6% (13/32) in the DNR group. The clinical equivalence test with delta = 10% demonstrated that the IDA group is equal or superior in remission rates (p = 0.010) compared to the DNR group. In addition, the Cochran-Mantel-Haenszel test for response means with scores of 3 (CR), 2 (PR) and 1 (NR) showed the significant superiority (p = 0.044) of the IDA group to the DNR group. The duration needed to attain less than 5% leukemic cells in bone marrow tended to be shorter in the IDA group (p = 0.072), and in the CR patients the number of days needed to reach the nadir value in leukemic cells were significantly fewer in the IDA group (p = 0.037). The nadir value of WBC was significantly lower in the IDA group (p = 0.022). As for adverse reactions, high incidences of diarrhea and stomatitis were observed in the IDA group, while the incidences of other adverse reactions were similar between the two groups. When effects of the drug on the ECG were examined, significant changes in ECG parameters were observed in the DNR group after treatment but not in the IDA group. From the above, remission induction in adult AN LL, IDA + Ara-C therapy showed better efficacy than DNR + Ara-C therapy, and IDA was considered to be a drug of first choice in the treatment of ANLL patients.

Adolescent↗

A phase I study of idarubicin hydrochloride in patients with acute leukemia. The Idarubicin Study Group of Japan.

This phase I trial of idarubicin (IDA) was conducted in 32 patients with acute leukemia and chronic myelogenous leukemia (CML) in blastic crisis (CML/BC) who either had failed to achieve a complete remission (CR) after initial induction therapy or had relapsed after CR. IDA was administered at dosages ranging from an initial dose of 5 mg/m2/d for 3 days with an increment of 2.5 mg/m2/d to 15 mg/m2/d for 3 days. The dose-limiting toxicities (DLTs) were thought to be stomatitis and anorexia. The maximum tolerated dose (MTD) was determined to be 15 mg/m2/d for 3 days (45 mg/m2 per course). Bone marrow toxicity was significant when greater than 10 mg/m2/d of IDA was given. When IDA was administered at this dosage or higher, there were three CRs and four partial responses, with an overall response rate of 26.9% in 26 assessable patients. It is recommended that a phase II study be undertaken at an IDA dosage of 10 to 15 mg/m2/d for 3 consecutive days in the treatment of acute leukemia. Twenty-one of 32 patients were also studied for the pharmacokinetics of IDA. The terminal half-life (t1/2) values for IDA were 6.4 to 15.1 hours in plasma and 8.09 to 16.34 hours in blood cells. The t1/2 values for idarubicinol were much longer: 43.46 to 51.01 hours in plasma and 36.61 to 54.70 hours in blood cells. Concentrations of idarubicinol in plasma and blood cells exceeded those of IDA 2 to 4 hours after the start of treatment and remained elevated for a long time. The area under the curve (AUC) of idarubicinol in plasma was 5.16 to 8.36 times higher than that of IDA, and the AUC of idarubicinol in blood cells was 2.05 to 4.57 times higher than that of IDA. The AUCs of both IDA and idarubicinol increased dose-dependently over the dosage range of 5 to 15 mg/m2/d. When two-compartment multiple-dose models were used, plasma t1/2 alpha and t1/2 beta values of IDA were 0.25 +/- 0.13 and 9.4 +/- 3.4 hours, respectively. The steady-state volume of distribution (Vdss) was 934.9 +/- 370.7 L/m2, and the plasma clearance was 82.3 +/- 29.7 L/h/m2. The urinary excretion of IDA and its metabolite was low. The mean cumulative urinary recovery rates were 2.04% for IDA and 11.53% for idarubicinol up to 7 days.

Acute Disease↗

Protective role of antioxidant vitamin E and catechin on idarubicin-induced cardiotoxicity in rats.

Idarubicin is an anthracycline antibiotic extensively used in acute leukemia. In the present study we investigated whether vitamin E and catechin can reduce the toxic effects of idarubicin. Vitamin E (200 IU kg(-1) week(-1)), catechin (200 mg kg(-1) week(-1)), idarubicin (5 mg kg(-1) week(-1)), idarubicin + vitamin E (200 IU kg(-1) week(-1)), and idarubicin + catechin (200 mg kg(-1) week(-1)) combinations were given to male Sprague-Dawley rats weighing 210 to 230 g (N = 6/group). Idarubicin-treated animals exhibited a decrease in body and heart weight, a decrease in myocardial contractility, and changes in ECG parameters (P<0.01). Catechin + idarubicin- and vitamin E + idarubicin-treated groups exhibited similar alterations, but changes were attenuated in comparison to those in cardiac muscle of idarubicin-treated rats (P<0.05). Superoxide dismutase and catalase activity was reduced in the idarubicin-treated group (P<0.05). Glutathione peroxidase levels were decreased in the idarubicin-treated group (P<0.05) and reached maximum concentrations in the catechin- and catechin + idarubicin-treated groups compared to control (P<0.01). Malondialdehyde activity was decreased in the catechin + idarubicin-treated groups compared to control and increased in the other groups, reaching maximum concentrations in the vitamin E-treated group (P<0.01). In electron microscopy studies, swelling of the mitochondria and dilatation of the sarcoplasmic reticulum of myocytes were observed in the idarubicin-treated groups. In groups that were given idarubicin + vitamin E and idarubicin + catechin, the only morphological change was a weak dilatation of the sarcoplasmic reticulum. We conclude that catechin and vitamin E significantly reduce idarubicin-induced cardiotoxicity in rats.

Animals↗

Idarubicin. A review of its pharmacodynamic and pharmacokinetic properties, and therapeutic potential in the chemotherapy of cancer.

Idarubicin is a 4-demethoxy-anthracycline analogue of daunorubicin which, when administered intravenously in combination with cytarabine, has therapeutic efficacy superior to that of standard induction and salvage treatment regimens in acute myelogenous leukaemia. Idarubicin alone or in combination regimens has also been effective in limited studies in patients with other acute leukaemias, advanced breast cancer, multiple myeloma and non-Hodgkin's lymphoma. Idarubicin is more lipophilic than its parent drug daunorubicin. It intercalates DNA, induces DNA strand breaks and delays cell cycle progression. Leucopenia is often dose-limiting in patients with solid tumours treated with idarubicin, and most other adverse effects are similar in incidence and severity to those experienced with other anthracycline cytotoxic agents, except for alopecia which appears to occur with a reduced incidence and severity. Cardiotoxic effects have been reported with idarubicin as with other anthracyclines, but animal data and preliminary clinical findings suggest the possibility of reduced cardiotoxicity with idarubicin--a potentially important advantage if confirmed on further study. A maximum cumulative dose of idarubicin beyond which the incidence of cardiotoxicity rapidly increases has not been determined. Thus, intravenous idarubicin is a useful alternative to other anthracyclines (particularly in combination with cytarabine) in the treatment of acute myelogenous leukaemia, and there is some evidence that it is less cardiotoxic than other anthracycline drugs. Further studies are required to establish the use of intravenous idarubicin as a replacement for other intravenous anthracyclines, especially its effect on response duration and survival, and to confirm the evidence of reduced cardiotoxic effects. The role of idarubicin as consolidation and maintenance therapy for various malignancies requires further investigation, as does the potential use of oral idarubicin which is currently under development.

Animals↗

A systematic collaborative overview of randomized trials comparing idarubicin with daunorubicin (or other anthracyclines) as induction therapy for acute myeloid leukaemia. AML Collaborative Group.

A collaborative overview, using individual patient data, has been performed to compare idarubicin versus daunorubicin or other anthracyclines, when used with cytosine arabinoside as induction chemotherapy for newly diagnosed acute myeloid leukaemia. There were 1052 patients in five trials versus daunorubicin, 100 in one trial versus doxorubicin, and 745 in one trial versus zorubicin. In the trials of idarubicin versus daunorubicin, early induction failures were similar with the two treatments (20% idarubicin v 18% daunorubicin: P = 0.4), but after day 40 the later induction failures were fewer with idarubicin (17% v 29%: P < 0.0001). Therefore complete remission rates were higher with idarubicin (62% v 53%; P = 0.002). Among remitters, fewer of the patients allocated to idarubicin relapsed (P = 0.008) but slightly more died in remission, leading to a non-significant benefit (P = 0.07) in disease-free survival. Overall survival in these five trials was significantly better with idarubicin than with daunorubicin (13% v 9% alive at 5 years; P = 0.03). There was a trend (P = 0.006 for remission rate) for the benefit of idarubicin over daunorubicin to decrease with increasing age. There were no significant differences in outcome in the small trial comparing idarubicin versus doxorubicin, or in the large trial comparing idarubicin versus zorubicin. The induction regimens based on idarubicin achieved, in the particular circumstances of the trials reviewed here, better remission rates and better overall survival than those based on daunorubicin.

Acute Disease↗

A phase I and pharmacologic study of idarubicin, cytarabine, etoposide, and the multidrug resistance protein (MDR1/Pgp) inhibitor PSC-833 in patients with refractory leukemia.

This study was conducted to define the maximum tolerated dose (MTD), dose limiting toxicity (DLT), and pharmacokinetics of idarubicin when administered with and without the P-glycoprotein inhibitor PSC-833 in combination with cytarabine, and etoposide. Fifteen patients with relapsed and refractory acute leukemia were enrolled and received cytarabine as a 7-day continuous infusion, with etoposide and idarubicin administered for any three consecutive days during the cytarabine infusion. Two hours prior to the second dose of idarubicin, PSC-833 administration was initiated. The pharmacokinetics of idarubicin alone and with PSC-833 was assessed at three idarubicin dose levels (6, 8 and 10 mg/m(2)). The MTD of idarubicin in this combination was 8 mg/(m(2) day) with a DLT of oral mucositis. The complete remission rate (on an intent-to-treat basis) for this regimen was 33%, with a median duration of 6 months. The clearance of idarubicin was 140 +/- 200 and 181 +/- 94.3 l/h for idarubicin alone and with PSC-833, respectively. The volume of distribution of the central compartment was 423 +/- 443 and 337 +/- 394 l for idarubicin alone and in combination with PSC-833, respectively. This combination including PSC-833 was well tolerated. Although a pharmacokinetic interaction might have been expected, PSC-833 did not significantly alter the disposition of idarubicin.

Adolescent↗

Effect of the cytostatic agent idarubicin on fibroblasts of the human Tenon's capsule compared with mitomycin C.

BACKGROUND/AIMS: To investigate the in vitro effect of a short time exposure to the anthracycline idarubicin on proliferation, protein synthesis, and motility of human Tenon's capsule fibroblasts in comparison with the antitumour antibiotic mitomycin C. METHODS: After determination of effective concentrations of idarubicin, fibroblasts of the human Tenon's capsule were exposed to idarubicin or mitomycin C at concentrations ranging from 0.1 microg/ml to 1 microg/ml or from 2.5 microg/ml to 250 microg/ml, respectively, for 0.5, 2, or 5 minutes and cultured for 60 days. Cell death by apoptosis caused by idarubicin treatment was confirmed by Hoechst 33258 staining. Further proliferation was explored by cell counting and by (3)H-thymidine uptake. Protein synthesis was measured by (3)H-proline uptake and motility was assessed by agarose droplet motility assay. RESULTS: Idarubicin is able to exert toxicity and to induce apoptosis during a short time exposure of 0.5 minutes at concentrations of 0.3-1 microg/ml resulting in a significant reduction in cell number compared with the control after 60 days. For mitomycin C, higher concentrations and longer expositions were necessary. Even after treatment with 1 microg/ml idarubicin or 250 microg/ml mitomycin C a few cells were able to incorporate (3)H-thymidine. (3)H-proline uptake up to 10 days after exposure to 0.3 microg/ml idarubicin was found not to be decreased. Cell motility was reduced after treatment with 1 microg/ml idarubicin for 5 minutes or with 250 microg/ml mitomycin C for 2 or 5 minutes. For low mitomycin C concentrations, an increase in motility was found during the first 10 days. CONCLUSION: Idarubicin reduces proliferation of human Tenons's capsule fibroblasts after incubation for 0.5 minutes at concentrations as low as 0.3-1 microg/ml. In comparison, mitomycin C requires longer exposure times and higher doses for equal results. Therefore, idarubicin may be useful in the prevention of glaucoma filtering surgery failure.

Antibiotics, Antineoplastic↗

Idarubicin in the treatment of acute leukemias. An overview of preclinical and clinical studies.

Idarubicin is a new derivative of Daunorubicin which was found to be more potent and more active than Daunorubicin and Doxorubicin in several experimental leukemias. Its antileukemic activity in preclinical models prompted the introduction of Idarubicin into clinical studies. As a single agent, Idarubicin produced complete remission in 20% and 30% of patients with heavily pretreated pediatric and adult acute myeloid leukemia (AML) and acute lymphoblastic leukemia (ALL) respectively. Idarubicin combined with Cytarabine and/or other antileukemic agents produced complete remissions in 46% of patients with refractory or relapsed AML and in 58% of patients with refractory or relapsed ALL (adult and pediatric). Subsequently, Idarubicin has been employed in untreated AML patients in combination with Cytarabine and/or Etoposide, producing complete remissions in more than 80% of patients. In ALL patients the drug has been used in combination with Vincristine, Cytarabine and Prednisone, producing complete remissions in 82% of patients. Recently, Idarubicin has been utilized in combination with intermediate doses of Cytarabine in refractory or relapsed ALL and AML, and 70% of patients achieved complete remission. Preliminary results of ongoing prospective randomized studies in untreated adult AML seem indicate that Idarubicin is at least equivalent, if not superior to Daunorubicin. The antileukemic activity of Idarubicin given orally as single agent, or in combination with other drugs, has been shown in AML and myelodysplastic syndromes. The toxicity of Idarubicin includes mild nausea and vomiting, alopecia and liver dysfunction. Ongoing randomized trials comparing Idarubicin to Daunorubicin should provide more information about the potential cardiotoxicity of this drug.

Animals↗