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Phase I clinical and pharmacokinetic study of menogaril (7-con-O-methylnogarol) in previously treated patients with acute leukemia.

Fifteen patients with relapsed or refractory acute leukemia were treated in this phase I study of menogaril (7-con-O-methylnogarol), a nogalamycin anthracycline derivative. Doses ranged from 50 mg/m2/day to 130 mg/m2/day, administered daily for 5 days. Pharmacokinetic studies were performed at each dose level and confirmed the findings of pharmacokinetic data derived from previous studies in patients with solid tumors. All patients experienced grade 4 hematologic toxicity and the dose limiting toxicity was mucositis. Two patients, one with acute myeloid leukemia and one with acute lymphoid leukemia, achieved complete responses. The AML complete response lasted 10 months and the ALL patient died in CR at 2+ months. Both patients were treated at a dose of 100 mg/m2/day for five days. At this dose, a second induction or consolidation course could be given without severe mucositis, and this is the dose recommended for further phase II studies in leukemia using this schedule.

Acute Disease↗

HPLC and flow cytometric analyses of uptake of adriamycin and menogaril by monolayers and multicell spheroids.

We have used both HPLC and flow cytometry to measure and compare the uptake of two anthracyclines, menogaril (MEN) and Adriamycin (ADR), in V79 Chinese hamster lung fibroblasts grown as monolayers and as 650 microns multicell spheroids. In order to compare intracellular drug accumulation in spheroid cells measured by the two methods, we converted mean channel fluorescence of the flow cytometer to drug uptake expressed as ng/10(6) cells by using a standard curve. The standard curve related the flow cytometric mean channel fluorescence, of monolayer cells exposed to either drug, to the intracellular drug accumulation determined by HPLC. This standard curve was then used to convert the mean channel fluorescence of cells from drug-exposed spheroids to ng/10(6) cells. Our results show that equal intracellular drug accumulation (determined by HPLC) in spheroids and monolayers does not result in equal cellular fluorescence emission (determined by flow cytometry) by these 2 cell populations. For example, monolayer cells with an intracellular MEN accumulation of 650 ng/10(6) cells, emit 40 units of fluorescence as measured by flow cytometry. However, spheroid cells with the same intracellular accumulation emit about 80 units of fluorescence. This results in the intracellular MEN uptake in spheroids measured by flow cytometry being as much as 2- to 3-fold higher than that measured by HPLC. Intracellular ADR accumulation measured by flow cytometry was also higher than that obtained by HPLC. In spite of the quantitative difference between the two methods, qualitatively both methods gave similar results. Thus, both techniques showed that at equal drug concentration in medium drug uptake in monolayers was much greater than in spheroids.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Metabolism and disposition of menogaril (NSC 269148) in the rabbit.

We have investigated the metabolism and disposition, in rabbits, of menogaril (7-OMEN), a new anthracycline antibiotic recently introduced into clinical trials. 7-OMEN was administered by rapid i.v. injection at a dosage of 2.5 mg/kg. 7-OMEN and metabolites were assayed by high performance liquid chromatography. Plasma concentrations of 7-OMEN declined in biexponential fashion with a terminal half-life of 2.7 h. The area under the plasma concentration versus time curve was 1.3 microM X h. The systemic clearance of 7-OMEN was 57.6 ml/min/kg. No metabolite of 7-OMEN was detected in plasma. At 8 h after treatment, the cumulative urinary and biliary excretions of 7-OMEN equivalents amounted to 1.3 and 3.4% of the total administered dose, respectively. 7-OMEN was the predominant fluorescent compound in urine, but four metabolites were also seen. In bile, 7-OMEN represented only 9.6% of the cumulative excretion and six metabolites were observed. Among the organs, lungs contained the highest concentrations of parent drug. Substantial concentrations of metabolites were observed in the kidneys, liver, duodenum, and small intestine. Three of the observed metabolites of 7-OMEN have been tentatively identified as N-demethylmenogaril, 7-deoxynogarol, and N-demethyl-7-deoxynogarol.

Animals↗

[Inhibitory effects of menogaril to the proliferation of HTLV-I infected T-cell lines and fresh tumor cells from adult T-cell leukemia patients].

Anti-cancer effect of anthracyclines are well established. In vitro inhibitory effects of a new anthracyclin-derivative drug, menogaril (TUT-7) which is developed for oral administration, on three human T-cell leukemia virus type-I (HTLV-I) infected T-cell lines, a HTLV-I non-infected T cell line, and fresh tumor cells from four adult T-cell leukemia (ATL) cases are evaluated and compared to those of doxorubicin. The inhibitory effects of TUT-7 is almost as much as those of doxorubicin. Both TUT-7 and doxorubicin induced apoptosis to a HTLV-I infected cell line and inhibited proliferation of fresh tumor cells from ATL of chronic, acute and lymphoma type in a dose dependent manner. We have already reported that skin eruption of ATL patient improved by oral administration of TUT-7. This new anthracyclin-derivative would be useful in treating ATL patients even in out-patients clinic keeping a good quality of life.

Apoptosis↗

Justification for evaluating new anticancer drugs in selected untreated patients with extensive-stage small-cell lung cancer: an Eastern Cooperative Oncology Group randomized study.

BACKGROUND: Studies have shown that response to a given chemotherapy in previously untreated patients with extensive-stage small-cell lung cancer is superior to that in patients previously treated with other regimens. This finding raises the question of whether it is necessary and ethical to study the effects of new anticancer agents in untreated patients. Such studies appear to be the best test for drug development, but there has been no evaluation of whether survival of untreated patients, whose cancer is sensitive to established drugs, is adversely affected in trials of new drugs. PURPOSE: This randomized study of untreated patients with extensive-stage small-cell lung cancer was designed (a) to compare the survival of patients treated with either effective standard chemotherapy or an investigational anticancer drug as initial therapy and (b) to evaluate response rates and toxic effects of such therapies. METHODS: Eighty-six patients were randomly assigned to receive, as initial therapy, either the standard CAV regimen--cyclophosphamide (1000 mg/m2), doxorubicin (50 mg/m2), and vincristine (1.4 mg/m2) every 3 weeks--or the phase II drug menogaril (200 mg/m2) every 4 weeks. Treatment after induction therapy varied, depending on patient response, but nonresponders and those with disease progression received salvage chemotherapy--etoposide (120 mg/m2 on days 1, 2, and 3) and cisplatin (60 mg/m2 on day 1), repeated every 3 weeks. RESULTS: Of the 43 patients on CAV, 42% responded (eight complete responses and 10 partial responses); 5% of the 43 on menogaril responded (two partial responses) (P = .0001). Twelve (22%) of 54 patients responded to salvage chemotherapy (five complete responses and seven partial responses). Within 3 months from start of treatment, twelve patients died--3 patients in the CAV group and nine patients in the menogaril group (P = .12). The estimated median survival was 37 weeks with menogaril and 45 weeks with CAV (P = .28). At 6 months, survival was 76.7% for the CAV group and 67.4% for the menogaril group. At 12 months, survival rates were 24.4% and 27.9%, respectively. Confidence intervals (95%) for the differences between the proportions surviving in the two groups were -9%-28% at 6 months and -25%-14% at 12 months. Use of CAV resulted in significantly higher occurrence of severe and life-threatening treatment-related complications (P = .002). CONCLUSION: The confidence intervals for the differences in survival are too wide to conclude that evaluation of a new drug in untreated patients with extensive-stage small-cell lung cancer is or is not harmful. The data do suggest, however, that use of this study design may have no adverse effect on survival.

Antineoplastic Agents↗

Doxorubicin compared with related compounds in a nude mouse model for human ovarian cancer.

Eight human ovarian cancer lines grown in nude mice were used to compare the activity of doxorubicin, epirubicin, mitoxantrone and menogaril. The tumour lines were different in histological subtype, tumour doubling time and sensitivity to doxorubicin. The compounds were administered intravenously at the maximum tolerated dose twice with one week in between when tumours measured 50-150 mm3. Growth inhibition greater than 50% was obtained for doxorubicin in 8/8, for epirubicin in 4/8, for mitoxantrone in 5/8 and for menogaril in 2/8 tumour lines. In MRI-H-207, doxorubicin was the only drug able to induce complete remission. Compared with doxorubicin, mitoxantrone and menogaril were given in proportionally higher doses than those administered to patients, but did not result in superior antitumour activity.

Animals↗

Potential role of oral anthracyclines in older patients with cancer.

Two anthracycline analogues, idarubicin and menogaril, have acceptable bioavailability via the oral route of administration. Encouraging antitumour activity of oral idarubicin has been reported in breast cancer, non-lymphocytic leukaemia, non-Hodgkin's lymphoma and myeloma. The outlook for menogaril is less clear, given the modest antitumour activity reported so far. Although the oral formulations of idarubicin and menogaril remain investigational, they represent a step forward in the direction of developing new active anticancer drugs with oral bio-availability. Further prospective studies of the orally-active anthracyclines in elderly patients with cancer are justified. These studies should address specific issues such as optimal dosage regimens as a function of 'physiological age', and quality of life.

Administration, Oral↗

Phase I clinical investigation of 7-con-O-methylnogaril, a new anthracycline antibiotic.

7-con-O-Methylnogaril (menogaril, NSC-269148) is a new anthracycline antibiotic that has been evaluated in a Phase I clinical trial. The drug was administered in a single i.v. infusion over a period of 60 min given every 3 weeks. Twenty-four patients received 64 courses of the drug in a dose range of 16 to 256 mg/m2. Granulocytopenia was dose limiting and prolonged, requiring treatment delay in 5 of 9 patients treated at doses greater than or equal to 192 mg/m2. Concentration dependent phlebitis occurred in 12 patients, and was of minimal severity when the menogaril concentration was less than 1 mg/ml. Hair loss was experienced by 8 patients but was generally mild with only one patient developing total alopecia. Possible acute cardiac toxicity was noted in one patient who had a transient episode of atrial fibrillation following his fifth course of menogaril. Phase II studies of 7-con-O-methylnogaril are planned at a starting dose of 160 mg/m2 for patients with prior chemotherapy or radiotherapy, and 200 mg/m2 for those without prior therapy given at 28-day intervals.

Antineoplastic Agents↗

Phase I and II agents in cancer therapy: I. Anthracyclines and related compounds.

Anthracycline antibiotics remain among the most potent anticancer drugs, but their efficacy is limited by the development of a dose-dependent irreversible cardiomyopathy and by the emergence of clones of tumor cells resistant to the effects of the drug. Modifications of the basic anthracycline structure have resulted in molecules that may share the activity of the parent compound, with amelioration of some toxicities, absence of cross-resistance, or activity against tumors insensitive to the parent drug. Epirubicin has a unique metabolic pathway, glucuronidation, that may result in more rapid plasma clearance and reduced toxicity as compared with doxorubicin. Epirubicin has demonstrated comparable activity to doxorubicin in breast cancer, with possibly reduced toxicity. Idarubicin is of interest because of its cytotoxic activity when given orally. Idarubicin has prolonged retention in the plasma and has equal cytotoxic activity to the parent compound. Idarubicin has demonstrated activity against acute leukemia and breast cancer; in the latter tumor category, some doxorubicin-resistant tumors have responded. Esorubicin is of interest because of its nearly absent cardiac toxicity. This agent has some activity against solid tumors and is currently being clinically tested. Aclacinomycin A is an anthracycline in which a trisaccharide is substituted for the aminosugar. Aclacinomycin A and the related compound marcellomycin are of interest as both cytotoxic and differentiating agents. Menogaril is an anthracycline with the aminosugar on the D ring; it does not exhibit cross-resistance with doxorubicin or cardiotoxicity. Mitoxantrone is a compound that is related to the anthracyclines but has a different mechanism of action. This agent has significant activity against acute leukemia and breast cancer and is currently being compared with doxorubicin. Amsacrine is another compound related to the anthracyclines that possesses major activity against acute leukemias. Minor modifications of the anthracycline molecule have had major impact on the biologic activity of these drugs. New anthracycline analogues with up to 100 times the potency of currently available anthracyclines are being developed for clinical testing, and these complex molecules retain a nearly unlimited potential for structural modification.

Aclarubicin↗