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Phase III trial of dacarbazine versus dacarbazine with interferon alpha-2b versus dacarbazine with tamoxifen versus dacarbazine with interferon alpha-2b and tamoxifen in patients with metastatic malignant melanoma: an Eastern Cooperative Oncology Group study.

PURPOSE: To investigate the response rate, time to treatment failure (TTF), overall survival, and toxicity in patients with metastatic melanoma treated with dacarbazine alone, dacarbazine plus interferon (IFN), dacarbazine plus tamoxifen (TMX), or dacarbazine plus IFN plus TMX. MATERIALS AND METHODS: Two hundred seventy-one patients (258 were eligible) were randomized in a 2 x 2 factorial design to receive one of the above treatments. The trial was designed to detect a 50% improvement in survival with 83% power. RESULTS: Nine complete (CRs) and 18 partial responses (PRs) were observed in the patients who received treatments that contained IFN compared with four CRs and 18 PRs in the patients who received treatments that did not contain IFN. Five CRs and 20 PRs occurred in patients treated with TMX compared with eight CRs and 16 PRs in those treated without TMX. Response differences were nonsignificant. The overall median TTF was 2.6 months, and the overall median survival was 8.9 months. There was no significant difference in TTF or survival among any of the different treatments. Poor performance status (PS), hepatic metastases, and weight loss were significant adverse prognostic factors. Twenty-three patients had a TTF greater than 20 months, and these durable responses were evenly distributed among the treatment arms. Significantly more severe and life-threatening toxic events occurred with treatments that contained IFN. CONCLUSION: Neither IFN, TMX, nor the combination significantly improved the response rate, TTF, or survival when added to dacarbazine, but IFN significantly increased toxicity.

Adolescent↗

Comparison of the efficacy of two different dosage dacarbazine-based regimens and two regimens without dacarbazine in metastatic melanoma: a single-centre randomized four-arm study.

The aim of this randomized four-arm phase III study was to evaluate whether there is a difference in activity between regimens containing dacarbazine and regimens without dacarbazine in metastatic melanoma, whether there is a dose-effect relationship for dacarbazine, and whether non-dacarbazine-containing aggressive regimens are in any way superior to non-aggressive ones. A total of 219 patients with metastatic cutaneous melanoma were included in this study; 196 of them were evaluable for activity. The patients were randomized into four treatment arms: arm A (standard dose dacarbazine arm), vincristine 1.4 mg/m2 on day 1, carmustine (BCNU) 60 mg/m2 on day 1, and dacarbazine 300 mg/m2 per 24 h on days 2-5; arm B (high-dose dacarbazine arm), vincristine and BCNU as in arm A and dacarbazine 600 mg/m2 per 24 h on days 2-5; arm C ('aggressive' regimen without dacarbazine), vindesine 3 mg/m2 on day 1, bleomycin 7 mg/m2 per 24 h on days 1-4, and cisplatin 30 mg/m2 per 24 h on days 5-8; arm D ('non-aggressive' regimen without dacarbazine), BCNU 100 mg/m2 on day 1 and procarbazine 90 mg/m2 per 24 h on days 1-10. The four arms were well balanced with regard to patient- and disease-related characteristics. On an intend-to-treat basis, the response rate was 11 out of 49 (22%) in arm A, nine out of 47 (19%) in arm B, 16 out of 63 (25%) in arm C and nine out of 60 (15%) in arm D. There was a large overlap between the 95% confidence intervals and no significant differences in the response rates between the four arms. Median survival in the four treatment arms was 4, 5, 6 and 4 months, respectively, again with no significant differences. Median survival for responders (8, 11, 10 and 13 months, respectively) in all four arms was significantly longer than in non-responders (4, 3, 5 and 4 months, respectively). Arms A, B and C were significantly more toxic compared with arm D, which was for all practical purposes devoid of toxicities. The efficacy of all four regimens thus appeared comparable both in terms of response rate and survival. Responders in all four arms achieved a survival benefit. There does not seem to be a dose-effect relationship for dacarbazine in metastatic melanoma. Chemotherapy from arm D, might be well suited for 'fragile' or elderly patients due to the lack of toxicity.

Adult↗

Dacarbazine versus dacarbazine-vindesine in disseminated malignant melanoma: a randomized phase II study.

In a phase II study 119 patients with disseminated malignant melanoma were randomized to receive treatment with dacarbazine alone or in combination with vindesine. The study was designed to reveal an additive response rate when the drugs were combined. Dacarbazine was given i.v. at 250 mg m-2 per day X V every 4 weeks. In the combination regimen vindesine given at 3 mg m-2 per week was included. One hundred and ten patients were available for evaluation of response. With dacarbazine 4/51 patients obtained a complete remission (8%) and 5/51 patients a partial remission (10%). Overall response rate was 18%. With dacarbazine-vindesine 8/59 patients obtained a complete remission (13%) and 7/59 patients a partial remission (12%). Overall response rate was 25%. The difference in response rates observed between the treatment arms is not statistically significant. Median response duration was 123 days for dacarbazine patients and 171 days for patients receiving dacarbazine-vindesine (difference not statistically significant).

Adult↗

Metabolism of dacarbazine by rat liver microsomes contribution of CYP1A enzymes to dacarbazine N-demethylation.

The N-demethylation of dacarbazine in liver microsomes was significantly increased by treatment of rats with beta-naphthoflavone, dexamethasone, or phenobarbital. However, the extent of increase in the N-demethylation observed in beta-naphthoflavone-treated rats was much greater than that observed in dexamethasone-treated rats. A good correlation between N-demethylation of dacarbazine and O-deethylation of phenacetin was observed when a low concentration of phenacetin was used. Furthermore, the activity of dacarbazine N-demethylase in rat liver microsomes was highly correlated with the amounts of CYP protein immunochemically determined with anti-rat CYP1A2 antibodies. In addition, antibodies to rat CYP1A2, and furafylline and alpha-naphthoflavone, which are known inhibitors of CYP1A enzymes, exhibited inhibitory effects on dacarbazine N-demethylation. These results indicated that CYP1A enzymes may be responsible for N-demethylation of dacarbazine in rat liver microsomes.

Animals↗

A randomized phase III study comparing dacarbazine, BCNU, cisplatin and tamoxifen with dacarbazine and interferon in advanced melanoma.

The purpose of this study was to compare the response rate, overall and 1-year survival in patients with advanced melanoma treated with a standard therapy, dacarbazine and interferon-alpha (DTIC/IFN), or combination chemotherapy, consisting of dacarbazine, BCNU, cisplatin and tamoxifen (DBCT). Treatment toxicity and time spent in hospital were secondary end points. One hundred and five patients (of whom 100 were eligible) were randomized to receive either DTIC/IFN or DBCT. The trial was designed to detect a 25% absolute difference in response rate or in 1-year survival with 80% power. There was no significant difference in response rate: this was 17.3% with DTIC/IFN and 26.4% with DBCT. Median overall survival was similar at 199 and 202 days respectively. One-year survival rate favoured standard treatment (30.6 vs 22.6%), but did not differ significantly between arms. DBCT was associated with significantly greater haematological toxicity, and a greater need for time spent in hospital (5.75 days/treatment cycle vs 2.29 with dacarbazine and interferon). DBCT combination therapy cannot be recommended as standard treatment for advanced melanoma. Dacarbazine remains the standard chemotherapy for this condition.

Adult↗

Randomized study for the treatment of adult advanced Hodgkin's disease: epirubicin, vinblastine, bleomycin, and dacarbazine (EVBD) versus mitoxantrone, vinblastine, bleomycin, and dacarbazine (MVBD).

Seventy patients with previously untreated advanced Hodgkin's disease and without bulky disease were entered in a prospective randomized clinical trial comparing epirubicin in combination with vinblastine, bleomycin, and dacarbazine (EVBD) with a regimen containing mitoxantrone, vinblastine, bleomycin, and dacarbazine (MVBD). Both groups were comparable for the variables of age, sex, stage, and presence of B symptoms and histology. Thirty-one (88%) of EVBD-treated patients achieved a pathologically documented complete remission (CR) compared to the 24 cases (68%) of the MVBD-treated group. After a median follow-up of 36 months, duration of CR is better in the EVBD-treated patients with an actuarial 5-year duration of CR of 80%, statistically different to the MVBD group: 53% (P < 0.01). Both regimens showed the same gastrointestinal toxicity, but the patients treated with the MVBD regimen shown most and severe hematological and cardiac toxicities. Also, biochemical alterations in hepatic test were observed in these patients. The alternative use of epirubicin in combination chemotherapy appears to be as effective in advanced Hodgkin's disease without bulky disease, with reduced clinical toxicity. Mitoxantrone containing regimen was not found to have an equivalent efficacy and clinical toxicity was most frequent and severe. We felt that mitoxantrone could be consider a second-line drug in the treatment of advanced Hodgkin's disease.

Actuarial Analysis↗

Sequential treatment of melanoma patients who progressed on interleukin-2 and dacarbazine by alpha-interferon and dacarbazine--a preliminary report.

alpha-Interferon, 3 x 10(6) U/m2 every other day, and dacarbazine, up to 800 mg/m2 every 3 weeks, were given to nine patients with metastatic malignant melanoma who had progressed on a combination of interleukin-2 and dacarbazine. Partial response was documented in two patients for 9 and 4 months. Responsive sites were the lungs, lymph nodes, liver, and skin. Failure to respond to one biologic response modifier does not predict the response to another modifier.

Adult↗

[Chemotherapy in advanced malignant melanoma. Results of a controlled trial comparing a combination of dacarbazine (DTIC) and detorubicin with dacarbazine alone].

51 patients with malignant melanomas who had not previously received chemotherapy were studied in a phase III trial. They were all advanced cases, either in relapse or showing metastatic spread and with one or several measurable tumor sites. They were judged to be too advanced for surgery or radiotherapy. They were split at random into two groups. Both groups received DTIC (250 mg/m2, IV, over 4 days every three weeks) and one group received detorubicin (120 mg/m2, IV every three weeks) as well. Detorubicin is a new anthracyclin drug which has shown promise in the treatment of these tumors in a previous trial. The combination of the two drugs produced better results than dacarbazine alone. Eight 50% regressions were obtained out of 22 cases studied (36%) with the combination, as opposed to 4 out of 26 (15%) with the single drug. The average length of response was also longer for the combination, i.e. 6 months opposed to 5 for the single drug. The differences were not, however, statistically significant (X2 = 2.09). Toxic reactions were also more frequent with the combination therapy (65%) than with DTIC alone (40%) (X2 = 0.42), as well as more serious because of the myocardial toxicity of the anthracyclin drug. This trial showed that a combination of dacarbazine with detorubicin improves the therapeutic outcome. Whether this represents a real benefit will need statistical confirmation from trials of combinations using other anthracyclins.

Adult↗

Chemoimmunotherapy of advanced malignant melanoma: sequential administration of subcutaneous interleukin-2 and interferon-alpha after intravenous dacarbazine and carboplatin or intravenous dacarbazine, cisplatin, carmustine and tamoxifen.

Both chemotherapy and interleukin-2 and/or interferon-alpha produce objective responses in a proportion of advanced malignant melanoma patients. While duration of response to chemotherapy is short, i.e. usually below 4 months, immunotherapy has resulted in a small number of long-lasting remissions in patients with metastatic melanoma. In two consecutive phase II trials in a total of 67 patients, we assessed the potential synergism between both modalities, i.e. chemo- and immunotherapy. Treatment consisted of intravenous (i.v.) carboplatin (CBDCA, 400 mg/m2) and dacarbazine (DTIC, 750 mg/m2) given twice (i.v. bolus over 30 min) at 3-week intervals, or 4 cycles of DTIC (220 mg/m2 i.v. 3 days), cisplatin (DDP, 35 mg/m2 i.v. 3 days), carmustine (BCNU, 150 mg/m2 i.v. cycles 1 and 3) and tamoxifen (TAM, 20 mg oral/daily) at 3-week intervals. Chemotherapy was followed by immunotherapy with combined subcutaneous (s.c.) interleukin-2 (rIL-2) and SC interferon-alpha 2 (rIFN-alpha). Among 40 patients who received a full cycle of chemotherapy with CBDCA/DTIC and sequential immunotherapy, there were 3 (7.5%) complete remissions (CRs) with a median duration of 19 months (range 13-26+). Partial remissions (PRs) were noted in 11 (27.5%) patients with a median response duration of 8 (range 5-14) months. Among 27 patients who received DTIC/DDP/BCNU/TAM and rIL-2/rIFN-alpha, there were 3 (11%) complete remissions and 12 (44.5%) partial remissions. Duration of complete and partial remissions ranged from 9+ to 13+ (median, 11+), and 5 to 15+ (median, 7+) months, respectively. Chemotherapy produced mostly moderate toxicity. Thrombocytopenia was common with the nadir after a median time of 18 days following start of CBDCA/DTIC and DTIC/DDP/BCNU, respectively. 10 patients required transfusion of thrombocytes. Nausea and vomiting due to chemotherapy were well tolerated using concomitant ondansetrone (8 mg i.v.). Immunotherapy was self-administered at home with mild to moderate side effects; malaise, fever, chills, nausea/vomiting, diarrhoea, anorexia and arthralgias were most frequent, but were spontaneously reversible after ending rIL-2/IFN-alpha. A mean 87 and 88% of the projected doses of rIL-2 and rIFN-alpha were administered on either protocol. There were no life-threatening complications and no treatment-related deaths. The sequential combination of chemotherapy and rIL-2 plus rIFN-alpha had at least additive therapeutic activity against metastatic malignant melanoma. The schedules produced long-lasting remissions and were tolerated well overall. These trials substantiate a potential role for low to intermediate dose immunotherapy in maintaining and consolidating therapeutic effects of chemotherapy in metastatic melanoma.

Administration, Cutaneous↗

Dacarbazine-vindesine versus dacarbazine-vindesine-cisplatin in disseminated malignant melanoma. A randomised phase III trial.

In a multicentre phase III study of disseminated malignant melanoma performed in Sweden and Norway, 326 patients were randomised to receive treatment with the combination dacarbazine [DTIC] (D) and vindesine (V) with or without the addition of cisplatin (P). D was given intravenously (i.v.) at a dose of 250 mg/m2 days 1-5 every 4 weeks and V was given i.v. at a dose of 3.0 mg/m2 day 1 weekly. P was given i.v. at a dose of 100 mg/m2 day 1 every 4 weeks. There was no statistically significant difference in overall survival between the treatment arms (P = 0.22). Increased toxicity was observed in the treatment arm containing P of which leucopenia, alopecia and nausea/vomiting were the most pronounced. The median time to progression was significantly longer in patients treated with DVP (4.2 versus 2.2 months, P = 0.007). In conclusion, adding P to DV did not change overall survival but did significantly increase toxicity.

Adolescent↗

Phase II randomized study of dacarbazine, carmustine, cisplatin and tamoxifen versus dacarbazine alone in advanced melanoma patients.

This randomized phase II trial was performed to define the activity and toxicity of the combination of dacarbazine (DTIC), carmustine (BCNU), cisplatin (DDP) and tamoxifen (DBDT regimen) versus DTIC alone in patients with metastatic melanoma. Sixty patients with metastatic melanoma were randomly assigned to receive BCNU 150 mg/m2 intravenously (i.v.) on day 1, cisplatin 25 mg/m2 i.v. daily on days 1 to 3, DTIC 220 mg/m2 i.v. daily on days 1 to 3 and tamoxifen 160 mg orally daily for 7 days prior to chemotherapy (DBDT arm; arm A). Treatment cycles were repeated every 28 days, while BCNU was given every two cycles. The DTIC arm (arm B) patients received DTIC alone 1200 mg/m2 i.v. on day 1, repeated every 21 days. Patients were evaluated every two cycles; responding patients continued the treatment for a maximum of 12 cycles. The overall response rate was 26% in the DBDT arm and 5% in the DTIC arm. Complete responses were 2.5% for DBDT and 0% for DTIC. The median progression-free survival and the median survival were 4 and 9 months, respectively for DBDT, and 2 and 7 months for DTIC. DBDT was associated with significant haematological toxicity: 33% of the patients experienced a grade III or IV neutropenia and 28% a grade III or IV thrombocytopenia. In conclusion, the overall response rate obtained with DBDT was greater than that obtained with DTIC alone; however, this combination increases toxicity with limited impact on overall survival.

Adult↗

A feasibility study using polychemotherapy (cisplatin + vindesine + dacarbazine) plus interferon-alpha or monochemotherapy with dacarbazine plus interferon-alpha in metastatic melanoma.

AIMS AND BACKGROUND: This trial evaluated the feasibility and tolerability of an immunochemotherapeutic approach that uses cisplatin, vindesine, and dacarbazine (DTIC), or only DTIC, in combination with interferon alpha-2a (IFN-alpha), in patients with metastatic melanoma, considering the significant toxicity of several different regimens used up to now. METHODS: Between May 1995 and September 1997, 51 melanoma patients (50 of whom were assessable) entered a multicentric trial and were randomized to receive cisplatin (30 mg/m2 daily for 3 days) + vindesine (2.5 mg/m2 only day 1) + DTIC (250 mg/m2 daily for 3 consecutive days) + IFN-alpha (3 MIU i.m. 3x/wk continuously) (CVD arm) versus DTIC (800 mg/m2 day 1) + IFN-alpha (3 MIU i.m. 3x/wk continuously) (DTIC arm). The chemotherapy was recycled every 21 days. Patient reevaluation was performed every two cycles, and the treatment was continued in case of objective response or stabilization of disease. RESULTS: We observed 3 complete responses, 2 partial responses and 5 stable diseases in the CVD arm, and 2 partial responses and 4 stabilizations of disease in the DTIC arm. CONCLUSIONS: We conclude that these chemotherapeutic regimens are well tolerated regimens with modest toxicity. Future trials will be conducted associating the CVD regimen with biological response modifiers (IFN, IL-2) in order to improve the results.

Adult↗

Treatment of metastatic malignant melanoma with dacarbazine plus tamoxifen.

BACKGROUND: Endocrine factors may affect the clinical course of malignant melanoma and the response to the treatment of this disease. The presence of estrogen receptors in melanomas has been suggested, and occasional responses to antiestrogen therapy have been reported. METHODS AND RESULTS: We randomly assigned 117 patients with metastatic malignant melanoma to treatment with dacarbazine alone or dacarbazine in combination with tamoxifen. The overall rate of response, measured objectively, was higher (28 percent vs. 12 percent, P = 0.03) and survival was longer (median, 48 vs. 29 weeks, P = 0.02) among the patients who received dacarbazine plus tamoxifen than among those who received dacarbazine alone. Among women, both the response rate (38 percent vs. 10 percent, P = 0.04) and the median survival (69 vs. 30 weeks, P = 0.008) were better with dacarbazine plus tamoxifen than with dacarbazine alone, whereas among men the differences were smaller and not statistically significant. Among the patients given dacarbazine alone, there were no significant differences between women and men in response rate (10 percent vs. 13 percent) or survival (30 vs. 27 weeks), whereas among those given dacarbazine plus tamoxifen, women had better outcomes, as indicated by both response rate (38 percent vs. 19 percent, P = 0.15) and survival (69 vs. 31 weeks, P = 0.02). When we analyzed the Quetelet body-mass index (the weight in kilograms divided by the square of the height in meters) as an indirect indicator of the levels of endogenous estrogens in postmenopausal women and in men, survival was not affected by the body-mass index in the group given dacarbazine alone, whereas in the group given dacarbazine plus tamoxifen, survival was longer among patients whose Quetelet index was above the median value than among those with a Quetelet index lower than the median value (60 vs. 26 weeks, P less than 0.001). CONCLUSIONS: In the treatment of metastatic malignant melanoma, dacarbazine plus tamoxifen is more effective than dacarbazine alone, as indicated by both the response rate and the median survival; the difference in efficacy is among women.

Adult↗

Penetration of dacarbazine and its active metabolite 5-aminoimidazole-4-carboxamide into cutaneous metastases of human malignant melanoma.

BACKGROUND: Dacarbazine has been on the market for approximately 3 decades but remains the most effective single agent available for the therapy of metastatic malignant melanoma (MMM). Most MMMs, however, respond poorly to dacarbazine therapy. Apart from tumor resistance at a molecular level, several studies support the notion that therapeutic failure in tumor therapy also might be attributed to an impaired transcapillary drug transfer. METHODS: On the basis of this hypothesis, the authors measured intratumor transcapillary transfer rates of dacarbazine and its active metabolite 5-aminoimidazole-4-carboxamide (AIC) by in vivo microdialysis after intravenous administration of dacarbazine at doses of 200 mg/m(2) to 1000 mg/m(2) (n = 7) in patients suffering from MMM. RESULTS: For all doses, area under the concentration curve (AUC) values for dacarbazine and AIC were not significantly different between plasma and tumor interstitium with AUC(tumor)/AUC(plasma) ratios of 0.97 +/- 0.08 (mean +/- standard error of the mean) for dacarbazine and 0.76 +/- 0.22 for AIC. AUC(0-240) values for dacarbazine and AIC measured in plasma correlated closely with corresponding AUC(0-240)values measured in the interstitium of MMMs with values of r(s) = 0.82 (P = 0.042) and r(s) = 0.90 (P = 0.037), respectively. CONCLUSIONS: The results of this study indicate favorable tumor penetration characteristics of dacarbazine and its active metabolite AIC. The relative lack of response to antineoplastic therapy with dacarbazine, thus might be explained by resistance of melanoma cells at a molecular level rather than by an inability of dacarbazine and AIC to penetrate into the interstitium of MMM.

Aged↗

Stability of dacarbazine in amber glass vials and polyvinyl chloride bags.

The stability of dacarbazine in commercial glass vials and polyvinyl chloride (PVC) bags in various storage conditions and the emergence of 2-azahypoxanthine, a major degradation product possibly linked with some adverse effects, were studied. Triplicate samples of reconstituted (11 mg/mL) and diluted (1.40 mg/mL) dacarbazine admixtures were prepared and stored at 4 degrees C or at 25 degrees C in daylight, fluorescent light, or the dark. The effect of several light-protective measures (amber glass vials, aluminum foil wrapping, and opaque tubing) on dacarbazine stability in a simulated i.v. infusion system was also evaluated. Dacarbazine quantification and main degradation product determination were performed by high-performance liquid chromatography. Stability was defined as conservation of 90-105% of initial dacarbazine concentration without major variations in clarity, color, or pH and without precipitate formation. Reconstituted dacarbazine solutions were stable for 24 hours at room temperature and during light exposure and stable for at least 96 hours at 2-6 degrees C when stored in the dark. After dilution in PVC bags, stability time increased from 2 hours in daylight to 24 hours in fluorescent light and to 72 hours when covered with aluminum foil. After two hours of simulated infusion, dacarbazine remained stable. Diluted dacarbazine solutions stored at 2-6 degrees C were stable for at least 168 hours. The only degradation product found was 2-azahypoxanthine, which was detected in every sample. The storage and handling of dacarbazine should take into account both the loss of the drug and the production of its potentially toxic degradation product. Dacarbazine must be carefully protected from light, administered using opaque infusion tubing, and, if necessary, refrigerated before administration to reduce 2-azahypoxanthine formation.

Antineoplastic Agents, Alkylating↗

Mechanisms of hepatotoxicity caused by dacarbazine in rats.

Possible risks of fatal dacarbazine hepatotoxicity have not been studied systematically. We therefore asked whether dacarbazine hepatotoxicity is influenced by the dose or mode of application, by dacarbazine light-decay products, by prior liver damage or by an induction of dacarbazine metabolism. 22 Sprague-Dawley rats were treated with 4.5 mg and 200 mg dacarbazine/kg bodyweight i.p. and i.v., with dacarbazine light-decay products and with 4.5 mg and 200 mg dacarbazine/kg bodymass after previous galactosamine and ethanol treatment. Serum alanine aminotransferase, cholinesterase and white blood cell and platelet numbers were measured and liver histology was evaluated. Dose-dependent dacarbazine hepatotoxicity could be demonstrated by histology. The mode of application, dacarbazine light-decay products and acute liver damage did not influence dacarbazine hepatotoxicity. However 200 mg dacarbazine/kg bodymass after ethanol pretreatment caused significant serological changes and a significant leucodepression. The increased hepato- and myelotoxicity after induction of hepatic microsomal enzymes should be reason to exclude ethanol and drugs that induce hepatic microsomal enzymes prior to treatment with dacarbazine.

Alanine Transaminase↗

Pathophysiological aspects of dacarbazine-induced human liver damage.

Hepatic Veno-occlusive Disease (VOD) and Budd Chiari syndrome (BCS) have been reported as fatal complications of Dacarbazine therapy. Peripheral eosinophilia and eosinophilic infiltrates after repeated Dacarbazine therapy in some cases were interpreted as evidence of an allergic drug reaction. Since no mention of an allergic drug reaction is to be found in other reports on veno-occlusive disease or Budd Chiari syndrome due to Dacarbazine, the pathophysiological mechanism of these fatal complications of Dacarbazine remain to be elucidated. We describe a case of VOD due to Dacarbazine which showed peripheral eosinophilia after the first cycle of Dacarbazine treatment with no prior possibility of sensibilization, along with signs of a toxic drug reaction. This observation suggests that peripheral eosinophilia, so far interpreted as a sign of an allergic reaction induced by Dacarbazine, can be observed together with obvious signs of toxic drug reaction, thus providing further evidence of a toxic mechanism of Dacarbazine-induced VOD or BCS.

Adult↗

Comparative study of the formation and repair of O6-methylguanine in humans and rodents treated with dacarbazine.

The mutagenic, carcinogenic and cytotoxic activity of dacarbazine, a drug employed in cancer chemotherapy, may be related to the induction in DNA of O6-methylguanine (O6-meG), a quantitatively minor but biologically important lesion. In the present study the kinetics of O6-meG formation and repair in blood leukocyte DNA were examined in 20 Hodgkins lymphoma patients treated i.v. with 180 +/- 13 (mean +/- SD) mg/m2 dacarbazine and compared with those observed in various tissues of rodents treated with different doses of the drug. In Hodgkin's lymphoma patients adduct levels reached a value of 0.27 +/- 0.14 fmol/microgram DNA 2 h after dacarbazine administration, while the rate of subsequent loss suggested an adduct half-life of < or = 30 h. Measurement of adduct levels in the same individuals after successive courses of treatment spaced 3 weeks apart (up to 10 treatment courses) demonstrated a consistent individual response and statistical analysis of variance confirmed that intra-individual variation in adduct accumulation after a given dose of dacarbazine accounted for only 5% of the total variance observed. In contrast, inter-individual variation accounted for 70% of the observed variance, with adduct levels 2 h after drug treatment varying approximately 7.5-fold among adduct-positive individuals. No significant depletion of lymphocyte O6-alkylguanine-DNA alkyltransferase (AGT) occurred after patient treatment with dacarbazine. No significant relationship between adduct levels and clinical response to treatment was observed. In rats treated with single or multiple doses of dacarbazine causing varying degrees of AGT depletion the highest levels of O6-meG were seen in the liver, followed by the lymph nodes, bone marrow and blood leukocytes, which showed up to approximately 2-fold lower levels. A similar tissue distribution was also observed in mice and in a single rabbit. These observations suggest that O6-meG levels assayed in blood leukocytes of therapeutically treated humans reflect those present in the -lymph nodes (target tissue for chemotherapy) and the bone marrow (target tissue for leukaemogenesis) and may be utilized as a measure of the drug dose reaching these tissues. The quantitative data reported in this study show that under conditions of no depletion of AGT O6-meG accumulates in blood leukocyte DNA of humans at a rate similar to that observed in rats, suggesting that human susceptibility to any O6-meG-mediated genotoxic effects of dacarbazine may be comparable with that of the rat.

Animals↗