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A prospective randomized trial comparing epirubicin monochemotherapy to two fluorouracil, cyclophosphamide, and epirubicin regimens differing in epirubicin dose in advanced breast cancer patients. The French Epirubicin Study Group.

The French Epirubicin Study Group carried out a randomized trial comparing epirubicin alone 75 mg/m2 with fluorouracil (5FU) 500 mg/m2, cyclophosphamide 500 mg/m2, and epirubicin 50 mg/m2 (FEC 50) and 5FU 500 mg/m2, cyclophosphamide 500 mg/m2, and epirubicin 75 mg/m2 (FEC 75) as first treatment for advanced breast cancer patients. Patients were stratified according to whether or not there were bone metastases only. Four hundred twelve patients entered this trial; 378 were assessable for tolerability and 365 for efficacy. The overall response rates were comparable between FEC 50 (44.6%) and FEC 75 (44.7%), but both were better than the epirubicin alone (30.6%) (P = .04 and P = .0006, respectively). The complete response rate was better in FEC 75 (15.5%) than in FEC 50 (7%) (P = .025) or epirubicin (4%) (P = .002). Similar results were obtained in the group of patients without bone-only metastases. No difference in the three treatments was observed in the patients with bone metastases only. Mean durations of response were similar in the three groups, being 412 days, 440 days, and 350 days for FEC 50, FEC 75, and epirubicin, respectively. Patients without previous adjuvant chemotherapy fared better than those with previous treatment (without anthracyclines). Tolerability was fair in the three groups. Overall, the epirubicin-alone group showed better tolerance than the two other groups, which did not differ significantly. Time to progression and survival were not different among the three groups, but more early relapses occurred in the epirubicin and FEC 50 groups; survival seemed to be better during the first 8 months in the FEC 75 group, and the survival difference between the epirubicin group and the FEC 75 group was of borderline significance. No difference in survival was observed between epirubicin- and FEC 50-group patients, even though the response rate was significantly worse in the monochemotherapy group.

Adult

Epirubicin or epirubicin and vindesine in advanced breast cancer. A phase III study.

One hundred thirty-three evaluable patients with advanced breast cancer entered a randomized trial comparing epirubicin 60 mg/m2 with a combination of epirubicin 45 mg/m2 and vindesine 3 mg/m2 day 1 and 8 every 4 weeks. In all 10 premenopausal women an oophorectomy was performed. Seventy-five patients had previously received cyclophosphamide, methotrexate, and 5-fluorouracil (CMF) for advanced disease and 68 had received adjuvant chemotherapy (cyclophosphamide or CMF). Among evaluable patients (72 in the epirubicin group and 61 in the epirubicin + vindesine group) response rates were as follows: complete response--seven versus six; partial response--31 versus 22; no change--16 versus 17 (p greater than 0.40). Median time to disease progression was 6 months in both groups and median survival times were identical (12 months). Thrombocytopenia was less frequent in the epirubicin + vindesine group (p less than 0.01). In the epirubicin + vindesine group, mild to moderate peripheral neuropathy was observed in 40% of the patients. Congestive heart failure developed in one patient with a cumulative dose of epirubicin less than 1000 mg/m2 and in 7 of 15 patients who had greater than 1000 mg/m2. Four died of this cause. In conclusion, epirubicin is effective as a single agent for advanced breast cancer. The combination with vindesine does not increase its efficacy.

Adult

[Intra-arterial administration of epirubicin in the treatment of non-resectable hepatocellular carcinoma. Epirubicin Study Group for Hepatocellular Carcinoma].

A group study was conducted to investigate the effect of intra-hepatic arterial administration of epirubicin in the treatment of non-resectable hepatocellular carcinoma(HCC). Sixty-four patients were entered into the study. There were 51 males and 13 females, with an age range from 32 to 79 years, the average being 59.1 years. Fifty-four patients had associated cirrhosis of the liver. Epirubicin at a dose of 60-90 mg/m2 was infused as a bolus into the hepatic artery 1 to 4 times (average 1.8) at an interval of 3 weeks to 3 months. Tumor size was properly evaluated in 53 patients. There were 1 CR, 7 PR, 7 MR, 27 NC, and 11 PD. Thus, the response rate (CR + PR) was 15.1%. Seventeen patients are still alive 305 to 720 days (mean 505 days) after the initial treatment. The most common side effects of this drug were bone marrow suppression, gastrointestinal complaints, and alopecia. Cardiac toxicity was negligible at the doses used in this study. A retrospective comparison of the present results with those for patients treated by intra-arterial administration of doxorubicin demonstrated that epirubicin is more effective than doxorubicin in terms of survival rate. The current study indicates that epirubicin may be a promising alternative in the treatment of HCC. The appropriate dosage of the drug and the interval for infusion are to be elucidated. Also, the combination of epirubicin with other cytostatic drugs is open for study.

Adult

Epirubicin high-dose therapy in advanced breast cancer: preliminary clinical data. Epirubicin as a single agent in breast cancer.

Of the new anthracycline derivatives, epirubicin is the antibiotic whose antitumor activity is comparable to that of doxorubicin while its cardiotoxicity is reduced by half. We therefore incorporated into our continuing study on anthracycline antitumor effects and toxicity a group of 22 evaluable patients, mean age 52 years, with advanced breast cancer, all of whom had previously undergone chemotherapy, radiotherapy and/or hormonal therapy. Epirubicin was administered at a dose of 120 mg/M2 every 3 weeks, for a maximum of 10 such cycles. The left ventricular ejection fraction (LVEF), determined by radionuclide ventriculography, was measured periodically in all patients. We observed 2 complete responses and 13 partial responses (CP + PR = 69%) of 61 weeks' mean duration; in 3 cases lesions remained stationary while the disease progressed in 4 patients. No patients died of acute toxicity. The main side effects were severe alopecia in 82% of the subjects and moderate degrees of nausea without vomiting in 41%. After 6 treatment cycles, 4 patients showed mild cardiotoxicity and at an epirubicin cumulative dose of 1,200 mg/M2 2 patients developed congestive heart failure (CHF). Hematological toxicity was in no case so severe as to require a reduction in the dose but only a postponement of treatment by 3 to 5 days in 9% of cycles. Without increasing hematological or cardiac toxicity, epirubicin, at a dose of 120 mg/M2, has shown itself to be a highly effective agent against advanced breast cancer.

Adult

Intra-arterial administration of epirubicin in the treatment of nonresectable hepatocellular carcinoma. Epirubicin Study Group for Hepatocellular Carcinoma.

A group study was conducted to investigate the effect of intrahepatic arterial administration of epirubicin in the treatment of nonresectable hepatocellular carcinoma (HCC). Sixty-four patients entered the study. There were 51 men and 13 women. The age range was from 32 to 79 years, with an average of 59.1. Fifty-four patients had associated cirrhosis of the liver. Epirubicin in a dose of 60-90 mg/m2 was infused as a bolus into the hepatic artery 1-4 times (average 1.8) at intervals of 3 weeks to 3 months. Tumor size was properly evaluated in 53 patients. There were 1 CR (complete responses), 7 PR (partial responses), 34 NC (no change), and 11 PD (progression of disease). Thus, the response rate (CR + PR) was 15.1%. Seventeen patients are still alive 305-730 days (mean 505 days) after the initial treatment. A higher dose and more treatment courses tended to produce a better result. The most common side effects of this drug were bone marrow suppression, gastrointestinal symptoms, and alopecia. Cardiac toxicity was not observed with the doses used in this study. A retrospective comparison of the present result with that of patients treated by intra-arterial administration of doxorubicin demonstrated that epirubicin is more effective than doxorubicin in teams of survival rate.

Adult

Randomised trial of epirubicin alone versus 5-fluorouracil, epirubicin and mitomycin C in locally advanced and metastatic carcinoma of the pancreas.

Sixty-nine unselected patients with locally advanced and metastatic carcinoma of the pancreas, who had not received previous chemotherapy or radiotherapy were randomised to receive either 5-fluorouracil, epirubicin and mitomycin C (FEM) or epirubicin. Survival was not significantly different in the two arms. Toxic reactions (WHO grade greater than 3) in the FEM and epirubicin arm respectively included nausea (2), (4), severe alopecia (1) (3) and leucopenia (1), (5), none of these were statistically significant. We therefore suggest that combination chemotherapy should not be used in preference to single agent chemotherapy as standard treatment for locally advanced or metastatic cancer of the pancreas.

Antineoplastic Agents

A prospective randomized phase III trial comparing combination chemotherapy with cyclophosphamide, fluorouracil, and either doxorubicin or epirubicin. French Epirubicin Study Group.

Two hundred sixty-three patients with advanced breast cancer were randomized to two treatment regimens consisting of fluorouracil, 500 mg/m2; cyclophosphamide, 500 mg/m2; and either epirubicin (Farmorubicin, Farmitalia Carlo Erba SpA, Italy), 50 mg/m2 (FEC); or doxorubicin (Adriamycin, Adria Laboratories, Columbus, OH), 50 mg/m2 (FAC), administered intravenously (IV) every 3 weeks. Two hundred thirty patients (FAC, 113; FEC, 117) were evaluable for response, and 244 patients for toxicity (FAC, 120; FEC, 124). The two groups were comparable with respect to age, menopausal status, disease-free interval to first recurrence, time from initial diagnosis to protocol activation, indicator lesions, performance status, and prior adjuvant therapy. Of 117 evaluable patients treated with FEC, 59 (50.4%) had a partial response (PR) or complete response (CR), 40 showed no change (NC), and 18 had progressive disease. Of 113 evaluable patients treated with FAC, 54 (52%) showed a remission, 30 NC, and 18 progression. There was no statistical difference between the two regimens in overall response rate, response rate according to tumor site, time to response, or duration of response. Median survival was 15 months for FEC and 18.2 months for FAC (not significant). In the 120 patients evaluable for toxicity treated with FAC, three episodes of congestive heart failure (CHF) were observed after 225, 350, and 550 mg/m2 of doxorubicin, respectively. Of the 124 evaluable patients treated with FEC, 25 received greater than 600 mg/m2 of epirubicin and no CHF was recorded. FEC induced significantly less neutropenia (P = .01), less nausea and vomiting (P less than .01), and less complete alopecia (P less than 10(-3) than did FAC. The results of this study demonstrate that FEC is as effective a regimen as FAC for the therapy of advanced breast cancer. Moreover, FEC was better tolerated than FAC in this patient population.

Antineoplastic Combined Chemotherapy Protocols

Disposition of epirubicin in an oily contrast medium after intravenous and intrahepato-arterial administration in liver cancer: a preliminary report.

The present study reports findings on the disposition of epirubicin after an intrahepato-arterial administration of the Lipiodol-drug complex, prepared by mixing the drug-aqueous phase with the iodized oil by ultra-sonification, in 14 patients with histologically proven hepatoma or hepatomegaly with serum alpha-fetoprotein level above 500 micrograms.l-1. The volume of Lipiodol used was 5 ml and the epirubicin dose was 50 mg.m-2. Blood samples were obtained at various time intervals up to 72 h post-dose. Serum concentrations of epirubicin were measured by liquid chromatography with fluorometric detection. The area under serum concentration-time curve (AUCinfinity0) was higher in the Lipiodol-epirubicin group (n = 8) while the clearance was faster and elimination t1/2 and mean residence time shorter in the plain epirubicin group (n = 3). However, interindividual variation in metabolism of epirubicin would affect serum level of the drug. In three patients who were given intravenous and intrahepato-arterial injections (90 mg.m-2) of plain epirubicin and Lipiodol-drug complex, the relative bioavailability of Lipiodol-epirubicin complex (F = 0.76 and 0.45) was lower than that of plain epirubicin (F = 0.80 and 0.73) in two patients while it was approximately 100% (F = 1.06 and 1.20) in one patient. It is likely that liver function of the patients might be modified by the disease state over a period of 3 months in the cross-over study. Further studies with larger patient samples are required to confirm if there is a targeting effect of the Lipiodol-drug complex toward hepatoma using a better formulation of the drug in Lipiodol.

Adult

Pharmacokinetics and metabolism of epirubicin during repetitive courses of administration in Hodgkin's patients.

We studied the pharmacokinetics and metabolism of epirubicin (4'-epidoxorubicin) in ten patients suffering from Hodgkin's disease and receiving three successive injections of epirubicin at 15-day intervals in a combined chemotherapy regimen. Doses were either constant (35 mg/m2) or escalated from 25 to 35 and 50 mg/m2. Epirubicin metabolism was characterized by the presence of high levels of epirubicin glucuronide in plasma and urine. The area under the time-concentration plasma curve of epirubicin glucuronide reached almost that of unchanged epirubicin (mean ratio = 0.7-0.85), whereas the cumulative urinary excretion of epirubicin glucuronide was one-half of that of epirubicin (mean ratio = 0.45-0.51). Repeating or escalating the doses did not change the levels of the glucuronide significantly. Only a trend towards higher relative levels of glucuronide could be noticed at the lowest dose. The pharmacokinetic parameters of epirubicin were characterized by a high total plasma clearance (mean value: 70-85 1/hr) and a mean elimination half-life of 25-35 hr. Repeating or escalating the doses was followed by a slight increase of the total plasma clearance in most patients, without changes of the elimination half-life. The cumulative urinary excretion was 11-12% of the dose administered and did not vary significantly as a function of time or dose.

Adult

A prospective randomized comparison of epirubicin and doxorubicin in patients with advanced breast cancer.

Fifty-four patients with advanced breast cancer who had failed prior non-anthracycline combination chemotherapy were randomized to treatment with either epirubicin 85 mg/m2 or doxorubicin 60 mg/m2 intravenously every three weeks. Of 52 evaluable patients, 25% (six of 24) treated with epirubicin, and 25% (seven of 28) treated with doxorubicin experienced major therapeutic responses. The median duration of response to epirubicin was 11.9 months compared to 7.1 months with doxorubicin. Cardiotoxicity was monitored by serial multigated radionuclide cineangiocardiography performed at rest and after exercise. Laboratory evidence of cardiotoxicity was defined as a decrease in resting left ventricular ejection fraction of greater than 10% from the baseline value, or a decrease of 5% or greater with exercise compared with the resting study performed on the same day. Fifteen patients treated with epirubicin and 18 patients treated with doxorubicin had at least two determinations of left ventricular ejection fraction and were evaluable for laboratory cardiotoxicity. Using methods of survival analysis, the median doses to the development of laboratory cardiotoxicity were estimated to be 935 mg/m2 of epirubicin and 468 mg/m2 of doxorubicin. Four patients treated with epirubicin and five treated with doxorubicin developed symptomatic congestive heart failure. The median cumulative dose at which congestive heart failure occurred was 1,134 mg/m2 of epirubicin compared with 492 mg/m2 of doxorubicin. Fewer episodes of nausea and vomiting were observed in patients receiving epirubicin. Epirubicin is a new anthracycline with reduced cardiac toxicity, but preserved efficacy in the treatment of patients with advanced breast cancer.

Actuarial Analysis

Epirubicin: a review of the pharmacology, clinical activity, and adverse effects of an adriamycin analogue.

Epirubicin (4'-epidoxorubicin) is an antineoplastic agent derived from doxorubicin. The compounds differ in the configuration of the hydroxyl group at the 4' position. Epirubicin, like doxorubicin, exerts its antitumor effects by interference with the synthesis and function of DNA and is most active during the S phase of the cell cycle. Epirubicin is administered by intravenous (IV) injection. It is metabolized by the liver and primarily eliminated in the bile. About 10% of the drug is eliminated in the urine. Dosage adjustments are recommended for patients with liver metastases or elevated liver function tests. The elimination half-life of epirubicin is 30 to 40 hours. Clinical studies indicate activity in breast cancer, non-Hodgkin's lymphomas, ovarian cancer, soft-tissue sarcomas, and pancreatic cancer. There is also evidence of activity against gastric cancer, small-cell lung cancer, and acute leukemia. Epirubicin has limited activity as a single agent against head and neck tumors or non-small-cell lung cancer, but may be beneficial in combination with other agents. The overall activity of epirubicin appears to be comparable with that of doxorubicin. However, more studies are needed to define its role in combination chemotherapeutic regimens. The acute dose-limiting toxicity of epirubicin is myelosuppression. Nausea, vomiting, and alopecia are also common. Epirubicin may cause transient cardiac arrhythmias and alterations of the electrocardiogram. Chronic therapy is limited, but available data indicate that epirubicin can be administered in higher cumulative doses than doxorubicin before cardiotoxicity limits further therapy.

Bone Marrow

Cardiac morphologic and functional changes induced by epirubicin chemotherapy.

Cardiac toxicity was evaluated in 24 patients who received epirubicin as a single chemotherapeutic agent, in doses of either 30 mg/m2 every week (11 patients) or 90 mg/m2 every 3 weeks (13 patients). The total doses of epirubicin ranged from 180 mg/m2 to 918 mg/m2 (mean, 491 +/- 187). No patient had prior heart disease, hypertension, mediastinal irradiation, or chemotherapy with other anthracycline agents. None of the patients developed overt heart failure, significant arrhythmias, ECG alterations, or roentgenographic changes in heart size. There was no significant change in the mean value of echocardiographic percent fractional shortening before and after epirubicin therapy. Patients receiving epirubicin doses less than 450 mg/m2 had minimal hemodynamic disturbances; however, no cut-off point separating two significantly different subpopulations could be demonstrated. Endomyocardial biopsy was performed on all patients; 20 biopsies were evaluable. Histologic and ultrastructural changes were similar to those caused by other anthracycline agents. A strong correlation was demonstrated between total dose of epirubicin and pathologic change as quantified using the Billingham scale (r = .7, P = .0006). A cut-off point beyond which there was a probability of increased pathologic damage was statistically defined at 450 mg/m2 of epirubicin. Severe pathologic alterations and moderate hemodynamic changes were observed in only one patient, who received 918 mg/m2 of epirubicin. Patients who are expected to receive epirubicin in excess of 450 mg/m2 should be monitored for cardiac toxicity, and continuation of epirubicin therapy beyond 900 mg/m2 should be based on the results of monitoring.

Adult

Metabolism of epirubicin to glucuronides: relationship to the pharmacodynamics of the drug.

In pharmacokinetic studies of epirubicin, we observed that its main metabolite, epirubicin glucuronide, presented a marked interpatient variation. It was even possible to separate the patients into two groups: those with a high epirubicin glucuronide:epirubicin plasma ratio and those with a low ratio, with few patients in between. We retrospectively analyzed the clinical files of 48 patients who had been subjected to a pharmacokinetic study of epirubicin. We observed that those with a low epirubicin glucuronide:epirubicin ratio had significantly lower plasma levels of fibrinogen and alpha 2-globulins, suggesting that a reduced glucuronidation of epirubicin could be associated with hepatocellular insufficiency. These patients also had significantly lower percentages of change in granulocytes after therapy and responded better to the course of treatment studied. We cannot presently propose a hypothesis to explain these observations.

Epirubicin

Clinical pharmacokinetics of epirubicin: the importance of liver biochemistry tests.

The influence of liver biochemistry tests on epirubicin pharmacokinetics has been investigated in 52 women with advanced breast cancer, 27 of whom had radiologically proven liver metastases. Patients received epirubicin 12.5-120 mg m-2 given as an i.v. bolus. Epirubicin levels were measured by HPLC following the first cycle of treatment. Epirubicin elimination, expressed as clearance (dose/AUC), in the 22 patients with normal AST and bilirubin was compared with that of 30 patients with a raised AST +/- raised bilirubin. Epirubicin clearance was significantly reduced in the patients with a raised AST, whether their serum bilirubin was normal (22 patients) or elevated (eight patients). In the 30 patients with a raised AST +/- raised bilirubin, epirubicin clearance correlated strongly with the level of AST (r = -0.72) but not with serum bilirubin, alkaline phosphatase, albumin or creatinine. Using a multiple regression analysis, AST was the only one of these biochemical variables predictive of epirubicin clearance (r2 = 0.47, P = 0.0006). We conclude that a raised serum AST is a more sensitive and reliable measure of abnormal epirubicin pharmacokinetics than increased bilirubin. These findings have implications for anthracycline treatment in patients with abnormal liver biochemistry.

Adult

Prospective evaluation of chronic cardiotoxicity due to high-dose epirubicin or combination chemotherapy with cyclophosphamide, methotrexate, and 5-fluorouracil.

In a prospective study the left ventricular ejection fraction (LVEF), right ventricular ejection fraction (RVEF), systolic blood pressure, ECG, and heart rate were recorded at rest and during submaximal work to compare the cardiotoxic effect of epirubicin with a combination chemotherapy without known cardiotoxicity. A total of 14 females with advanced breast cancer were treated with epirubicin at a median cumulative dose of 827 mg/m2 (range, 550-1244). These patients had previously received cyclophosphamide, methotrexate, and 5-fluorouracil (CMF) or cyclophosphamide alone as adjuvant treatment, or CMF for advanced disease. The control group consisted of 11 females with advanced breast cancer given CMF only. The systolic blood pressure at rest as well as during submaximal work was significantly lower (P less than 0.05) after treatment in the epirubicin group than in the CMF controls. With regard to LVEF, the median value of 54% at rest was significantly lower after treatment in the epirubicin group than in the controls (59%). There was a significant fall in LVEF at rest and during exercise in the epirubicin group, whereas no such changes were found in the CMF controls after treatment. The RVEF was unaffected. In the epirubicin-treated group one patient developed fatal congestive heart failure, and in the remaining 13 patients treatment was discontinued due to progression of the cancer and not to cardiotoxicity. Thus, the cardiotoxicity of epirubicin changed the clinical outcome in only 1 of 14 patients with advanced breast cancer.

Adult

Effects of ICRF-187 on the cardiac and renal toxicity of epirubicin in spontaneously hypertensive rats.

A study was made of the protective effect of ICRF-187 against the cardiotoxicity and nephrotoxicity produced by epirubicin in spontaneously hypertensive rats (SHR). A total of 20 SHR were divided into 4 groups of 5 animals; the first group received i.v. injections of 1.5 mg/kg epirubicin; the second was treated with i.p. injections of 50 mg/kg ICRF-187 30 min before receiving 1.5 mg/kg epirubicin; the two remaining groups received ICRF-187 and saline, respectively, and served as controls. The experiment was terminated after 12 weekly injections (total cumulative dose of epirubicin, 18 mg/kg). Morphologic studies showed that severe cardiomyopathy manifested by myofibrillar loss and dilatation of the sarcoplasmic reticulum and nephropathy characterized by tubular dilatation and atrophy, protein casts in the lumina of renal tubules, and glomerular vacuolization occurred in SHR given epirubicin alone. Animals receiving the combination of ICRF-187 and epirubicin showed a marked reduction in the severity of cardiomyopathy and a moderate reduction in nephropathy. These changes, and their modification by ICRF-187, were similar to those we have previously observed in SHR treated with total cumulative doses of 12 mg/kg doxorubicin. Such pathologic changes were absent in animals receiving ICRF-187 or saline alone. The findings of this study suggest that ICRF-187 can be used clinically to prevent the cardiotoxicity of epirubicin, particularly in situations in which this drug may have to be given either in large doses or to patients at high risk of developing anthracycline cardiotoxicity.

Animals

Multiple-dose pharmacokinetics of epirubicin at four different dose levels: studies in patients with metastatic breast cancer.

Pharmacokinetic analysis of epirubicin and its metabolites epirubicinol and 7-deoxy-13-dihydro-epirubicinol aglycone during the first and the fourth courses of treatment was performed in 78 patients with metastatic breast cancer. The patients were treated every 3 weeks with epirubicin given as 10-min i.v. infusions at four different dose levels: 40, 60, 90 and 135 mg/m2. In most cases (76 of 78 cases), plasma concentration-time curves fitted to a three-compartmental pharmacokinetic model. The terminal half-life of epirubicin was independent of dose and duration of treatment. Large interindividual differences were demonstrated (mean t1/2 gamma, 21.6 +/- 7.9 h; range, 10.6-69 h; n = 110). In two subjects, extremely long half-lives and high serum bilirubin concentrations indicated impaired liver function. No correlation was found between the half-life and levels of liver alanine aminotransferase (ALAT) or serum creatinine. The metabolite epirubicinol appeared quickly after epirubicin administration and its half-lives were shorter than that of the parent compound (mean t1/2 gamma, 18.1 +/- 4.8 h; range, 8.2-38.4 h; n = 105). Formation of the aglycone metabolite was delayed and the half-life of this metabolite was shorter than that of epirubicin (mean t1/2 gamma, 13 +/- 4.6 h; range, 2.7-29 h; n = 104). The AUC of epirubicin and the total AUC (drug and metabolites) were linearly proportional to the dose, with the former value constituting two-thirds of the latter. A correlation was found between AUC and the plasma concentration of epirubicin at two time points (2 and 24 h after administration). The proposed model was AUC = 9.44 x c2 + 62.5 x c24 + 157.7 (r = 0.953).

Breast Neoplasms

Intracellular uptake and cytotoxic effect in vitro of doxorubicin and epirubicin in human leukemic and normal hematopoietic cells.

Leukemic cells from patients presenting with acute nonlymphoblastic leukemia and normal hematopoietic bone marrow cells from healthy donors for allogeneic bone marrow transplantation were incubated for 3 h with doxorubicin and epirubicin at different concentrations. The intracellular uptake at the end of the incubation was determined by photofluorometry in leukemic cells from 15 patients and in normal cells from 9 donors for bone marrow transplantation. Cytotoxicity in vitro against granulocyte/macrophage colony-forming units (CFU-GM) was determined in normal cells from 7 donors, and in vitro toxicity against leukemic cells was determined by a clonogenic technique in cells from 6 patients and by vital dye staining (DiSC) following 4 days' culture in cells from 15 patients. Epirubicin was significantly less toxic than doxorubicin to normal hematopoetic cells (72% +/- 20% survival of cells for epirubicin vs 45% +/- 13% for doxorubicin at a concentration of 0.2 microM; P less than or equal to 0.005). As analyzed by the DiSC assay, 0.2 microM epirubicin was slightly more toxic to leukemic cells than was the same concentration of doxorubicin (47% vs 61% survival, P less than or equal to 0.01), but the clonogenic assay revealed no difference in toxicity to leukemic cells. At a concentration of 0.2 microM, the mean intracellular uptake of epirubicin in leukemic cells was 0.43 +/- 0.26 nmol/mg protein as compared with 0.33 +/- 0.14 nmol/mg protein for doxorubicin (not significant). In normal cells, the uptake of epirubicin at a concentration of 0.2 microM was 0.47 +/- 0.25 nmol/mg protein as compared with 0.31 +/- 0.21 nmol/mg protein for doxorubicin (not significant). The reduced myelotoxicity observed in vitro together with the retained toxicity to leukemic cells indicates that the therapeutic index of epirubicin is better than that of doxorubicin.

Bone Marrow Cells