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Biomedical subjects

C D Buckner

Publications and source records attributed to C D Buckner.

At least 37 records · Page 2Linked to original sources

A randomized trial of once vs twice daily administration of intravenous granisetron with dexamethosone in patients receiving high-dose cyclophosphamide, thiotepa and carboplatin.

The purpose of this study was to determine the optimal schedule of i.v. granisetron and dexamethosone for control of nausea and emesis in patients receiving high-dose chemotherapy (HDC). Seventy patients with breast cancer received high-dose cyclophosphamide, thiotepa and carboplatin (CTCb) for 3 consecutive days. All 70 received dexamethasone 12 mg i.v. and granisetron 1 mg i.v. prior to infusion of CTCb and were randomized to receive placebo (n = 37) or an additional identical dose of granisetron (n = 33) 12 h later. Beginning on day 2 of chemotherapy administration, 55 patients evaluable later self-administered a cocktail of diphenhydramine (benadryl), lorazepam (ativan) and dexamethasone (BAD). Fourteen of 37 patients (38%) receiving granisetron once a day and 15/33 (44%) receiving it twice a day had a complete response during the first 24 h following the first doses of chemotherapy (P = 0.52). In the 55 evaluable patients receiving BAD, 18 of 29 (62%) in the once daily group and 14/26 (54%) in the twice daily group required additional medications (P = 0.54). The median time to first emetic episode was 20 h (range 6.6-79.5) for patients receiving once a day and 21.4 hours (range 5.8-105.3) for patients receiving twice a day granisetron (P = 0.48). Five patients in the once daily and seven patients in the twice daily group had complete control of nausea and emesis throughout the study period (P = 0.37). It was concluded that there were no statistically significant differences in nausea and emetic control between dexamethasone with once daily or twice daily i.v. granisetron administration in patients receiving high-dose CTCb.

Adult↗

Mobilization and harvesting of peripheral blood stem cells: randomized evaluations of different doses of filgrastim.

The effects of different doses of filgrastim on yields of CD34+ peripheral blood stem cells were evaluated in patients with breast cancer. 55 were randomized to receive filgrastim 10, 20, 30 or 40 microg/kg/d with more CD34+ cells/kg/apheresis harvested after the three highest dose levels. 35 additional patients were randomized to receive 10 or 30 microg/ kg. The median number of CD34+ cells collected after 10 microg/ kg (n = 31) was 0.7 x 10(6)/kg/apheresis (range 0.1-4.4) as compared to 1.2 (range 0.1-6.8) after 30 microg/kg (n = 32) (P = 0.04). Among patients randomized to 10 v 30 microg/kg, more (50%) achieved > or = 5.0 x 10(6) CD34+ cells/kg and less aphereses were required to achieve > or = 2.5 x 10(6) CD34+ cells/kg after the higher dose (P = 0.04). In multivariate analyses, patients receiving 10 microg/kg (n = 31) had lower yields of CD34+ cells (P = 0.026) and had a 3.3-fold increase in the probability of not achieving > or = 5.0 x 10(6) CD34+ cells/kg as compared to patients receiving 20-40 microg/kg (n = 59). Patients who had received radiation had a 2.9-fold probability of not achieving > or = 2.5 x 10(6) CD34+ cells/kg. These data suggest that, in patients with good marrow reserves, doses of filgrastim > 10 microg/kg/d mobilized more CD34+ cells and may be useful when high numbers of CD34+ cells are desired.

Antigens, CD34↗

A randomized trial of two doses of cyclophosphamide with etoposide and G-CSF for mobilization of peripheral blood stem cells in 318 patients with stage II-III breast cancer.

The purpose of this study was to develop a less toxic outpatient chemotherapy regimen for mobilizing peripheral blood stem cells (PBSC). Three hundred eighteen patients with newly diagnosed stage II-III breast cancer who had received conventional dose adjuvant chemotherapy were randomized to receive intermediate-dose cyclophosphamide (2 g/m2), etoposide (600 mg/m2), and granulocyte colony-stimulating factor (G-CSF) 6 micrograms/kg/day (ID-Cy, n = 162) or high-dose cyclophosphamide (4 g/m2) and the same doses of etoposide and G-CSF (HD-Cy, n = 156) followed by collection of PBSC. Three hundred seventeen of 318 patients had apheresis performed, and 315 received high-dose chemotherapy (HDC) followed by PBSC support. The median numbers of CD34+ cells collected in a median of two apheresis following ID-Cy and HD-Cy were 19.9 and 22.2 x 10(6)/kg, respectively (p = 0.04). The fractions of patients achieving CD34+ cell doses > or = 2.5 or > or = 5.0 x 10(6)/kg were not different between the two regimens. More patients receiving HD-Cy had grade 3-4 nausea (p = 0.001), vomiting (p = 0.03), and mucositis (p = 0.04). The fractions of patients having a neutrophil nadir < 0.5 x 10(9)/L following ID-Cy and HD-Cy were 0.83 and 0.95, respectively (p = < 0.001). The fractions of patients having a platelet nadir < 25 x 10(9)/L following ID-Cy and HD-Cy were 0.13 and 0.51, respectively (p = < 0.001). More patients in the HD-Cy group received platelet (p < 0.001) and red blood cell (p < 0.001) transfusions and were admitted to the hospital more frequently (p = 0.03) than patients receiving ID-Cy. Three hundred fifteen patients received HDC followed by infusion of PBSC. There were no significant differences in the incidence of transplant-related death or early survival between patients receiving ID-Cy or HD-Cy followed by HDC. It was concluded that a regimen of Cy 2 g/m2 with etoposide and G-CSF was effective for mobilization of PBSC with low morbidity and resource utilization in patients with limited prior chemotherapy exposure.

Adult↗

Second attempts at mobilization of peripheral blood stem cells in patients with initial low CD34+ cell yields.

The purpose of this study was to determine the effectiveness of second mobilization strategies in patients who yielded < 2.5 x 10(6) CD34+ PBSC/kg after initial mobilization. Repeat mobilization attempts were made with chemotherapy and G-CSF (n = 61) or G-CSF alone (n = 58) in patients who failed initial mobilization with chemotherapy and G-CSF (n = 92) or G-CSF alone (n = 27). A median of 0.27 x 10(6) CD34+ cells/kg per apheresis was collected after the second mobilization, compared with 0.16 with initial harvests (p = 0.0001). Forty-eight percent achieved a target CD34+ cell dose > or = 2.5 x 10(6)/kg when harvests from the first and second mobilizations were combined. Fifteen of 17 patients (88%) with > or = 1.5 x 10(6) CD34+ cells/kg harvested after first mobilization had > or = 2.5 x 10(6) CD34+ cells/kg collected when first and second harvests were combined, as compared with 42 of 102 (41%) achieving < 1.5 x 10(6) CD34+ cells/kg with first PBSC harvests (p = 0.0001). Second mobilizations with chemotherapy and G-CSF or G-CSF alone resulted in similar CD34+ cell yields. Toxicities of second mobilizations were comparable with those of first mobilizations. Seventy-nine patients (66%) received high-dose chemotherapy with PBSC support, with recovery of neutrophils and platelets in a median of 11 and 15 days, respectively. Transplant-related mortality was 4%, and event-free survival at 2 years was 0.34. It was concluded that second mobilization attempts in patients who fail to achieve > or = 2.5 x 10(6) CD34+ cells/kg on initial mobilization were successful in 48% of patients. G-CSF alone was as effective as chemotherapy plus G-CSF in mobilizing CD34+ cells and was associated with less morbidity.

Adult↗

Retrospective analysis of infectious disease in patients who received recombinant human granulocyte-macrophage colony-stimulating factor versus patients not receiving a cytokine who underwent autologous bone marrow transplantation for treatment of lymphoid cancer.

Recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) significantly shortens the number of days required to achieve an absolute neutrophil count of >500/mm3 after autologous bone marrow transplantation (ABMT); however, the ability of rhGM-CSF to enhance neutrophil and macrophage function in vivo has been incompletely characterized. In this retrospective study, the authors compared the incidence of infection from the day of transplantation to 28 days posttransplantation between two groups of previously studied patients who underwent ABMT at the Fred Hutchinson Cancer Research Center. A control group that received no cytokine was compared with a study group that received rhGM-CSF while participating in phase I, II, or III trials. During the posttransplantation period when both study groups had severe neutropenia, 40% (38 of 95) of control patients were found to have an infection, whereas only 13% (6 of 46) of rhGM-CSF patients developed an infection (p = 0.001). Most infections occurred before an absolute neutrophil count of > 100/mm3 was achieved. There was a trend toward fewer fungal infections (14% vs. 4%; p = 0.093); gram-negative bacterial infections (6% vs. 0%; p = 0.083); pulmonary infections (12% vs. 2%; p = 0.062); fewer days of amphotericin B (p = 0.0305); and fewer days of intravenous antibiotics (p = 0.0791) in rhGM-CSF-treated patients. These results support in vivo findings that the function-enhancing effect of rhGM-CSF may reduce infection-related complications.

Adolescent↗

A randomized trial of mobilization of peripheral blood stem cells with cyclophosphamide, etoposide, and granulocyte colony-stimulating factor with or without cisplatin in patients with malignant lymphoma receiving high-dose chemotherapy.

The purpose of this study was to evaluate the addition of cisplatin to cyclophosphamide, etoposide, and granulocyte colony-stimulating factor (G-CSF) for the mobilization of peripheral blood stem cells (PBSC). Eighty-one patients with malignant lymphoma were randomized to receive either cyclophosphamide 4 g/m2 and etoposide 600 mg/m2 (CE), and G-CSF 6 microg/kg/day (n = 41), or the same drugs with cisplatin 105 mg/m2 (CEP; n = 40) followed by collection of PBSC. Seventy-eight of 81 patients (96%) had apheresis performed and 70 (86%) received high-dose chemotherapy (HDC) with PBSC support. The median number of CD34+ cells collected after CE was 19.77 compared with 9.39 x 10(6)/kg after CEP (p = 0.09). More patients receiving CEP had grade 3-4 gastrointestinal (p = 0.03) and neurologic toxicities (p = 0.05), had significant delays in recovery of neutrophils (p = 0.0001) and platelets (p = 0.009), and received more red blood cell (p = 0.03) and platelet (p = 0.08) transfusions than patients receiving CE. There were no significant differences in treatment-related deaths, relapse, survival, or event-free survival between patients receiving CE or CEP when all 81 patients or the 70 patients receiving HDC were evaluated. It was concluded that the addition of cisplatin to CE did not improve CD34+ cell yields, was associated with more morbidity and resource utilization, and was not associated with improvement in outcomes.

Adult↗

Sequential treatment including high-dose chemotherapy with peripheral blood stem cell support in patients with high-risk stage II-III breast cancer: outpatient administration in community cancer centers.

The authors determined outcomes for patients with localized high-risk breast cancer undergoing sequential outpatient treatment with conventional-dose adjuvant therapy, chemotherapy, and growth factor mobilization of peripheral blood stem cells (PBSC) and high-dose chemotherapy (HDC) with PBSC support in community cancer centers. Ninety-six patients with stage II-IIIB noninflammatory breast cancer with 10 or more positive lymph nodes and a median age of 46 years (range, 22-60 years) were treated with: 1) doxorubicin, 5-fluorouracil, and methotrexate (AFM), four courses at 2-week intervals; 2) cyclophosphamide (4 g/m2) and etoposide (600 mg/m2) (CE), followed by filgrastim (6 microg/kg per day) and PBSC harvest; and 3) cyclophosphamide (6 g/m2), thiotepa (500 mg/m2), and carboplatin (800 mg/m2) (CTCb), followed by PBSC infusion. All 96 patients received AFM, 95 (99%) received CE, and 95 (99%) received CTCb with a median hospital stay of 12 days (5-34 days) for all phases of treatment. Sixty-nine patients (72%) are alive, 55 (57%) without relapse at a median follow-up of 53 months (range, 37-77 months). One patient (1%) died of acute myeloid leukemia and all other deaths were associated with recurrent breast cancer. The probabilities of event-free survival (EFS) at 4 years for patients with or without locally advanced disease were 0.37 and 0.69, respectively (p = 0.004), and 0.71 and 0.48 for patients who were estrogen/progesterone receptor (ER/PR) positive or ER/PR negative, respectively (p = 0.016). In multivariate analyses, locally advanced disease (relative risk, 2.3; p = 0.021) and ER/PR-negative hormone receptor status (relative risk, 2.2; p = 0.014) were the only adverse risk factors for EFS identified. Patients with zero, one, or two of these adverse risk factors had 4-year EFS of 0.80, 0.56, and 0.33, respectively. The sequential administration of AFM, CE, and CTCb followed by PBSC in an outpatient community setting was well tolerated in patients with high-risk stage II-III breast cancer. More intensive or more novel treatment strategies will be required to decrease relapses in patients who have ER/PR-negative tumors and/or have locally advanced disease.

Adult↗

Marrow transplantation for chronic myeloid leukemia: the influence of plasma busulfan levels on the outcome of transplantation.

The influence of busulfan (BU) plasma concentration on outcome of transplantation from HLA identical family members for the treatment of chronic myelogenous leukemia (CML) was examined in 45 patients transplanted in chronic phase (CP) (n = 39) or accelerated phase (AP) (n = 6). All patients received the same regimen of BU, 16 mg/kg orally and cyclophosphamide (CY), 120 mg/kg intravenously. Plasma concentrations of BU at steady state (C(SS)BU) during the dosing interval were measured for each patient. The mean C(SS)BU was 917 ng/mL (range, 642 to 1,749; median, 917; standard deviation, 213). Of patients with C(SS)BU below the median, seven (five of 18 in CP and two of four in AP) developed persistent cytogenetic relapse and three of these patients died. There were no relapses in patients with C(SS)BU above the median. The difference in the cumulative incidence of relapse between the two groups was statistically significant (P = .0003). C(SS)BU was the only statistically significant determinant of relapse in univariable or multivariable analysis. The 3-year survival estimates were 0.82 and 0.64 for patients with C(SS)BU above and below the median (P = .33). There was no statistically significant association of C(SS)BU with survival or nonrelapse mortality, although the power to detect a difference in survival between 0.82 and 0.64 was only 0.24, similarly C(SS)BU above the median was not associated with an increased risk of severe regimen-related toxicity. We conclude that low BU plasma levels are associated with an increased risk of relapse.

Adult↗

Interleukin-2 after autologous stem cell transplantation for hematologic malignancy: a phase I/II study.

The success of autologous stem cell transplantation (ASCT) for hematologic malignancy is limited largely by a high relapse rate. It is postulated that IL-2 administered after ASCT may eliminate minimal residual disease and thereby reduce relapses. A phase I/II study was performed to identify a regimen of IL-2 (Chiron) that could be given early after ASCT in phase III trials. In the phase I study, beginning a median of 46 days after ASCT for hematologic malignancy, cohorts of three to four patients received escalating doses of 'induction' IL-2 of 9, 10, or 12 x 10(6) IU/m2/day for 4 or 5 days by continuous i.v. infusion (CIV), followed by a 4-day rest period, and then 1.6 x 10(6) IU/m2/day of maintenance IL-2 by CIV for 10 days. The maximum tolerated dose (MTD) of induction IL-2 was 9 x 10(6) IU/m2/day x 4. In the phase II study, 52 patients received the MTD. Eighty percent of patients completed induction IL-2. Most patients exhibited some degree of capillary leak. One patient died of CMV pneumonia and one died of ARDS. Maintenance IL-2 was well tolerated. In the phase I/II study, 16 of 31 patients with non-Hodgkin lymphoma (NHL), 3/8 with Hodgkin disease (HD), 4/17 with AML, and 4/5 with ALL remain in CR. Two of six multiple myeloma (MM) patients remain in PR. Although the regimen of IL-2 identified had significant side-effects in some patients, it was well tolerated in the majority of patients. Phase III prospectively randomized clinical trials are in progress to determine if this IL-2 regimen will decrease the relapse rate after ASCT for AML and NHL.

Adjuvants, Immunologic↗

Treatment-related mortality in 1000 consecutive patients receiving high-dose chemotherapy and peripheral blood progenitor cell transplantation in community cancer centers.

High-dose chemotherapy (HDC) with autologous peripheral blood progenitor cell (PBPC) is being increasingly utilized as a therapeutic modality for patients with chemotherapy-sensitive disease. Several published HDC regimens have become relatively widely used. The purpose of this analysis was to determine treatment-related mortality (TRM) following administration of five different HDC regimens in community cancer centers. A retrospective evaluation of 1000 consecutive patients with leukemia, non-Hodgkin's lymphoma, Hodgkin's disease, multiple myeloma, sarcoma, ovarian cancer, or breast cancer who received one of five published HDC regimens followed by PBPC infusion over a 5-year period in community cancer centers was performed to determine TRM. Fifty-nine patients (5.9%) died within 100 days of PBPC infusion. Twenty-five patients (2.5%) died predominantly of causes related to disease progression. Thirty-four patients (3.4%) died of TRM, 15 patients (1.5%) died from infection and 19 (1.9%) died from regimen-related toxicities (RRT). In a logistic model, increasing age (P = 0.001) and lower numbers of CD34+ cells/kg (P = 0.003) were associated with an increased risk of 100-day TRM. High-dose cyclophosphamide, thiotepa, and carboplatin was associated with a lower risk of mortality than other regimens (P = 0.0001). High-dose chemotherapy and autologous PBPC support can be performed in community cancer centers with relative safety. Patient age, the type of preparative regimen and the number of CD34+ cells infused were important determinates of mortality.

Age Factors↗

Induction, mobilization of peripheral blood stem cells (PBSC), high-dose chemotherapy and PBSC infusion in patients with untreated stage IV breast cancer: outcomes by intent to treat analyses.

We investigated the outcomes of patients with breast cancer undergoing induction chemotherapy, mobilization of peripheral blood stem cells (PBSC) and high-dose chemotherapy (HDC) with PBSC infusion. One hundred and fourteen patients with untreated stage IV breast cancer, with a median age of 46 years (range 24-62), were entered on a phase II trial consisting of; (1) doxorubicin, 5-flurouracil, methotrexate (AFM) x 4 courses at 2 week intervals; (2) cyclophosphamide (4 g/m2), etoposide (600 mg/m2), cisplatin (105 mg/m2) (CEP), filgrastim (6 micrograms/kg/day) and PBSC collection; (3) cyclophosphamide (6 g/m2), thiotepa (500 mg/m2), carboplatin (800 mg/m2), (CTCb) followed by PBSC infusion. All patients received AFM, 107 (94%) received CEP, 93 (82%) received CTCb and PBSC as per protocol and 99 (87%) ultimately received HDC and PBSC. There was one infectious death after AFM and all other deaths were associated with progressive disease. Fifty-two patients (46%) are alive, 21 (18%) without progression, at a median 31 months (range 22-47). The probabilities of survival and progression-free survival at 3.5 years were 0.40 and 0.17, respectively. All 62 patients with visceral disease and/or a prior history of doxorubicin adjuvant therapy have relapsed or progressed. We conclude that the sequential administration of AFM, CEP and CTCb followed by PBSC resulted in long-term PFS only in patients who were NED, had bone-only disease or had lymph node or soft tissue disease with or without bone disease. Other strategies, aimed at improving responses to initial therapy, improving HDC regimens and/or developing immunomodulatory therapies, will be necessary to improve PFS for patients who fail doxorubicin adjuvant or who have visceral disease.

Adult↗

Engraftment and outcomes of patients receiving myeloablative therapy followed by autologous peripheral blood stem cells with a low CD34+ cell content.

Engraftment kinetics after high-dose chemotherapy (HDC) were evaluated in patients receiving autologous peripheral blood stem cell (PBSC) infusions with a low CD34+ cell content. Forty-eight patients were infused with < 2.5 x 10(6) CD34+ cells/kg; 36 because of poor harvests and 12 because they electively received only a fraction of their harvested cells. A median of 2.12 x 10(6) CD34+ cells/kg (range, 1.17-2.48) were infused following one of seven different HDC regimens. All patients achieved absolute neutrophil counts > or = 0.5 x 10(9)/l at a median of day 11 (range, 9-16). Forty-seven patients achieved platelet counts > or = 20 x 10(9)/l at a median of day 14 (range, 8-250). Nine of 47 (19%) had platelet recovery after day 21, 4/47 (9%) after day 100 and one died on day 240 without platelet recovery. Twenty-six patients (54%) died of progressive disease in 51-762 days; 22 (46%) are alive at a median of 450 days (range, 94-1844), 17 (35%) of whom are surviving disease-free at a median of 494 days (range, 55-1263). No patient died as a direct consequence of low blood cell counts. These data demonstrate that PBSC products containing 1.17-2.48 x 10(6) CD34+ cells/kg resulted in relatively prompt neutrophil recovery in all patients but approximately 10% had delayed platelet recovery.

Antigens, CD34↗

High-dose busulfan, melphalan, thiotepa and peripheral blood stem cell infusion for the treatment of metastatic breast cancer.

The purpose of this study was to determine the outcome of patients with metastatic breast cancer treated with high-dose busulfan (Bu), melphalan (Mel) and thiotepa (TT) followed by peripheral blood stem cell (PBSC) infusion. Fifty-one patients with chemotherapy refractory (n = 32) or responsive (n = 19) metastatic breast cancer received Bu (12 mg/kg), Mel (100 mg/m2) and TT (500 mg/m2) followed by PBSC collected after chemotherapy and growth factor (n = 43) or growth factor alone (n = 8). The 100 day treatment-related mortality was 8% including one death from cytomegalovirus pneumonia, one from aspiration pneumonia and two from regimen-related toxicity (RRT). Seven of 28 refractory (25%) and 5/7 (71%) responsive patients with evaluable disease achieved a complete response of all measurable disease or all soft tissue disease with at least improvement in bone lesions (PR*). Fifteen of 51 patients (29%) are alive and progression-free a median of 423 days (range 353-934) after treatment, 5/32 (16%) with refractory disease and 10/19 (53%) with responsive disease. The probabilities of progression-free survival (PFS) at 1.5 years for the patients with refractory (n = 32) and responsive (n = 19) disease were 0.24 and 0.53, respectively. These preliminary data suggest that high-dose Bu/Mel/TT has significant activity in patients with advanced breast cancer and may be superior to some previously published regimens.

Adult↗

High-dose chemotherapy and peripheral blood stem cell infusion in patients with non-Hodgkin's lymphoma: results of outpatient treatment in community cancer centers.

The outcomes for patients with non-Hodgkin's lymphoma (NHL) treated with high-dose chemotherapy (HDC) and peripheral blood stem cell (PBSC) infusion by practicing oncologists in community cancer centers in the United States were determined. Eighty-three patients with NHL, who had failed conventional chemotherapy, underwent mobilization of PBSC with chemotherapy and a recombinant growth factor in an outpatient facility. At a median of 40 days (range 26-119) after mobilization chemotherapy all received carmustine (300 mg/m2 x 1), etoposide (150 mg/m2 twice a day x 4 days), cytarabine (100 mg/m2 twice a day x 4 days) and cyclophosphamide (35 mg/kg x 4 days) (BEAC) followed by infusion of unmanipulated PBSC in an outpatient facility. The probabilities of treatment-related mortality, relapse/progression, overall survival (OS) and event-free survival (EFS) at 3 years for all 83 patients were 0.07, 0.57, 0.49 and 0.38, respectively. The probabilities of relapse/progression, OS and EFS at 3 years for 28 patients who had failed primary induction chemotherapy were 0.55, 0.42 and 0.38, respectively. The probabilities of OS and EFS for 27 patients in untreated first relapse were 0.52 and 0.44, respectively, as compared to 0.56 and 0.32, respectively, for 18 patients who had reinduction attempts prior to receiving mobilization chemotherapy (P = 0.81 for OS and 0.99 for EFS). No significant risk factors for the outcomes of TRM, relapse/progression, OS or EFS could be identified. These data demonstrate that approximately 40% of patients with NHL who have failed conventional chemotherapy become long-term disease-free survivors after mobilization chemotherapy, high-dose BEAC and PBSC infusion administered in an outpatient setting in community cancer centers, with the major cause of failure being relapse. Results obtained in this study are comparable to published data in similar patient populations receiving therapy as inpatients, suggesting that clinical trials involving well-tested HDC regimens can be carried out safely in this setting.

Adult↗

A phase I-II study of high-dose melphalan, mitoxantrone and carboplatin with peripheral blood stem cell support in patients with advanced ovarian or breast carcinoma.

The purpose of this study was to develop a high-dose chemotherapy (HDC) and peripheral blood stem cell (PBSC) regimen for treatment of patients with ovarian carcinoma that could be administered in an outpatient setting. Fourteen patients with advanced ovarian (n = 9) or breast (n = 5) carcinoma, who had failed conventional chemotherapy, were entered into a dose-escalation trial to determine the maximum tolerated dose (MTD) of carboplatin that could be administered with fixed doses of melphalan (160 mg/m2) and mitoxantrone (50 mg/m2). Twenty-five additional patients were included in a phase II trial at the MTD. Two of two patients had grade 4 severe regimen-related toxicities (RRT), one fatal, at a dose level of 1600 mg/m2. Two of 29 patients (6.9%) treated at the MTD (carboplatin, 1400 mg/m2) died of RRT. All three patients who died of toxicity had a calculated AUC for carboplatin >30 mg/ml/min. Thirty-one patients with ovarian cancer who had failed chemotherapy were treated, 24 at the MTD. Fourteen of 20 patients (70%) with ovarian carcinoma with evaluable disease achieved a CR and seven (35%) are alive disease-free a median of 20 months (range, 7-26). Five of seven patients with ovarian cancer who had failed chemotherapy but were rendered clinically disease-free following surgery survive without progression a median of 13 months (range, 9-19). Eight of 16 (50%) platinum-resistant and 4/12 (33%) platinum-sensitive patients with ovarian cancer survive disease-free.

Adult↗

Collection of peripheral blood progenitor cells after the administration of cyclophosphamide, etoposide, and granulocyte-colony-stimulating factor: an analysis of 497 patients.

BACKGROUND: There is great interpatient variability in the number of peripheral blood stem cells collected, as measured by CD34+ cell content, after the administration of chemotherapy and a growth factor. The ability to predict patients who fail to yield adequate quantities of CD34+ cells would be of value. However, very few reports include large numbers of patients treated in an identical fashion. STUDY DESIGN AND METHODS: Between 1991 and 1995, 497 consecutive patients with a variety of malignant diseases received cyclophosphamide (4 g/m2), etoposide (600 mg/m2), and granulocyte-colony-stimulating factor (6 micrograms/kg/day) for mobilization and collection of a target dose > or = 2.5 x 10(8) CD34+ cells per kg. Multivariate analyses were performed to determine the factors associated with failure to achieve this target harvest. RESULTS: A median of 14.71 x 10(6) CD34+ cells per kg (range, 0.08-137.55) was harvested with a median of 2 (range, 1-11) apheresis procedures. Ninety-one percent of patients yielded > or = 2.5 x 10(5) CD34+ cells per kg. Patients with Stage II-III breast cancer, who had pretreatment platelet counts > or = 150 x 10(9) per L and patients who underwent < or = 1 prior chemotherapy regimen had improved CD34+ cell yields. However, most patients with adverse risk factors yielded > or = 2.5 x 10(6) CD34+ cells per kg. CONCLUSION: A regimen of cyclophosphamide, etoposide, and granulocyte-colony-stimulating factor led to the successful collection of adequate numbers of CD34+ cells in most patients without excessive toxicity. These observations confirm previous reports that intense prior therapy adversely affects the quantity of CD34+ cells harvested. Pretreatment and posttreatment variables did not predict with any certainty the small fraction of patients who fail to yield > or = 2.5 x 10(6) CD34+ cells per kg via multiple apheresis procedures.

Adolescent↗