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Cyclophosphamide suppression of established cell-mediated immunity. Quantitative vs. qualitative changes in lymphocyte populations.

The characteristics of cyclophosphamide-induced suppression of established ccll mediated immunity were studied in guinea pigs previously senstized to tuberculin. Cyclophosphamide treatment for 5 days produced a dose-dependent peripheral lymphoctopenia and disproportionatley greater neutrophenia which was particularly striking at high doses of 20 mg/kg per day(approximaetly 200 mg/kg-2 per day). Lymphoctes remianing in the circulation of cyclophosphamide treeated aniamls showed a doses-dependent reduction to both in vitro proliferactive and macrophage migration inhibitory factor responses to tuberculin compared to lymphocte responses of controls. Proliferative responses to phytohemaggultinin and concanavalin a were not significatly suppressed. Additional studies showed that cyclophosphamide suppressed the porliferactive and migration inhibitroy factor responses to tuberculin of lymph node and splenic as well as cirulating lymphocte populations. These studies showed that relatively short-term cyclophospamide administration produced immunosuppresion by quantitative as well as qualitative changes in lymphocyte populations. Significant suppresion of lymphocte function, howerver, was achived only with doses of cyclophoshamide which also produced a severe neutropenia.

Animals↗

Infiltration of liver and brain by tumor cells in leukemic mice: prevention by dimethyltriazenes and cyclophosphamide.

The dimethyltriazenes p-(3,3-dimethyl-1-triazeno)benzoic acid potassium salt (DM-COOK) and 5-(3,3-dimethyl-1-triazeno)-imidazole-4-carboxamide (DTIC) increase, unlike cyclophosphamide (Cy), the survival time of mice bearing L1210 lymphoid leukemia, P388 lymphocytic leukemia and TLX5 lymphoma with a mechanism unrelated to cytotoxicity for tumor cells. The in vivo bioassays of brains, and the histologic examinations of the livers of leukemic mice show that DM-COOK and DTIC prevent leukemic infiltration in these organs at dosages devoid of cytotoxic effects for peritoneal tumor cells. At a dosage equitoxic with that of dimethyltriazenes, cyclophosphamide causes the absence of tumor cells in the peritoneal cavity and in the brains and livers of mice bearing P388 and L1210 leukemias. DM-COOK and DTIC thus possess a mild or insignificant cytotoxic action together with antimetastatic properties also on mouse transplantable leukemias. The use of DM-COOK appears advantageous over that of cyclophosphamide and DTIC because of a reduced host toxicity, which is particularly evident for cyclophosphamide and DTIC on liver parenchyma and bone marrow.

Animals↗

Variation in administration of cyclophosphamide and mesna in the treatment of childhood malignancies.

The objective of this study was to describe the variation in preparation and administration of cyclophosphamide, mesna, and hydration for the treatment of childhood malignancies within clinical trial protocol documents. All cyclophosphamide-containing cooperative group (Pediatric Oncology Group) protocols that were open at Dana-Farber Cancer Institute in April 1998 were evaluated. Among the 14 active protocols, there were 23 unique cyclophosphamide regimens. Marked variation existed in infusion rate, fluid type, and volume used for admixing cyclophosphamide and mesna, as defined in the "Treatment" section of the protocols that we evaluated. Further variation was found in the type, amount, and rate of infusion of prehydration and posthydration fluid. Internal inconsistency existed within the protocols pertaining to the administration methods described in the "Agent Information," "Treatment," and "Consent" sections of the written documents. Clinical trial protocol documents serve as reference material for health care providers who prescribe, dispense, and administer protocol chemotherapy. Misinterpretation of protocol documents and clinician orders are contributing factors in serious and deadly medication errors. Internal inconsistency within protocol documents and variation in drug administration across protocols is a potential source of error. We recommend improved accuracy, clarity, and internal consistency of protocol documents to improve patient safety and compliance with protocol specifications. In addition, the use of standard concentrations, volumes, and methods of administration of chemotherapeutic agents and accompanying fluids is recommended.

Antineoplastic Agents, Alkylating↗

A variant of the chemotherapy-associated erythrodysesthesia syndrome related to high-dose cyclophosphamide.

A 33-year-old woman with stage IIIA non-Hodgkin's lymphoma unresponsive to ten cycles of CHOP (cyclophosphamide, doxorubicin, vincristine, and prednisone) developed a variant of the chemotherapy-associated erythrodysesthesia syndrome following high-dose cyclophosphamide and radiation in preparation for an autologous bone marrow transplant. The patient first complained of a new rash on her fingers and toes on day 6 after her first dose of cyclophosphamide. Unlike the previous case reports in which patients presented with a palmar-plantar erythema, this patient's rash occurred on the dorsal aspects of her hands and feet, and not on her palms and soles. After evaluation by a dermatologist she was diagnosed as having a variant of palmar-plantar erythema induced by cyclophosphamide.

Adult↗

Efficacy of mesna for prevention of hemorrhagic cystitis after high-dose cyclophosphamide therapy.

For these reasons, a definitive statement about the relative efficacy of mesna for prophylaxis of cyclophosphamide-associated HC in BMT patients cannot be made. Because HC is a frequent and potentially serious complication of high-dose cyclophosphamide therapy, the implementation of some preventive measure is mandatory in all patients. Unless medically contraindicated, provision of sufficient hydration and diuresis to maintain adequate high urine flow should be a component of all prophylactic regimens. It is unclear whether the addition of mesna therapy or bladder irrigation to intravenous hydration provides greater protection. Studies indicate that mesna probably has no adverse effect on engraftment. This is consistent with its chemistry and pharmacology, as the drug is hydrophilic and activated only in the kidneys. Thus, it is inactive in the bloodstream and unable to penetrate cell membranes and interfere with the action of cyclophosphamide. Although safety issues surrounding the use of mesna for prevention of cyclophosphamide-associated HC appear to have been resolved, efficacy issues must await the completion of further well-controlled comparative trials.

Bone Marrow Transplantation↗

High-dose cyclophosphamide for refractory autoimmune hemolytic anemia.

High-dose cyclophosphamide, without stem cell rescue, has been used successfully to treat aplastic anemia and other autoimmune disorders. To determine the safety and efficacy of high-dose cyclophosphamide among patients with severe refractory autoimmune hemolytic anemia, we treated 9 patients with cyclophosphamide (50 mg. kg(-1). d(-1) for 4 days) who had failed a median of 3 (range, 1-7) other treatments. The median hemoglobin before treatment was 6.7 g/dL (range, 5-10 g/dL). The median time to reach an absolute neutrophil count of 500/microL or greater was 16 days (range, 12-18 days). Six patients achieved complete remission (normal untransfused hemoglobin for age and sex), and none have relapsed after a median follow-up of 15 months (range, 4-29 months). Three patients achieved and continue in partial remission (hemoglobin at least 10 g/dL without transfusion support). High-dose cyclophosphamide was well tolerated and induced durable remissions in patients with severe refractory autoimmune hemolytic anemia.

Adult↗

Cyclophosphamide pulse therapy in idiopathic pulmonary fibrosis.

Idiopathic pulmonary fibrosis (IPF) is a progressive disorder with poor prognosis. Response to treatment is infrequent and the use of immunosuppressive agents other than corticosteroids is the subject of ongoing discussion because of uncertain efficacy and side-effects. To determine the efficacy and safety of cyclophosphamide pulse therapy in IPF, this study retrospectively analysed 18 patients with progressive IPF who were treated with intermittent i.v. cyclophosphamide (1-13 g x month(-1)) and additional oral prednisolone for 1 yr. Static lung volumes, arterial oxygen tension (Pa,O2) at rest, clinical symptoms and potential treatment-related side-effects were recorded. Cyclophosphamide had to be stopped in one patient, owing to repeated pulmonary infection; 11 patients were responders (five improving, six stabilizing) and six patients deteriorated. The change in vital capacity (VC) of responders was +6.7+/-18.0% (mean +/-SD), compared with -20.6+/-18.2% in nonresponders (p=0.008). Pa,O2 remained constant in responders (+0.13+/-0.88 kPa (+1.0+/-6.6 mmHg)), while it decreased in nonresponders (-2.08+/-1.92 kPa (-15.6+/-14.4 mmHg, p=0.008)). Additional prednisolone was reduced by 19.1+/-13.4 mg in responders, compared with 6.7+/-16.3 mg in nonresponders (p=0.02). VC at initiation of therapy was higher in responders (60.2+/-10.2 versus 40.3+/-12.9% predicted; p=0.004). No side-effects occurred, other than respiratory tract infection. These data demonstrate that intravenous cyclophosphamide pulse therapy may be a favourable regimen for certain patients with progressive idiopathic pulmonary fibrosis. Patients with a vital capacity of more than 50% predicted and a shorter duration of disease may benefit most.

Administration, Oral↗

High-dose cyclophosphamide for severe systemic lupus erythematosus.

Cytotoxic therapy is a cornerstone for patients with severe systemic lupus erythematosus (SLE). High-dose cyclophosphamide, 200 mg/kg, can induce a complete remission without the need for stem cell rescue in patients with autoimmune illnesses. Here we report on our first four patients treated for severe SLE with this treatment approach. Patients received cyclophosphamide, 200 mg/kg, divided over 4 days. Starting day 10, patients received filgrastim, 5 micrograms/kg/day, until their absolute neutrophil count (ANC) rose to 10.0 x 10(9)/l for two consecutive days. Disease activity as evaluated by scores from the Systemic Lupus Activity Measure-2, the SLE Disease Activity Index and the Responder Index for Lupus Erythematosus were completed before and after high-dose therapy. Before high-dose cyclophosphamide, SLE disease duration ranged from 8 to 21 (mean 12.5) years. Their average disease activity measured by SLAM-2 and SLEDAI was 15.5 (range 11-19) and 23.25 (range 20-26), respectively. At a median of 22 (range 12-39) months of follow-up, mean disease activity measured by SLAM-2 and SLEDAI decreased to 6.25 and 7.75, respectively. All patients experienced febrile neutropenia. No long-term morbidities or mortalities were observed. High dose cyclophosphamide is a therapy capable of decreasing disease severity in poor prognosis SLE patients. Future study is warranted for both refractory patients as well as primary therapy for patients with moderate to severe disease presentations.

Adult↗

Therapy with intermittent pulse cyclophosphamide for pulmonary hypertension associated with systemic lupus erythematosus.

The aim of this study was to compare the efficacy of intravenous cyclophosphamide (IVCYC) versus oral enalapril in mild or moderate pulmonary hypertension (PH) in systemic lupus erythematosus (SLE). Thirty-four patients with SLE who had systolic pulmonary artery pressure (SPAP) > 30 mmHg by Doppler echocardiography were randomized to receive IVCYC (0.5 g/mt2 body surface area, monthly), or oral enalapril (10 mg/day) for six months. The primary outcome was the significant decrease in SPAP. An additional outcome measure included the improvement in the heart functional class (NYHA). Sixteen patients received cyclophosphamide and 18 enalapril. IVCYC decreased the median values of SPAP from 41 to 28 mmHg (P < 0.001), and enalapril from 35 to 27 mmHg (P = 0.02). IVCYC reduced more than twice as much SPAP than enalapril (P = 0.04). In those patients with SPAP > or = 35 mmHg, cyclophosphamide decreased from 43 to 27 mmHg (P = 0.003), but enalapril was not effective (P = 0.14). The NYHA functional class improved only in those with cyclophosphamide (P = 0.021). Also IVCYC had a higher frequency of side effects including infections (RR = 1.6; 95% CI, 1.001-2.47), and gastrointestinal side effects (RR = 14.6; 95% CI, 2.15-99.68). We concluded that IVCYC was effective in mild and moderate PH associated with SLE. Further research is needed to evaluate its long-term efficacy.

Administration, Oral↗

Serum cyclophosphamide activity in patients treated for small cell carcinoma of the lung.

Cyclophosphamide requires in vivo activation for its cytotoxicity. A bioassay of serum cyclophosphamide activity based on inhibition of normal peripheral blood CFU-C by serum from cyclophosphamide-treated patients was developed. Seventeen patients with small cell cancer of the lung were studied before and after cyclophosphamide administration in an attempt to correlate serum cytotoxicity in vitro with clinical response to chemotherapy. A correlation (r = 0.61, p less than 0.01) was discovered between serum cytotoxicity in vitro and subsequent leukopenia in vivo. However, a dose-response relationship was not found between serum cytotoxicity and response to chemotherapy. Besides drug dosage and blood level, other factors govern the sensitivity of small cell lung cancer to chemotherapy.

Biotransformation↗

Recombinant human granulocyte-macrophage colony-stimulating factor reduces hematologic toxicity and widens clinical applicability of high-dose cyclophosphamide treatment in breast cancer and non-Hodgkin's lymphoma.

High-dose administration of anticancer agents is attractive both on theoretic and clinical grounds. Yet, high-dose regimens are usually used as salvage treatments, mainly as a consequence of their considerable hematologic toxicity. One pertinent example is represented by cyclophosphamide, an alkylating agent with a wide spectrum of marked antitumor activity. When used at doses up to 7 g/m2 (190 to 200 mg/kg) this drug does not cause myeloablation, but induces a severe, albeit transient, myelosuppression, which requires platelet transfusions in approximately 50% of treated patients, and is frequently complicated by infectious episodes, occasionally lethal. To accelerate hematopoietic recovery, we continuously infused for 14 consecutive days 5.5 micrograms/kg/d of the glycosylated human recombinant granulocyte-macrophage colony-stimulating factor (rhGM-CSF) into 15 patients with breast cancer and non-Hodgkin's lymphoma treated with 7 g/m2 cyclophosphamide. This schedule was chosen having obtained the fastest hematopoietic recovery among four different options during an initial schedule-finding phase on 12 overall patients. Twenty-one comparable subjects with solid tumors served as controls. We report here that this relatively low, well-tolerated dose of rhGM-CSF reduces from 20 to 14 (median) and from 24 to 14, the number of days required to recover circulating granulocyte counts over 1,000 and 2,500/microL, respectively. The stimulatory effect was associated with a remarkable clinical benefit. In fact, treated patients experienced less infectious complications (7% v 24%) were eligible to receive chemotherapy earlier (median, by day +14 v day +20 for controls), and fewer required prophylactic platelet transfusions (13% v 43%). Our results show that even very high doses of cyclophosphamide can be administered with improved hematologic toxicity, tolerable morbidity, and reduced supportive care requirements. The increase in the therapeutic index made possible by rhGM-CSF infusion prompts the use of high-dose cyclophosphamide, and possibly of other agents with similar myelotoxic activity, early in the clinical course of chemotherapy-sensitive tumors.

Adolescent↗

Mesna versus hyperhydration for the prevention of cyclophosphamide-induced hemorrhagic cystitis in bone marrow transplantation.

Hemorrhagic cystitis is a major complication of high-dose cyclophosphamide therapy used in preparation for allogeneic or autologous bone marrow transplantation. Although previous reports had suggested that the sulfhydryl-containing compound mesna might be superior to forced diuresis in preventing hemorrhagic cystitis, there were concerns about the effect of mesna on engraftment in these studies. To address these concerns, 100 patients were randomized to receive mesna or forced saline diuresis while undergoing bone marrow transplant conditioning with regimens that included high-dose cyclophosphamide. To try to minimize the likelihood of graft rejection, patients who were being transplanted with cyclophosphamide as a sole agent were excluded from the study. After randomization and administration of therapy, patients were monitored by microscopic and dip-stick urinalyses; they were also followed for effects of therapy on engraftment. The incidence of consistent or severe hematuria was 33% in the mesna arm and 20% in the hyperhydration arm (P = .31). Severe bleeding occurred in 12.5% of mesna patients and 7.5% of hyperhydration patients (P = .71). No unexpected toxicities were encountered, and engraftment times did not differ. Based on this randomized trial of 100 patients, we conclude that mesna and hyperhydration are equally effective in preventing cyclophosphamide-induced hemorrhagic cystitis in bone marrow transplantation patients.

Adolescent↗

Predictive factors for peripheral-blood progenitor-cell collections using a single large-volume leukapheresis after cyclophosphamide and granulocyte-macrophage colony-stimulating factor mobilization.

PURPOSE: (1) To study the ability of mobilized peripheral-blood progenitor cells (PBPC) collected in a single large-volume leukapheresis performed on a predetermined date to accelerate engraftment after high-dose cyclophosphamide and thiotepa; (2) to establish the minimum dose of PBPC associated with early engraftment; and (3) to identify parameters predictive of collection of large numbers of PBPC. PATIENTS AND METHODS: Twenty-three patients with breast cancer received cyclophosphamide (4 g/m2) and granulocyte-macrophage colony-stimulating factor ([GM-CSF] 5 micrograms/kg/d x 15 days) for PBPC mobilization. A single leukapheresis was performed 15 days after cyclophosphamide administration. Then, patients received high-dose cyclophosphamide and thiotepa followed by reinfusion of PBPC and 4-hydroperoxycyclophosphamide (4HC)-purged bone marrow. PBPC concentration was measured in serial peripheral-blood samples and in the leukapheresis product. Correlation analysis between PBPC dose and engraftment and between leukapheresis yield and patient characteristics was attempted. RESULTS: A single leukapheresis processed a median 36 L (range, 24 to 46) blood and collected 5 x 10(6) CD34+ cells/kg (< 0.3 to 24) and 6.2 x 10(5) colony-forming units granulocyte-macrophage (CFU-GM)/kg (< 0.001 to 29). All sixteen patients (70%) reinfused with > or = 2.9 x 10(6) CD34+ cells/kg reached a level of greater than 1,000 leukocytes/microL by day 13 and greater than 50,000 platelets/microL by day 15. All of these patients had a percentage of peripheral-blood CD34+ cells > or = 0.5%, and all but one, a level of greater than 100,000 platelets/microL, on the day of leukapheresis. The bone marrow CD34+ cell percentage at study entry predicted the number of CD34+ cells collected after PBPC mobilization (R2 = .42, P = .002). All patients with > or = 2.5% bone marrow CD34+ cells experienced early engraftment. CONCLUSION: Reinfusion of PBPC collected in a single leukapheresis accelerates engraftment in the majority of patients. Pretreatment bone marrow CD34+ cell content determines PBPC mobilization capacity and may help select hematopoietic rescue strategies.

Adult↗

Recombinant human interleukin-3 to dose-intensify carboplatin and cyclophosphamide chemotherapy in epithelial ovarian cancer: a phase I trial.

PURPOSE: To define the optimal dose of recombinant human interleukin-3 (rhIL-3) required to intensify the dose of carboplatin and cyclophosphamide for advanced epithelial ovarian cancer. PATIENTS AND METHODS: Seventeen patients were treated on day 1 with carboplatin (dose adjusted for creatinine clearance: range, 257 to 385 mg/m2; median, 300 mg/m2) and cyclophosphamide (750 mg/m2). rhIL-3 5 micrograms/kg/d (n = 10) or 10 micrograms/kg/d (n = 7) was administered subcutaneously (SC) on days 2 through 11. Carboplatin dose was escalated if no postponement of cycles 1 to 3 had occurred. RESULTS: A 3-week interval was achieved in 62% of cycles and a 4-week interval in 81%, with no difference between the rhIL-3 doses. A neutrophil nadir less than 0.5 x 10(9)/L occurred in 35% of the cycles at 5 micrograms/kg/d and in 52% at 10 micrograms/kg/d of rhIL-3 (nonsignificant difference). The mean platelet nadir in cycle 1 was 173 +/- 78 x 10(9)/L at 5 micrograms/kg/d and 340 +/- 152 x 10(9)/L at 10 micrograms/kg/d of rhIL-3 (P < .05), with a faster recovery of platelets at 10 micrograms/kg/d (P < .05). Progressive myelotoxicity occurred for leukocytes and platelets at both rhIL-3 doses and required chemotherapy postponement in later cycles. The planned six cycles were completed by 41% of patients. Fever (> or = 38.5 degrees C) occurred in 38% of cycles at 5 micrograms/kg/d and in 97% at 10 micrograms/kg/d (P < .0005); headache and myalgias occurred in 30% and 44%, respectively. After two cycles, diffuse erythema, facial edema, and urticaria were observed in two patients at 5 micrograms/kg/d and in five patients at 10 micrograms/kg/d of rhIL-3. This resolved after discontinuation of rhIL-3 and administration of corticosteroids and antihistamines. CONCLUSION: A dose of 5 micrograms/kg/d of rhIL-3 proved to be optimal to intensify the carboplatin and cyclophosphamide regimen. It permitted the administration of carboplatin and cyclophosphamide combination therapy every 3 weeks in 62% of cycles.

Adult↗

Dose escalation of paclitaxel with high-dose cyclophosphamide, with analysis of progenitor-cell mobilization and hematologic support of advanced ovarian cancer patients receiving rapidly sequenced high-dose carboplatin/cyclophosphamide courses.

PURPOSE: We commenced a phase I study of escalating dose Taxol (paclitaxel; Bristol-Myers Squibb Co, Wallingford, CT) in addition to cyclophosphamide, to assess its impact on both antitumor efficacy and mobilization of peripheral-blood progenitor cells (PBP). PATIENTS AND METHODS: Induction therapy consisted of two cycles of cyclophosphamide 3.0 g/m2 plus escalating-dose Taxol (dose levels I to IV, 150, 200, 250, and 300 mg/m2, respectively) in cohorts of three, plus filgrastim granulocyte colony-stimulating factor [G-CSF]) and leukaphereses to harvest PBP, followed by four courses of rapidly cycled carboplatin and cyclophosphamide (1,000 and 1,500 mg/m2 per course, respectively), for which hematopoietic rescue was achieved with PBP. RESULTS: Sixteen patients completed all planned cycles of Taxol/cyclophosphamide. Fifty-four cycles of carboplatin/cyclophosphamide were given and rescued with PBP. The median interval between treatments for Taxol/cyclophosphamide courses was 14 days (range, 13 to 21). Twelve patients completed all planned cycles of carboplatin/cyclophosphamide. The median inter-treatment interval for carboplatin/cyclophosphamide courses when rescue was achieved with Taxol/cyclophosphamide-primed PBP was 17 days (range, 14 to 25). The median number of days to recovery of an absolute neutrophil count (ANC) greater than 0.5 was 8 (range, 5 to 12), and of self-sustaining platelet count greater than 20 x 10(9)/L, 11 (range, 8 to 15). There was one episode of fatal sepsis. Of 13 patients assessable for response, there were five patients with pathologic complete responses (38.5%), six patients with microscopic residual disease (46%), and two patients with pathologic partial responses, for an overall response rate of 100%. CONCLUSION: The addition of escalating-dose Taxol to high-dose cyclophosphamide does not compromise PBP mobilization. The use of PBP mobilized in this fashion provides reliable engraftment after sequential administration of high-dose carboplatin/cyclophosphamide. Toxicities produced with this approach are manageable. The response rates demonstrated are promising and warrant further evaluation.

Adenocarcinoma↗

Phase I and pharmacologic study of sequences of paclitaxel and cyclophosphamide supported by granulocyte colony-stimulating factor in women with previously treated metastatic breast cancer.

PURPOSE: Pacltaxel is active in metastatic breast cancer, but limited information is available on combinations of this agent with other cytotoxic agents. Study aims were to determine the maximum-tolerated doses (MTDs) of paclitaxel (24-hour infusion) and cyclophosphamide (1-hour infusion) administered every 21 days with granulocyte colony-stimulating factor (G-CSF, filgrastim) to determine the effect of drug sequence on toxicity and pharmacology and to evaluate the activity of this combination in women with anthracycline-resistant disease. PATIENTS AND METHODS: Thirty-seven women with metastatic breast cancer were treated. Starting doses were paclitaxel 135 mg/m2 and cyclophosphamide 750 mg/m2, with filgrastim 5 microG/kg/d subcutaneously beginning 24 hours after chemotherapy. Four patients were treated at each dose level. The sequence of drug administration was alternated between sequential patients, and with subsequent courses of therapy in each patient, to enable evaluation of effects of drug sequence on toxicity and pharmacology. Patients were treated every 21 days and disease status was reevaluated every two courses. RESULTS: Paclitaxel 200 mg/m2 and cyclophosphamide 1,250 mg/m2 is the MTD for this combination on this schedule. The hematopoietic toxicity of therapy was sequence-dependent. Paired analysis of toxicity data indicated more severe toxicity in courses in which paclitaxel was administered first. Sequence-dependent pharmacologic effects did not account for this phenomenon. Responses were noted in 29% of patients with anthracycline-resistant disease. CONCLUSION: Paclitaxel 200 mg/m2 and cyclophosphamide 1,250 mg/m2 with filgrastim administered every 21 days are the doses recommended for further study.

Adult↗

Dose-escalation and pharmacodynamic study of topotecan in combination with cyclophosphamide in patients with refractory cancer.

PURPOSE: Based on preclinical data that demonstrated synergy between alkylating agents and topoisomerase (topo) I poisons, we determined the maximum-tolerated dose (MTD) of topotecan, using a 5 day bolus schedule, that could be given in combination with a single, fixed dose of cyclophosphamide. Pharmacodynamics of this combination were explored by analyzing biochemical effects of treatment in peripheral-blood mononuclear cells (PBMCs). PATIENTS AND METHODS: Patients with refractory cancer were treated with cyclophosphamide 600 mg/m2 on day 1, followed by topotecan given as a 30-minute infusion for 5 consecutive days. Cycles were repeated every 3 weeks. Once the MTD was defined, granulocyte colony-stimulating factor (G-CSF) was added to the regimen in an attempt to escalate further the dose of topotecan. Plasma concentrations of topotecan were determined during the first treatment cycle by high-performance liquid chromatography. PBMCs were sampled at baseline and throughout the 5-day treatment period for analysis of topo I protein concentrations and to determine drug-induced DNA fragmentation. RESULTS: Twenty-six patients were treated with topotecan at doses that ranged from 0.5 mg/m2/d to 1.2 mg/ m2/d for a total of 74 cycles. Reversible neutropenia was dose-limiting, with mild to moderate suppression of the other blood-cell elements commonly occurring. Transfusions of RBCs and platelets were required in 24% and 7% of treatment cycles, respectively. The most prominent nonhematologic toxicities were fatigue and weight loss. Compared with previously published data in which topotecan was administered alone, cyclophosphamide did not appear to alter the pharmacokinetics of topotecan. Significant increases in topo I concentration were identified in PBMCs following the administration of cyclophosphamide on day 1 and there was a significant decrease in topo 1 during the 5-day course of treatment (P < .01, sign test). DNA fragmentation as a result of drug treatment was identified in 11 of 15 (73%) cycles analyzed. CONCLUSION: For previously treated patients, the recommended dose of topotecan in this schedule is 0.75 mg/m2/d without growth factor support and 1.0 mg/ m2/d if it is administered with G-CSF. Biochemical changes in cells induced by exposure to camptothecins can be measured in vivo and these effects may have important implication in the design of combination therapies and the optimal scheduling of this class of agents.

Adult↗

Phase I study of fludarabine plus cyclophosphamide in patients with previously untreated low-grade lymphoma: results and and long-term follow-up--a report from the Eastern Cooperative Oncology Group.

PURPOSE: To determine the toxicity and recommended phase II doses of the combination of fludarabine plus cyclophosphamide in chemotherapy-naive patients with low-grade lymphoma. PATIENTS AND METHODS: Previously untreated patients with low-grade lymphoma were entered onto dosing cohorts of four patients each. The cyclophosphamide dose, given on day 1, was increased from 600 to 1, 000 mg/m(2). Fludarabine 20 mg/m(2) was administered on days 1 through 5. The first eight patients were treated every 21 days; later patients were treated every 28 days. Prophylactic antibiotics were required. RESULTS: Prolonged cytopenia and pulmonary toxicity each occurred in three of eight patients treated every 3 weeks. The 19 patients treated every 28 days, who were given granulocyte colony-stimulating factor as indicated, did not have undue nonhematologic toxicity. Dose-limiting toxicity was hematologic. At the recommended phase II/III dose (cyclophosphamide 1,000 mg/m(2)), grade 4 neutropenia was observed in 17% of all cycles and 31% of first cycles. Grade 3 or 4 thrombocytopenia was seen in only 1% of all cycles. The median number of cycles per patient was six (range, two to 11) for all patients enrolled. The response rate was 100% of 27 patients entered; 89% achieved a complete and 11% a partial response. Nineteen of 22 patients with bone marrow involvement had clearing of the marrow. Median duration of follow-up was more than 5 years; median overall and disease-free survival times have not been reached. Kaplan-Meier estimated 5-year overall survival and disease-free survival rates were 66% and 53%, respectively. CONCLUSION: The recommended dosing for this combination in patients with previously untreated low-grade lymphoma is cyclophosphamide 1, 000 mg/m(2) day 1 and fludarabine 20 mg/m(2) days 1 through 5. The regimen has a high level of activity, with prolonged complete remissions providing 5-year overall and disease-free survival rates as high as those reported for other therapeutic approaches in untreated patients.

Adult↗