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Biomedical subjects

R I Fisher

Publications and source records attributed to R I Fisher.

At least 19 recordsLinked to original sources

Aggressive treatment for postcardiac transplant lymphoproliferation.

Posttransplant lymphoproliferative disorder (PTLD) is a frequently fatal complication of organ transplantation, occurring in 2% to 6% of cardiac recipients. Treatment remains poorly defined. Reduction in immunosuppression is effective in a proportion of cases, but mortality on the order of 80% is reported for patients requiring chemotherapy. The reason for such poor outcomes is unclear, but may be partly caused by the concomitant use of immunosuppressives. Nineteen consecutive cardiac recipients with PTLD were studied retrospectively in terms of clinical features and outcome. Patients were managed according to a uniform treatment approach. Initial therapy was a trial of reduced immunosuppression with concomitant acyclovir followed, if unsuccessful, by aggressive combination chemotherapy. The regimen used was predominantly ProMACE-CytaBOM. Six patients with phenotypically polyclonal PTLD presented less than 6 months after transplantation (median 6 weeks). Only 1 of 4 (25%) treated patients responded to reduced immunosuppression; the remainder died of multiorgan failure. Thirteen patients presented with phenotypically monoclonal disease > or = 6 months after transplantation. In 8 of 12 (75%) treated patients initial therapy was reduction in immunosuppression. None achieved complete remission (CR) and 2 experienced fatal rejection. Two patients achieved durable surgical CR. The remaining 8 patients received chemotherapy; 2 of 8 (25%) died during treatment, 6 of 8 (75%) achieved CR. None have relapsed, at a median duration of follow-up of 38 months. Neutropenic sepsis and subclinical doxorubicin cardiotoxicity at a mean cumulative dose of 63 mg/m2 were the principal toxicities. Our data indicate that aggressive chemotherapy is both feasible and effective in phenotypically monoclonal PTLD refractory to reduced immunosuppression. ProMACE-CytaBOM is well suited to cardiac recipients, minimizing doxorubicin exposure and obviating the need for concurrent immunosuppressives.

Adult

Treatment of aggressive non-Hodgkin' lymphomas. Lessons from the past 10 years.

Therapy for aggressive non-Hodgkin's lymphomas has undergone significant evolution in the last 25 years. First generation combination chemotherapy studies produced complete remissions (CRs) of 45-53%, with 30-37% long term survivors. New treatment programs aimed at increasing CR rates were then developed with the assumption that the additional complete responders would also become long term disease free survivors. Initial reports of single institution pilot studies with third generation regimens suggested 68-86% CR and 58-69% survival; however, with longer follow-up, the survival decreased. Furthermore, confirmatory national Phase II trials using these newer regimens produced CR rates of only 49-65% and survival of 50-61%. Thus conclusions concerning the efficacy of these new regimens awaited the results of prospective randomized trials. The Southwest Oncology Group (SWOG) recently conducted a randomized trial comparing standard therapy, CHOP, to the third generation chemotherapy regimens, m-BACOD, ProMACE-CytaBOM, or MACOP-B. There is no difference in response rate, time to treatment failure, or overall survival between CHOP and the third generation regimens. However, the cost and toxicity levels of the new regimens were higher. Thus, CHOP remains the best available standard of care, but based on the finding that fewer than 50% of these patients are cured, SWOG believes that new treatment approaches for patients with advanced-stage aggressive histology non-Hodgkin's lymphoma must be developed.

Antineoplastic Combined Chemotherapy Protocols

A phase III comparison of CHOP vs. m-BACOD vs. ProMACE-CytaBOM vs. MACOP-B in patients with intermediate- or high-grade non-Hodgkin's lymphoma: results of SWOG-8516 (Intergroup 0067), the National High-Priority Lymphoma Study.

BACKGROUND: CHOP is a four-drug, first-generation combination chemotherapy regimen that has cured approximately 30% of all patients with advanced stages of intermediate- or high-grade non-Hodgkin's lymphoma in national cooperative group trials. Initial single-institution studies of third-generation regimens such as m-BACOD, ProMACE-CytaBOM, and MACOP-B suggested that 55%-60% of these patients might be cured. PATIENTS AND METHODS: In order to make a valid comparison between these regimens, the Southwest Oncology Group and the Eastern Cooperative Oncology Group initiated a randomized phase III comparison of CHOP vs. m-BACOD vs. ProMACE-CytaBOM vs. MACOP-B. Endpoints of the study were response rate, time to treatment failure, overall survival, and severe or life-threatening toxicity. Received dose intensity calculations and subset analyses were also performed. RESULTS: 1138 patients were registered on this clinical trial. Each treatment arm contained between 218 and 233 eligible patients. Known prognostic factors were equally distributed. The initial results of this study were recently published. There were no significant differences in either the partial or complete response rates between treatment arms. Now after a median follow-up of 49 months and a maximum follow-up of 84 months, there is still no difference in time to treatment failure (p = 0.40) or overall survival (p = 0.68). No subset of patients was found to have significantly improved survival with the third-generation regimens. The received dose intensity data were comparable to previously published data for these regimens. Fatal toxicity was 1% for CHOP, 3% for ProMACE-CytaBOM, 5% for m-BACOD, and 6% for MACOP-B. CONCLUSION: Based on similar failure-free and overall survival with lower cost and lower severe toxicity, CHOP remains the standard chemotherapy for patients with advanced-stage, intermediate- or high-grade non-Hodgkin's lymphoma. New treatment strategies need to be developed to improve the prognosis of these patients.

Aged

A phase I trial of continuous infusion interleukin-4 (IL-4) alone and following interleukin-2 (IL-2) in cancer patients.

BACKGROUND: Interleukin-4 (IL-4) can enhance immune function within various leukocyte populations and mediate antitumor effects in mice. In vitro, IL-4 activation of human lymphocytes is enhanced by prior exposure to interleukin-2 (IL-2). This phase I trial of continuous intravenous infusion (CI i.v.) IL-4 was performed to determine its toxicity and biologic activity. IL-2 was administered prior to a second course of IL-4 in the same patients to determine whether IL-2 exposure can enhance IL-4 effects in vivo. PATIENTS AND METHODS: Seventeen patients with non-hematologic malignancies were entered on this trial. Treatment consisted of 7 days of CI i.v. IL-4 followed by a 2 week period off therapy, then a 4 day course of CI i.v. IL-2 at 11.2 MIU/m2/day followed by 3 days rest, and then a second 7 day course of CI i.v. IL-4. IL-4 dose escalation included 40 micrograms/m2/day (6 pts.), 120 micrograms/m2/day (3 pts.), 360 micrograms/m2/day (5 pts.), and 600 micrograms/m2/day (3 pts.). RESULTS: Dose limiting toxicity occurred at 600 micrograms/m2/day of IL-4; a dose at which 2 of 3 patients exhibited a vascular leak syndrome characterized by weight gain, peripheral edema, effusions, oliguria, and diffuse rash. Pretreatment with IL-2 did not significantly enhance IL-4 toxicity in the 40-360 micrograms dose range. IL-4 treatment was associated with a modest, but significant increase in peripheral eosinophil counts (p = 0.004), but no consistent change in lymphocyte phenotype or function. Patients treated at the higher dose of IL-4 (360 micrograms) administered following IL-2, exhibited a marked increase in peripheral eosinophils after IL-4 therapy (p = 0.007). Following the second course of IL-4, we observed increases in the percent CD56+ (NK/LAK marker) lymphocytes (mean increase = 6.8%), above levels induced by the preceding IL-2 treatment (p = 0.055). A single minor durable tumor response was seen in a patient with metastatic renal cancer. CONCLUSIONS: IL-4 administered at 360 micrograms/m2/day CI i.v. over seven days is the maximum tolerated dose and is tolerable following a 4 day course of IL-2. IL-4 therapy alone is associated with a modest eosinophilia. In patients receiving IL-2 prior to IL-4, both circulating eosinophils and CD56+ cells increased above levels observed early after IL-2 treatment. Based upon these results, phase II trials of IL-4 in combination with IL-2 could be planned in 'IL-2 sensitive' malignancies.

Adult

Diffuse small noncleaved-cell, non-Burkitt's lymphoma in adults: a high-grade lymphoma responsive to ProMACE-based combination chemotherapy.

PURPOSE: To review the efficacy of cyclophosphamide, doxorubicin, etoposide, methotrexate with leucovorin, and prednisone (ProMACE)-based combination chemotherapy programs in the treatment of patients with diffuse small noncleaved-cell non-Burkitt's lymphoma. PATIENTS AND METHODS: Thirty-three patients with diffuse small noncleaved-cell non-Burkitt's lymphoma were accrued: eight with localized disease were treated with modified ProMACE-mechlorethamine, vincristine, procarbazine, and prednisone (MOPP) plus involved-field radiation therapy, and 25 with advanced-stage disease were treated with ProMACE/MOPP flexitherapy (n = 8), ProMACE-MOPP (n = 9), or ProMACE-cytarabine, bleomycin, vincristine, and methotrexate with leucovorin (CytaBOM) (n = 8). The median follow-up duration is 10 years. RESULTS: All eight patients with localized disease achieved a complete response, none have relapsed, and one died of intercurrent illness. Among patients with advanced-stage disease, five of eight (63%) flexitherapy-treated patients, six of nine (67%) ProMACE-MOPP-treated patients, and eight of eight (100%) ProMACE-CytaBOM-treated patients achieved a complete response. If the two ProMACE-MOPP-based groups are considered together, disease-free and overall survival rates at 15 years are projected at 61% and 35%, respectively. In contrast, only one patient has relapsed from a ProMACE-CytaBOM-induced complete remission, and overall survival of ProMACE-CytaBOM-treated patients (88%) is significantly higher than that for flexitherapy and ProMACE-MOPP (P2 = .04). CONCLUSION: Adult patients with diffuse small non-cleaved-cell non-Burkitt's lymphoma may be effectively treated with regimens that are effective in other aggressive lymphomas (eg, diffuse large-cell lymphoma).

Adult

Identification of a novel CD56- lymphokine-activated killer cell precursor in cancer patients receiving recombinant interleukin 2.

Circulating lymphokine-activated killer (LAK) cell activity in cancer patients receiving recombinant interleukin 2 (rIL-2) therapy is confined to cells expressing the CD56- surface marker. However, CD56- cells from these patients but not normal individuals have been reported to exhibit LAK cytotoxicity only following in vitro activation with rIL-2. Studies were performed to document the existence of CD56- LAK precursor cells and to phenotypically characterize this population in patients receiving rIL-2 therapy using fluorescence-activated cell sorter-purified CD56- cell subsets. Initial studies confirmed that CD56- cells exhibit NK activity [20 +/- 7 (SE) LU/10(6) cells] but not LAK activity (0 +/- 0 LU/10(6) cells) when evaluated directly from peripheral blood of patients receiving rIL-2. CD56- cells from patients but not normal individuals developed significant LAK cytolytic activity against NK-resistant COLO 205 targets (16 +/- 3 LU/10(6) cells) when cultured for 3 days with 1500 units/ml rIL-2. The CD56- LAK precursor activity was confined to cells expressing a CD56-CD16+ phenotype and a large granular lymphocyte morphology; little or no NK or LAK precursor activity was detectable in CD56-CD5+ T-cells from patients. Phenotypic characterization of CD16+CD56- cells revealed that this population is uniformly CD11a+,CD18+, and CD38+ and is heterogeneous in its expression of CD11b, CD11c, and CD16/Leu 11c. These results indicate that rIL-2 administration induces enhanced LAK precursor activity in a novel population of CD5-CD16+CD56- cells.

Antigens, CD

T cell receptor expression can switch on and off at a posttranslational level.

The human T acute lymphocytic leukemia cell line, SUP-T13, is a mosaic of TCR/CD3+ and TCR/CD3- cells. Individual SUP-T13 cells can spontaneously switch on and off surface TCR/CD3 expression. This switching was demonstrated by culturing and analysis of single cell clones that were TCR/CD3+ or TCR/CD3-. The rate of switching is about 10(-2)/cell per generation in either direction. This is too high to be due to a spontaneous mutation event. Furthermore, switched cells can revert at similar rates, as demonstrated by repeated cloning and reanalysis. This makes it likely that a regulatory change is responsible for switching. In support of this, all known TCR/CD3 proteins are found intracellularly in TCR/CD3- cells, and they associate with each other as in TCR/CD3+ cells. Furthermore, no structural abnormalities of the TCR/CD3 chains can be seen in TCR/CD3- cells using two-dimensional electrophoresis. However, in these cells, the chains accumulate in great excess intracellularly. This accumulation is specific to the TCR/CD3 complex, as other glycoproteins are still expressed normally on the cell surface. Thus, there is regulation of TCR expression at a posttranslational level. These TCR/CD3- cells may lead to the identification of novel protein(s) involved in glycosylating, processing, or transporting the TCR/CD3 complex. Potential loss of TCR/CD3 expression may also limit the feasibility of TCR-based therapies for T cell leukemias.

Antigens, Differentiation, T-Lymphocyte

Phase I study of streptozocin- and carmustine-sequenced administration in patients with advanced cancer.

BACKGROUND: Fewer than 20% of patients with nonhematologic malignancies treated with chloroethylnitrosoureas (CENUs) respond, but streptozocin (STZ), which depletes O6-methylguanine-DNA-methyltransferase (MGMT), has been shown to reverse resistance to CENUs in vitro. PURPOSE: The purpose of this phase I study was to determine (a) the maximum tolerated dose (MTD) of carmustine (BCNU), a CENU, plus a fixed dose of STZ; (b) the toxic effects of the drugs; and (c) the effects on peripheral blood mononuclear cells (PBMC). METHODS: A clinical phase I study of STZ followed by BCNU was designed to simulate conditions that produce maximal sensitization of CENU-resistant HT-29 cells in vitro. Patients received a 20-minute infusion of the MTD of STZ (2 g/m2) followed 1 hour later with a 60-minute infusion of BCNU (100, 125, 137.5, or 150 mg/m2). Treatment was repeated after 6 weeks. Twenty-four patients with advanced malignancies received 32 courses of therapy (range, 1-2 courses). RESULTS: The MTD of BCNU was 125 mg/m2. The dose-limiting toxic effect was thrombocytopenia occurring about 22 days after treatment, with recovery between days 28 and 35. Transient hypophosphatemia and proteinuria were common, and serum creatinine was elevated in 9% of the courses. Two patients who received therapy died--one due to pulmonary toxic effects and one due to hepatic toxic effects. Two patients with previously untreated carcinoid achieved partial response. In three patients, MGMT levels in PBMC were more than 85% depleted after STZ administration and more than 90% depleted after BCNU infusion. CONCLUSIONS: These results show that the magnitude of MGMT depletion by STZ in PBMC is in the range necessary to produce sensitivity to CENUs in resistant cell lines but also that, when BCNU is combined with STZ, the MTD of BCNU is about 50% that of BCNU as a single agent and that platelet count suppression occurs earlier. IMPLICATIONS: We plan to conduct phase II studies of STZ plus BCNU in tumor types with low response to CENUs. One of the major goals will be to demonstrate that depletion of MGMT is greater in tumor cells than in normal cells.

Adult

Bleomycin in non-Hodgkin's lymphoma.

Bleomycin is a cell-cycle--specific chemotherapeutic agent, with several interesting properties, that lends itself to use in combination chemotherapeutic protocols, especially those for malignant lymphomas. In the following article, bleomycin's use as a single agent and subsequently in three generations of combination chemotherapeutic regimens is reviewed. Bleomycin's lack of myelosuppression and its tendency to concentrate in lymphoid tissue while maintaining tolerable toxicities has been the rationale for its incorporation into more aggressive treatment regimens.

Antineoplastic Combined Chemotherapy Protocols

Phase II trial of recombinant human interferon alpha in myelodysplastic syndromes.

Twenty patients with myelodysplastic syndromes were treated with daily subcutaneous injections of interferon alpha 2a, at the initial dose of 3 x 10(6) U/m2. Hemogram, chemistry profile, natural killer (NK) cell activity and lymphokine-activated killer (LAK) cell cytotoxicity were monitored serially. Bone marrow with cytogenetic analysis was done before therapy and every three months afterwards. Normalization to the complete blood count, and wherever applicable, decrease in blast count of 5% or less were defined as a complete response. Improvement in hemoglobin level to 12 g/dl, neutrophil count to 1000/mm3 and platelets to 100,000/mm3 was considered a partial response. The median age was 71 (range 59-83) years and 16 of the patients were males. Two patients withdrew from the treatment in the first week and were considered ineligible. Among the other 18, two had refractory anemia, two refractory anemia with ringed sideroblasts, four chronic myelomonocytic leukemia, eight refractory anemia with excess blasts, and two refractory anemia with excess blasts in transformation to acute leukemia. Twelve patients were treated for six months, the other six were taken off the treatment after six to eight weeks because of disease progression. Only one patient with chronic myelomonocytic leukemia had a partial response for two months. NK cell activity remained unchanged before (18.3 +/- 4.6 lytic units) and during interferon therapy (19.6 +/- 5.3 lytic units). LAK cytotoxicity was not detected in any patient before therapy and was seen in only one patient (not the responder) during therapy (5.7 lytic units). The toxicity of the interferon therapy was substantial. Seventeen patients required a dose reduction and fifteen lost greater than 10% of body weight. Eleven patients (61%) developed infections requiring antibiotic therapy, and eight (44%) required hospitalization. Seven patients developed neurologic toxicity. Interferon alpha 2a is an ineffective but toxic therapy in these elderly patients with myelodysplastic syndromes.

Aged

Cytotoxic synergy of cisplatin with concurrent hydroxyurea and cytarabine: summary of an in vitro model and initial clinical pilot experience.

Cytarabine and hydroxyurea in combination are known to inhibit the DNA excision repair system. Given this system is responsible for repair of cisplatin-DNA adducts, we hypothesized that combining cytarabine, hydroxyurea, and cisplatin in an appropriate schedule might inhibit adduct repair, increase the number of DNA lesions, and produce synergistic cell kill. In vitro experiments using clinically achievable doses and schedules of these antimetabolites demonstrated cytotoxic synergy with the three-drug combination, but little or no such synergy with either antimetabolite plus cisplatin. The inclusion of hydroxyurea was necessary to achieve maximum synergy. Increased levels and persistence of cisplatin-induced DNA interstrand cross-links were observed, suggesting repair inhibition may have occurred. The dose of cisplatin required to inhibit colony formation by 90% was reduced approximately one third, even after normalization for the cytotoxic component(s) of hydroxyurea, cytarabine, and hydroxyurea plus cytarabine. Using one of the two optimal in vitro schedules for the three-drug combination, we performed a clinical pilot study in two patient cohorts (with and without prior systemic therapy). Administration of the program was feasible, and resulted in dose-limiting thrombocytopenia only in the cohort with prior chemotherapy. Azotemia was treatment-limiting in responding patients. Responses were observed in patients with a variety of solid tumors, including several patients who had previously failed cisplatin therapy. Modifications of this program are discussed, which have, to date, significantly decreased the toxicity concerns raised by the first trial. Phase II trials are planned in patients with a variety of cisplatin-responsive and nonresponsive neoplasms.

Administration, Oral

Induction of human monocyte IL-1 mRNA and secretion during anti-CD3 mitogenesis requires two distinct T cell-derived signals.

The T cell signals that regulate the induction of human monocyte IL-1 during primary immune activation were investigated by using anti-CD3 mitogenesis. The induction of monocyte IL-1 alpha and beta mRNA during anti-CD3 mitogenesis was rapid (less than or equal to 1 h) and required the presence of both T cells and anti-CD3. The addition of T cells plus a nonmitogenic anti-CD5 antibody failed to induce IL-1 alpha or beta mRNA, indicating that IL-1 mRNA induction by anti-CD3 required T cell activation. Experiments using double chamber culture wells revealed that the major initial phase of IL-1 alpha and beta mRNA induction (1 to 12 h) required direct cell contact between monocytes and T cells. A subsequent minor late phase (greater than or equal to 12 h) of IL-1 mRNA was induced independently of cell contact in monocytes that received only soluble factors generated during anti-CD3 mitogenesis and was temporally associated with the appearance in culture supernatants of the late phase IL-1-inducing cytokines, IL-2, IFN-gamma, and TNF-alpha. Metabolic inactivation of T cells using paraformaldehyde demonstrated that the ability of T cells to induce IL-1 mRNA via cell contact was acquired only after activation of T cells via solid phase anti-CD3. Furthermore, pretreatment of T cells with the protein synthesis inhibitor emetine had no effect on T cell-mediated induction of monocyte IL-1 mRNA or cell-associated IL-1 alpha and beta, indicating that the expression of the IL-1 inductive signal did not require protein synthesis. Despite their ability to induce monocyte IL-1 alpha and beta mRNA, activated T cells treated with paraformaldehyde or emetine were no longer able to induce monocytes to secrete IL-1 beta into culture supernatants. However, supernatants from purified T cells that were activated with solid-phase anti-CD3 restored the ability of paraformaldehyde or emetine-treated T cells to induce IL-1 secretion. These studies provide evidence that supports a two-signal model of monocyte IL-1 production during primary immune activation. The first signal leads to the induction of monocyte IL-1 mRNA and is mediated by direct contact with activated T cells, and the second signal is provided by soluble T cell factors and results in IL-1 secretion.

Antibodies, Monoclonal

Long-term follow-up of ProMACE-CytaBOM in non-Hodgkin's lymphomas.

Initial results from studies with third-generation combination chemotherapy regimens for the treatment of aggressive non-Hodgkin's lymphomas (NHL) demonstrated complete remission (CR) rates higher than those reported with first-generation regimens. Long-term follow-up of these studies is required to know if the increased number of CRs translates into an increased number of long-term disease-free survivors. In this report, results obtained with one of the third-generation regimens, ProMACE (prednisone/methotrexate/doxorubicin/cyclophosphamide/etoposide)-Cyta BOM (cytarabine/bleomycin/vincristine/methotrexate) are described. From 1981 to 1988, 193 patients with stage II, III, or IV aggressive NHL treated at the National Cancer Institute were randomly assigned to receive either ProMACE (day 1)-CytaBOM (day 8) or ProMACE (day 1)-MOPP (mechlorethamine/vincristine/procarbazine/prednisone) (day 8). With a median follow-up of 5 years, the CR rate was 86% for ProMACE-CytaBOM v 74% for ProMACE-MOPP (P = 0.048). A plateau in the disease-free survival curve is seen at 69% for ProMACE-CytaBOM v 54% for ProMACE-MOPP (P = 0.082). A plateau is also seen in the overall survival curves at 69% for ProMACE-CytaBOM v 53% for ProMACE-MOPP (P = 0.046). The Southwest Oncology Group also conducted a phase II study of ProMACE-CytaBOM in 78 patients with stages II to IV intermediate- or high-grade NHL to determine the CR rate and long-term disease-free survival of this regimen in a national cooperative group setting. The CR rate was 65%. With a median follow-up of 38 months, disease-free survival is 50% at 3 years and overall survival is 57% at the same time point.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Chemotherapy and combined modality treatment in Hodgkin's disease.

Several issues in the management of Hodgkin's disease remain to be resolved. These include 1) the most appropriate and effective first-line therapy for advanced disease, 2) the best approach to management of bulky mediastinal disease, 3) the management of uncommon presentations such as subdiaphragmatic disease, and 4) the best approach to salvage therapy for the patient with relapsed or refractory disease. Despite several years of clinical research and several significant advances in the treatment of this disease, the most effective treatment with the minimum amount of acute and delayed toxicity remains to be defined for several subsets of patients. This article reviews recent publications addressing these issues.

Abdominal Neoplasms

Phase II trial of high-dose interleukin-2 and lymphokine-activated killer cells in Hodgkin's disease and non-Hodgkin's lymphoma.

Interleukin-2 (IL-2) plus lymphokine-activated killer (LAK) cell therapy has antineoplastic activity in renal cancer and malignant melanoma. In order to explore the activity of this therapy in Hodgkin's disease and non-Hodgkin's lymphoma, the Extramural IL-2/LAK Working Group (ILWG) treated 27 patients on two protocols using high-dose IL-2 and autologous LAK cells. Two of 12 patients with Hodgkin's disease experienced partial responses lasting 6 and 12 weeks. No patient with non-Hodgkin's lymphoma responded (p = NS). The toxicities of therapy were similar to those reported by the ILWG from trials of IL-2/LAK in solid tumors, consisting of transient hemodynamic, cardiopulmonary, renal and hepatic dysfunction, skin rash, fever, and flu-like symptoms. In view of the low response rate and the brief duration of these responses, we do not recommend the regimens reported here for further investigation in Hodgkin's disease or non-Hodgkin's lymphomas.

Adult

Superiority of ProMACE-CytaBOM over ProMACE-MOPP in the treatment of advanced diffuse aggressive lymphoma: results of a prospective randomized trial.

One hundred ninety-three patients with stage II, III, or IV follicular large-cell, diffuse large-cell, diffuse mixed, immunoblastic, or diffuse small noncleaved-cell (non-Burkitt's) lymphoma were randomized to receive either cyclophosphamide 650 mg/m2 intravenously (IV), doxorubicin 25 mg/m2 IV, etoposide 120 mg/m2 IV on day 1, mechlorethamine 6 mg/m2 IV, vincristine 1.4 mg/m2 (no cap at 2 mg total dose) IV on day 8, prednisone 60 mg/m2 orally daily days 1 through 14, procarbazine 100 mg/m2 orally daily days 8 through 14, and methotrexate 500 mg/m2 IV on day 15 with leucovorin 50 mg/m2 orally every 6 hours for four doses beginning 24 hours after methotrexate with cycles repeated every 28 days (ProMACE-MOPP) or same day-1 treatment as ProMACE-MOPP plus cytarabine 300 mg/m2 IV, bleomycin 5 U/m2 IV, vincristine 1.4 mg/m2 (no cap at 2 mg total dose) IV, and methotrexate 120 mg/m2 IV on day 8, leucovorin 25 mg/m2 orally every 6 hours for four doses beginning 24 hours after methotrexate, and prednisone 60 mg/m2 orally daily days 1 through 14 with cycles repeated every 21 days (ProMACE-CytaBOM). Co-trimoxazole two double-strength tablets orally twice daily throughout the period of treatment was added to the ProMACE-CytaBOM regimen when an increased risk of Pneumocystis carinii pneumonia was found in the first 35 patients receiving this combination. Median follow-up is 5 years. Among the 99 patients treated with ProMACE-MOPP, 73 achieved a complete remission (CR) (74%), 30 complete responders have relapsed (41%), and 45 patients have died (45%), including two (2%) of treatment-related causes. Among the 94 patients treated with ProMACE-CytaBOM, 81 achieved a CR (86%), 22 complete responders have relapsed (27%), and 31 patients have died (33%). The complete response rate (P2 = .048) and survival (P2 = .046) were significantly higher for patients treated with ProMACE-CytaBOM. The mortality of ProMACE-CytaBOM treatment overall was six of 94 patients (6.4%). There was no treatment-related mortality among patients treated with prophylactic co-trimoxazole (n = 59). ProMACE-CytaBOM combination chemotherapy with co-trimoxazole prophylaxis is a safe and effective treatment for patients with aggressive histology malignant lymphoma and is superior to ProMACE-MOPP.

Aged

A phase II study of high-dose continuous infusion interleukin-2 with lymphokine-activated killer cells in patients with metastatic melanoma.

Thirty-three patients with metastatic melanoma were treated in a phase II study with an intravenous continuous infusion (IVCI) of interleukin-2 (IL2) given with lymphokine-activated killer (LAK) cells. The dose of IL2 was the optimal priming dose for LAK-cell induction, followed by the maximally tolerated LAK-cell dose that could be given by an IVCI schedule as determined by a previous phase I trial. The CI schedule was chosen for evaluation because of a postulated reduction in toxicity with the possibility of administering a more prolonged IL2 infusion and because greater rebound lymphocytosis and LAK-cell generation had been reported using this dose and schedule. The 33 patients were similar in age, performance status, and sites of disease to those treated in previous IL2 trials. All patients were assessable for response and toxicity. One patient (3%) achieved a partial response of 10 months duration. There were no other clinically significant responses. Significant toxicity included hypotension requiring pressors (45%), dyspnea (36%), renal insufficiency (24%), hepatic dysfunction (66%), and cardiac arrhythmias (18%). These toxicities reversed with cessation of the infusion. There were four deaths during the first 30 days of treatment, three from infection (one related to central line, one related to LAK cells, one related to tumor), and one from tumor-related hemorrhage. Toxicity was unexpectedly high and at least comparable to that seen in previous studies using a high-dose IV bolus schedule of IL2. When comparing the IVCI schedule with high-dose bolus IL2 to LAK cells in nonrandomized but sequential studies in patients with advanced melanoma, it appears that CI IL2 is less efficacious.

Adult

Combination chemotherapy of intermediate-grade and high-grade non-Hodgkin's lymphoma with MACOP-B: a Southwest Oncology Group study.

One hundred nine assessable patients with measurable stage II, III, or IV intermediate- or high-grade lymphoma were treated with methotrexate with leucovorin, doxorubicin, cyclophosphamide, vincristine, prednisone, and bleomycin (MACOP-B) by members of the Southwest Oncology Group (SWOG) between November 1985 and June 1986 to confirm the activity of the program as initially described by Klimo and Connors and to test the safety of using third-generation regimens in a cooperative group. The median age was 53.5 years, and stage II was seen in 30% of patients and diffuse large-cell histology in 63%. Complete remission (CR) was achieved in 50% of all patients and partial remission (PR) in 33%. Response rates did not differ by histology. Median follow-up is 46 months with 51% of patients alive at 3 years and 63% of CR patients free of disease at 3 years. Severe (grade 3) or worse hematologic toxicity was seen in 51% of all treated individuals, and 29% had severe mucositis. We failed to confirm the high response rates as originally reported. Whether MACOP-B is superior to other treatment regimens requires the prospective trial currently being conducted by the SWOG.

Aged