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Treatment of Felty's syndrome with the haemopoietic growth factor granulocyte colony-stimulating factor (G-CSF).

Felty's syndrome (FS) (rheumatoid arthritis with neutropenia and splenomegaly) has a poor prognosis, largely because of the high risk of severe infection. Granulocyte colony-stimulating factor (G-CSF) is an emerging treatment for chronic neutropenia. We prospectively monitored its use in eight patients with recurrent infections or who required joint surgery. Significant side-effects were documented in five, including nausea, malaise, generalized joint pains, and in one patient, a vasculitic skin rash. In two patients treatment had to be stopped, and in these cases G-CSF had been started at full vial dosage (300 micrograms/ml filgrastim or 263 micrograms/ml lenograstim) alternate days or daily. G-CSF treatment was continued in three patients by restarting at reduced dose, and changing the proprietary formulation. G-CSF raised the neutrophil count, reduced severe infection, and allowed surgery to be performed. A combined clinical and laboratory index suggested that long-term treatment (up to 3.5 years) did not exacerbate the arthritis. Once on established treatment, it may be possible to use smaller weekly doses of G-CSF to maintain the same clinical benefit. One of the three patients whose FS was associated with a large granular T-cell lymphocytosis showed a reduction in this subset of lymphocytes during G-CSF treatment.

Adjuvants, Immunologic↗

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↗

Effective treatment of a patient with a high-grade endometrial stromal sarcoma with an accelerated regimen of carboplatin and paclitaxel.

The rarity of endometrial stromal sarcoma (ESS) and its poor response to treatment provides fertile ground for investigational therapies. An accelerated regimen of carboplatin and paclitaxel is investigated. A patient with a recent history of treated tuberculosis of the lung represented with infertility and acute abdominal pain from suspected fibroids, and underwent a laparotomy with a diagnosis of a high-grade ESS. A novel therapeutic approach using a regimen of carboplatin and paclitaxel with the reinfusion of filgrastim-mobilized peripheral blood progenitor cells is described. A partial response was observed following six cycles of chemotherapy. Grade IV thrombocytopenia occurred after the last cycle, with recovery prior to pelvic radiotherapy. The patient remained well 1 year post-diagnosis. High-grade ESS is responsive to combination chemotherapy with paclitaxel and carboplatin, and requires further evaluation. The use of an accelerated regimen may also have contributed to the response and this question awaits randomized trials.

Adult↗

Granulocyte colony stimulating factors: how different are they? How to make a decision?

Two granulocyte colony stimulating factors (G-CSFs) are available for clinical use in Europe: filgrastim (Neupogen) and lenograstim (Granocyte). The purpose of this literature review is to study how they differ, the clinical implications of these differences (especially in terms of efficacy) and the economic impact of these differences. From a chemical point of view the two molecules are not identical. Their amino acid sequence is different and one is glycosylated, whereas the other is not. The important question to ask is what these structural differences mean for the patient. It appears that glycosylation has important consequences in terms of efficacy. Several recent comparative studies, both in vitro and in vivo, in animals and in humans, reinforce this idea which was often shared intuitively by physicians. In economical terms, in hospitals where the exact dosages are used (150 microg/m2 or 19.2 million units (MU)/m2 for Granocyte, and 5 microg/kg or 0.5 MU/kg for Neupogen), the choice of G-CSF must be made according to the daily cost of treatment which, for an average patient, means comparing the price of 325 microg of Neupogen and of 255 microg of Granocyte. This is in fact equal to comparing the price per MU of each product. In hospitals where one vial per patient per day is used whatever be their weight or body surface area, the price per MU and the price per vial should be considered together, puting into perspective the potential therapeutic benefit for patients, one vial of Granocyte 34 containing more MU than one vial of Neupogen 30.

Animals↗

Deletional mutation of the external domain of the human granulocyte colony-stimulating factor receptor in a patient with severe chronic neutropenia refractory to granulocyte colony-stimulating factor.

Severe chronic neutropenia (SCN) is characterized by a profound neutropenia, which mostly presents during the neonatal period. The precise genetic basis of SCN remains elusive. Acquired somatic mutations involving the carboxy-terminus of the G-CSF receptor (G-CSFR) have been found, often in association with myelodysplastic syndrome. The authors describe a girl with SCN who did not respond to pharmacologic doses of filgrastim. Genetic analysis of bone marrow and germline cells revealed a 182-bp deletion in the extracellular domain of the G-CSFR. Co-precipitation studies showed an association between the wild-type and mutant G-CSFR, confirmed by their co-localization by confocal microscopy. Coexpression of the mutant receptor inhibited the wild-type response in Ba/F3 cells. These findings establish a novel constitutional defect in the G-CSFR that supports a partial dominant negative mechanism for receptor dysfunction in SCN.

Amino Acid Sequence↗

Hematologic side effects of interferon and ribavirin therapy.

Pegylated (PEG)-interferon and ribavirin combination therapy are the standard of care for the treatment of chronic hepatitis C and are associated with a high rate of sustained virologic response. However, there is a high incidence of hematologic side effects with this therapeutic regimen. Hematologic side effects are particularly common; bone marrow suppression caused by interferon may result in neutropenia and thrombocytopenia. Ribavirin is directly toxic to red blood cells and is associated with hemolysis, which is usually dose-related but self-limited. Historically, the traditional management of hematologic side effects of interferon therapy has been dose reduction. However, recent studies have shown that response to therapy is strongly influenced by adherence to optimal doses of interferon and particularly ribavirin. Therefore, there is increasing emphasis on the use of growth factors such as filgrastim and erythropoietin to stimulate bone marrow production of erythrocytes and leukocytes to allow patients to receive the optimal doses of interferon and ribavirin. The incidence, magnitude, and possible mechanisms of hematologic complications associated with interferon and ribavirin are described in this review.

Anemia, Hypochromic↗

An open-labelled study of granulocyte colony-stimulating factor in the treatment of active Crohn's disease.

BACKGROUND: Immunodeficiency syndromes associated with a Crohn's-like illness suggest innate immune defects may lead to Crohn's disease. Anecdotal cases using haemopoietic colony-stimulating factors report improvement in intestinal disease associated with these syndromes. AIM: To test the safety and efficacy of recombinant human granulocyte colony-stimulating factor in active Crohn's disease. METHODS: In an open-labelled 12-week trial, patients with a Crohn's Disease Activity Index between 220 and 450 were treated with recombinant human granulocyte colony-stimulating factor (filgrastim, Neupogen). Concomitant immunosuppressants were prohibited except prednisone < or =20 mg/day. Patient's received recombinant human granulocyte colony-stimulating factor 300 mcg daily subcutaneously adjusted to achieve an absolute neutrophil count between 25 and 35 x 10(9)/L. RESULTS: Twenty patients were enrolled with a mean initial Crohn's Disease Activity Index of 307 (range: 234-428). Fifteen patients (75%) completed 8 weeks; 13 patients (65%) completed 12 weeks with the mean Crohn's Disease Activity Index for patients continuing through those times of 196 (range: 36-343) and 162 (range: 20-308), respectively. At week 12, 11 patients (55%) demonstrated a decrease of at least 70 points; five (25%) achieved a sustained remission. The mean decrease was statistically significant at each assessment time-point. Three of four patients with fistulae had a positive response. Adverse effects included bone pain, mostly mild resolving with continued treatment. One patient was hospitalized with a viral-like syndrome but it is uncertain if this was treatment related. CONCLUSION: Recombinant human granulocyte colony-stimulating factor is safe and potentially effective therapy for active Crohn's disease.

Adult↗

Peripheral blood progenitor cell collection in chronic myeloid leukemia patients with complete cytogenetic response after treatment with imatinib mesylate.

BACKGROUND: Imatinib mesylate (IM) was introduced in chronic myeloid leukemia (CML) treatment in the late 1990s and substantially changed the therapeutic approach to the disease, by inducing complete cytogenetic response (CCR) in approximately 60 percent of cases. Nevertheless, some concerns exist about the duration of response to treatment and the onset of resistance to IM. STUDY DESIGN AND METHODS: Twenty-five chronic-phase CML patients in stable CCR (>6 months) treated for at least 1 year with IM at the standard dose (400 mg/day) were mobilized with recombinant human granulocyte-colony-stimulating factor (Filgrastim) at 10 microg per kg for 4 to 6 days, with the aim of collecting at least 2 x 10(6) CD34+ cells per kg. Standard cytogenetic analysis and first-round and/or nested polymerase chain reaction were performed in basal and postmobilization samples to examine the presence of bcr-abl transcripts. RESULTS: CD34+ cells collection was successful in 16 patients, yielding a median of 3.01 x 10(6) +/- 1.09 x 10(6) CD34+ cells per kg at the first attempt, and in 4 of the 9 remaining patients who were remobilized after a temporary withdrawal of IM, yielding a median of 2.65 x 10(6) +/- 0.7 x 10(6) CD34+ cells per kg, with an overall 80 percent success rate. No correlation between mobilization and duration of the disease, length of IM treatment, or previous interferon-alpha and/or hydroxyurea treatment was found. CONCLUSIONS: Autologous CD34+ cells may be mobilized and collected in most CML patients who achieve CCR after IM treatment, with a view to possible use in the event that resistance to IM occurs in patients not eligible for allogeneic peripheral blood progenitor cell transplantation or those lacking an HLA-matched donor.

Antigens, CD34↗

Large-scale expansion and transplantation of CD34(+) hematopoietic cells: in vitro and in vivo confirmation of neutropenia abrogation related to the expansion process without impairment of the long-term engraftment capacity.

BACKGROUND: Herein are reported the results obtained in all multiple myeloma patients transplanted with peripheral blood hematopoietic progenitor cells submitted to ex vivo expansion. STUDY DESIGN AND METHODS: Patients had blood progenitor cell mobilization with cyclophosphamide and filgrastim. CD34+ cells were expanded for 10 days in a medium containing granulocyte-colony-stimulating factor (G-CSF), stem cell factor, and megakaryocyte growth and development factor (MGDF). Twenty-seven patients underwent transplantation with expanded and nonexpanded cells and 7 patients underwent transplantation with expanded cells only. RESULTS: The median fold cell expansion was 29.1. The number of colony-forming unit-granulocyte-macrophage (CFU-GM) and CD34+ cells, and the long-term culture-initiating cell (LTC-IC) activity increased with median fold values of 14.7, 2.75, and 2.25, respectively. Postmyeloablative neutropenia was abrogated in 24 of 27 patients transplanted with expanded cells plus nonexpanded cells. The median duration of severe neutropenia was 0 days and correlated with the number of cells and CFU-GM infused. Survival was similar to that of a historical control group. Our LTC-IC and NOD-SCID mice studies showed that the expanded cells are able of sustaining long-term hematopoiesis. Seven other patients received transplantation with expanded cells alone. Absolute neutropenia was abrogated in 6 patients. The median duration of neutropenia was 0 days. Two patients who received the lower number of total cells or CFU-GM had brief secondary neutropenia, which resolved after G-CSF injections. CONCLUSION: CD34+ cells expanded ex vivo can abrogate absolute and severe neutropenia after high-dose therapy. The results of the amplification process are strongly related to the delay of hematopoietic recovery.

Adult↗

Response to granulocyte colony-stimulating factor in an autoimmune neutropenic adult.

Clinical value of granulocyte colony-stimulating factor (G-CSF) for autoimmune neutropenia (AIN) has not been well established. We experienced an adult case of AIN which showed an excellent response to G-CSF. A 75-year-old female was admitted with high-grade fever. Her neutrophil count was remarkably low (neutrophil 0.09 x 10(9)/l). Antigranulocyte autoantibody was demonstrated in her serum by an immunofluorescence method and she was diagnosed as AIN. Administration of G-CSF (filgrastim 5 microgram/kg) gave a rapid increase of neutrophils (from 0.11 x 10(9)/l to 2.10 x 10(9)/l on the second day), which has enabled us to preserve the use of G-CSF for emergency, that is, for overt serious infection.

Aged↗

A Systemic Hyperthermia Oncologic Working Group trial. Ifosfamide, carboplatin, and etoposide combined with 41.8 degrees C whole-body hyperthermia for metastatic soft tissue sarcoma.

BACKGROUND: Based on earlier clinical and preclinical studies, we conducted a phase II trial in metastatic sarcoma patients of the combination of 41.8 degrees C (x60 min) radiant heat (Aquatherm) whole-body hyperthermia (WBH) with 'ICE' chemotherapy. The ICE regimen consists of ifosfamide (5 g/m(2)), carboplatin (300 mg/m(2)) and etoposide (100 mg/m(2)), concurrent with WBH, with etoposide also on days 2 and 3 post-WBH. METHODS: Therapy was delivered every 4 weeks for a maximum of 4 cycles. All patients received filgrastim or lenograstim. RESULTS: Of 108 patients enrolled as of September 2001, 95 are evaluable for response. Of the evaluable patients (mean ECOG performance status approximately 1; mean age 42.3; 58% male) 33 had no prior therapy for metastatic disease, and 62 were pretreated (mean: 1.5 prior regimens). The overall response rate was 28.4% (4 complete remissions and 23 partial remissions) with stable disease (SD) in 31 patients. For no prior therapy, the response rate was 36%; in pretreated patients it was 24%. The median overall survival by Kaplan-Meier estimates was 393 days (95% CI 327, 496); the median time to treatment failure was 123 days (95% CI 77, 164). The major toxicity (287 cycles) was grade 3 or 4 neutropenia and thrombocytopenia seen in 79.7 and 60.6% of treatments respectively; there were 7 episodes of infection (grade 3/4) with 2 treatment-related deaths, bot involving disease progression and ureteral obstruction. CONCLUSION: These results are consistent with continued clinical investigation of this combined modality approach.

Adolescent↗

Dose intensification of chemotherapy in advanced breast cancer: a feasibility phase II study.

AIMS AND BACKGROUND: Dose intensification of chemotherapy is associated with increased response rates in advanced breast cancer. Achievement of dose incrementation is usually limited by drug-dependent bone marrow toxicity. The recent availability of recombinant human colony-stimulating factors (CSFs) have made it possible to evaluate their potential in ameliorating chemotherapy-induced myelosuppression. The aim of this study was to evaluate tolerability and effectiveness of an intensified mitoxantrone, methotrexate and mitomycin-C (3M) regimen, given with G-CSF support in patients with advanced breast cancer (ABC). STUDY DESIGN: Twenty-eight eligible patients with advanced breast cancer were treated with mitomycin -C (7 mg/sqm i.v. every 4 weeks), methotrexate (35 mg/sqm i.v.) and mitoxantrone (7 mg/sqm i.v. every 2 weeks) for 6 cycles. Recombinant human granulocyte colony-stimulating factor (r-HuG-CSF, Filgrastim) (5 micrograms/kg/day) was given subcutaneously from day 2 to day 12 after each chemotherapy administration to prevent leukopenia. RESULTS: Of the 27 evaluable patients, 4 had complete response and 14 achieved partial response; the overall response rate was 63% (95% CI; 46.8%-82.2%). The median duration of response was 8 months (range, 4-13+). Chemotherapy-related toxicity was mild: only 3 out of 163 courses had to be postponed due to myelotoxicity. CONCLUSIONS: The 3M regimen given at 2- week intervals is a feasible, active and well toleratel treatment in patients not previously treated for metastatic breast cancer.

Adult↗

The value of fludarabine in addition to ARA-C and G-CSF in the treatment of patients with high-risk myelodysplastic syndromes and AML in elderly patients.

Fludarabine in addition to cytosine-arabinoside (ARA-C) increases the accumulation of ARA-C-5'-triphosphate (ARA-CTP), which is responsible for the cytotoxic effect in leukemic blasts. In a randomized phase 3 trial, patients with high-risk myelodysplastic syndrome (MDS) (n = 91) or elderly patients with acute myeloid leukemia (AML) (n = 43) were randomized to receive 2 induction courses consisting of ARA-C (2 g/m2 days 1 through 5) and granulocyte colony-stimulating factor (G-CSF) (filgrastim, 5 microg/kg) during and after chemotherapy with or without fludarabine (25 mg/m2, days 1 through 5) (FLAG versus AG). Consolidation consisted of daunorubicin (45 mg/m2, days 1 through 3) and ARA-C (200 mg/m2, days 1 through 7). Complete remission (CR) rate following AG was 65% versus 71% with FLAG (P =.49). Overall survival (OS) at 24 months was 24% for AG treatment and 39% for FLAG (P =.32). Event-free survival (EFS) at 2 years was 10% and 19% (P =.31) for the AG and FLAG treatments, respectively. Platelet and granulocyte recovery times after the second cycle were prolonged in the FLAG treatment group. Grades 3 to 4 neurotoxicities were more often reported in the FLAG arm (14% versus 3%, P =.03), whereas no significant differences in other toxicities were observed. In a cohort of patients, the in vivo accumulation of ARA-CTP in leukemic cells was determined. Although ARA-CTP accumulation in leukemic cells after FLAG was enhanced, clinical outcome in terms of CR rate, OS, EFS, and disease-free survival (DFS) was not significantly improved by combining fludarabine with ARA-C.

Adult↗

Fludarabine and cytosine are less effective than standard ADE chemotherapy in high-risk acute myeloid leukemia, and addition of G-CSF and ATRA are not beneficial: results of the MRC AML-HR randomized trial.

The optimum chemotherapy schedule for reinduction of patients with high-risk acute myeloid leukemia (relapsed, resistant/refractory, or adverse genetic disease) is uncertain. The MRC AML (Medical Research Council Acute Myeloid Leukemia) Working Group designed a trial comparing fludarabine and high-dose cytosine (FLA) with standard chemotherapy comprising cytosine arabinoside, daunorubicin, and etoposide (ADE). Patients were also randomly assigned to receive filgrastim (G-CSF) from day 0 until neutrophil count was greater than 0.5 x 10(9)/L (or for a maximum of 28 days) and all-trans retinoic acid (ATRA) for 90 days. Between 1998 and 2003, 405 patients were entered: 250 were randomly assigned between FLA and ADE; 356 to G-CSF versus no G-CSF; 362 to ATRA versus no ATRA. The complete remission rate was 61% with 4-year disease-free survival of 29%. There were no significant differences in the CR rate, deaths in CR, relapse rate, or DFS between ADE and FLA, although survival at 4 years was worse with FLA (16% versus 27%, P = .05). Neither the addition of ATRA nor G-CSF demonstrated any differences in the CR rate, relapse rate, DFS, or overall survival between the groups. In conclusion these findings indicate that FLA may be inferior to standard chemotherapy in high-risk AML and that the outcome is not improved with the addition of either G-CSF or ATRA.

Adolescent↗

Immune reconstitution after allogeneic marrow transplantation compared with blood stem cell transplantation.

Allogeneic peripheral blood stem cell grafts contain about 10 times more T and B cells than marrow grafts. Because these cells may survive in transplant recipients for a long time, recipients of blood stem cells may be less immunocompromised than recipients of marrow. Immune reconstitution was studied in 115 patients randomly assigned to receive either allogeneic marrow or filgrastim-mobilized blood stem cell transplantation. Between day 30 and 365 after transplantation, counts of most lymphocyte subsets were higher in the blood stem cell recipients. The difference was most striking for CD4 T cells (about 4-fold higher counts for CD45RA(high) CD4 T cells and about 2-fold higher counts for CD45RA(low/-)CD4 T cells; P <.05). On assessment using phytohemagglutinin and herpesvirus antigen-stimulated proliferation, T cells in the 2 groups of patients appeared equally functional. Median serum IgG levels were similar in the 2 groups. The rate of definite infections after engraftment was 1.7-fold higher in marrow recipients (P =.001). The rate of severe (inpatient treatment required) definite infections after engraftment was 2.4-fold higher in marrow recipients (P =.002). The difference in the rates of definite infections was greatest for fungal infections, intermediate for bacterial infections, and lowest for viral infections. Death associated with a fungal or bacterial infection occurred between day 30 and day 365 after transplantation in 9 marrow recipients and no blood stem cell recipients (P =.008). In conclusion, blood stem cell recipients have higher lymphocyte-subset counts and this appears to result in fewer infections. (Blood. 2001;97:3380-3389)

Adult↗

Granulocyte macrophage colony-stimulating factor: current practice and novel approaches.

Endogenous myeloid colony-stimulating factors (CSFs) have demonstrated the ability to enhance the clinical management of immunosuppressed patients with cancer. These agents are associated with significant decreases in chemotherapy-associated infections, antibiotic use, length of hospital stays, and mortality. Two major endogenous recombinant myeloid CSFs currently are being manufactured. Granulocyte macrophage CSF (GM-CSF) (sargramostim, Leukine, Immunex Corporation, Seattle, WA) has broad activity in the proliferation and differentiation of myeloid lineage progenitor cells, whereas granulocyte CSF (filgrastim, Neupogen, Amgen, Inc., Thousand Oaks, CA) acts selectively on cells of the granulocyte lineage. Clinical trials suggest that GM-CSF has clinical benefits beyond enhancing neutrophil recovery, including shortening the duration of mucositis and diarrhea, stimulating dendritic cells, preventing infection, acting as an adjuvant vaccine agent, and facilitating antitumor activity.

Antineoplastic Agents↗

Phase II trial of vinblastine, ifosfamide, and gallium combination chemotherapy in metastatic urothelial carcinoma.

PURPOSE: Phase II trial in metastatic urothelial carcinoma using a novel combination chemotherapy regimen consisting of vinblastine, ifosfamide, and gallium nitrate (VIG). PATIENTS AND METHODS: Twenty-seven patients were entered onto this phase II study. Dosages were vinblastine 0.11 mg/kg days 1 and 2, ifosfamide 1.2 gm/m2 days 1 through 5 (with mesna), and gallium 300 mg/m2 as a 24-hour infusion days 1 through 5, with calcitriol (1,25-dihydroxycholecalciferol) 0.5 microgram/d orally starting 3 days before each course (except the first) and continuing throughout gallium administration, plus recombinant human granulocyte colony-stimulating factor (rhG-CSF) (filgrastim) 5 micrograms/kg/d days 7 through 16. Courses were repeated every 21 days for a maximum of six cycles. RESULTS: The major toxicity was granulocytopenia. Fifteen patients (55.6%) had grade 3 or 4 granulocytopenia, including eight patients with granulocytopenic fevers. Eleven patients had grade 3 or 4 anemia and four had grade 3 or 4 nephrotoxicity, which was reversible. Other grade 3 to 4 toxicities included hypocalcemia (three patients), thrombocytopenia (two), encephalopathy (one), and temporary blindness (one). There was one treatment-related mortality. Toxicity was more severe in patients older than 70 years and those with prior pelvic irradiation, prior cisplatin adjuvant therapy, or prior nephrectomy. We now decrease VIG by 20% in this patient population. Eighteen patients (67%) achieved an objective response, including 11 (41%) who attained a disease-free status (five with VIG alone and six with subsequent surgery). Median duration of remission was 20 weeks, with five patients still in remission at 22+ to 56+ weeks. CONCLUSION: VIG combination chemotherapy is very active in patients with metastatic urothelial carcinoma. Toxicity was significant but manageable.

Adult↗

Sequential high-dose therapy with peripheral-blood progenitor-cell support in low-grade non-Hodgkin's lymphoma.

PURPOSE: To evaluate the feasibility of a sequential high-dose therapy with peripheral-blood progenitor-cell (PBPC) support in patients with follicular lymphoma. PATIENTS AND METHODS: Since July 1991, we have included 30 patients (17 men and 13 women) with a median age of 41 years (range, 26 to 55) in the study. At the time of study entry, 17 patients were in first and six in second or higher remission. Another six patients had relapse of disease and one had tumor progression. PBPC were collected during filgrastim-supported leukocyte recovery following high-dose cytarabine (ara-C)/mitoxantrone (HAM). RESULTS: A median of two leukaphereses (range, one to seven) resulted in a median of 5.7 x 10(6) CD34+ cells/kg (range, 2.9 to 23.7 x 10(6). A distinct population of B-lymphoid progenitors (CD34+/CD19+) was not detectable in the autografts, and the content of CD19+ B cells was remarkably low, comprising a median of 0.07% of the mononuclear cells. Using the polymerase chain reaction (PCR) assay for the major breakpoint regions (MBR) of the bcl-2/immunoglobulin H (IgH) translocation, 22 patients had autografts positive for the t(14;18) translocation, whereas seven patients had PCR-negative transplants. The autograft of one patient could not be assessed. Following myeloablative therapy, hematologic recovery was rapid without cytokine support. The median times to reach a platelet count > or = 20 x 10(9)/L and neutrophil count > or = 0.5 x 10(9)/L were 11 and 13 days, respectively. Nonhematologic toxicity was moderate. Twenty-nine patients were alive in remission after a median follow-up duration of 6 months (range, 1 to 18). Of 22 patients autografted with t(14;18)-positive harvests, 11 had PCR-detectable cells in bone marrow and/or peripheral blood as long as 16 months posttransplantation. In contrast, six patients became PCR-negative between 3 and 16 months after reinfusion. Follow-up examinations with PCR data for the remaining five patients are not yet available. CONCLUSION: Conversion to PCR negativity in patients autografted with PCR-positive harvests suggests that the myeloablative regimen is effective and that any reinfused t(14;18)-positive cells may not be sustained. Because conventional chemotherapy provides no cure, we believe that high-dose therapy including total-body irradiation (TBI) should be explored in these particularly radiosensitive lymphomas.

Adult↗