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Biomedical subjects

S C Gulati

Publications and source records attributed to S C Gulati.

At least 19 recordsLinked to original sources

T-cell-depleted allogeneic bone marrow transplantation in adults with acute nonlymphocytic leukemia in first remission.

We prospectively evaluated the efficacy of T-cell-depleted bone marrow transplantation (BMT) in adults with de novo acute nonlymphocytic leukemia (ANLL) in first complete remission (CR), with regard to relapse-free survival and incidence of graft-versus-host disease (GvHD). Thirty-one patients older than 16 years (range, 16.5 to 43.2) received T-cell-depleted grafts for this purpose from related HLA/MLC-compatible donors. Twelve of the patients were older than 30 years at the time of transplantation. Patients were prepared with hyperfractionated total body irradiation (HFTBI; 1,375 to 1,500 cGy) and high-dose cyclophosphamide (120 mg/kg). T cells were removed from the marrow grafts by a two-step soybean lectin agglutination and sheep red blood cell (sRBC)-rosette procedure, achieving a 2.5- to 3-log depletion of clonable T lymphocytes. No additional prophylaxis against GvHD was administered. The median age at transplantation was 28.8 years; the median interval from diagnosis to transplantation was 3.8 months, and from CR was 2.7 months. Seventy-four percent received consolidation after remission induction therapy. The product-limit estimate of disease-free survival (DFS) at 3 years is 45% (95% confidence interval [CI], 24% to 66%), and the cause-specific probability of relapse is 13%. The median follow-up of the survivors is 72 months (range, 34.5 to 95.6). Median time to achieve a sustained absolute neutrophil count of 500 or greater was 16 days, and to maintain an untransfused platelet count of 20,000 or greater was 20 days. Five patients suffered immune-mediated graft rejection. Three patients developed grade I to II acute GvHD limited to the skin, which resolved promptly with brief courses of systemic steroids. None of the patients has developed clinically apparent chronic GvHD or a secondary lymphoproliferative disorder, and no patient is receiving immunosuppressive therapy. T-cell-depleted BMT by the method reported here is a favorable option as postremission therapy for adults with de novo ANLL in first remission who have an HLA/MLC-compatible related donor, and it is not associated with an increased risk of relapse posttransplant.

Adolescent

Granulocyte-macrophage colony-stimulating factor (GM-CSF) as adjunct therapy in relapsed Hodgkin disease.

OBJECTIVE: To determine the clinical and economic effects of granulocyte macrophage colony-stimulating factor (GM-CSF) as adjunct therapy in relapsed or refractory Hodgkin disease. DESIGN: A randomized, double-blind, phase III clinical trial. SETTING: A tertiary referral center. PATIENTS: Twenty-four patients (twelve of whom were controls) treated with high-dose chemotherapy and autologous bone marrow transplantation. MAIN RESULTS: The 12 patients treated with GM-CSF, when compared with placebo recipients, had shorter periods of neutropenia (median duration of an absolute neutrophil count of less than 1000 cells/mm3, 16 days compared with 27 days; P = 0.02), shorter periods of platelet-transfusion dependency (median duration, 13.5 days compared with 21 days; P = 0.03), and shorter hospitalizations (median hospital stay, 32 days compared with 40.5 days; P = 0.004). Other clinical outcomes, such as frequency and severity of toxicities, development of pneumonia or infection, in-hospital death, and response rate were similar in the two groups. Actuarial long-term disease-free survival was 64% for patients treated with GM-CSF and 58% for patients who received placebo after 32 months of follow-up (P = 0.15). The group treated with GM-CSF had lower total charges after infusion of autologous marrow than the placebo group (median in-hospital charges, $39,800 compared with $62,500; P = 0.005) because of lower post-infusion charges for room and board, antibiotic therapy, transfusions, laboratory tests, and physical therapy visits. CONCLUSIONS: Administration of GM-CSF was associated with acceleration of myeloid and platelet recovery and was cost effective in the treatment of patients with relapsed Hodgkin disease who received intensive chemotherapy.

Actuarial Analysis

High-dose chemotherapy and autologous bone marrow rescue for patients with refractory germ cell tumors. Early intervention is better tolerated.

Therapy with high-dose carboplatin plus etoposide-based chemotherapy plus autologous bone marrow rescue (AUBMR) was administered to 29 patients with advanced germ cell tumors (GCT) refractory to cisplatin-based chemotherapy. Two groups of patients with refractory disease were treated. Sixteen patients had been identified as "poor risk" at diagnosis and had an inappropriately slow decline of serum tumor markers after two cycles of induction cisplatin-based therapy (Group A). In addition, 13 patients were treated who had never had a complete response (CR) or had relapses after ifosfamide-based salvage chemotherapy (Group B). Patients in Group A were treated with high-dose carboplatin etoposide, and patients in Group B received high-dose carboplatin, etoposide, and cyclophosphamide. Fifteen of 29 (52%) patients had a CR (9, Group A; 6, Group B). The patients in Group A had fewer hematologic toxic effects, and the median number of days from day 0 to a granulocyte count greater than 0.5/microliters was 16 and to a platelet count of more than 50/microliters was 15, compared with 22 days and 23 days in Group B, respectively. There were fewer episodes of culture-positive sepsis in Group A (12%) compared with Group B (26%), and the only treatment-related death occurred in Group B. Therapy with high-dose carboplatin plus etoposide-based chemotherapy plus AUBMR is effective for patients with GCT refractory to regimens of cisplatin with or without ifosfamide. Early use of high-dose chemotherapy reduces hematologic toxic effects and allows patients to start treatment in a more predictable fashion after cytoreduction, rather than when the disease is progressing rapidly.

Adult

Autologous graft engineering.

Autologous transplantation of bone marrow or peripheral blood stem cell preparations is now a widely used form of rescue from the myeloablative effects of high-dose therapy for malignant disease. The success of this procedure is affected by numerous factors associated both with management of the patient and the quality of the graft. In this review, approaches are described to maximize the success and utility of this therapeutic approach.

Biomedical Engineering

Purging in autologous and allogeneic bone marrow transplantation.

The success of hematoablative dosages of cytotoxic therapy followed by stem cell transplantation depends on the disease response to the intensive drug dose and the ability of the transplant to provide durable hematopoietic reconstitution. In autologous stem cell transplantation, patients' own bone marrow or peripheral blood is used for hematopoietic engraftment. In several diseases the bone marrow is involved, and in such situations, the success of autologous stem cell transplantation may improve if the hematopoietic elements are enriched (positive selection) or if the contaminating cancer cells are purged by negative selection. In patients undergoing allogeneic bone marrow transplantation, the T lymphocytes of the donor cells contribute to the development of graft-versus-host disease with significant morbidity and mortality. Selective purging of T lymphocytes has dramatically decreased the incidence of graft-versus-host disease. In this paper, various methods for purging hematopoietic stem cells are detailed with emphasis on treatment planning. Exciting new possibilities include growing stem cells from a small amount of bone marrow, enhancing immune surveillance, and decreasing drug resistance by genetic engineering.

Animals

Pulmonary complications in lymphoma patients treated with high-dose therapy autologous bone marrow transplantation.

To define the incidence and spectrum of pulmonary complications following autologous bone marrow transplantation (BMT), we retrospectively reviewed the course of 77 consecutive patients with Hodgkin's disease (HD) and non-Hodgkin's lymphoma (NHL) who failed conventional therapy and underwent autologous BMT. Forty-five percent of the 77 patients developed respiratory complications with a mortality from pulmonary causes of 26%. A total of 38 episodes of respiratory compromise occurred in 35 patients. Infections accounted for 15 episodes (39%) and included bacterial (16%), Aspergillus (8%) cytomegalovirus (8%), Herpes simplex (3%), and other (5%) pneumonias. The spectrum of infections was similar to that reported following allogeneic BMT, but cytomegalovirus pneumonia was not as frequent a problem in those with autologous transplant. Mortality from pulmonary infections was 33%. Noninfectious disorders accounted for 23 episodes (61%) and included recurrent HD (18%), radiation/drug toxicity (16%), and acute respiratory failure thought secondary to pulmonary alveolar hemorrhage (26%). This latter entity developed acutely within 2 wk following BMT and was associated with use of thoracic radiation for treatment of malignant disease in the chest just prior to BMT (p < 0.05). It was not associated with the age of the patient or presence of thrombocytopenia, coagulopathy, renal insufficiency or neutropenia (p NS). Mortality from noninfectious causes was 65%, but in those with pulmonary hemorrhage it was 100%. In conclusion, pulmonary complications are a major source of morbidity and mortality in patients with HD and NHL undergoing autologous BMT.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

TGF-beta 3 protects normal human hematopoietic progenitor cells treated with 4-hydroperoxycyclophosphamide in vitro.

In this study we have investigated the ability of transforming growth factor-beta 3 (TGF-beta 3, 1000 pM) to protect hematopoietic bone marrow (BM) progenitor cells from the cytotoxic activity of 4-hydroperoxycyclophosphamide (4-HC, 100 microM) in vitro. Hematopoietic progenitors were purified by negative depletion of accessory and maturing cells or enriched by positive (CD 34+ cells) selection. For comparison the same treatment was tested on three different lymphoid cell lines CEM, SK-DHL-2, and LY-16. The experimental protocol was designed to mimic ex vivo purging conditions. Therefore, tumor cells and enriched hematopoietic precursors were mixed with irradiated BM cells. Our results demonstrated that preincubation of enriched progenitor cells with TGF-beta 3 for up to 72 h followed by 4-HC treatment resulted in an increased survival of colonies derived from granulocyte-macrophage (CFU-GM) and erythroid (BFU-E) colony-forming cells, whereas a substantially lower number of colonies was observed in the control group. Similar results were observed when BM cells were first treated with 4-HC followed by TGF-beta 3 incubation for 24 or 48 h. In contrast, TGF-beta 3 provided no protection to the 4-HC cytotoxicity toward the lymphoma and leukemia cell lines. Three to four log of tumor cell killing was induced by 4-HC in the presence or absence of preincubation with TGF-beta 3. These data suggest that TGF-beta 3 is able to protect normal BM progenitors from the cytotoxic activity of an alkylating agent (4-HC) in vitro, whereas it does not offer any protection to lymphoma cell lines. These findings will have important implications for developing better purging conditions for autologous GM transplantation.

Bone Marrow Cells

Proliferation of human hematopoietic progenitors in long-term bone marrow cultures in gas-permeable plastic bags is enhanced by colony-stimulating factors.

We compared the recovery of human hematopoietic progenitors in long-term bone marrow culture (LTBMC) initiated in tissue culture (TC) flasks to that in "Lifecell" bags, which are gas-permeable plastic bags in which feeder-layer cells cannot adhere. Our results showed that granulocyte-macrophage colony-forming unit (CFU-GM) and erythroid burst-forming unit (BFU-E) cumulative recovery in cultures from normal donor marrow, expressed as a percent of the initial inoculum, was not statistically different in the two culture systems up to week 8, when the cultures were terminated: 31.5 +/- 19 (flask) vs 30 +/- 14 (bag) and 15.5 +/- 12 (flask) vs 11.5 +/- 8 (bag), respectively. The effects of weekly addition of recombinant human (r-hu)-interleukin 1 (IL1) and r-hu-interleukin 3 (IL3) were then studied, alone and combined, at two different concentrations. Addition of IL1, either alone or combined with IL3, in LTBMC established in flasks induced an increase of hematopoietic progenitors for the first week, but BFU-E and CFU-GM were no longer detectable at weeks 4 and 6, respectively. Analysis of adherent layer cells showed a decreased cellularity, no adipogenesis, and early disappearance of bone marrow (BM) progenitors, whereas the cycling rate of myeloid precursors, by cytosine arabinoside (Ara-C) suicide assay, was similar to that of untreated cultures. Conversely, IL3 alone (5 ng/ml) resulted in 3.6- and 5.4-fold peak increases for CFU-GM and BFU-E, respectively, at week 1 (adherent plus nonadherent cells), and the recovery of BM cells was still higher than that of control flasks at week 8. By comparison, stimulation with colony-stimulating factors (CSFs) of BM cells grown in bags never affected the longevity of the culture. Addition of IL3 (5 ng/ml) induced a higher recovery of total cells, CFU-GM (range: 1.6- to 15-fold peak increase during the culture), and BFU-E (1.2- to 3-fold) compared to the untreated controls. Bags treated with IL1 alone demonstrated only transient beneficial effects, and the number of hematopoietic precursors fell below the level of control bags during the culture. IL1 and IL3 induced 1.8- and 5.3-fold peak increases in BFU-E and CFU-GM at weeks 1 and 4, respectively. Simultaneous flow cytometric analysis of CD34+/CD33+ cells and DNA content showed increased numbers and proliferation of the committed BM progenitors when CSFs were added to the bag.(ABSTRACT TRUNCATED AT 400 WORDS)

Bone Marrow Cells

High-dose melphalan with 6-hydroxydopamine-purged autologous bone marrow transplantation for poor-risk neuroblastoma.

Long-term results are presented of 28 patients who were diagnosed with neuroblastoma at more than 12 months of age and who received melphalan 180 mg/m2 (n = 6) or 240 mg/m2 (n = 22) to consolidate remissions of Stage IV disease or to control refractory disease. Twenty-four patients also received dianhydrogalactitol 180 to 240 mg/m2, and 11 received total body irradiation 450 to 600 cGy. Autologous bone marrow transplantation (ABMT) was performed with marrow that was unpurged (n = 2) or purged ex vivo (n = 26) with 6-hydroxydopamine (6-OHDA) 20 micrograms/ml plus ascorbate 200 micrograms/ml. The median time to an absolute neutrophil count of 500/microliters was 21 days and to self-sustaining platelet counts more than 20,000/microliters, 28 days. One patient required infusion of unpurged reserve marrow. Two groups of patients underwent ABMT: (1) 17 patients (Group I) who were in first remission a median of 7 months after diagnosis; and (2) 11 patients (Group II) who had refractory disease or were in second remission. For Group I, event-free survival was 29% at 12 months and 6% at 24 months post-ABMT. All Group II patients died of disease or ABMT-related toxicity. Overall, of the 28 patients, one is a long-term relapse-free survivor; five died of ABMT-related toxicity; ten patients with tumors present at ABMT had progressive disease within 6 months of ABMT; and 12 patients with no measurable disease at ABMT relapsed 4 to 32 months (median, 12) post-ABMT. Among the latter, six relapses involved the primary site, and six were restricted to distant sites. These results--in accord with the long-term outcome in other series--suggest that for neuroblastoma high-dose melphalan cannot be relied on to ablate residual disease or to salvage patients with refractory tumors. In addition, the pattern of relapse in several patients could be explained by infusion of incompletely purged autografts; this would support recent laboratory evidence that 6-OHDA/ascorbate is a suboptimal purging method.

Adolescent

Autologous bone marrow transplantation in acute myelogenous leukemia: in vitro treatment with myeloid-specific monoclonal antibodies and drugs in combination.

We report the results of a preclinical study comparing four different purging protocols using a promyelocytic human cell line HL-60 and myeloid leukemic progenitor cells (colony-forming unit-leukemic [CFU-L]) from acute myelogenous leukemia (AML) patients assayed in semisolid culture. We studied the antileukemic effect of (1) Single-cycle complement-mediated lysis by two different monoclonal antibodies (MoAbs) (M195 [CD33] and F23 [CD13] 40 micrograms/mL), reactive with distinct antigens found on early myeloid cells and monocytes, used alone and in combinations; (2) 4-Hydroperoxycyclophosphamide (4-HC) (80 mumol/L or 100 mumol/L) alone; or (3) combined with VP-16 (5 micrograms/mL) and (4) a cocktail of 1 through 3 as above (combined immunochemotherapy). More than 4 logs of HL-60 tumor cell elimination were observed after 1 hour of incubation with both MoAbs plus 4-HC + VP-16 while the single treatment (immunotherapy or chemotherapy) provided 1.5 and 3.5 logs of colony-forming inhibition, respectively. When the same protocols were tested on cryopreserved leukemic cells from eight patients with AML, we observed a mean value of CFU-L inhibition of 92.3% +/- 2.5% SD, 95.5% +/- 1.4% SD, and 99% +/- 0.8% SD after MoAbs and complement lysis, 4-HC, and 4-HC + VP-16 treatment, respectively. The combined treatment of MoAbs and 4-HC + VP-16 produced more than 3-log reduction of CFU-L colony formation. By comparison, the mean recovery of committed normal bone marrow progenitors after incubation with MoAbs and complement was 12% for CFU-granulocyte-macrophage (CFU-GM), 22.9% for burst-forming unit erythroid (BFU-E), and the recovery following 4-HC + VP-16 treatment was 4.4% for CFU-GM and 5.6% BFU-E. In subsequent experiments, highly purified CD34+ blast cells, enriched by positive selection, and stimulated in liquid culture by cytokines (interleukin-1 [IL-1], IL-3, and combination of both) or MO-conditioned medium (MoCM), demonstrated that immunochemotherapy spares hematopoietic colony-forming cells earlier than day 14 CFU-GM, in vitro.

Adult

Extracranial primitive neuroectodermal tumors. The Memorial Sloan-Kettering Cancer Center experience.

The clinical data of 54 patients (57% males) with extracranial primitive neuroectodermal tumors (PNET) seen over a 20-year period at Memorial Sloan-Kettering Cancer Center were reviewed. The age at diagnosis ranged from 1 month to 81 years (median, 17 years). One PNET arose in a previously irradiated site. One patient had an unaffected identical twin. Primary sites were thoracopulmonary (n = 25), pelvis (n = 12), retroperitoneum or abdomen (n = 10), limbs (n = 5), neck (n = 1), and unknown (n = 1). At diagnosis, epidural extension was present in 13 patients with truncal primaries, and 11 patients had distant metastases. All of the latter died with disease. Progression-free survival (PFS) among the 43 patients with localized tumors (all greater than 5 cm) was 25% at 24 months. Two of 13 patients who relapsed after more than 12 months without therapy were long-term survivors. Patients with localized PNET who had resection of all gross disease within 3 months of diagnosis had a significantly longer PFS (P = 0.0003). Radiation therapy caused tumor shrinkage but was not curative of measurable disease. A dose-response effect was evident with the most commonly used drug, cyclophosphamide. Myeloablative regimens using melphalan (n = 8) or thiotepa (n = 1) with autologous bone marrow rescue were not clearly beneficial. The treatment results favor: (1) early surgical removal, (2) dose-intensive use of drugs active against PNET (especially cyclophosphamide), and (3) radiation therapy to ablate residual microscopic disease.

Adolescent

Factors affecting the outcome of autologous bone marrow transplantation.

Various protocols have been used at Memorial Sloan-Kettering Cancer Center to improve the results of autologous bone marrow transplantation (ABMT) for hematopoietic malignancies. Results suggest that patients who undergo ABMT while in complete remission (after induction or reinduction treatment) do better than those who undergo ABMT in incomplete remission. In patients with relapsed or refractory lymphoma, the addition of etoposide to the total body irradiation/cyclophosphamide conditioning regimen has decreased the relapse rate from 53% to 7%. For patients with refractory or relapsed Hodgkin's disease, the dosages of different drugs can be altered to improve the overall success. Dose escalation of etoposide shows significant promise. Relapse after ABMT and/or toxic complications are the main factors that need to be addressed in the future. Pulmonary toxicity occurs mainly in patients with mediastinal disease. Factors that can decrease relapse rate and toxicity are discussed.

Antineoplastic Combined Chemotherapy Protocols

Myeloablative combination chemotherapy without total body irradiation for neuroblastoma.

Myeloablative treatment intensification in 25 patients diagnosed when older than 12 months of age with stage IV neuroblastoma included sequential delivery of cisplatin 120 mg/m2 x 1, hyperfractionated radiation (2,100 cGy) to the primary site and adjacent lymph nodes, carmustine (BCNU) 200 mg/m2 x 1, melphalan 60 mg/m2/d x 3 (n = 13) or thiotepa 300 mg/m2/d x 3. (n = 12), and etoposide (VP 16) 300 mg/m2/d x 3. Seventy-two hours after the last dose of VP 16, histologically tumor-free and 4-hydroperoxycyclophosphamide (4-HC; 100 mumol/L)-purged autologous bone marrow (ABMT) was infused. Acute toxicities included grade 3 to 4 oral mucositis, grade 1 to 2 diarrhea, and fevers. No patient required infusion of unpurged reserve autografts. At ABMT, 16 patients (group I) were progression-free 6.5 months to 14 months (median, 9 months) from diagnosis: seven remain progression-free 20 months to 46 months (median, 39 months) off therapy, six relapsed 4 months to 17 months post-ABMT, and three died of toxicity (candidiasis, metabolic derangement, and venoocclusive disease [VOD]). The event-free survival of group I patients is 44% at 24 months post-ABMT. Nine patients (group II) were in second remission at ABMT, including three who had relapsed after other transplant procedures: two are progression-free 24 months and 41 months off therapy, four relapsed 3 months to 12 months post-ABMT, and three died of toxicity (aspergillosis, hemorrhagic cystitis, VOD). Only one of 10 relapses involved a primary site, suggesting a beneficial effect of local radiation. In terms of survival or toxicity, an advantage for melphalan or thiotepa was not evident. Regimens such as this may prolong the survival of selected patients with poor-risk neuroblastoma, but concerns over late relapses and toxicity mandate continuing efforts to devise alternative, less risky, and more clearly beneficial approaches for definitive ablation of neuroblastoma.

Adrenal Gland Neoplasms

Proliferative response of human acute myeloid leukemia cells and normal marrow enriched progenitor cells to human recombinant growth factors IL-3, GM-CSF and G-CSF alone and in combination.

The effects of human recombinant colony-stimulating factors (r-CSFs), interleukin 3 (IL-3), granulocyte-macrophage colony-stimulating factor (GM-CSF) and granulocyte colony-stimulating factor (G-CSF) on inducing the growth of colonies derived from patients with acute myeloid leukemia (AML) (CFU-L) were investigated and compared to the proliferative response of CFU-GM derived from highly enriched normal blast cell populations. The effects of GM-CSF and IL-3 alone were similar. Both only minimally stimulated normal colonies derived from CFU-GM when compared to stimulation with MoCM (a mean of 28% of the total colonies and 17% of the colonies greater than 100 cells obtained with MoCM). Similarly, the number of leukemic colonies was substantially less than with MoCM (less than 30% of MoCM) in all but 3/10 AML patients and both were only able to significantly stimulate CFU-L derived colonies greater than 50 cells from 2/10 patients. G-CSF alone stimulated some CFU-L derived colony growth in 9/10 patients but the number stimulated was minimal relative to MoCM in five of the patients and significant stimulation of colonies greater than 50 cells occurred in only one patient. The mean number of normal CFU-GM derived colonies stimulated by G-CSF was 41% of the total colonies and 34% of the colonies greater than 100 cells generated by MoCM. The combination of G-CSF with GM-CSF and G-CSF with IL-3 resulted in a synergistic or additive increase in the number of CFU-L in 5/10 and 7/10 patients, respectively, and a synergistic increase in the size of CFU-L in 5/10. The same combinations resulted in a significant synergistic effect on size of normal CFU-GM derived colonies. There was no evidence of a synergistic increase in the number or size of CFU-L and CFU-GM derived colonies stimulated with GM-CSF in combination with IL-3. In addition, a combination of all three (G-CSF + GM-CSF + IL-3) did not enhance the effect of G-CSF + GM-CSF or G-CSF + IL-3. These results suggest that there is significant heterogeneity among AML patients in the pattern of responsiveness of the leukemic cells to the recombinant growth factors. In addition, their responsiveness does not significantly differ from that of normal progenitors. In view of the current clinical trials with r-CSFs and cytotoxic drugs in AML patients, this issue is important and worthy of further investigation.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult

Autografting with bone marrow exposed to multiple courses of very high dose cyclophosphamide in vivo and to 4-hydroperoxycyclophosphamide in vitro.

Intensive chemotherapy prior to harvesting autologous bone marrow may be advantageous for cancers that infiltrate the bone marrow. This approach, however, may deplete hemopoietic reserves or damage the hemopoietic microenvironment and thereby jeopardize posttransplant engraftment; in vitro treatment of bone marrow to ensure a tumor-free state may enhance the risk of nonengraftment. We addressed these concerns in a pilot study of patients with disseminated neuroblastoma. Bone marrow was harvested after initial intensive therapy that included 1) three to six courses of very high dose cyclophosphamide (CPM) (100-140 mg/kg in five patients, 140-160 mg/kg in nine patients), plus doxorubicin and vincristine, followed by 2) a median of three strongly myelosuppressive courses of cisplatin/VP16. The median interval between courses was 23 days. The marrow was treated in vitro with the CPM congener 4-hydroperoxycyclophosphamide (4-HC) and cryopreserved. It was infused after a massive cytoreduction regimen of melphalan 180 mg/m2 (n = 7) or thiotepa 900 mg/m2 (n = 7), plus cisplatin, BCNU, VP16, and local radiation. All 14 patients reconstituted hemopoiesis (median of 37 days to neutrophils greater than or equal to 500/microliter and of 63 days to platelets greater than 50,000/microliters). The number per kilogram body weight of hemopoietic progenitor cells (CFU-GM, BFU-E) in the autografts correlated significantly with the rate of hematologic recovery. Preharvest CPM dosage, however, did not. The use of thiotepa, as opposed to melphalan, was associated with a significantly slower posttransplant platelet recovery, suggesting a possible adverse effect of high-dose thiotepa on posttransplant hemopoiesis. In sum, while reinforcing evidence of a stem cell sparing effect of CPM, this pilot study more importantly delineates the degree to which high-dose alkylator therapy can be exploited to attain maximal dose intensity beginning at diagnosis. This aggressive treatment approach may have wide applicability, since CPM is among the most active agents against a spectrum of pediatric cancers.

Adolescent

Fusarium infections in patients with hematologic malignancies.

Two cases of Fusarium infection in patients with refractory hematologic malignancies are reported. In one patient septicemia progressed to death in septic shock. Miconazole showed some effect in clearing the lesions. There is some evidence that mycotoxins are related with Fusarium infections since severe myositis occurred in our patient. The other patient had a T-cell lymphoma, undergoing allogeneic bone marrow transplantation. The course was also complicated by Fusarium infection of the skin. This patient died of multiorgan failure. Recent literature on Fusarium is reviewed.

Adult

Pharmacological elimination of tumor cells contaminating normal human bone marrow using PTT-119.

In this study, we evaluated the inhibitory effects of PTT-119, a new tripeptide which is known to be a bifunctional alkylating agent, on two tumor cell lines with different origins: SK-DHL-2 (B-cell diffuse histiocytic lymphoma cell line) and RPMI 8226 (Multiple myeloma patient cell line) and compared the toxicity of PTT-119 toward normal human bone marrow granulocyte macrophage (CFU-GM), erythroid (BFU-E), and pluripotent (CFU-GEM) progenitors. Reduction of at least four logs was achieved on clonogenic myeloma cells after 1 hr of treatment with 25 micrograms/mL of PTT-119 either in the presence or absence of irradiated bone marrow (BM) cells. More than three and at least four logs of lymphoma cell kill were found after 1 hr of incubation with 25 and 40 micrograms/mL of the tripeptide, respectively. PTT-119 antitumor effects on SK-DHL-2 were only slightly affected in the presence of an excess of BM cells. BM cells treated for 1 hr with 25 micrograms/mL of PTT-119 showed a mean recovery of 4.5, 3.8, and 13.8% of CFU-GM, BFU-E, and CFU-GEM, respectively. The addition of 5- and 10-fold excesses of red blood cells (RBC) produced a slightly higher recovery of these hematopoietic progenitors. These results suggest that PTT-119 may be useful as a chemotherapeutic agent for the ex vivo treatment of bone marrow grafts.

Antineoplastic Agents