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Biomedical subjects

S J Forman

Publications and source records attributed to S J Forman.

At least 73 records · Page 4Linked to original sources

Autologous transplantation for the treatment of chronic myelogenous leukemia.

There is evidence that benign, Ph-negative hematopoietic progenitors persist in the marrow and blood of some patients with chronic myelogenous leukemia (CML). A number of pilot studies using purged and unpurged marrow or peripheral blood autografts have demonstrated that autologous transplantation can result in transient cytogenetic responses in CML. Although not curative, this procedure may be associated with longer-than-expected patient survival and represents an alternative treatment for patients ineligible for allogeneic transplantation and not responding to interferon-alpha therapy. Several novel approaches are being developed to improve graft purging and eliminate residual leukemia post-transplantation. Such approaches may allow for long-term restoration of Ph-negative hematopoiesis following the procedure.

Bone Marrow Purging↗

Extracorporeal photochemotherapy for treatment of drug-resistant graft-vs.-host disease.

Extracorporeal photochemotherapy (EP) is a therapeutic approach to the treatment of drug-resistant graft-vs.-host disease (GVHD) that uses the known immunosuppressive and immunomodulatory effects of ultraviolet light. In 1990, we initiated a pilot study to evaluate the efficacy and safety of EP in patients with refractory GVHD. Between 1991 and 1996, six patients with acute grade IV liver GVHD, 12 patients with chronic following acute GVHD, and six patients with de novo chronic GVHD were treated with EP. All patients had failed to respond to conventional GVHD immunosuppressive drug therapy of cyclosporine and prednisone. The six patients with acute liver GVHD had also received antithymocyte globulin (ATG); therapy for chronic GVHD included thalidomide in eight patients, psoralen plus ultraviolet A in five patients, and ATG in two patients. All patients with acute liver GVHD had progressive liver failure with short survival despite frequent EP. The response rate with EP treatment was 3 of 6 for patients with de novo chronic GVHD and 3 of 12 for patients with chronic following acute GVHD. Three patients with bronchiolitis obliterans had either no response or no documented disease progression while undergoing EP. Side effects of EP were minor and included gastrointestinal upset frequently, catheter-related sepsis in four patients, increased red blood cell and platelet transfusion requirements in one patient, and leukopenia in two patients. EP was discontinued in three patients because of side effects, including GI upset in one patient and bone marrow suppression in two patients. Side effects were reversible with the discontinuation of EP. We were unable to correlate response to EP with the level of methoxypsoralen, number of lymphocytes treated, or pattern of pre- and posttreatment CD4/CD8 ratio. We concluded that EP has some efficacy in the treatment of drug-resistant chronic GVHD, with minor overall toxicity.

Adolescent↗

Autologous bone marrow transplantation for non-Hodgkin's lymphoma resulting in long-term remission of coincidental Crohn's disease.

Crohn's disease usually runs a chronic relapsing and remitting course, characterized by a repeated need for immunosuppressive drug therapy or often surgery. and is considered to be incurable by standard treatment. We report a case of successful long-term disease control of Crohn's disease following autologous bone marrow transplantation. This case provides further support for the concept that some forms of severe immune-mediated diseases may be amenable to treatment by high-dose therapy with autologous stem cell support.

Adult↗

Stem cell transplantation in acute leukemia.

Both autologous and allogeneic transplantation have been used to treat and cure patients with acute leukemia. An important component of the cure mediated by allogeneic transplantation comes from a graft-versus-tumor effect of the graft. The immunotherapeutic effect can be used to treat patients whose conditions relapse after allogeneic transplantation using donor leukocyte infusions. Research conducted in the areas of histocompatibility and stem cell biology have expanded the potential cellular sources for allogeneic transplantation, including matched unrelated marrow donors, unrelated cord blood, and allogeneic peripheral blood stem cells. Molecular studies in patients with leukemia have refined the assessments of minimal residual disease following therapy, including for patients who have undergone transplantation, and may provide an opportunity for intervention prior to overt relapse. The results of allogeneic and autologous transplantation preparative regimens, including the use of targeted radioimmunotherapy and individualized pharmacokinetics, may improve the effectiveness and lessen the toxicity of the treatment.

Acute Disease↗

Autologous bone marrow transplantation for patients with relapsed or refractory diffuse aggressive non-Hodgkin's lymphoma: value of augmented preparative regimens--a Southwest Oncology Group trial.

PURPOSE: To determine the toxicity and prognosis of patients with relapsed and refractory diffuse aggressive non-Hodgkin's lymphoma (NHL) who underwent an autologous bone marrow transplant (ABMT) using augmented preparative regimens, treated in a major cooperative group setting, and to examine prognostic factors for outcome. PATIENTS AND METHODS: Ninety-four patients with either chemosensitive (50 patients) or chemoresistant (44 patients) relapse, including 22 who failed induction chemotherapy, were treated with high-dose cyclophosphamide and etoposide with total-body irradiation (TBI) (67 patients) or an augmented carmustine (BCNU), cyclophosphamide, and etoposide (BCV) preparative regimen (27 patients) and an ABMT at 16 Southwest Oncology Group (SWOG) transplant centers. All relapsing patients were required to undergo a minimum of two courses of salvage therapy to determine chemosensitivity before transplant. Overall (OS) and progression-free survival (PFS) were determined and a Cox regression model was used to assess potential prognostic variables. RESULTS: Of the 94 eligible patients, there were 10 (10.6%) deaths before day 50 posttransplant because of infection (six deaths), hemorrhagic alveolitis (three deaths), or bleeding (one death). The median 3-year PFS and OS for the entire group was 33% and 44%. For those with chemosensitive disease the PFS and OS were 42% and 55%, whereas for those with chemoresistant disease the PFS and OS were 22% and 29%. The PFS and OS for those failing induction chemotherapy were 27% and 32%. The relapse rates within the first 3 years for the chemosensitive relapse, chemoresistant, and induction failure groups were 61%, 40%, and 59%, respectively. For both PFS and OS, only disease status at transplant was a significant factor in the multivariate Cox model. CONCLUSION: These results single institutional pilot trials exploring augmented preparative regimens. Patients undergoing transplantation for resistant disease, particularly those failing induction chemotherapy, appear to have an improved prognosis as compared with reports using standard preparative regimens. Therapies other than manipulation of standard preparative regimens appear to be required to decrease relapses following autotransplantation.

Adult↗

Comparison of amphotropic and pseudotyped VSV-G retroviral transduction in human CD34+ peripheral blood progenitor cells from adult donors with HIV-1 infection or cancer.

In this study we compared the transduction efficiency of conventional amphotropic MoMLV (LPONL[A]) with the MoMLV pseudotyped with that of VSV-G (LPONL[G]) in peripheral blood progenitor cells (PBPCs) from cancer patients and human immunodeficiency virus (HIV)-infected donors. The results showed that LPONL(A) and LPONL(G) infected the progenitor cells from these sources with equal efficiencies. The transgene neoR was detectable by polymerase chain reaction assay in colonies from 14-day colony-forming unit (CFU) assays and in those derived from long-term culture-initiating cell (LTC-ICs) assays. Although the overall levels of transduction efficiency were similar in cord blood and PBPCs from noninfected cancer donors (25-22%) when either LPONL(G) or LPONL(A) was used, they were significantly lower in HIV-1-infected donors compared with noninfected cancer donors when LPONL(G) was used (13 vs. 25%; p = 0.027), and when LPONL(A) was used (12 vs. 22%; p = 0.087). The clonogenic potentials of infected and noninfected CD34+ cells were similar; thus no toxicity could be attributed to the virus preparation. We conclude that PBPCs from HIV-1-infected individuals are transduced less efficiently than those from non-HIV-infected cancer donors. Nonetheless, PBPCs from HIV-infected persons serve as potential targets in gene therapy for acquired immune deficiency syndrome.

Acquired Immunodeficiency Syndrome↗

Results of high-dose therapy and autologous bone marrow/stem cell transplantation during remission in poor-risk intermediate- and high-grade lymphoma: international index high and high-intermediate risk group.

We have conducted a pilot study to investigate the role of high-dose therapy and autologous bone marrow/stem cell transplantation (ASCT) during first complete or partial remission in 52 patients with poor-risk aggressive lymphoma. There were 42 patients with intermediate-grade or immunoblastic lymphoma who were considered to be high (60%) and high-intermediate risk (40%) groups at diagnosis based on the age-adjusted International Prognostic Index (IPI) and 10 patients with high-grade, SNCCL (small non-cleaved cell, Burkitt's, and non-Burkitt's), who at presentation had poor-risk features defined as elevated serum lactate dehydrogenase level, stage IV, and bulky mass >/=10 cm. The median age was 34 years (range, 16 to 56 years). Thirty-nine were transplanted in first complete remission and 13 in first partial remission after conventional therapy. Conditioning regimens consisted of total body irradiation (TBI) administered as a single fraction 750 cGy in 3 patients and in fractionated doses for a total of 1,200 cGy in 44 patients, in combination with 60 mg/kg etoposide and 100 mg/kg cyclophosphamide. Five patients with prior radiotherapy received 450 mg/m2 carmustine instead of TBI. Stem cell sources were either bone marrow and/or peripheral blood. No in vitro purging was used. All patients engrafted. Two SNCCL patients died of venoocclusive disease at 25 days and acute leukemia at 27 months posttransplantation. There were six relapses at 1.5 to 12.8 months posttransplantation. At a median follow-up of 44 months (range, 1 to 113 months), the estimated 3-year overall survival (OS) and disease-free survival (DFS) for all patients was 84% (95% confidence interval [CI], 70% to 92%) and 82% (95% CI, 68% to 91%), respectively. In the subset of patients with intermediate-grade and immunoblastic lymphoma, the 3-year DFS was 89% (95% CI, 74% to 96%) for all patients, 87% (95% CI, 67% to 96%) for high-risk patients, and 92% (95 CI, 61% to 99%) for high-intermediate risk patients. The 3-year OS and DFS for SNCCL patients were identical at 60% (95% CI, 30% to 84%). These results suggest that high-dose therapy and ASCT during first remission may improve the survival and prognosis of patients with poor-risk intermediate- and high-grade lymphoma. A prospective randomized study comparing high-dose therapy and ASCT with conventional chemotherapy in IPI high-risk patients with aggressive non-Hodgkin's lymphoma should be undertaken.

Adolescent↗

Development of a candidate HLA A*0201 restricted peptide-based vaccine against human cytomegalovirus infection.

The development of a protective cellular immune response against human cytomegalovirus (HCMV) is the most important determinant of recovery from HCMV infection after allogeneic bone marrow transplantation (BMT). The ultimate aim of our study is to develop an antigen-specific and peptide-based vaccine strategy against HCMV in the setting of BMT. Toward this end we have studied the cellular immune response against the immunodominant matrix protein pp65 of HCMV. Using an HLA A*0201-restricted T-cell clone reactive against pp65 from peripheral blood from a seropositive individual, we have mapped the position of the cytolytic T lymphocyte (CTL) epitope from HCMV pp65 to an 84-amino acid segment. Of the four peptides which best fit the HLA A*0201 motif in that region, one nonamer sensitized an autologous Epstein-Barr virus immortalized lymphocyte cell line for lysis. In vitro immunization of PBMC from HLA A*0201 and HCMV seropositive volunteers using the defined nonamer peptide stimulated significant recognition of HCMV infected or peptide-sensitized fibroblasts. Similarly, HLA A*0201 transgenic mice immunized with the nonamer peptide developed CTL that recognize both the immunizing peptide and endogenously processed pp65 in an HLA A*0201 restricted manner. Lipid modification of the amino terminus of the nonamer peptide resulted in its ability to stimulate immune responses without the use of adjuvant. This demonstration of a vaccine function of the nonamer peptide without adjuvant suggests its potential for use in an immunization trial of BMT donors to induce protective CTLs in patients undergoing allogeneic BMT.

Animals↗

Hematopoietic potential and retroviral transduction of CD34+ Thy-1+ peripheral blood stem cells from asymptomatic human immunodeficiency virus type-1-infected individuals mobilized with granulocyte colony-stimulating factor.

The potential of hematopoietic stem cells (HSCs) from human immunodeficiency virus type-1 (HIV-1)-infected individuals, eg, self-renewal and multilineage differentiative capacity, might be perturbed due to the underlying disease. In this study, we assessed the HSC activity in the CD34+ Thy-1+ cell population of peripheral blood stem cells (PBSCs) of three asymptomatic HIV-1-infected individuals after granulocyte colony-stimulating factor (G-CSF; 10 microg/kg/d) mobilization. On day 4 of G-CSF treatment, 0.8% to 1% of the total blood mononuclear cells were CD34+. Leukapheresis followed by a two-step cell isolation process yielded a CD34+ Thy-1+ cell population of high purity (76% to 92% CD34+ Thy-1+ cells). This cell population showed no evidence of HIV-1-containing cells based on a semiquantitative HIV-1 DNA polymerase chain reaction. Furthermore, the purified cells showed normal hematopoietic potential in in vitro clonogenic assays. Successful gene transfer into committed progenitor cells (colony-forming units-cells) and more primitive stem/progenitor cells (long-term culture colony-forming cells) could be shown after amphotropic retroviral transduction. These data provide evidence that the CD34+ Thy-1+ stem cell compartment can be mobilized and enriched in early stage HIV-1-infected patients. Furthermore, successful transduction of this cell population as a prerequisite for stem cell-based clinical gene therapy protocols was demonstrated.

Adult↗

Effect of CD34+ selection and various schedules of stem cell reinfusion and granulocyte colony-stimulating factor priming on hematopoietic recovery after high-dose chemotherapy for breast cancer.

We evaluated the effects of various schedules of peripheral blood stem cell (PBSC) reinfusion, granulocyte colony-stimulating factor (G-CSF) priming, and CD34+ enrichment on hematopoietic recovery in 88 patients with advanced breast cancer treated with high-dose chemotherapy, consisting of cisplatin 250 mg/m2, etoposide 60 mg/kg, and cyclophosphamide 100 mg/kg. PBSC (> or = 7.5 x 10(8) nucleated cells/kg) were collected following priming with G-CSF and were either immediately cryopreserved (48 patients; cohorts A and B) or were first processed for CD34+ enrichment (40 patients; cohorts C and D). Patients in cohorts A and C received PBSC on day 0; patients in cohorts B and D received 25% of their nucleated cells on day -2 and 75% on day 0 (split reinfusion). Patients in cohorts A, B, and C were primed with G-CSF 10 micrograms/kg, subcutaneously (SC), once a day; patients in cohort D were primed with 5 micrograms/kg G-CSF, SC, twice daily (bid). Bid administration of G-CSF yielded 2.3 to 4.7 x higher numbers of CD34+ cells in the PBSC product than the same total dose given once a day (P = .002). Reinfusion of 25% of unselected PBSC on day -2 (median, 2.26 x 10(8)/kg nucleated cells [range, 1.7 to 3.3 x 10(8)/kg]) with the remaining cells reinfused on day 0 resulted in earlier granulocyte recovery to > or = 500/microL when compared with reinfusion of all stem cells on day 0 (group B, median of 8 days [range, 7 to 11] v group A, 10 days [range, 8 to 11], P = .0003); no schedule-dependent difference was noted in reaching platelet independence (group B, 11.5 days [range, 5 to 21]; group A, 12 days [range, 8 to 24], P = not significant). Split schedule reinfusion of CD34(+)-selected PBSC did not accelerate granulocyte recovery. In groups D and C, the median number of days to granulocyte recovery was 12 (range, 8 to 22) and 11.5 (range, 9 to 13); patients became platelet independent by day 15 (range, 6 to 22) and 14 (range, 12 to 23), respectively. CD34(+)-selected PBSC rescue decreased the incidence of postreinfusion nausea, emesis, and oxygen desaturation in comparison to unselected PBSC reinfusion (P < or = .005 for each). Hematopoietic recovery may be accelerated by earlier reinfusion of approximately 2.26 x 10(8)/kg unselected nucleated cells. Earlier recovery may be triggered by components other than the progenitors included in the CD34+ cell population. Sustained hematopoietic recovery can also be achieved with CD34(+)-selected PBSC alone. Dosing of G-CSF on a bid schedule generates higher CD34+ cell yield in the leukapheresis product. Whether even earlier "sacrificial" reinfusion of approximately 2 x 10(8)/kg unselected nucleated cells concomitant with the administration of high-dose chemotherapy would reduce the duration of absolute granulocytopenia further while initiating sustained long-term hematopoietic recovery will require further investigation.

Adult↗

Autologous bone marrow purging by in situ IL-2 activation of endogenous killer cells.

The major cause of treatment failure in hematologic malignancies is the development of resistance to chemotherapeutic agents and the presence of clonogenic tumor cells in remission bone marrow. In the present study, we tested the optimal conditions for activation by interleukin-2 (IL-2) of endogenous bone marrow effector cells to develop cytotoxicity against solid tumor and leukemia cells and the effects of IL-2 treatment on eradication of malignant cells from the marrow product while preserving hematopoiesis. Normal donor bone marrow was contaminated with 10% A549 lung cancer cells, MCF-7 breast cancer, or EM2 leukemia cells, and then combined with peripheral blood-derived lymphokine-activated killer (LAK) cells which had been incubated in the presence of IL-2, 6000 IU/ml, for 5 days. Eradication (A549 and MCF-7) or >90% reduction in tumor cell number (EM2) was achieved upon exposure of the marrow to LAK cells but not to control, non-IL-2-exposed PBMC. The non-cross-resistance of chemotherapy and cell-mediated cytotoxicity were tested by using chemoresistant target cells for LAK cytotoxicity assays. Ara-C-resistant K562 cells were sensitive to LAK cytotoxicity, similar to sensitive controls. Similar effects were seen in daunomycin-resistant HL60 leukemia cells and VP-16-resistant K562 cells. The daunomycin-resistant K562 cells were also sensitive to LAK cell killing similar to sensitive controls. Activation of bone marrow mononuclear cells (BMMC) with IL-2, 6000 IU/ml for 24 h, significantly enhanced cytotoxicity against the NK-resistant, LAK-sensitive Daudi cell line. This procedure did not result in significant loss of total BMMC or hematopoietic colony-forming units. We then studied the possibility that the effector cell activity of the IL-2-activated BMMC which is diminished after removal of the IL-2 at 24 h could be recovered upon re-exposure of the marrow to IL-2. We found that the optimum conditions for preserving cytotoxicity were prolonged continuous exposures to IL-2 but that re-exposure of the 24-h IL-2-activated BMMC to IL-2 after a 1- or 2-week IL-2 withdrawal was associated with full recovery of cytotoxicity. These experiments also demonstrated that the overall recovery of viable cells from the BMMC was over 100%, possibly due to a proliferative effect of the IL-2 exposure on BMMC. These results demonstrate that the use of IL-2-activated marrow in patients with acute leukemia in remission undergoing autologous bone marrow transplantation (aBMT) may overcome the obstacles of clonogenic, drug-resistant minimal residual disease. The effector cell activity and hematopoietic capacity of the activated bone marrow product can also be maintained even if optimal clinical care requires an interruption in the in vivo exposure to IL-2. This therapeutic approach is currently being tested in acute leukemia patients undergoing IL-2-activated aBMT followed by prolonged IL-2 treatment before and after hematologic reconstitution.

Bone Marrow Purging↗

Late cytomegalovirus disease in marrow transplantation is predicted by virus load in plasma.

Late occurrence of cytomegalovirus (CMV) disease after day 100 after bone marrow transplantation has become an increasing problem; whether a quantitative measurement of CMV DNA in plasma by polymerase chain reaction (P-PCR) could be predictive of such disease was investigated. In a prospective study, 117 subjects undergoing allogeneic marrow transplantation were followed for 120 days with weekly CMV blood cultures, with day 35 bronchoalveolar lavage CMV cultures, with weekly CMV P-PCR, and with clinical follow-up for an additional 1-2 years. Despite preemptive ganciclovir, CMV disease occurred in 9% of subjects, with a median time of onset of 176 days. Quantitative CMV P-PCR was associated with the late development of CMV disease (P = .01). Of 43 subjects with positive P-PCR results, 23% developed CMV disease, but no disease occurred in the 74 subjects with negative P-PCR (P < .001), despite the fact that 22% had CMV isolated from lung lavage fluid and 32% had CMV isolated from blood.

Bone Marrow Transplantation↗

Myelodysplastic syndrome occurring after autologous bone marrow transplantation for lymphoma. Morphologic features.

Clonal karyotypic abnormalities characteristic of myelodysplastic syndrome (MDS) occur in up to 18% of patients who undergo autologous bone marrow transplantation (auto-BMT) for the treatment of lymphoma. Morphologic changes are often subtle and may not meet the French-American-British Cooperative Group criteria for MDS. We retrospectively assessed dysplastic changes in peripheral blood and bone marrow specimens obtained before and after transplantation from nine patients and correlated them with karyotype and survival. All patients had normal cytogenetic study results before transplantation and had clonal karyotypic abnormalities develop after auto-BMT. Four patients (with aggressive MDS) survived a short time and died of acute myelogenous leukemia or MDS-related complications, four (with indolent MDS) had a prolonged survival period, and one patient died of recurrent lymphoma. The group with aggressive MDS had significantly more bone marrow trilineage dysplasia before auto-BMT than did the group with indolent MDS or cytogenetically normal auto-BMT controls, suggesting that stem cell damage occurred before transplantation and was not detected by pretransplantation cytogenetic analysis. Comparatively greater dyserythropoiesis and dysmegakaryopoiesis were present after transplantation; these changes were similar to those seen in de novo MDS. Posttransplantation dysplasia in the group with indolent MDS was analogous to the atypia related to the transplantation process.

Adult↗

Murine cytomegalovirus replication in the lungs of athymic BALB/c nude mice.

Murine cytomegalovirus (MCMV) infection in the lungs of T cell-deficient athymic BALB/c (Nu/ Nu) mice and their immunocompetent heterozygous (Nu/+) littermates was examined. Following intranasal inoculation, MCMV replicated in the lungs of both Nu/Nu and Nu/+ mice, but virus titers were significantly higher in T cell-deficient mice. After subcutaneous inoculation, virus disseminated to lung tissue of athymic mice, leading to progressive MCMV replication in lungs that was not seen in the immunocompetent mice. Athymic mice failed to develop an antibody response to MCMV. Histologically, athymic mice uniformly developed focal interstitial cellular aggregates adjacent to blood vessels or airways, which progressively enlarged and coalesced. Pneumonitis was not seen in the lungs of any Nu/+ mice. Thus, MCMV can replicate in the lungs without pneumonitis in immunocompetent mice, but MCMV produces a progressive focal pneumonitis during deficiency of T cell-mediated immunity.

Animals↗

Myositis associated with graft-versus-host disease.

A polymyositis syndrome has been described as a rare complication in patients who develop chronic graft-versus-host disease after allogeneic bone marrow transplantation. Chronic graft-versus-host disease is a cellular immune-mediated donor bone marrow versus patient rejection reaction, which may also lead to an autoimmune pathologic process. Chronic graft-versus-host disease-related polymyositis appears to be very similar to idiopathic myositis in its clinicopathologic presentation; chronic graft-versus-host disease-related myositis responds well to prednisone but cyclosporine may be an important component of second-line therapy due to its efficacy in controlling underlying chronic graft-versus-host disease.

Bone Marrow Transplantation↗

Cellular immunotherapy and autologous transplantation for hematologic malignancy.

The success of allogeneic transplantation is in part due to the immunotherapeutic effect mediated by the graft. Autologous transplantation is hampered by the absence of this effect, leading to a higher relapse rate. We have conducted a series of studies designed to augment the immunologic activity of the graft after autologous transplant with a view towards introducing an autologous graft-versus-tumor effect that could decrease the rate of relapse after autologous transplant. These studies have included IL-2 activation of marrow followed by post-transplant infusional IL-2, the development of a novel protocol for the generation of highly efficient cytotoxic effector cells, termed cytokine-induced killer (CIK) cells, with broad and potent antitumor activity. In order to determine the potential for generating peptide-specific cytolytic T cells, studies have been conducted upon transducing antigen-presenting cells (APC) with AAV vector-mediated gene transfer, a vector capable of transducing non-proliferating target cells. Transduction of human monocytes and macrophages resulted in high expression of the transduced gene. This latter study forms the basis for determining whether genetic modification of APC can potentiate specific immune responses to tumor-specific gene products. Taken together, these strategies will hopefully increase the therapeutic efficacy of autologous transplantation.

Animals↗

Evaluation of a quantitative plasma PCR plate assay for detecting cytomegalovirus infection in marrow transplant recipients.

A plasma PCR test, using a nonradioactive PCR plate assay, was evaluated for detection of human cytomegalovirus reactivation. This assay was compared to Southern blotting and found to perform well. As a noncompetitive method of quantitation, it was similar to a competitive method for detecting the number of genome copies per milliliter of plasma in marrow transplant recipients. This is a technically simplified assay with potential for adaptation to automation.

Base Sequence↗

High-dose chemotherapy and stem-cell rescue in the treatment of high-risk breast cancer: prognostic indicators of progression-free and overall survival.

PURPOSE: To examine the predictive value of tumor- and treatment-specific prognostic indicators of relapse-free survival (RFS) and overall survival (OS) in patients with high-risk breast cancer (HRBC) treated with high-dose chemotherapy (HDCT) and stem-cell rescue. PATIENTS AND METHODS: Between June 1989 and September 1994, 114 patients with HRBC (stage II with > or = 10 axillary lymph nodes involved, stage IIIA, and stage IIIB inflammatory carcinoma) received adjuvant chemotherapy followed by HDCT with etoposide, cyclophosphamide, and either doxorubicin (CAVP) or cisplatin (CCVP). Variables analyzed included stage, tumor size, number of axillary nodes involved, grade and receptor status, and types of adjuvant chemotherapy and radiation therapy and HDCT. RESULTS: With a median follow-up time of 46 months (range, 23 to 93), Kaplan-Meier estimates of 3.5-year OS for stage II, IIIA, and IIIB HRBC are 82% (95% confidence interval [CI], 67% to 97%), 79% (95% CI, 67% to 91%), and 72% (95% CI, 53% to 91%); RFS estimates are 71% (95% CI, 56% to 85%), 57% (95% CI, 43% to 72%), and 50% (95% CI, 29% to 71%) irrespective of the HDCT regimen. In univariate analysis, the risk of relapse was lower for patients with progesterone receptor (PR)-positive tumors (risk ratio [RR], 0.43; 95% CI, 0.22 to 0.81; P = .01) and higher for patients with inflammatory carcinoma (RR, 2.20; 95% CI, 1.02 to 4.76; P = .05). OS was better for patients with PR (RR, 0.16; 95% CI, 0.05 to 0.55; P = .003) and estrogen receptor (ER)-positive tumors (RR, 0.42; 95% CI, 0.17 to 1.02; P = .05); OS was worse for patients with high-grade primary tumors (RR, 4.08; 95% CI, 1.21-13.7; P = .02). In multivariate analysis, PR positivity was associated with improved RFS (P = .01) and OS (P = .001). CONCLUSION: HDCT in selected patients with HRBC is safe and warrants further evaluation. Patients with receptor-negative, high-grade, or inflammatory tumors require improvement in their therapeutic options. Better assessment of the role of HDCT awaits completion of ongoing randomized trials.

Adult↗