Biomedical subjects
S Jagannath
Publications and source records attributed to S Jagannath.
Low-risk intensive therapy for multiple myeloma with combined autologous bone marrow and blood stem cell support.
To improve the safety of autotransplantation for myeloma, peripheral blood stem cell (PBSC) collection was attempted in 75 previously treated patients after the administration of high-dose cyclophosphamide (HD-CTX; 6 g/m2) with or without granulocyte-macrophage colony-stimulating factor (GM-CSF). Sixty patients subsequently received melphalan 200 mg/m2 (57 patients) or melphalan 140 mg/m2 and total body irradiation (850 cGy) (3 patients) supported by both autologous bone marrow and PBSC; 38 patients received GM-CSF posttransplantation. Among 72 patients undergoing PBSC apheresis, "good" mobilization (greater than 50 colony-forming units granulocyte-macrophage [CFU-GM] per 10(5) mononuclear cells) was achieved when prior chemotherapy did not exceed 1 year and when GM-CSF was used post-HD-CTX; similarly, rapid platelet recovery to 50,000/microL within 2 weeks was associated with "good" PBSC mobilization. These same variables also predicted for rapid engraftment after autotransplantation, so that hematologic recovery (granulocytes greater than 500/microL and platelets greater than 50,000/microL) proceeded within 2 weeks among the 37 patients with "good" PBSC collection. As a result of rapid neutrophil recovery (greater than 500/microL) within a median of 2 weeks, infectious complications both post-HD-CTX and posttransplant were readily manageable, resulting in only one treatment-related death post-HD-CTX. The cumulative response rate (greater than or equal to 75% cytoreduction) for all 75 patients was 68%, with 12-month event-free and overall survival projections of about 85%. Using both bone marrow and PBSC together with GM-CSF, autotransplants are safe and appear effective in myeloma, especially when prior therapy had been limited to less than 1 year. More than 80% of transplanted patients achieved complete hematologic recovery within a median of 1 month posttransplant (granulocytes greater than 1,500/microL; platelets greater than 100,000/microL; hemoglobin greater than 10 g%), thus providing sufficient hematopoietic reserve for further chemotherapy in the event of posttransplant relapse.
Transplants from the same donor.
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Second bone marrow transplants for relapsed leukemia.
Seventeen patients who had a relapse at a median of 9 months after marrow transplant (14 allogeneic and three syngeneic) received second transplants. Eight patients were in remission when transplanted. Of the nine patients with active disease at the time of transplant, six had complete remissions, and one converted from blastic to chronic phase of chronic myelogenous leukemia. The median survival was 9 months (95% confidence interval, 4 to 17 months). Four patients died within 100 days of transplantation, and three were disease-free. Ten patients died after 100 days, all except two of disease relapse. Five patients had remissions that were greater than 12 months and longer than the remission after their first transplant (inversions). Three patients remain alive and disease-free at 37+, 55+, and 61+ months, the former two despite remissions of less than 1 year after their first transplant. Second transplants with a different cytoreductive regimen can eradicate disease resistant to prior myeloablative treatment; some patients may benefit from second transplants, even if the first transplant only achieves a short remission.
UV light-induced reactivation of herpes simplex virus type 2 and prevention by acyclovir.
UV B light is a potent stimulus for inducing reactivation of latent herpes simplex virus (HSV) infections. Patients were enrolled in a double-blind placebo-controlled crossover trial to determine whether acyclovir can prevent UV light-induced HSV-2 recurrences. Twenty-four patients with a history of recurrent infection of perigenital sites (e.g., buttock, thigh) were exposed one to four times with 4 minimum erythema doses of UV light. Patients were given acyclovir 200 mg orally five times daily or matched placebo beginning 1 day before each exposure and continuing for 5 days after exposure. There were 13 UV-induced recurrences among 36 placebo treatments and 3 after 38 acyclovir treatments (P = .004). The mean time to recurrence (+/- SE) was 4.8 +/- 0.3 days. HSV-2 lesions developed primarily at the site of UV exposure. The cutaneous distribution and timing of UV-induced recurrences was consistent with a neural localization (dorsal root ganglia) of latent viral infection. This UV light model permits direct examination of events leading to HSV-2 recurrences in humans and can be used to evaluate approaches to prevention.
Autotransplants in myeloma.
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Autologous bone marrow transplantation for multiple myeloma.
Intensive cytotoxic chemotherapy is capable of more marked tumor cytoreduction including true complete remissions in multiple myeloma. Use of autologous marrow and blood stem cells as well as growth factors has reduced the risk of infection and severe extramedullary toxicities.
Intensive combination chemotherapy and autologous bone marrow transplantation leads to the reappearance of Philadelphia chromosome-negative cells in chronic myelogenous leukemia.
Fifteen patients with Philadelphia chromosome (Ph)-positive chronic myelogenous leukemia (CML) who were ineligible for allogeneic bone marrow transplantation (BMT) or alpha-interferon therapy were included in this study. Eight patients were in the first late chronic phase, five were in the second chronic phase, one was in the accelerated phase, and one was in the blastic phase. Autologous bone marrow cells (median, 2.5 x 10(8) nucleated cells/kg) were stored at a median of 30 months after diagnosis. Patients were treated with cyclophosphamide (1.5 g/m2 daily for 4 days), carmustine (BCNU) (300 mg/m2), and etoposide (VP-16) (250 mg/m2 daily for 3 days) (CBV), followed by reinfusion of autologous bone marrow. Hematopoietic recovery was rapid, and toxicity was mild to moderate in 14 patients. One patient died of cytomegalovirus pneumonitis. Eight of 15 patients showed Ph suppression to less than 90% Ph-positive metaphases after autologous BMT. Major cytogenetic responses (Ph suppression to less than 35% Ph-positive metaphases) developed in four patients. Cytogenetic responses were observed in 4 of 11 patients infused with 100% Ph-positive marrows, and in all 4 patients infused with Ph-mosaic marrows (mixture of diploid and Ph-positive cells). Better results were observed when autologous BMT was performed in the chronic phase compared with the advanced phases. The major cytogenetic responses have lasted for 3, 4, 12, and 15+ months, whereas minor cytogenetic responses lasted for only a short time (less than 2 months). Three of seven patients (43%) in the chronic phase with previous resistance to alpha-interferon therapy became sensitive to alpha-interferon therapy after autologous BMT. The authors concluded that intensive chemotherapy followed by autologous BMT produced cytogenetic remissions in patients with Ph-positive CML and reinduced disease sensitivity to alpha-interferon therapy in patients previously resistant to it. This is particularly useful when treatment is given during the chronic phase and stem cells are collected at a time of previous cytogenetic remission.
Stages I and II diffuse large cell lymphomas: prognostic factors and long-term results with CHOP-bleo and radiotherapy.
One hundred forty-seven patients with Ann Arbor stages I and II diffuse large cell lymphoma (DLCL) were treated with combination chemotherapy consisting of cyclophosphamide, doxyrubicin, prednisone, and low-dose bleomycin (CHOP-Bleo) and involved-field radiation (IF XRT) between 1974 and 1984. A complete remission (CR) was attained by 54 of 57 patients with stage I disease and by 78 of 90 patients with stage II disease. Thirty-five patients had relapsing disease that occurred within 3 years in 31. The overall 10-year survival rate, counting all deaths, for patients with stage I was 72% as compared with 43% for patients with stage II (P less than .01). Determinate survival rates, censoring eight unrelated deaths, were similar to the overall survival rates: 77% and 51%, respectively. A multivariate analysis identified three independent prognostic factors: age, tumor extent, and serum lactic dehydrogenase (LDH) level. When the combined effect of tumor extent and LDH level were taken into consideration in the analysis, three risk groups for survival were identified. The best group, which consists of patients with minimum tumor and normal LDH levels, had a 10-year determinate survival of 79%. Patients with extensive tumors and elevated LDH levels had the poorest survival rate of 44%. An intermediate-risk group with a determinant survival of 62% was composed of patients with either extensive tumors or elevated LDH levels. These differences demonstrate the need to develop different treatment strategies based on risk factors for survival for patients with apparently localized Ann Arbor stages I/II DLCL.
Autologous bone marrow transplantation in multiple myeloma: identification of prognostic factors.
Multiple myeloma remains a universally fatal malignancy with a median survival time not exceeding 3 years. A clinical trial was undertaken to determine feasibility and efficacy of marrow-ablative chemoradiotherapy supported by unpurged autologous bone marrow (ABMT) and to define prognostic variables. Total body irradiation and either melphalan or thiotepa were administered to 55 patients (median age 53 years; range 20 to 66 years). The group of 21 patients with resistance to standard melphalan-prednisone and to continuous infusions of vincristine and Adriamycin with high dose dexamethasone (VAD) included 7 with primary unresponsive disease and 14 with resistant relapse; among the 34 patients achieving remission with the VAD regimen, 14 were in first and 20 in a subsequent remission. Marked cytoreduction by greater than or equal to 75% was observed among all 21 patients with refractory myeloma, whereas further cytoreduction of this magnitude was noted in only 56% of the 34 patients already in remission after VAD. Five of the 6 early deaths among all 55 patients occurred in the 14 patients with resistant relapse, none of whom achieved complete remission and who, as a group, had median durations of relapse-free and overall survival of only 8 and 7 months, respectively. Among the 41 remaining patients, there was only one early death, and 27% achieved complete remission including a 36% incidence among the 14 patients treated in first remission; their projected 4-year survival rate was 82% regardless of their disease status (first or later remission or primary resistance). When information about sensitivity to prior therapy is unavailable, the presence before ABMT of both high beta-2-microglobulin levels (greater than 3 mg/L) and non-IgG isotype helped identify 9 among the 55 patients with a very poor prognosis: all 8 responders relapsed within 9 months, and 8 patients died within 15 months. By contrast, a 4-year projected survival rate of over 70% for the other patients (about 80% of this series) justifies further investigation of this novel treatment approach in comparison with standard dose regimens. Our results indicate that marrow-ablative therapy cannot be recommended for myeloma patients with resistant relapse or those with a combination of risk factors (advanced tumor burden, absence of IgG isotype). The apparent lack of an adverse effect of even marked plasmacytosis in autografts (up to 30%) emphasizes the need for better cytoreduction rather than bone marrow purging.
High-dose chemotherapy and unpurged autologous bone marrow transplantation for acute leukemia in second or subsequent remission.
The authors administered high-dose chemotherapy with cyclophosphamide, BCNU (carmustine) and VP-16 (etoposide) plus autologous bone marrow transplantation (ABMT) to 22 adult patients with relapsed acute leukemia in second or subsequent remission. The marrow was not treated ex vivo. The long-term, disease-free survival rate was 14%. Comparison of results with other treatments can be difficult because of patient selection biases. The concept of inversion (achievement of a longer remission with salvage therapy than with prior treatments) is proposed to compare treatment results. Three patients remain in complete remission beyond 4 years, with inversions. More intensive cytoreductive regimens will be needed to improve results.
High-dose melphalan and granulocyte-macrophage colony-stimulating factor for refractory multiple myeloma.
High-dose melphalan has induced remissions in about 40% of patients with refractory myeloma, but the mortality has been high, at about 20%, due to complications of prolonged granulocytopenia. In an attempt to stimulate earlier granulocyte recovery, recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) was administered subcutaneously to 23 patients with refractory myeloma who had been treated with melphalan at a high dose of 100 mg/m2. Thirty-nine percent of patients achieved marked tumor cytoreduction by at least 75%, 2 died within 2 months from infectious complications during severe neutropenia; and median durations of relapse-free and overall survival were 7 and 10+ months, respectively. The nine patients presenting with both advanced age over 50 years and a long history of prior therapy of over 1 year required significantly longer median times of 31 days for granulocytes and of 63 days for platelets to reach safe levels of at least 500/microL and 50,000/microL, respectively, than the 14 remaining patients who had none or only one of these adverse features (21 and 26 days, respectively). In a historic control of 43 patients treated previously with high-dose melphalan but without GM-CSF, hematologic recovery to the aforementioned levels of granulocytes and platelets proceeded over almost 5 weeks, regardless of age and prior treatment exposure. Thus GM-CSF seems to hasten marrow recovery, especially in patients with adequate normal marrow stem-cell reserve as defined by younger age or less prior therapy. While not shortening the duration of neutropenia, GM-CSF dose increments (from 0.25 to 0.5 to 0.75 mg/m2) increased the incidence of severe toxicity from 0% to almost 40%, especially among older patients. These results support the usefulness of low-dose GM-CSF (0.25 mg/m2) in stimulating marrow recovery in selected patients with adequate marrow reserve treated with high-dose melphalan for refractory multiple myeloma.
Use of recombinant human hematopoietic growth factors and autologous bone marrow transplantation to attenuate the neutropenic trough of high-dose therapy.
This manuscript summarizes our experience with recombinant human granulocyte colony-stimulating factor (rhG-CSF) with high-dose Cytoxan, carmustine and etoposide (CBV in Hodgkin's disease). rhG-CSF regularly shortened the neutropenic phase following autologous bone marrow transplantation. However, this effect was more marked on the latter part of neutrophil recovery than the early part of granulocyte recovery to 100 granulocytes/microliters. The frequency of afebrile episodes was not reduced by rhG-CSF administration, but there was a tendency for the duration of fever to be shortened. Increasing doses and continuous infusion did not hasten the early part of neutrophil recovery needed to prevent the onset of infection, but was more effective than bolus infusion in increasing the rate of late neutrophil recovery. If fevers are to be prevented in this patient population, the duration of an absolute granulocyte count of less than 100/microliters will have to last only a few days. Recombinant hematopoietic growth factors alone do not hasten recovery fast enough to prevent the onset of afebrile episodes. Studies are described using both recombinant growth factor and peripheral blood and bone marrow cells to see if the neutropenic trough can be further shortened over that achievable with growth factor and autologous transplant alone.
Treatment of estrogen receptor-negative or hormonally refractory breast cancer with double high-dose chemotherapy intensification and bone marrow support.
We have used high-dose therapy followed by randomization to receive or not receive autologous bone marrow infusion in 58 stage IV breast cancer patients (all were estrogen receptor-negative [ER-] or primary hormonal refractory). Patients received a median of four courses of induction chemotherapy and if stable or responding received two courses of intensive therapy with cyclophosphamide 4.5 to 5.25 g/m2, etoposide 750 to 1,200 mg/m2, and cisplatin 120 to 180 mg/m2 (CVP). The complete remission (CR) rate after completion of the induction and intensive phases was 55%. Median progression-free interval from induction is 57 weeks with a projected 2-year progression-free survival of approximately 25%. Six of seven patients followed for greater than 2 years are still progression-free. Three favorable features predicted for improved progression-free survival are the following: (1) absent liver involvement, (2) absent soft tissue involvement, and (3) less than or equal to two disease sites (P values of .001, .013, and .048, respectively). Hormonal and menopausal status did not predict for progression-free survival. Major toxicities were infectious secondary to neutropenia, with a 93% incidence of fever and a 38% incidence of sepsis. The treatment-related mortality rate was 9%, with three infectious, one coronary, and one late hemorrhage-related death of unknown cause. Longer follow-up is still needed to truly evaluate the possibility of long-term disease-free survival, but further studies of this approach to high-dose intensification in poor prognostic groups of stage IV breast cancer appear warranted.
Double intensification with amsacrine/high dose ara-C and high dose chemotherapy with autologous bone marrow transplantation produces durable remissions in acute myelogenous leukemia.
Eighteen adult patients under 55 years of age with acute myelogenous leukemia (AML) who entered remission with induction chemotherapy (AMSA-OAP) received two remission intensification cycles. The first intensification used amsacrine and high dose ara-C (AMSA-HDAC), and the second intensification utilized high dose cyclophosphamide, BCNU and VP-16 (CBV) plus unpurged autologous bone marrow transplantation. This double intensified program features two highly active, non-cross-resistant intensification regimens. We observed a 56% long-term disease free survival rate in this group of patients followed for a minimum time of 40 months, with very tolerable toxicity and no transplantation-related deaths. The bone marrow collected after AMSA-HDAC probably contained very low numbers of leukemic cell (in vivo purge). A multivariate logistic regression model may better define the patient population that benefits from this regimen. If these promising findings are confirmed with larger, randomized studies, this treatment strategy could be used in newly diagnosed patients with AML.
Purging of T-lymphocytes with magnetic affinity colloid.
There is a well-documented correlation between the number of T-lymphocytes in the bone marrow graft and subsequent development of acute graft-versus-host disease after allogeneic bone marrow transplantation. The incidence of acute graft-versus-host disease may be decreased with elimination of mature T-lymphocytes from the bone marrow graft. We have developed an immunomagnetic separation procedure using an avidin-based magnetic affinity cobalt colloid. Bone marrow cells were incubated with a combination of CD2, CD3, CD4, and CD8 monoclonal antibodies. The cells were washed and then incubated with the biotinylated, affinity-purified IgG fraction of goat anti-mouse immunoglobulins followed by an avidin-based magnetic affinity colloid. The cells were then run through a high-magnetic gradient separation column utilizing an external samarium cobalt magnet. The number of residual T-lymphocytes was assessed by limiting dilution analysis of clonogenic T-lymphocytes. This procedure produces an approximately 1.7-log reduction of antibody-reactive cells with 45% recovery of hematopoietic progenitors (granulocyte-macrophage colony-forming cells, GM-CFC). This causes a reduction of T-lymphocytes in the bone marrow graft to approximately 5 x 10(5) cells/kg body weight.
Methylprednisolone, cyclosporine and methotrexate for prophylaxis of acute graft-versus-host disease.
Twenty-four patients were given the combination of methylprednisolone 100 mg i.v. on day 0, cyclosporine 2 mg/kg i.v. every 12 h starting on day -3 and methotrexate 5 mg/m2 on days 1, 3, and 6, then 10 mg/m2 on days 11 and 18 after allogeneic bone marrow transplantation for hematological malignancies for the prophylaxis of acute graft-versus-host disease. (GVHD). Methylprednisolone was given prior to the marrow infusion for its lympholytic effect. The methotrexate dose on days 1, 3, and 6 was half of that given in other studies to decrease the early toxicities. The outcome of this group is compared with patients transplanted before 1988 and given methotrexate alone, methotrexate with prednisone, or cyclosporine alone. There is no difference in relapse and survival between the groups at this time. The rate of engraftment and incidence of mucositis with the combination is not significantly different from the cyclosporine group. No patient developed greater than grade II acute GVHD with the combination. The probability of grade II or higher acute GVHD with the combination (14%) is significantly less than methotrexate, with or without prednisone or cyclosporine alone.
Risk classification as the basis for clinical staging of diffuse large-cell lymphoma derived from 10-year survival data.
Two hundred and fifty previously untreated adult patients with diffuse large-cell lymphomas were treated with a chemotherapy combination of cyclophosphamide, adriamycin, vincristine, prednisone, and low-dose bleomycin (CHOP-Bleo) with or without radiotherapy between 1974 and 1984. The 10-year survival rates for patients with Ann Arbor stages II, III, or IV disease of 55%, 42%, and 40%, respectively, were not significantly different. However, the survival rate of 76% for patients with stage I disease was clearly better. Factors more indicative of prognosis than stage, as found by univariant analysis, were tumor burden, serum lactic dehydrogenase level (LDH), age, and constitutional symptoms. From these, a multivariant analysis selected tumor burden, LDH level, and age as major independent factors for predicting survival (P less than .001). A prognostic risk model constructed on the basis of tumor burden and LDH levels identified four distinct risk groups (A, B, C, D) with 10-year survival rates of 85%, 66%, and 43% for A, B, and C. No patient in group D survived 10 years. These risk groups also had a strong correlation with complete remission rates and with relapse rates. Thus this model proved more effective for identifying patient populations according to their expected responses, durations of remission, and survivals than the Ann Arbor staging system. Detailed information supporting the use of this system for predicting prognosis and for treatment selection for patients with diffuse large-cell lymphomas is provided.