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Biomedical subjects

D R Adkins

Publications and source records attributed to D R Adkins.

18 recordsLinked to original sources

Sudden death among patients with acute promyelocytic leukemia treated with arsenic trioxide.

Arsenic trioxide has been shown to be effective in treating acute promyelocytic leukemia (APL), with minimal overall toxicity reported to date. A phase I/II study was initiated in June 1998 using arsenic trioxide for relapsed APL to determine the maximum tolerated or minimal effective dose and to determine the efficacy of treatment at that dose. Ten patients received 1 to 4 monthly cycles of treatment with 0.1 mg/kg per day intravenous arsenic trioxide. Six of 7 patients evaluable for response achieved cytogenetic or molecular complete remission. However, 3 patients died suddenly during the first cycle of treatment. Autopsies obtained on 2 of these failed to identify a cause of sudden death, despite evidence of pulmonary hemorrhage in one. A third patient, for whom an autopsy was not performed, became asystolic and died while on continuous cardiac telemetry. These observations suggest that arsenic trioxide may be significantly or even fatally toxic at doses currently used and that caution is warranted in its use.

Adult↗

Treatment of steroid-resistant acute graft-versus-host disease with anti-thymocyte globulin.

Acute graft-versus-host disease (aGVHD) is a major cause of mortality after allogeneic stem cell transplantation. Although initial treatment with corticosteroids is effective in the majority of patients, 30--60% develop steroid resistance. Anti-thymocyte globulin (ATG) is commonly used as first-line therapy for steroid resistant (SR) aGVHD. However, data on its efficacy are limited. At two institutions we reviewed the results of treatment with ATG of 58 patients with SR aGVHD. Initial manifestations of aGVHD were treated with 2 mg/kg/day of methylprednisolone (MP). Equine ATG was administered as first-line therapy for SR aGVHD, a median of 9 days (range, 3 to 39) after initiation of MP. At the time of initiation of ATG, IBMTR severity indices B, C and D were observed in 6%, 40% and 54% of patients, respectively. Improvement was observed in 30% of patients treated with ATG. Skin disease was more likely to improve with ATG (79%), while progression of gut and liver aGVHD was observed in 40% and 66% of patients, respectively. Despite initial improvement, 52 patients (90%) died a median of 40 days after ATG therapy from progressive aGVHD and/or infection (74%), ARDS (15%), or relapse (11%). Only six patients (10%), three of whom had aGVHD limited to the skin at the time ATG was administered, are long-term survivors. We conclude that initial improvement of SR aGVHD occurs with ATG in a minority of patients, and very few patients become long-term survivors. Furthermore, this treatment is associated with a high rate of major complications.

Actuarial Analysis↗

Effect of leukocyte compatibility on neutrophil increment after transfusion of granulocyte colony-stimulating factor-mobilized prophylactic granulocyte transfusions and on clinical outcomes after stem cell transplantation.

The primary limitations of granulocyte transfusions include low component cell dose and leukocyte incompatibility. Component cell dose improved with granulocyte colony-stimulating factor (G-CSF) mobilization, and the transfusion of G-CSF-mobilized, human leukocyte antigen (HLA)-matched granulocyte components resulted in significant, sustained absolute neutrophil count (ANC) increments. However, the effect of leukocyte compatibility on outcomes with G-CSF-mobilized granulocyte transfusions is unclear. The objectives were to determine the effect of leukocyte compatibility on ANC increments and selected clinical outcomes after transfusion of prophylactic, G-CSF-mobilized granulocyte components into neutropenic recipients of autologous peripheral blood stem cell (PBSC) transplants. Beginning on transplant day 2, 23 evaluable recipients were scheduled to receive 4 alternate-day transfusions of granulocyte components apheresed from a single donor given G-CSF. G-CSF was also given to recipients after transplantation. Recipient ANC was determined before and sequentially after each granulocyte transfusion to determine the peak ANC increment. Leukocyte compatibility was determined at study entry only by a lymphocytotoxicity screening assay (s-LCA) against a panel of HLA-defined cells. Eight recipients had positive s-LCA. On days 2 and 4, the mean peak ANC increments after granulocyte transfusion were comparable between the cohorts with positive and negative s-LCA. However, the mean peak ANC increments on day 6 (246/microL vs 724/microL; P =.05) and day 8 (283/microL vs 1079/microL; P =.06) were lower in the cohort with positive s-LCA, in spite of the transfusion of comparable component cell doses. Adverse reactions occurred with only 5 of 87 (5.7%) granulocyte transfusions and were not associated with leukocyte compatibility test results. Platelet increments, determined 1 hour after granulocyte transfusion, were comparable between the cohorts. Although the 2 cohorts received PBSC components with similar CD34(+) cell doses, the cohort with a positive s-LCA had delayed neutrophil engraftment and a greater number of febrile days and required more days of intravenous antibiotics and platelet transfusions. Leukocyte incompatibility adversely affected ANC increments after the transfusion of G-CSF-mobilized granulocyte components and clinical outcomes after PBSC transplantation.

ABO Blood-Group System↗

Innovations in allogeneic stem-cell transplantation.

Allogeneic bone marrow transplantation (BMT) is associated with prolonged periods of neutropenia and thrombocytopenia, which can lead to severe infections and bleeding complications. Transplantation-related side effects might be ameliorated by use of cytokine-mobilized peripheral blood progenitor cells (PBPC) Instead of bone marrow. We have studied PBPC mobilization and transplantation in more than 150 patients with high-risk hematologic malignancies. Normal donors can be sufficiently mobilized with granulocyte colony-stimulating factor (G-CSF), with 91% of G-CSF-stimulated normal donors producing more than 2 x 10(6) CD34+ cells/kg by a single apheresis. The combination of G-CSF plus granulocyte-macrophage colony-stimulating factor (GM-CSF) was more effective than mobilization with G-CSF alone. A clear relationship was seen between numbers of resting CD34+ cells premobilization and numbers of PBPC collected by apheresis, indicating that resting CD34+ cells might be used to predict mobilization results and identify donors who could benefit from more effective mobilization regimens. Transplantation of G-CSF-mobilized PBPC was associated with a more rapid engraftment than that observed for BMT. While engraftment was safe and acute graft-versus-host disease (aGvHD) rates were not increased over BMT, chronic GvHD rates were higher after PBPC transplantation. An additional PBPC infusion on day +3 resulted in a further shortening of neutropenia and thrombocytopenia. Incorporation of these innovative approaches with "minimal" conditioning regimens has resulted in near-complete elimination of fever, neutropenia, thrombocytopenia, and the need for antibiotics and RBC and platelet transfusions after allogeneic transplantation.

Animals↗

Resolution of psoriasis after allogeneic bone marrow transplantation for chronic myelogenous leukemia: late complications of therapy.

Treatment of autoimmune disease with bone marrow transplantation (BMT) is under investigation. A few reports of patients undergoing allogeneic BMT for malignant conditions observed the resolution of psoriasis after BMT, with minimal late morbidity. We describe a patient with chronic myelogenous leukemia (CML) whose psoriasis resolved completely after allogeneic BMT. However, the patient's course was complicated by extensive chronic graft-versus-host disease (GVHD), recurrent serious infections, poor performance status and quality of life, and severe disability. The patient died 887 days post transplant due to infectious complications. The potential benefits and risks of treatment of autoimmune diseases with allogeneic BMT are discussed.

Autoimmune Diseases↗

Immune reconstitution following allogeneic peripheral blood stem cell transplants.

Growth factor-mobilized peripheral blood stem cells (PBSCs) engraft rapidly in myeloablated recipients compared to conventional BM, but this procedure also mobilizes mature lymphocytes and monocytes which can impact immune reconstitution and GVHD. Hence, we serially evaluated immune reconstitution and cytokine expression in PBSCT recipients in the first year. Engraftment of neutrophils and monocytes stabilized early but NK cells, B cells and CD4+ T cell numbers were significantly (P < 0.05) low with persistently reversed CD4:CD8 ratios. NK function remained low throughout the first year. The quantitative decrease in CD4+ T cells resulted in significantly decreased proliferation in response to mitogens and alloHLA antigens. Yet, a qualitative analysis of T cell function measured by Ca++ influx after T cell activation with antiCD3 as well as T-dependent polyclonal Ig secretion by mitogen-stimulated B cells was preserved even early post transplant. TNF alpha mRNA was detected in almost all recipients in the first year. IL-10 mRNA was detected in 77%, IL-2 in 22% and IFN gamma in 44% of recipients in the first 6 months. Only 30% expressed IL-10 in the second 6 months post transplant while expression of IL-2 and IFN gamma was detected in 38% and 46% respectively. Thirty-seven percent of PBSCT recipients developed grades II-IV acute GVHD but 72% went on to develop chronic extensive GVHD at a median of 120 days. Sixty-two percent developed CMV viremia and 5.4% developed overt CMV disease in the first year post PBSCT. Lymphocyte engraftment is quantitatively delayed but CD4 functions are preserved while NK numbers and function are compromised post PBSCT. IL-10 expression decreases after the first 6 months post transplant while TNF alpha is continually expressed. The balance between quantitative lymphocyte reconstitution and qualitative lymphocyte functions as well as changes in lymphokine patterns may influence infection and GVHD and thus the clinical outcome post PBSCT.

Adolescent↗

Antifungal effects of yeast-derived rhu-GM-CSF in patients receiving high-dose chemotherapy given with or without autologous stem cell transplantation: a retrospective analysis.

Systemic fungal infections (SFI) in patients receiving high-dose chemotherapy (HDC) are a frequent cause of morbidity and mortality. Preclinical studies have reported augmented antifungal activity of monocytes, macrophage cells, and neutrophils exposed to certain colony-stimulating factors (CSF), including GM-CSF. We conducted a retrospective descriptive epidemiologic study to examine the characteristics of 145 consecutive patients receiving HDC administered with or without autologous stem cell transplantation (ASCT) and who subsequently received either GM-CSF and G-CSF, G-CSF alone, GM-CSF +/- IL-3 or no CSF. The analysis of this patient population sought to define the incidence of SFI and its relationship to therapy with monocyte/macrophage-stimulating (MMS group) cytokines (GM-CSF and G-CSF; GM-CSF +/- IL-3) or to cytokines which do not result in monocyte/macrophage stimulation (NMMS group, G-CSF alone or no CSF). Risk factors for the development of SFI were balanced between the MMS (n = 70) and NMMS (n = 75) groups. Two patients (2.9%) in the MMS and nine patients (12%) in the NMMS groups developed SFI. The risk ratio for developing SFI in the NMMS group compared to the MMS group was 4.20 (P = 0.023). This relationship was confounded, however, by the diagnosis of hematologic tumor or solid tumor (RR = 3.15, P = 0.082). SFI was the primary cause or major contributing factor in five of the 10 total deaths in our study population. Four SFI-related deaths occurred in the NMMS group and one SFI-related death occurred in the MMS group. Our data suggest a protective role for GM-CSF, IL-3 or other MMS cytokines in preventing SFI in patients receiving HDC. This should be further investigated as a potential complementary approach to conventional strategies in antifungal prophylaxis for patients receiving HDC.

Adult↗

Malignancy-associated pulmonary veno-occlusive disease: report of a case following autologous bone marrow transplantation and review.

Pulmonary veno-occlusive disease (VOD) is a rare cause of pulmonary hypertension (HTN) which has been described in association with a variety of clinical conditions. Rapidly progressive occlusion of pulmonary veins and venules develops that is usually fatal. Recently, a number of cases have been reported in patients with malignancies. To date, 33 patients have developed pulmonary VOD in association with a malignancy or after chemotherapy and/or radiation therapy. Two-thirds of the cases occurred following allogeneic bone marrow transplantation (BMT). We describe the first case of pulmonary VOD following autologous BMT and review the experience of pulmonary VOD in patients with malignancies.

Adult↗

High-dose therapy with stem cell support in solid tumors.

We describe some issues of ongoing studies and results in metastatic and high-risk breast cancer. Caution should be used to not over interpret the outcomes of these data given the patient selection. In other tumors with lesser developed studies, such as with ovarian cancer, non seminomatous germ cell tumors (NSGC), childhood sarcoma, melanoma and limited small cell carcinoma, promising outcomes in small phase II studies are identified and proposed or potential studies comparing high-dose therapy to conventional are outlined. High-dose therapy with either peripheral blood stem cell support (PBSC) or autologous bone marrow transplantation (ABMT) in Phase II studies on a diverse array of solid tumors shows exciting promise of long-term, disease-free survival. Comparative studies in early-stage patients are urgently needed to confirm these outcomes.

Breast Neoplasms↗

Persistent problems of neutropenia and thrombocytopenia with peripheral blood stem cell transplantation.

We describe potential problems that may limit the usefulness of peripheral blood stem cells (PBSC) to facilitate the delivery of multiple cycles of high-dose chemotherapy. These include (1) cumulative myelotoxicity and (2) recurrent episodes of febrile neutropenia and a requirement for frequent platelet transfusions as a result of the stubborn persistence of a minimum of 7-9 days of absolute neutropenia and even longer durations of severe thrombocytopenia, despite utilization of PBSC. However, some of these problems may be overcome by shortening the duration of administration of the high-dose regimen with subsequent earlier reinfusion of the stem cell product. The adverse consequences of severe neutropenia could be overcome by the development of prophylactic neutrophil transfusions. These concepts are discussed with presentation of some preliminary data.

Adult↗

Randomized study of growth factors post-peripheral-blood stem-cell transplant: neutrophil recovery is improved with modest clinical benefit.

PURPOSE: To evaluate the clinical value of growth factors (GFs) with peripheral-blood stem cells (PBSC) collected following mobilization with GFs, we randomized patients to receive or not to receive GFs following transplant. PATIENTS AND METHODS: Thirty-seven patients were apheresed after receiving the combination of granulocyte colony-stimulating factor (G-CSF) with granulocyte-macrophage colony-stimulating factor (GM-CSF) at doses of 10 micrograms/kg/d and 5 micrograms/kg/d, respectively, for 6 days before apheresis and during a median of 4 days of collections. One day after the infusion of autologous marrow and PBSC, patients were randomly assigned to receive no GFs or a combination of G-CSF (7.5 micrograms/kg/d) and GM-CSF (2.5 micrograms/kg/d), both as a 2-hour intravenous (i.v.) infusion twice per day until the neutrophil count was greater than 1,500/microL. RESULTS: The median days to recovery to an absolute neutrophil count (ANC) of 100/microL (9 v 11.5, P = .0005), 500/microL (10 v 16, P = .0004), or 1,000/microL (12 v 21, P = .0008) was shortened with the use of GFs, post-PBSC infusion. In addition, the duration of hospitalization was shorter (19 v 21 days, P = .0112) in the arm receiving GFs post-PBSC infusion. There was no significant difference between the two study arms in the duration of fever, documented septic episodes, or RBC or platelet transfusion requirements. CONCLUSION: Despite faster neutrophil recovery and shortened duration of hospitalization with GFs administered after PBSC transplantation, the measured clinical variables of febrile days, septic episodes, and transfusion requirements were similar between the study arms. The use of GFs post-PBSC transfusion is associated with a modest clinical benefit.

Adult↗

Phase I trial of dacarbazine with cyclophosphamide, carmustine, etoposide, and autologous stem-cell transplantation in patients with lymphoma and multiple myeloma.

PURPOSE: We investigated the feasibility of escalating doses of dacarbazine (DTIC) in combination with high-dose cyclophosphamide, carmustine, and etoposide (CBV) given with autologous stem-cell transplantation in 33 patients with relapsed or refractory lymphoma or multiple myeloma. PATIENTS AND METHODS: Eligible patients were treated in this phase I study with cyclophosphamide (7.2 g/m2), carmustine (BCNU) (600 mg/m2), etoposide (2.4 g/m2), and escalating doses of DTIC (3,000 to 6,591 mg/m2) administered either as a 2- (in 23 patients) or a 6- (in 10 patients) hour infusion to determine the maximum-tolerated dose (MTD) of DTIC and the toxicity profile of this combination. RESULTS: The MTD of DTIC infused over 2 hours and given with the CBV regimen was 3,900 mg/m2, with the dose-limiting toxicity being hypotension. Seven patients experienced transient acute hypocalcemia in association with the DTIC infusion. Prolonging the DTIC infusion to 6 hours or administration of supplemental calcium did not allow further dose escalation of DTIC to occur. Other non-hematologic toxicities observed with this regimen have been reported with CBV alone. Of 25 patients assessable for tumor response at first evaluation posttransplant, 13 (52%) were in complete remission (CR), four (16%) were in partial remission (PR), five (20%) had stable disease (SD), and three (12%) had progressive disease (PROG). Of 31 patients assessable for relapse-free survival, 22 are alive with 13 in CR, one in PR, two with SD, and six with PROG at a median follow-up duration of 313 days (range, 35 to 749+). Treatment-related mortality occurred in six patients (18%). CONCLUSION: The feasibility of combining DTIC in high doses with the CBV regimen has been demonstrated. Dose-limiting hypotension is transient and reversible when DTIC is administered at 3,900 mg/m2 with CBV. Future trials to evaluate the effect of the addition of DTIC to the CBV regimen on response rate and relapse-free survival are encouraged.

Adolescent↗

Tandem transplants in solid tumors: marrow versus peripheral stem cell transplant: peripheral blood cells as now practiced are not the whole answer.

We have performed sequential studies examining the modification of hematopoietic toxicity after the administration of high-dose cyclophosphamide, etoposide, and cisplatin (CVP). The sequential studies include a comparison of the influence of autologous bone marrow transplantation (ABMT) on hematopoietic recovery after CVP, with or without growth factors. These studies demonstrate a significant shortening of the duration of neutropenia with ABMT, but minimal impact on the number of infectious episodes, when compared to those not receiving ABMT. The addition of mobilized peripheral blood stem cells (PBSC) to ABMT followed by growth factor was found to enhance platelet recovery, but did not significantly further reduce the period of absolute neutropenia. Subsequent studies show that similar early hematopoietic recovery can be achieved by use of peripheral blood stem cells alone, pheresed following several days of subcutaneous administration of recombinant growth factors, but neutrophil recovery is more rapid with use of growth factor after PBSC infusion. Using the product of two phereses for each cycle of recovery appears to result in similar rates of hematopoietic engraftment after each cycle of CVP. In conclusion, the use of peripheral blood stem cells alone following sequential high dose CVP is associated with rapid neutrophil and platelet recovery. Caution should be exercised when using PBSC alone after high dose therapy, due to the lack of platelet recovery in some instances, which can be overcome by reinfusion of backup marrow. Thus, studies evaluating the role of PBSC after high dose therapy should continue.

Antineoplastic Combined Chemotherapy Protocols↗

A phase I clinical and pharmacological profile of dacarbazine with autologous bone marrow transplantation in patients with solid tumors.

Dacarbazine (DTIC) is a chemotherapy drug which has antitumor activity at standard doses, exhibits a steep dose-response effect in vitro, and is associated with relatively few non-hematologic toxicities. These characteristics suggest a potential role for this drug in bone marrow transplant preparative regimens. To pursue this hypothesis, 16 patients with refractory solid tumors were enrolled in a phase I study of single agent DTIC to determine the dose of DTIC requiring bone marrow reinfusion and to define the dose-limiting toxicity and maximum tolerated dose when given with autologous bone marrow rescue. Pharmacokinetics were evaluated at the 4394 mg/m2 dose level. The marrow requiring dose was 2000 mg/m2 when given as a single intravenous (i.v.) infusion. The extramyeloid dose-limiting toxicity of DTIC was hypotension, with the maximum tolerated dose of DTIC being 3380 mg/m2 when given with bone marrow transplantation (BMT). Other toxicities were transient and tolerable. At 4394 mg/m2 of DTIC, plasma concentrations declined biexponentially with a terminal half-life of 3 hours. The mean clearance was 10.6 L/hr/m2 with a volume of distribution at steady state of 37.5 L/m2 and a mean maximum plasma concentration of 150 mcg/ml. One patient with melanoma developed a partial response of short duration after receiving 2600 mg/m2 of DTIC. Dacarbazine can be significantly dose escalated with an acceptable toxicity profile, when given with BMT. Future trials should focus on the addition of this drug to current BMT preparative regimens used for the treatment of patients with lymphoma.

Adult↗