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Biomedical subjects

B Bostrom

Publications and source records attributed to B Bostrom.

At least 19 recordsLinked to original sources

Depot characteristics and biodistribution of interleukin-2 liposomes: importance of route of administration.

Due to rapid clearance of interleukin-2 (IL-2), it has had limited effective use as an in vivo immunostimulant. Current experimental and clinical protocols generally must utilize large doses, multiple injections, or continuous infusions of IL-2 in order to achieve significant immunostimulation, often at the expense of systemic toxicity. Therefore, the pharmacodynamics of IL-2 liposomes were investigated. IL-2 liposome incorporation efficiency was 80.4% (SD 5.5); vesicle diameter was 1.65 microns (SD 0.09) as determined by fluorescence-activated cell sorting (FACS). Both formulation (free cytokine vs. IL-2 liposomes) and route of administration were important variables in determination of the biodistribution and pharmacokinetic characteristics of IL-2. When free [125I]IL-2 was given i.v. to mice, only 6.5% was in the blood and 3% in liver and spleen 2 h after injection; on the other hand, at 2 h greater than 70% of i.v. [125I]IL-2 liposomes were detected in the blood, liver, spleen, and lungs. Mean i.v. elimination t1/2 from the blood of rats given 20 x 10(6) U/kg free cytokine or IL-2 liposomes was 41 versus 102 min, respectively, as measured by bioassay and 59 and 119 min as measured by enzyme immunoassay (EIA). After i.v. administration, the estimated Vd of IL-2 liposomes was 13-fold smaller than the free cytokine. Intrathoracic (i.tx.), i.p., and s.c. administration of [125I]IL-2 to mice also demonstrated significant depot effects when IL-2 was incorporated into liposomes. These data suggest IL-2 liposomes may provide in vivo immunostimulation superior to the free cytokine due to biodistribution and depot characteristics.

Animals

Therapy-related myelodysplastic syndrome and acute myeloid leukemia in children: correlation between chromosomal abnormalities and prior therapy.

We have studied 20 children with therapy-related myelodysplastic syndrome (MDS) or acute myeloid leukemia (AML) who were 3 months to 16 years old at diagnosis of their primary neoplasm and 1 to 24 years old at diagnosis of their secondary neoplasm. The median interval from initial treatment for the first malignancy to diagnosis of therapy-related MDS or AML was 46 months (range, 12 to 116 months). Twelve patients had chromosomal abnormalities resulting in loss of material from the long arm of chromosomes 5 and/or 7, three patients had abnormalities of chromosome 11 band q23, one patient had both classes of abnormalities, three patients had other abnormalities, and one patient had a normal karyotype. Ten of 12 patients with chromosome 5 and/or 7 abnormalities had been exposed to an alkylating agent, and two of three patients with 11q23 abnormalities had been exposed to an epipodophyllotoxin. The patient with both classes of abnormalities had been exposed to both types of therapy. We conclude that abnormalities of chromosomes 5 and/or 7 are common in children with therapy-related MDS or AML. The proposed relationships between exposure to alkylating agents and abnormalities of chromosomes 5 and/or 7 and between exposure to epipodophyllotoxins and abnormalities of 11q23 are supported in this pediatric series.

Adolescent

Collection and use of peripheral blood stem cells in very small children.

Collections of peripheral blood stem cells (PBSC) from children weighing less than 25 kg have been limited by concern about citrate toxicity. We developed a modified collection technique on the Fenwal CS3000 blood cell separator and used it in three children weighing 8.3, 20 and 24 kg with neuroblastoma involving the marrow. The saline prime was discarded as a mixture of 250 ml red cells, 100 ml fresh frozen plasma, and 100 ml 5% albumin was run into the separator. Heparin (1500 units/h) was used to supplement ACD, which was infused at a low rate (1:25-1:32 vs blood, vs the usual 1:13). No serious difficulties were encountered during or after the collections. A total of 5.7, 4.8 and 6.4 x 10(8) mononuclear cells/kg were collected in six procedures per patient. After cell cryopreservation and patient preparation using high-dose chemotherapy, the cells were thawed in 37 degrees C saline and infused without incident. Hematopoietic recovery was observed, and one of the patients remains in clinical remission after 11 months of follow-up. The addition to previously developed procedures of the use of partial albumin prime, low citrate anticoagulation, and heparin allows convenient and safe collection of PBSC in extremely small children, and these PBSC are effective.

Blood Component Removal

Contamination of peripheral blood stem cell harvests by circulating neuroblastoma cells.

Peripheral blood stem cells (PBSC) are being used as one alternative to autologous marrow rescue for patients with neuroblastoma and other solid malignancies. Some physicians prefer use of PBSC because less risk of tumor contamination is believed to exist. This hypothesis was evaluated by immunocytologic analysis of blood samples and concurrently drawn bone marrow (BM) samples and of PBSC harvests obtained from 31 patients with disseminated neuroblastoma. We found circulating neoplastic cells in 75% of specimens analyzed at diagnosis, in 36% during therapy, and in 14% of PBSC harvests. Tumor cells in blood obtained during therapy did not appear until 3 months after the time of diagnosis. Clearance of circulating neuroblastoma cells was documented after two courses of induction chemotherapy. Six of 13 patients with minimal or no BM disease had positive blood specimens. We conclude that substantial risk of tumor contamination of PB harvests exists and recommend that induction chemotherapy be administered before hematopoietic progenitor cells are collected from blood.

Adolescent

Treatment of refractory and relapsed Hodgkin's disease: intensive chemotherapy and autologous bone marrow or peripheral blood stem cell support.

Thirty-three patients with recurrent or refractory Hodgkin's disease were treated with high-dose cyclophosphamide, BCNU, and etoposide and supported with either autologous bone marrow or peripheral blood stem cells or both. Peripheral blood stem cells were comparable to bone marrow in supporting the recovery of hematopoiesis. Twenty-five patients (76%) were in complete remission following this therapy of whom 13 have subsequently relapsed. Twelve remain alive and disease free from 10 to 47 months. The Kaplan-Meier estimate of disease-free survival at 28 months for the entire 33 patients is 32% (95% confidence interval, 13-50%). Poor outcome in six patients was associated with bone marrow involvement by Hodgkin's disease at the time of peripheral blood stem cell collection. These six patients' survival, disease-free survival, the duration of complete remission were all significantly worse than for the 27 patients who were supported with bone marrow (n = 23), peripheral blood stem cells (n = 2), or both (n = 2), and whose marrows were free of disease at the time of stem cell collection. These data demonstrate that intensive therapy with autologous transplantation can produce extended disease-free survival for some patients with advanced Hodgkin's disease and that peripheral blood stem cell support can effectively be used for hematopoietic reconstitution. However, our observations also suggest that with this preparative regimen, bone marrow involvement at the time of peripheral blood stem cell collection is predictive for a poor outcome and alternate approaches to treatment should be considered for this subset of patients.

Adolescent

Comparison of two total body irradiation regimens in allogeneic bone marrow transplantation for acute non-lymphoblastic leukemia in first remission.

Between November 1976 and December 1987, 84 patients with newly diagnosed acute non-lymphoblastic leukemia who had achieved complete remission underwent non T-cell depleted allogeneic bone marrow transplantation from Human Leukocyte Antigen-Mixed Lymphocyte Culture (HLA-MLC) matched sibling donors. The first 36 patients (November 1976-June 1983) were prepared with cyclophosphamide, 60 mg/kg/day, IV for 2 days and single fraction total body irradiation with 750 cGy at a dose rate of 26 cGy/minute (Group I). The next 48 patients (July 1983-December 1987) were prepared with similar chemotherapy, but received hyperfractionated total body irradiation with total 1320 cGy, 165 cGy twice a day at a dose rate of 10 cGy/minute (Group II). Patient characteristics between these two groups are similar except for the significantly older age distribution in Group II. Median follow-up of Groups I and II are 8 years and 11 months and 2 years and 3 months, respectively. The Kaplan-Meier relapse-free survival, survival, and relapse rates at 3 years are 56, 58, and 19% in Group I and 69 (p = 0.22), 77 (p = 0.07), and 10% (p = 0.37) in Group II. There is no difference in the incidence of interstitial pneumonitis, viral or idiopathic, engraftment rate, or incidence of graft versus host disease (GVHD) between these two groups. The fractionated total body irradiation treated group had significantly less nausea and vomiting. Multivariate analysis shows that total body irradiation regimen is not a significant factor in regard to relapse rate, relapse-free survival, and survival.

Adolescent

Bone marrow transplantation for advanced acute leukemia: a pilot study of high-energy total body irradiation, cyclophosphamide and continuous infusion etoposide.

Leukemic relapse following bone marrow transplantation (BMT) for acute leukemia is the most common cause of treatment failure. Because a more intensive pre-transplant preparative regimen may prevent disease recurrence we have designed a novel intensive conditioning regimen for BMT using high-energy total body irradiation (total dose 850 cGy; energy 24 MV; midplane received dose rate 26 cGy/min; day -6) followed by cyclophosphamide (dose 50 mg/kg/day; schedule 2-h infusion; days -5, -4, -3) and continuous infusion high-dose etoposide (dose 500 mg/m2/day; schedule: 22-h infusion; days -5, -4, -3). Between February 1987 and December 1988, 45 patients with advanced acute leukemia received transplants using this regimen. Twenty-five purged auto-transplants were done for B-lineage (n = 18), T-lineage (n = 6) or biphenotypic (n = 1) acute lymphoblastic leukemia, with 12 in remission and 13 in relapse at the time of transplantation. Of these, nine had non-relapse deaths and 16 have relapsed between 1 and 19 months (median 3 months) following transplantation. Of note all the T-lineage patients relapsed including two transplanted in remission and five transplanted in relapse. Nineteen patients received histocompatible allogeneic transplants and one underwent syngeneic transplantation. Of seven patients with acute lymphoblastic leukemia transplanted in refractory relapse, three have had an overt relapse, three died of interstitial pneumonitis and only one survives disease free 15 months after transplantation. Of 13 patients with acute non-lymphocytic leukemia and variants (11 who were transplanted in relapse) three died without relapse, three have relapsed and seven survive disease free from 9 to 27 months (median 20 months) after transplantation.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Bone marrow transplantation for acute lymphocytic leukemia utilizing total body irradiation followed by high doses of cytosine arabinoside: lack of superiority over cyclophosphamide-containing conditioning regimens.

The efficacy of a pre-bone marrow transplantation (BMT) preparative regimen consisting of single, high dose rate total body irradiation followed by 12 courses of high dose cytosine arabinoside (Ara-C) over 6 days with allogeneic or autologous rescue was studied in 68 consecutive patients with poor risk acute lymphocytic leukemia (ALL). Toxicity associated with the above preparative regimen included conjunctivitis in the majority of patients, severe gastrointestinal symptoms in seven patients (10%), skin desquamation in four patients (6%), and interstitial pneumonitis of unknown etiology in two patients (3%). One patient died from a 'capillary leak' syndrome that may have been attributable to Ara-C toxicity. With a follow-up of 1.1-4.3 years, the estimated survival is 21% (95% confidence interval, 10-32%), with a disease-free survival of 18% (8-28%) and an estimated relapse rate of 75% (62-88%) at 3 years. These results are not significantly different from overall outcome in 105 patients treated previously at this same institution with cyclophosphamide-containing preparative regimens (31% (22-40%) estimated survival, 29% (20-38%) disease-free survival, and an estimated relapse rate of 63% (52-74%) at 3 years), especially when results are stratified based on allogeneic versus autologous BMTs. Although efficacious for a minority of patients with poor risk ALL, a pre-BMT preparative regimen consisting of total body irradiation followed by high doses of Ara-C did not improve long-term survival over more conventional preparative regimens consisting of cyclophosphamide and total body irradiation. Future strategies may need to investigate novel approaches for reducing leukemic relapse rates in patients with ALL undergoing bone marrow transplantation.

Adolescent

In vivo administration of recombinant human granulocyte/macrophage colony-stimulating factor in acute lymphoblastic leukemia patients receiving purged autografts.

Based on the recent reports that recombinant human granulocyte/macrophage colony-stimulating factor (rhGM-CSF) accelerates the rate of engraftment in a variety of autologous bone marrow transplantation settings, we have investigated its effects on hematopoietic recovery of patients with acute lymphoblastic leukemia (ALL) undergoing autologous bone marrow transplantation. Our studies, which involved 25 autologous ALL recipients who received rhGM-CSF and 27 controls similar for disease status (remission or relapse) and disease type (B- or T-lineage) differed from previous studies in one important aspect: the bone marrows were purged with 4-hydroperoxcyclophosphamide (4HC) and anti-T or anti-B-cell lineage-specific antibodies before transplantation. Such treatments frequently lead to a reduction in the CFU-GM content of the transplanted marrow. Eighteen of 25 patients completed the entire course of rhGM-CSF. Of the 16 patients who received greater than or equal to 64 micrograms/M2/d for at least eight days, there were five patients who had an apparent rhGM-CSF response and 11 patients who did not respond. Of the parameters analyzed, only the number of CFU-GM progenitor cells infused per kilogram was significantly associated with an rhGM-CSF response. All patients receiving greater than or equal to 1.2 x 10(4) CFU-GM progenitors per kilogram achieved an absolute neutrophil count (ANC) greater than or equal to 1,000/microL by day 21 and had a greater than 50% decrement in ANC within 48 to 72 hours of discontinuing rhGM-CSF, as contrasted to none of the patients receiving less than or equal to 7.2 x 10(3) CFU-GM progenitors per kilogram.(ABSTRACT TRUNCATED AT 250 WORDS)

Bone Marrow Transplantation

Clinical collection and use of peripheral blood stem cells in pediatric patients.

Peripheral blood stem cells have been used in lieu of marrow as autologous cellular support after marrow-ablative radio/chemotherapy. Autologous marrow support allows the use of higher, more effective doses of therapy. Peripheral blood stem cells (PBSC) offer the potential for this form of "transplant" in patients with marrow involved with disease. PBSC use also allows the avoidance of marrow harvest under general anesthesia. Previous reports of PBSC use have been limited to adults. This article describes peripheral blood stem cell collection in children, and documents the successful use of such cells in a 21/2-year-old boy and a 3-year-old girl with progressive stage IV neuroblastoma involving the marrow. Collections were performed using a Fenwal CS3000 blood cell processor primed with fresh frozen plasma and red cells, using a low flow rate to avoid citrate toxicity. The transplant was performed using collections that were negative or low in neuroblastoma cells (as detected by anti-neuron-specific enolase and antineuroblastoma monoclonal antibodies) after preparation with high-dose cyclophosphamide, etoposide, and cisplatin. Posttransplant recovery was uneventful, and engraftment was comparable to that in 4 patients treated with a similar preparative regimen followed by infusion of autologous marrow. Using careful technique, PBSC support in lieu of marrow may be a viable treatment modality in pediatric neuroblastoma or other solid tumors, particularly when the marrow is involved with disease.

Blood Transfusion, Autologous

Epstein-Barr-virus-related post-bone-marrow-transplant lymphoproliferative disease: association with cytomegalovirus infection and Down syndrome donor marrow.

We describe the development of Epstein-Barr-virus (EBV)-related lymphoproliferative disease (LPD) in the recipient of a histocompatible bone marrow transplant (BMT). Although this rare complication is more common in recipients of mismatched bone marrow, several distinguishing features of our case may have contributed to the development of LPD in the recipient of a matched bone marrow transplant. The patient had received marrow from a sibling with Trisomy 21, a syndrome associated with variable cellular and humoral immune defects. Our patient also was infected with cytomegalovirus and was treated with immunosuppressant therapy for graft versus host disease. Although development of LPD in transplant recipients is a multifactorial process, either acquired or congenital immunosuppression/dysregulation is a common prerequisite for the process. Our case suggests that subtle immune defects in individuals with Down syndrome may contribute to the immunosuppressed setting in which EBV-related LPD can develop.

Adolescent

Oropharyngeal mucositis complicating bone marrow transplantation: prognostic factors and the effect of chlorhexidine mouth rinse.

Oral mucosal ulceration complicating bone marrow transplantation interferes with patients' comfort, nutrition and may lead to systemic infection derived from the mouth. The mucosal injury results from epithelial damage due to the cytotoxic effects of chemotherapy and radiation conditioning as well as from superficial oropharyngeal infection. Because chlorhexidine gluconate is a broad spectrum topical antimicrobial which has been demonstrably effective in preventing oral infection and gingivitis, we performed a randomized, placebo controlled, double-blind trial of chlorhexidine as a mouth rinse in BMT recipients to study the severity of oral mucositis and both oral and systemic infectious complications. One hundred patients were randomly assigned to receive either chlorhexidine gluconate 0.12% mouth rinse or placebo three times daily from the initiation (day -8) of chemoradiotherapy conditioning until day +35 post-BMT. Chlorhexidine use resulted in a trend toward improved oral hygiene index (reduced dental plaque) (p = 0.06) but did not modify the oral mucositis. Patients using chlorhexidine developed a maximum ulceration of 18 +/- 22% of their oral mucosa, while placebo patients ulcerated 25 +/- 31% of the mouth. Ulcerative mucositis was significantly worse in adults compared with children, in individuals who received methotrexate for graft-versus-host disease prophylaxis, and was most prominent on non-keratinized epithelium. Overall, there was no clinically demonstrable additional therapeutic advantage to the use of chlorhexidine in either reducing the mucositis, controlling oral pain, facilitating oral nutrition, shortening hospital stay, or reducing oral infection with herpes simplex virus. There was a trend toward diminished oral candidiasis in chlorhexidine users (p = 0.06).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Inhibitory effect of adenosine dialdehyde on in situ murine neuroblastoma growth.

The effect of adenosine dialdehyde (AD) on in situ tumor growth and host survival was evaluated in the C1300 murine neuroblastoma tumor model prepared by implantation of murine neuroblastoma cells into A/J mice. AD was administered s.c. by one of the following treatment regimens: regimen A, single daily dose for 5 days; regimen B, minipump infusion for 7 days; regimen C, minipump infusion for 14 days; regimen D, minipump infusion for two 7-day periods interspersed by a 7-day drug free interval. AD doses of 1.5 to 2.5 mg/kg/day infused over a 7-day period (regimen B) significantly increased the mean life span of tumor bearing mice from 20.9 +/- 1.2 days (mean +/- 2 SEM) in diluent treated controls to 35.3 +/- 2.1 days in AD treated animals (mean increase +/- 2 SEM: 69 +/- 10%; P less than 0.0001). This treatment regimen also produced a 56 +/- 13% decrease in tumor diameter (P less than 0.0001). Administration of AD for two 7-day infusion periods, interspersed by a 7-day drug free interval (regimen D), increased mean life span 80% (controls, 21.3 +/- 4.4 days; AD treated 38.4 +/- 5.6 days; P less than 0.0005). Hematopoietic toxicity was not observed when doses between 2 and 3 mg/kg/day of AD were infused for 7 days (regimen B). These data suggest that steady state infusions of AD can significantly suppress murine neuroblastoma tumor growth with little systemic toxicity. In contrast, single daily injections of AD were ineffective and toxic to the tumor bearing host.

Adenosine