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Biomedical subjects

E Bayever

Publications and source records attributed to E Bayever.

At least 19 recordsLinked to original sources

Chromosomal transformation in donor cells following allogeneic bone marrow transplantation.

We report here a monosomy 7 transformation of donor cells following matched-unrelated, same sex, allogeneic bone marrow transplantation in a patient with severe congenital aplastic anemia. A PCR technique was employed to amplify microsatellite markers on chromosome 7 to confirm donor/recipient identity. We found that the transformation of monosomy 7 occurred in previously genetically normal donor cells. This study suggests that the microenvironment of the bone marrow of our patient with severe congenital aplastic anemia may have played a critical role in the development of monosomy 7 of normal donor cells and we conclude that chromosomal microsatellite marker analysis can be a valuable tool for precise donor/recipient differentiation in engraftment monitoring.

Anemia, Aplastic↗

Allogeneic bone marrow transplantation for children with acute leukemia: long-term follow-up of patients prepared with high-dose cytosine arabinoside and fractionated total body irradiation.

High-dose therapy and allogeneic matched sibling bone marrow transplantation (BMT) is considered to be the treatment of choice for children with relapsed acute lymphoblastic leukemia (ALL), or for children with acute myeloid leukemia (AML) in first remission. However, the rate of bone marrow relapse after transplant for either of these diseases remains high. In this study, we assessed the efficacy and toxicity of high-dose cytosine arabinoside and total body irradiation (TBI) followed by allogeneic BMT, for children with acute leukemia or myelodysplastic syndrome (MDS). Sixty-five pediatric patients underwent allogeneic related (n = 57) or unrelated (n = 8) BMT. Twenty-seven were transplanted for ALL in second remission (CR2), and 16 for AML in first remission (CR1). The other 22 were high risk patients: six were transplanted for ALL in third remission (CR3), two for AML in CR2, two for myelodysplastic syndrome (MDS) and 12 for acute leukemia in relapse. Patients were prepared with cytosine arabinoside 3000 mg/m2 per dose twice daily for 6 days followed by 12000 cGy TBI as 200 cGy fractions twice daily for 3 days. Minimum follow-up is 21 months. Five-year event-free survival (EFS) and the actuarial relapse rate is 59 and 14% for patients with ALL in second remission, and 38 and 14+% for patients with AML in first remission. Twelve patients have relapsed (three are alive in remission after testicular or marrow relapse) and 28 have died of other causes. Acute GVHD with or without infection was the cause of death in 11 patients. Ten of the 11 patients who died of acute GVHD were considered at 'high risk' for GVHD (inadequate GVHD prophylaxis, or mismatched family donor or a matched unrelated donor). Toxicities in the immediate post-BMT period included diarrhea, oropharyngeal mucositis and conjunctivitis. Significant late toxicities included short stature, avascular necrosis of bone, and poor school performance (most often in patients who had received prior cranial irradiation). Our conclusions are that high-dose Ara-C and TBI followed by allogeneic bone marrow transplantation is effective therapy for children in second complete remission of their acute leukemia. However, significant late toxicities occur, and it is clear that more effective, less toxic therapies are necessary for these patients.

Acute Disease↗

Ex vivo treatment of bone marrow with phosphorothioate oligonucleotide OL(1)p53 for autologous transplantation in acute myelogenous leukemia and myelodysplastic syndrome.

Effective ex vivo purging techniques can decrease the likelihood of infusing bone marrow contaminated with leukemic cells during autologous transplantation. In preliminary studies, OL(1)p53, a 20-mer phosphorothioate oligonucleotide directed against p53 mRNA, decreased the number of acute myelogenous leukemia (AML) cells in vitro, suggesting a possible role for OL(1)p53 in purging bone marrow harvests of leukemia cells. To demonstrate that OL(1)p53 was nontoxic to hematopoietic progenitor cells, normal bone marrow cells were incubated with 10 microM OL(1)p53 for 36 h, and hematopoietic progenitor cell survival was determined by in vitro colony assays. OL(1)p53 had no toxic effect on the growth of either myeloid (CFU-GM) or erythroid (BFU-E) progenitor cells. OL(1)p53 was then used to ex vivo purge bone marrow harvests from nine patients with either AML or myelodysplastic syndrome (MDS). Bone marrow cells were incubated with 10 microM OL(1)p53 for 36 h before transplantation. The median times posttransplantation for the patient to recover an absolute neutrophil count greater than 0.5 x 10(9)/L and a platelet transfusion independence were 30 days and 56 days, respectively. Incubation of bone marrow cells with OL(1)p53 had no detrimental effect on the growth of hematopoietic progenitor cells, and transplantation of autologous bone marrow cells treated with the phosphorothioate oligonucleotide, OL(1)p53, resulted in successful recovery of circulating neutrophils following high-dose therapy in patients with AML or MDS. The data show that OL(1)p53 can be used safely to purge autologous bone marrow harvests from patients with leukemia.

Adult↗

Phase I trial of an antisense oligonucleotide OL(1)p53 in hematologic malignancies.

PURPOSE: The phosphoprotein p53 is involved in transcriptional regulation and is detected in hematologic malignancies. In vitro incubation of acute myelogenous leukemia with OL(1)p53, a 20-mer phosphorothioate oligonucleotide complementary to p53 mRNA, results in leukemic cell death. A phase I dose-escalating trial was conducted to determine the toxicity of OL(1)p53 following systemic administration to patients with hematologic malignancies. PATIENTS AND METHODS: Sixteen patients with either refractory acute myelogenous leukemia (n = 6) or advanced myelodysplastic syndrome (n = 10) participated in the trial. Patients were given OL(1)p53 at doses of 0.05 to 0.25 mg/kg/h for 10 days by continuous intravenous infusion. RESULTS: No specific toxicity was directly related to the administration of OL(1)p53. One patient developed transient nonoliguric renal failure. One patient died of anthracycline-induced cardiac failure. Approximately 36% of the administered dose of OL(1)p53 was recovered intact in the urine. Plasma concentrations and area under the plasma concentration curves were linearly correlated with dose. Leukemic cell growth in vitro was inhibited as compared with pretreatment samples. There were no clinical complete responses. CONCLUSION: A phosphorothioate oligonucleotide, OL(1)p53, can be administered systemically without complications. This type of modified oligonucleotide can be administered without complete degradation, as it was recovered from the urine intact. This oligonucleotide may be useful in combination with currently available chemotherapy agents for the treatment of malignancies.

Adult↗

A study of thiotepa, etoposide and fractionated total body irradiation as a preparative regimen prior to bone marrow transplantation for poor prognosis patients with neuroblastoma.

We report the toxicity and efficacy of a new conditioning regimen for bone marrow transplantation (BMT) in children with poor prognosis neuroblastoma (NBL). Twenty-seven patients with poor prognosis NBL were treated with teniposide (360 mg/m2) or etoposide (500 mg/m2), thiotepa (600-900 mg/m2), and 1200 cGy fractionated total body irradiation (fTBI) followed by autologous marrow rescue (n = 19) or allogeneic BMT from HLA-identical siblings (n = 8). The two patients who received teniposide, 600 mg/m2 thiotepa and fTBI had minimal toxicity but relapsed 4 and 12 months post-auto BMT. The next two patients received 750 mg/m2 thiotepa, 500 mg/m2 etoposide and TBI. They tolerated the conditioning regimen well and are alive and in remission 77 and 75 months post-BMT. At the next thiotepa dose level (900 mg/m2), the first two allograft recipients both experienced fatal regimen-related toxicity. All subsequent allograft recipients received 750 mg/m2 thiotepa and autograft recipients received 900 mg/m2 thiotepa. As of 1 April 1995, eight of the 19 patients who received autologous marrow are surviving disease-free 21 to 77 months post-BMT. Nine autograft recipients relapsed at 2 to 37 months following transplantation. One patient died of hepatic veno-occlusive disease 2 months after auto BMT, and one of pneumonia 6 months post-transplantation. Three allograft recipients have relapsed at 6, 10 and 39 months post-transplant and three are alive and in remission 75, 53 and 27 months post-BMT. Overall, 11/27 patients (41%) are alive and in remission 21-77 months (median 47 months) following BMT. A conditioning regimen consisting of 500 mg/m2 etoposide, thiotepa (750 mg/m2 for allograft recipients and 900 mg/m2 for autograft recipients) and 1200 cGy fTBI has acceptable toxicity and is at least as effective as melphalan-containing regimens in the treatment of high-risk NBL.

Adolescent↗

Fractionated total-body irradiation preceding high-dose cytosine arabinoside as a preparative regimen for bone marrow transplantation in children with acute leukemia.

Twenty children with acute leukemia between 3 and 19 years of age underwent allogeneic bone marrow transplantation from HLA-matched sibling donors after conditioning with total-body irradiation (1,200 cGy in six fractions of 200 cGy twice daily for 3 days) and high dose cytosine arabinoside (3 g/m2 given every 12 hours for 12 doses). Three patients died with acute toxicity. Six patients developed grade II acute graft versus host disease. With a median follow-up of 68 months (range 26-96 months), thirteen children (65%) are alive and in remission with Karnofsky scores of 90-100%. A patient with AML in resistant relapse went into remission but relapsed and died 5 months post-transplantation. Three other patients relapsed, 8, 12, and 16 months post BMT. Our results suggest that this conditioning regimen is associated with high but manageable acute toxicity and may be highly effective in controlling leukemia resistant to conventional chemotherapy.

Adolescent↗

Selective cytotoxicity to human leukemic myeloblasts produced by oligodeoxyribonucleotide phosphorothioates complementary to p53 nucleotide sequences.

Cells were treated in vitro with oligodeoxyribonucleotide phosphorothioates (ODNs) complementary to sites common to both wild-type and mutant p53 nucleotide sequences. Acute myelogenous leukemia (AML) blasts from peripheral blood were exposed to four different p53 ODNs and showed anti-leukemic effects in suspension culture. This effect continued after removal of the ODN from the medium. Blocking of self-renewal of the leukemic blast stem cells in secondary plating of cells from cloning assays by two of the p53 ODNs was also observed. Control ODNs had no effect on leukemic blasts. Treatment of normal bone marrow cells with the four p53 ODNs did not influence their growth, nor was there any effect by the p53 ODNs on the leukemic cell-line, HL60, that does not express p53. These data suggest that p53 ODNs are selectively toxic to primary myelogenous blasts and may be therapeutically useful in AML.

Blast Crisis↗

Systemic administration of a phosphorothioate oligonucleotide with a sequence complementary to p53 for acute myelogenous leukemia and myelodysplastic syndrome: initial results of a phase I trial.

A synthetic phosphorothioate oligonucleotide was administered systemically to five patients with either relapsed or refractory acute myelogenous leukemia (AML), or myelodysplastic syndrome (MDS). Patients received a 10-day continuous intravenous infusion of this compound, which is complementary to p53 mRNA. No major toxicity attributable to a dose of 0.05 mg/kg/hr was observed. A range of approximately 9 to 18% of the administered dose was recovered in the urine as intact oligonucleotide. Evaluation of malignant cells recovered from bone marrow and peripheral blood at intervals before, during, and after treatment reveals no enhanced growth potential following oligonucleotide administration. Hence, a phosphorothioate oligonucleotide complementary to p53 mRNA can be administered at this dose level to humans without major toxicity. Higher doses need to be evaluated for toxicity and potential clinical efficacy.

Adolescent↗

Bone marrow transplantation for Niemann-Pick type IA disease.

Bone marrow transplantation has been undertaken with encouraging results as therapy for a wide variety of lysosomal storage diseases. We report a case of Niemann-Pick disease Type IA in which, despite the presence of only mild hypotonia with depressed reflexes, the clinical course of the disease appeared to be only slightly modified by this procedure, which was performed at the earliest practical opportunity. The patient was diagnosed early when asymptomatic, because of a family history of an affected sibling who died at 14 months. He received a bone marrow transplant from an HLA-identical, MLC non-reactive sibling donor, whose leukocyte sphingomyelinase activity was in the homozygote normal range. There was adequate engraftment as evidenced by persistently normal leukocyte sphingomyelinase activities, and there was no evidence of graft-versus-host disease. Visceral storage and neurological impairment were less rapidly progressive than in his untreated sibling but he eventually died at 30 months. Autopsy confirmed that this was essentially due to the effects of the underlying Niemann-Pick disease. We conclude that despite some success in other neurovisceral lysosomal storage disorders, bone marrow transplantation is not likely to be an adequate treatment for Niemann-Pick disease Type IA.

Bone Marrow Transplantation↗

Hurler syndrome with special reference to histologic abnormalities of the growth plate.

Hurler syndrome is a mucopolysaccharide disorder resulting from an heritable deficiency in alpha-L-iduronidase, an enzyme required in the catabolism of heparan sulfate and dermatan sulfate glycosaminoglycan (GAGs). The resultant intracellular accumulation of GAG leads to disruption of the intracellular and extracellular environment and dysfunction of multiple organ systems. Among the most noted manifestations of this disease is disproportionate short trunk dwarfism, which develops during the first years of life. Histochemical and electron-microscopic observations on a 30-month-old child with Hurler syndrome showed marked irregularities in chondrocyte orientation within the growth plate, along with disruption of the normal columnar architecture. Vacuolization with enlargement of the cellular border was the characteristic ultrastructural finding. An heritable abnormality in the enzymatic degradation of structural glycosaminoglycans leads to profound disruption of the normal mechanisms of growth and development.

Cartilage↗

High-dose multi-agent chemotherapy followed by bone marrow 'rescue' for malignant astrocytomas of childhood and adolescence.

Between April 1986 and March 1989, ten patients under 21 years of age with histologically confirmed malignant astrocytoma, received marrow-ablative chemotherapy with either thiotepa and Etoposide (five patients) or thiotepa, Etoposide and BCNU (five patients), followed by bone marrow 'rescue'. Nine patients had glioblastoma multiforme (GBM), and one patient had an intrinsic brain stem anaplastic astrocytoma (AA). Seven patients were treated for recurrent tumor. Two patients who developed GBM as second malignancies were treated directly following surgical resection. One patient had received irradiation only for recently diagnosed cervical spinal cord GBM. Thiotepa was administered at a total dose of 600-900 mg/M2 over three days, Etoposide was administered at a total dose of 1500 mg/M2 over three days, and BCNU was administered at a total dose of 600 mg/M2 over four days. Non-hematopoietic toxicities have been mainly transient, predictable and acceptable, consisting of oropharyngeal mucositis, cutaneous hyperpigmentation, erythema and desquamation. Four patients achieved complete responses (CR), as determined by radiographic evaluation (CT and/or MRI) on day 28 post-marrow infusion. The mean remission duration of those with CR is 290+ days; two patients presently remain in remission. Two patients achieved partial responses (PR, greater than 50% tumor shrinkage) by day 28 post-marrow infusion; both developed disease progression, at day 61 and 94 post-marrow infusion, respectively. One patient, with a brain stem AA, had stable disease maintained for 13 months post-marrow infusion. With a total (CR + PR) response rate of 60%, these regimens merit evaluation in broader categories of recurrent brain tumor patients, as well as in patients with newly-diagnosed GBM.

Adolescent↗

Bone marrow transplantation for childhood Ki-1 lymphoma.

Two children with Ki-1 antigen-positive, non-Hodgkin's lymphoma received high-dose chemotherapy, fractionated total body irradiation (TBI), and allogeneic bone marrow transplantation. Both patients had relapsed multiple times on conventional chemotherapy and radiation therapy. Following transplantation, there was successful engraftment with disappearance of clinical signs and symptoms of their disease. As of June 1, 1989 they are in continuous unmaintained complete remission, 56 and 40 months, respectively, after bone marrow transplantation.

Adolescent↗

Retroviral transfer of genes into erythroid progenitors derived from human peripheral blood.

Human erythroblasts are a logical target for studies of expression of transferred globin genes because high-level expression is a prerequisite for gene therapy of hemoglobinopathies. Early erythroid progenitors (erythroid burst-forming units, BFU-E) are readily available from human peripheral blood and can be cultured to produce erythroblasts. However, conditions for efficient transfer into these normal progenitors have not been previously described. Here we demonstrate efficient transfer of the neomycin resistance gene into human peripheral blood BFU-E using the retrovirus vector, N2. We show that liquid culture of mononuclear cells from peripheral blood for 18-24 h prior to retroviral infection leads to increased transfer efficiency of N2 as determined by G418 resistance, and we are able to detect viral DNA by polymerase chain reaction (PCR) analysis. In addition, a second retrovirus, beta(gamma)-SVX, prepared with a human beta-globin gene containing a gamma-globin second exon to facilitate transcript detection and the 3'-enhancer sequence, was also used to determine whether similar results could be obtained when more than one gene is transferred. Using the beta(gamma)-SVX virus, increased transfer efficiency into BFU-E was similarly found after liquid culture for up to 4 days. Expression of the transferred globin gene was also detected by PCR analysis of cDNA made from erythroblast RNA. The human peripheral blood BFU-E system described should allow determination of sequences required for high-level expression of transferred globin and other erythroid genes.

Base Sequence↗