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G Kvalheim

Publications and source records attributed to G Kvalheim.

At least 55 records · Page 3Linked to original sources

Residual leukemia and immunomagnetic bead purging in patients with BCR-ABL-positive acute lymphoblastic leukemia.

Residual leukemia was evaluated in autologous bone marrow grafts harvested in first (n = 11) or second (n = 3) complete remission from 14 patients with BCR-ABL-positive acute lymphoblastic leukemia after treatment according to the German multicenter ALL protocols. The intervals from diagnosis to BM harvest were median 159 (range 78-463) and from preceding chemotherapy to BM harvest median 39 (range 26-69) days, respectively. A limiting log(10)-dilution RT-PCR was used to semiquantify BCR-ABL-positive cells. All autografts appeared to be significantly contaminated with residual leukemic cells. The BCR-ABL-specific titers ranged from 1:10(3) to 1:10(6) (median 1:10(4)) above the limit of detection. This was the rationale to purge the grafts using two cycles of IgM anti-CD10, CD19, and AB4 MoAbs-coated immunomagnetic beads (IMB). Purging depleted median 3 (range 2-4) logs of residual leukemia, resulting in a median 1:10(1) (range 1:10(0) to 1:10(3)) postpurge BCR-ABL-specific titer. The second purging cycle accounted for 1 log of depletion. The mean +/- s.e.m. post-purge recoveries of MNC and CFU-GM were 59 +/- 4%, and 61 +/- 9%, respectively. We conclude that all BCR-ABL-positive ALL patients achieving CR by cytological criteria have critically high levels of residual leukemia in their bone marrow, which can be reduced by median 3 log using immunomagnetic bead purging.

Adolescent↗

Granulocyte colony-stimulating factor improves myelopoiesis and host defense in fulminant intra-abdominal sepsis in rats.

The therapeutic efficacy of granulocyte colony-stimulating factor (G-CSF) was studied in a model of fulminant sepsis in rats. Polymicrobial peritonitis was induced by a 4 mm cecal perforation and 10 micrograms/kg recombinant human G-CSF was given intravenously every 12 h, with the first dose at sepsis induction or 4 h post-induction. Rats were sacrificed at various intervals throughout sepsis to measure levels of neutrophil progenitors in the bone marrow and neutrophils and bacteria in blood and peritoneal fluid. Sepsis gave a sustained neutropenia and bacteremia, but did not affect numbers of blast- or GM-colonies, and only a delayed and moderate proliferation of G-clones was seen. Treatment with G-CSF at sepsis induction improved myelopoiesis by doubling the numbers of GM- and G-progenitors at 12 and 24 h post-induction. Concentrations of neutrophils increased twofold in blood and 5-fold in peritoneal fluid, while bacteria counts in the same compartments declined logarithmically. Mortality was 92% in untreated sepsis and declined to 46% when G-CSF therapy was started at sepsis induction, and to 42% following 4 h delayed therapy.

Acute Disease↗

Semiquantitative polymerase chain reaction for t(14;18) in follicular lymphomas: a colorimetric approach.

BACKGROUND: Autologous bone marrow transplantation is increasingly being used in the management of several types of cancer, and to avoid reintroduction of malignant cells, bone marrow purging is often performed. In such cases, sensitive quantitation methods are needed both to assess the efficacy of the purging and for surveillance of patients in remission. Polymerase chain reaction (PCR) has the necessary sensitivity for this application, but it requires that the cancer cells can be recognized by a defined genetic abnormality. In addition, PCR is in principle a qualitative technique and must be modified for quantitative purposes. In follicular non-Hodgkin's lymphomas, the translocation t(14;18) (q32;q21) is common and is used here for model experiments. EXPERIMENTAL DESIGN: A PCR-based method for the quantitation of translocation-positive cells was developed on the basis of coamplification of cancer-specific target molecules with competitor molecules of known concentration. Gel electrophoresis was substituted by a colorimetric quantitation system to cope with patient PCR products of the same size as the competitor product and ease automation of the method at a later stage. Cell line Karpas 422, which contains the t(14;18) (q32;21) translocation, was used to validate the method. The method was used to assess the efficacy of a patient bone marrow purging where the initial infiltration levels were too low for traditional detection systems. RESULTS: A reproducible and near linear response was obtained between 70 pg and 200 ng K422 DNA, equivalent to 10 K422 cells and 30,000 K422 cells, respectively. Bone marrow infiltration in one patient was 0.6 to 0.7% before malignant cell removal and 3 to 7 x 10(-4) after removal. The corresponding figures for the other patient were 2% and 3 to 7 x 10(-4), respectively. CONCLUSIONS: The method presented has a sufficient dynamic range for applications like evaluation of bone marrow purging or monitoring of minimal residual disease. Adaptation of this method to other translocations is discussed.

Base Sequence↗

All-trans retinoic acid directly inhibits granulocyte colony-stimulating factor-induced proliferation of CD34+ human hematopoietic progenitor cells.

In this study we examine the effects of retinoids on purified CD34+ human hematopoietic progenitor cells. All-trans retinoic acid inhibited granulocyte colony-stimulating factor (G-CSF)-induced proliferation of CD34+ cells in short-term liquid cultures in a dose-dependent fashion with maximal inhibition of 72% at a concentration of retinoic acid of 1 mumol/L. Although no significant effects were observed on granulocyte-macrophage CSF (GM-CSF)--interleukin-3--or stem cell factor (SCF)-induced proliferation, the combinations of G-CSF and each of these cytokines were all inhibited. Moreover, retinol (3 mumol/L) and chylomicron remnant retinyl esters (0.1 mumol/L) in concentrations normally found in human plasma also had inhibitory effects. Single-cell experiments showed that the effects of retinoic acid were directly mediated. Retinoids also significantly inhibited G-CSF-induced colony formation in semisolid medium, with 88% inhibition observed at a concentration of retinoic acid of 1 mumol/L. However, we did not observe any effects of retinoic acid on G-CSF-induced differentiation as assessed by morphology and flowcytometry. Similar to previous findings using total bone marrow mononuclear cells, we observed a stimulation of GM-CSF-induced colony formation after 14 days. We also observed a stimulatory effect of low doses of retinoic acid (30 nmol/L) on blast-cell colony formation on stromal cell layers. Taken together, the data indicate that vitamin A present in human plasma has inhibitory as well as stimulatory effects on myelopoiesis.

Adult↗

Homocysteine and other thiols in plasma and urine: automated determination and sample stability.

We have developed a modified version of our fully automated column-switching HPLC method for determining total plasma homocysteine based on single-column (reversed-phase) separation. Homocysteine, cysteine, and cysteinylglycine in plasma (total concentrations), acid-precipitated plasma (non-protein-bound concentrations), and urine can be determined. The derivatization and chromatography were performed automatically by a sample processor. The successful separation of all thiol species (within 15 min) was accomplished by accurate adjustment of the pH of the mobile phase to 3.65 (plasma) or 3.50 (acid-precipitated plasma, urine). Maximal fluorescence yield of cysteine, cysteinylglycine, and, to a lesser degree, homocysteine was dependent on optimal concentrations of EDTA and dithioerythritol during reduction (with NaBH4) and derivatization (with monobromobimane). The method is sensitive (detection limit approximately 0.05 pmol) and has a high degree of precision (CV < 5%). The sample output is approximately 70 samples in 24 h. Serum and heparin plasma can also be analyzed. Hemolysis up to approximately 2.0 g/L of hemoglobin did not interfere with the analytical recovery of homocysteine or cysteine. Collection of blood, separation of plasma from whole blood, and acid precipitation must be standardized to obtain reproducible thiol results. Our modifications and the standardization of blood-sampling procedures have substantially improved the method and broadened its applications.

Anticoagulants↗

Recurrent venous thrombosis during warfarin treatment related to acquired protein S deficiency.

Failure of warfarin to prevent new thrombotic processes was observed in three patients with very low free protein S concentrations and high C4b-binding protein (C4bBP) concentrations, and in one patient with hereditary protein S deficiency. We suggest that an increase in C4bBP reduces the free Protein S level, and warfarin treatment causes an additional decrease of free protein S. The four patients presented indicate that such reductions are of clinical importance. Heparin seems preferable as an anticoagulant in this situation, as warfarin given alone is ineffective, or may even be harmful. In a group of pancreatic cancer patients with advanced disease, subnormal mean free protein S was found, whereas mean total protein S concentration, and mean C4bBP concentrations were significantly higher (p less than 0.01) than in healthy controls. These findings indicate that an increase in C4bBP may induce free protein S deficiency contributing to the increased thrombotic tendency in this group of patients. The correlation between free protein S and C4bBP was 0.11, (n.s.), between total protein S and C4bBP 0.73 (p less than 0.0001).

Adult↗

[Infection problems in the leukopenia phase after autologous bone marrow transplantation].

Between 1986 and 1991, 29 patients with malignant lymphomas were treated with total body irradiation and high-dose chemotherapy followed by autologous bone marrow transplantation at the Norwegian Radium Hospital. Owing to treatment-induced bone marrow toxicity, the leucocyte count in peripheral blood rapidly fell to zero. The aplastic phase lasted for 25 days (median). All patients experienced fever in the posttransplant period and needed broad-spectrum antibiotics. 12 patients had documented bacteremia, mostly with Gram-positive isolates. There were seven cases of documented focal infections, and antibiotic-associated colitis was seen in two cases. Other complications included bleedings and skin rashes. Four patients died in the post-transplant period from complications related to the cytotoxic treatment. We discuss guidelines for antimicrobial treatment of suspected and confirmed infections in neutropenic patients.

Adolescent↗

Isolation and characterization of human hematopoietic progenitor cells: an effective method for positive selection of CD34+ cells.

Immunomagnetic beads are well suited for positive selection of CD34+ cells. However, both unspecific binding of beads to cells as well as the effectiveness of detachment of beads from cells may represent significant problems. We used an anti-Fab antiserum (DETACHaBEAD, Dynal) for rapid and effective detachment of immunomagnetic beads from the positively selected cells. By this detachment technique, the cells remained phenotypically unaltered. To reduce unspecific binding, we have coated various anti-CD34 monoclonal antibodies directly to paramagnetic beads M450 (Dynal). Use of beads coated with BI-3C5 was found to be optimal with regard to yield and purity of the isolated cells. The yield was on average 1.5% (range 0.5-2.5%) of bone marrow mononuclear cells and the purity was usually greater than 95% CD34+ cells of the isolated cells. Subpopulations of the cells expressed myeloid markers (CD13, CD33, and to a lesser extent CD15 and CD14) or early B-lineage markers (CD19 and CD10). Most of the cells expressed CD38, and a majority of the cells also expressed CD41. In general, most of the CD34+ cells with low forward scatter expressed B-lineage markers, as was also the case for the few contaminating CD34- cells which were found to be predominantly CD37+ mature B cells. Reactivity with antibodies against T-lineage markers (CD2, CD3, CD4, CD7, and CD8) was generally detected only on 1-2% of the cells or less. Isolated cells responded to interleukin 3, granulocyte-macrophage colony-stimulating factor, mast cell growth factor, and/or granulocyte colony-stimulating factor alone or in combinations in short-term liquid cultures. The cells were also markedly enriched for granulocyte-macrophage colony-forming units as well as for early progenitor cells capable of forming blast colonies on preformed stromal feeder layers. Moreover, the CD34- population was depleted of 70-80% of CFU-GM and cells capable of blast colony formation. Thus, we conclude that the isolated cells are phenotypically unaltered after isolation, and show a normal response in various in vitro assays.

Antigens, CD↗

An effective immunomagnetic method for bone marrow purging in T cell malignancies.

An immunomagnetic method was developed to purge human bone marrow of malignant T cells, for use in conjunction with autologous bone marrow transplantation in patients with acute lymphoblastic leukemia and lymphoma. Three monoclonal antibodies anti CD2 (BH1), CD5 (BB8) and CD7 (BF12) were used. In model experiments employing MOLT4 cells it was found that with 50-fold excess of immunobeads relative to antigen-positive cells, the use of each antibody alone resulted in a 3.3-3.6 log tumor cell depletion, as assessed in a sensitive and reproducible clonogenic soft agar assay. When all three antibodies were used in a mixture, a purging efficacy of 5 logs was achieved. Two treatment cycles improved these figures to about 4 logs and more than 5 logs. When MOLT4 cells were mixed 1:10 with fresh bone marrow cells the antibody mixture yielded 3.1 and more than 5 log tumor cell depletion with one and two treatment cycles, respectively. This procedure resulted in only an insignificant reduction of the number of CFU-GM and CFU-GEMM progenitor cells. In two patients autotransplanted with purged marrow, the loss of CFU-GM was 37% and 48%, and no tumor cells could be detected by immunocytochemistry after purging. Rapid and sustained engraftment was achieved and both patients remain in complete remission after more than 20 months.

Antibodies, Monoclonal↗

Autologous transplantation of an immunomagnetic bead purged marrow in patients with relapsed acute lymphoblastic leukemia.

In acute lymphoblastic leukemia (ALL) the expected duration of a second complete remission (CR) following conventional aggressive multi-drug treatment is rather short, and long-term survival is rarely seen. Myeloablative consolidation treatment with ABMT in second CR is thought to benefit "high risk" patients thus allowing the escalation of cytoreductive treatment into a lethal range. In three patients with relapsed ALL bone marrow was collected in the very early second remission phase. The autografts were incubated with a panel of monoclonal antibodies bound to magnetobeads (DYNABEADS M450). The pretransplant regimen consisted of total body irradiation (TBI) (14.4 Gy) and cyclophosphamide (CY) (50 mg/kg b.w. x4). Following autologous transplantation of those immunomagnetobead purged marrow grafts, complete hematologic reconstitution was seen in all three patients. They are alive and disease-free for +26, +24 and +17 months post transplant, which is also proven by the absence of detectable gene rearrangements after transplantation. In two of them disease-free survival exceeds the duration of the preceding remission y 20 and 12 months respectively, which is a definitive parameter for therapy effectiveness. Therefore, "high dose" consolidation treatment in very early second CR followed by autologous transplantation of purged bone marrow seems to allow long-term disease-free survival. The technique of ex vivo immunomagnetic bead purging, i.e. the "direct" and "indirect" method of binding monoclonal antibodies to magnetobeads is described.

Antibodies, Monoclonal↗

[Autologous bone marrow transplantation in children--experience with neuroblastoma].

Autologous bone marrow transplantation permits the use of greatly intensified cytoreductive therapy for cancer. Since 1983 seven children with disseminated neuroblastoma (stage IV) were treated by this method. Five were treated in first, and one in second complete remission; one child was in partial remission. Tumor cell purging of the marrow inoculum was performed in five cases. All children had engraftment and were discharged from hospital free of disease. Relapse was observed in three children within two years. Four children remain healthy at follow-up 5-77 months after autotransplantation. We describe and discuss indications, methods, side effects and results.

Abdominal Neoplasms↗

Immunomagnetic removal of B-lymphoma cells using a novel mono-sized magnetizable polymer bead, M-280, in conjunction with primary IgM and IgG antibodies.

The efficacy of a novel monosized and magnetizable polymer bead, denoted M-280, in immunomagnetic removal of Rael B-lymphoma cells was compared with that of M-450 beads, previously used in bone marrow purging. The M-280 beads which are smaller (diameter 2.8 microns) and contain less iron than the M-450 beads were coated with polyclonal IgG sheep antimouse (SAM) antibody. The two types of immunobeads were equally efficacious when used together with the mouse monoclonal IgG antibodies HH1 or FN1, giving tumor cell depletions of about 3 logs in one cycle of operation. However, when used together with the primary IgM monoclonal antibodies (MoAbs) AB1 or HH2, the new immunobeads were significantly more efficacious than the M-450 immunobeads. To elucidate the underlying mechanism flow cytometric studies and measurements of the binding of the labeled primary MoAbs to the cellular antigens as well as to the immunobeads were carried out. Competition experiments showed that in the case of IgG MoAbs, the SAM beads bind predominantly to the Fc portion, whereas in the case of the IgM MoAbs, the Fab part plays a relatively greater role in the binding. The results indicate that if M-280 immunobeads are used, IgM MoAbs may profitably be included in antibody cocktails together with IgG antibodies in immunomagnetic purging of B-lymphoma cells. They suggest that in the case of cell bound MoAbs, the epitopes on IgG are more accessible to SAM beads than those of surface bound IgM molecules.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Successful clinical use of an anti-HLA-DR monoclonal antibody for autologous bone marrow transplantation.

It has been widely assumed that anti-HLA-DR antibodies react with pluripotent stem cells and cannot be used in bone marrow purging. We report a case of non-Hodgkin's lymphoma in which an anti-HLA-DR antibody (AB4) was used for immunomagnetic purging and the subsequent autologous bone marrow transplantation resulted in rapid marrow engraftment with no serious complications. The results indicate that the AB4 antibody, which binds to an antigen encoded by the B3 gene of the DR region, can be safely used in the clinic in the purging of bone marrow from patients with AB4-positive tumors (non-T-cell acute lymphocytic leukemia, non-Hodgkin's lymphoma, and some cases of acute myelogenous leukemia.

Adult↗