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Biomedical subjects

S Funderud

Publications and source records attributed to S Funderud.

At least 55 records · Page 3Linked to original sources

Intracellular events associated with inhibition of B cell activation by monoclonal antibodies to HLA class II antigens.

We have investigated several aspects of the inhibitory effects of monoclonal antibodies (mAb) directed against MHC class II antigens in B cell activation/proliferation, using a panel of mAb specifically reactive with antigens encoded by HLA class II loci (DP, DQ, DR). All mAb except the anti-DP mAb inhibited significantly anti-mu plus B cell growth factor-induced DNA synthesis. Only one mAb, however, which was reactive with gene products of all three class II loci (DP, DQ, DR) inhibited anti-mu-induced DNA synthesis as well as c-myc mRNA expression. In addition, the same mAb inhibited the early events induced by anti-mu stimulation alone, including phosphatidylinositol turnover and elevation of [Ca2+]i. In contrast to previous findings in the murine system, none of the anti-MHC class II mAb used in this study increased the cAMP levels.

Antibodies, Monoclonal↗

Heterogeneity of degradation of B-cell endocytosed monoclonal antibodies reacting with different sIgM epitopes.

The degradation of a panel of monoclonal antibodies (MoAb) bound to surface IgM (sIgM) was studied in three human Burkitt's lymphoma cell lines. The panel included MoAb that recognize several distinct epitopes associated with the F(c mu)5 domain, the c mu 2 domain and kappa or lambda light chains. The amount of degraded MoAb and the rate of their degradation varied considerably between the various antibodies. Properties of MoAb such as avidity or ability to cross-link sIgM did not significantly influence their degradation. The most consistent correlation between rate of degradation and MoAb used was the location of the epitope recognized by the individual MoAb. Thus, 7 out of 8 anti-light chain MoAb were degraded at a higher rate than 5 out of 5 anti-F(c mu)5 MoAb. One anti-c mu 2 MoAb was degraded at a rate similar to the majority of anti-light chain MoAb. The intracellular transport of an anti-kappa light chain MoAb and an anti-F(c mu)5 MoAb was studied in detail by subcellular fractionation in sucrose gradients. We found that the anti-kappa light chain MoAb was transported more rapidly to lysosomes than the anti-F(c mu)5 MoAb, showing that they were sorted differently intracellularly.

Animals↗

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↗

New indirect approach to the therapeutic use of immunotoxins.

To improve the applicability of immunotoxins (ITs), we have developed a new two-step indirect procedure. The target cells to be killed are first incubated with cell-specific mouse monoclonal antibodies (MAbs). After removal of excess unbound antibody, the cells are incubated in the presence of lactose with an indirect IT, a conjugate of whole abrin and sheep anti-mouse immunoglobulin (SAM) that binds only to cells having primary mouse MAbs on their surfaces. The SAM-abrin IT is affinity purified before use to remove molecules with exposed B-chain-binding sites; it was nontoxic in the absence of the specific mouse MAbs, demonstrating the specificity of the two-step method. We compared the indirect approach, using four different primary MAbs, with the conventional method, in which abrin is coupled directly to the mouse MAbs. In three human cell lines--the melanoma line FEMX, the Burkitt cell line Rael, and the leukemia cell line KM3--the cell kill, measured by a clonogenic assay, was consistently greater with the indirect than with the direct method. In the melanoma and Rael cells, the indirect method gave a higher cell kill than even native abrin. With a mixture of two different antibodies an additive effect was observed with the indirect but not with the direct method. The new approach greatly simplifies the therapeutic application in vitro of ITs, because it permits the use of different primary antibodies, singly or in mixtures, in conjunction with only one or a few general indirect ITs. In efforts to further improve the usefulness of the indirect method, other indirect ITs containing different toxin moieties are being examined. The possibility of employing the indirect principle in vivo is being explored.

Abrin↗

Cyclic AMP has the ability to influence multiple events during B cell stimulation.

Negative regulators of cellular proliferation are important in maintaining a balanced growth control. In this study we have examined the effects of the diterpene forskolin on various parameters of B cell activation. Forskolin is known to elevate intracellular adenosine 3',5'-cyclic monophosphate (cAMP) levels and thereby to influence B cell stimulation. We found that forskolin exerted an inhibitory effect on early as well as late events during stimulation of resting normal human B cells. Cells were activated either by antibodies to surface immunoglobulins (anti-mu), by the monoclonal antibody 1F5 reactive with the CD20 antigen or by 12-O-tetradecanoylphorbol 13-acetate. While anti-mu stimulation induces increased phosphatidylinositol (PI) turnover and [Ca2+]i fluxes, the latter two reagents confer an activation of B cells independent of the PI/Ca2+ pathway. We found a clear inhibitory effect of forskolin on the anti-mu-induced PI turnover and [Ca2+]i fluxes as well as on later parameters of cell activation. There was also a clear inhibition of G1 entry and DNA synthesis when PI/Ca2+-independent activation was employed, indicating that cAMP interferes with B lymphocyte stimulation in several ways. Importantly, forskolin maintained its inhibitory effect when added late after anti-mu stimulation, implying an effect also at multiple stages of activation. When examining the inhibitory effect of forskolin on neoplastic B cells, we found essentially no differences from the responses in normal cells.

Antibodies, Monoclonal↗

Transcription of protooncogenes during stimulation of normal human B lymphocytes.

Protooncogenes play important roles in the regulation of growth and differentiation of normal cells. In this study we have examined the cell cycle-dependent regulation of transcription of various protooncogenes after stimulation of human peripheral blood B lymphocytes. The transcriptional rate of various genes was determined by means of a nuclear run-on assay. We found that several protooncogenes were transcriptionally activated after stimulation (myc, p53, K-ras, H-ras, sis and ets), but with different kinetics of induction. In contrast, some oncogenes, especially those encoding membrane-associated or cytoplasmatic proteins like abl, rel or mil/raf, were transcribed at a relatively constant rate during the cell cycle.

B-Lymphocytes↗

cAMP-mediated growth inhibition of a B-lymphoid precursor cell line Reh is associated with an early transient delay in G2/M, followed by an accumulation of cells in G1.

This study was undertaken to gain more insight into the effects of cyclic adenosine monophosphate (cAMP) on cell-cycle progression in the B-lymphoid precursor cell line Reh. The adenylate cyclase activator forskolin reduced the proliferation of asynchronously growing Reh cells by 50% after 72 hr culture. Growth inhibition was associated with an accumulation of cells in G1. Furthermore, we demonstrated that forskolin provoked a delay of cells for approximately 10 hr in G2/M prior to the G1 arrest. Two different methods were applied to elucidate how cells in different phases of the cell cycle were affected by an elevated cAMP level. One method was based on centrifugal elutriation, whereby synchronous cell populations from the different phases of the cell cycle were isolated. By the other method, S-phase cells were selectively stained by pulsing asynchronously growing cells with bromo-deoxyuridine (BrdU). The data demonstrate that the position of a cell in the cell cycle is critical in determining how the cell will respond to an elevated cAMP level. Thus cells in G1 at the time forskolin is added are not delayed in G2/M, but they will subsequently accumulate in G1 after 48 hr. Cells given forskolin in G2/m, however, are delayed for 10 hr in G2/M, but they do not accumulate in G1. Cells given forskolin in the S phase are delayed in G2/M as well as arrested in G1. The results suggest that cAMP inhibits growth of the Reh cells by preventing the cells from passing important restriction points located in the G1 and G2 phases of the cell cycle.

B-Lymphocytes↗

Monosized, magnetic polymer particles: their use in separation of cells and subcellular components, and in the study of lymphocyte function in vitro.

By employing the principles of "activated swelling", monosized, superparamagnetic polymer particles have been prepared ranging in size from 1-100 microns. Both during and after the swelling process, the particles can be modified to meet a series of specific demands making them potentially very interesting for many separation and assay purposes. Using monoclonal antibodies to direct the magnetic beads to their targets, immunomagnetic separation has turned out to be one of the most specific, reliable and, above all, the fastest technique available today to isolate particulate material for further studies. So far, most efforts have been concentrated on methodology for fractionation of cells in suspension, such as removal of tumour cells from bone marrow or isolation of lymphoid cells from peripheral blood. These studies have both established the parameters necessary for optimal performance and at the same time laid the groundwork for future developments making immunomagnetic separation an exciting new tool in many research areas. High speed and specificity are the most conspicuous features of immunomagnetic cell separation. These properties have been exploited in the successful development of a new technique for tissue typing of cells directly from peripheral blood specimens. Both higher sensitivity and specificity have been obtained. The same principles can be used for fast and safe quantification of cell populations and subpopulations in blood and cell suspensions. The functions of, and interactions between, peripheral blood cell populations or subpopulations in the immune response have also been studied with high precision. The significance of direct cell contact on the one hand, and soluble factors on the other, can now be established in detail. Immunomagnetic beads have also been used to study the interaction between various T lymphocyte membrane molecules in the early phases of the activation process. Finally, the usefulness of specially developed particles for the fractionation of subcellular components is described.

Antibodies, Monoclonal↗

Immunomagnetic isolation of cells for serological BoLA typing.

This paper describes a totally new immunomagnetic (IM) technique adapted to serological BoLA typing. The basic technique has recently been developed by Vartdal et al. (1986) for serological HLA typing. The main advantage is that bovine mononuclear cells (e.g. T-cells and possibly their subsets, B-cells and monocytes) can be quickly and specifically isolated with high yield and viability from whole blood in a one-step procedure. This is achieved by magnetic separation of rosettes formed between the cells and superparamagnetic monosized polystyrene microspheres (Dynabeads TM) coated with cross-species reactive monoclonal antibodies (MAbs) specific for various human T-cell antigens or for HLA class II monomorphic epitopes. The cells are isolated within 5 min after a 5-min incubation at 4 degrees C. Magnetic separation of rosettes with a strong cobalt-samarium magnet eliminates all the laborious centrifugation steps necessary with conventional procedures. The isolated cells, still attached to the particles, are available for microcytotoxic assay. This is carried out within 55 min, including a two-step application of alloantiserum and complement and addition of acridine orange/ethidium bromide for the staining of viable (green) and dead (red) cells. The high viability of isolated cells gives a very low background kill compared with the conventional cytotoxic assay. The IM typing technique is also superior in sensitivity to the conventional technique as standardized for the international BoLA comparison test. The IM technique is likely to have its greatest impact on class II typing; class II positive cells being separated very efficiently. Polymorphic HLA class II MAbs detected likely polymorphic BoLA class II epitopes.

Animals↗

Immunomagnetic removal of B-lymphoma cells from human bone marrow: a procedure for clinical use.

B-lymphoma cells were purged from human bone marrow by incubating the cell suspension with a cocktail of three different pan-B cell mouse IgG1 monoclonal antibodies, and then with immunobeads charged with sheep anti-mouse antibody, followed by magnetic separation. The primary antibodies used, HD37 (CD19), HD6 (CD22), and HH1 (CD37), bind to a very high percentage of the cells in non-Hodgkin's lymphomas of poor prognosis. The secondary antibody is directed against the Fc portion of the IgG antibodies. In model experiments Burkitt's lymphoma cells (Rael) were admixed to mononuclear bone marrow cells in the ratio 1/9. With a ratio of immunobeads/total antibody-binding B cells of 50/1 in a first treatment cycle and repeating the procedure with the same number of beads in a second cycle, a tumor cell depletion of more than 5 logs was achieved, as judged by a clonogenic assay. The concomitant reduction of CFU-GM and CFU-GEMM was about 20%. The purging procedure has been scaled up to clinical use. Equipment suitable for purging patients' marrow specimens, employing standard transfusion facilities, is described. With this equipment the efficacy of tumor cell removal was the same as in the model experiments, and the whole magnetic separation could be completed in 2 hours.

Animals↗

Chronic B-lymphocytic leukemia--expression of B cell activation markers in relation to activity of the disease.

Two-color FACS analysis was used to study phenotypic subset and activation markers on circulating B (tumor) cells of 21 patients with chronic B-lymphocytic leukemia (B-CLL). Patients with clinically active (progressive) disease differed from patients with stable disease: B cells from the former patient category showed a significantly increased expression of the activation antigen 1D11 and FN99(CD9), and a decreased expression of the FN1 B subset marker. No clinical associations were observed using the CD23, CD25, 4F2, Ba, Bac-1 or FN50 markers. Functional studies showed that the B cells from both clinical categories of patients responded equally well with DNA synthesis when optimally triggered and supplied with T cell factors. However, B-CLL cells from patients with progressive disease secreted significantly higher levels of IgM in response to phorbol ester. The present experiments thus show that differences exist in the activation of B-CLL cells in vivo and that these patterns are correlated with disease activity. Further, the maximal in vitro proliferative capacity of individual tumor cells is similar, whereas differences in accessory T cell functions may exist between patients.

Antigens, Differentiation, B-Lymphocyte↗

Direct immunomagnetic quantification of lymphocyte subsets in blood.

A method is described where superparamagnetic polymer microspheres coated with monoclonal antibodies (MoAb) are used for the direct and fast quantification of the absolute number of cells of various lymphocyte subsets in blood. Blood samples were incubated with microspheres coated with a subset specific MoAb. Using a magnet the microsphere-rosetted cells were isolated and washed. Following lysis of the cell walls to detach the microspheres, the cell nuclei were stained with acridine orange and counted in a haemocytometer using an immunofluorescence microscope. With MoAb specific for CD2, CD4, CD8 and CD19, reproducible absolute counts of the corresponding lymphocyte subsets were obtained which correlated closely with those obtained by an indirect quantification method.

Cell Separation↗

Elimination of B-lymphoma cells from human bone marrow: model experiments using monodisperse magnetic particles coated with primary monoclonal antibodies.

Conditions for removing B-lymphoma cells from human bone marrow using "immunobeads" (IBs) were investigated. The IBs were prepared by coupling monoclonal antibodies directly to a new type of monodisperse magnetic polymer particles (M 450). Two monoclonal immunoglobulin M antibodies, AB-1 (CD 19), a B-cell-specific antibody, and AB-4, an HLA-DR-specific antibody, were used. The IBs were incubated with Rael Burkitt lymphoma cells admixed to fresh, mononuclear human bone marrow cells. After incubation for 30 min at 4 degrees C, the IBs were removed using cobalt samarium magnets. The number of remaining clonogenic tumor cells was assayed by the Courtenay and Mills soft agar procedure, and the clonogenic capacity of the bone marrow progenitor cells was measured by granulocyte-monocyte and granulocyte-erythroid-monocyte-megakaryocyte assays. With a ratio of tumor cells to normal bone marrow cells of 0.1 or 0.01 and a ratio of immunobeads to tumor cells in excess of 75, a tumor cell depletion of more than 3 logs was achieved with the AB-4 IBs and slightly less with the AB-1 beads. After two consecutive cycles of purification with the AB-4 beads, no colonies were found, corresponding to more than 6 logs of purification. In the case of the AB-1 beads, 4 to 5 logs of purification were achieved. The concomitant reduction in clonogenic bone marrow progenitor cells was only 30 to 40%. Flow cytometric studies showed that the tumor cell population contained appreciable proportions of cells binding only small amounts of the antibodies used. The results indicate that the IB procedure is highly efficient and capable of removing tumor cells expressing low levels of antigen. Compared to other purging methods in use the procedure described seems to offer several advantages with respect to efficacy, speed, and simplicity. By the use of a panel of suitable antibodies the new immunobead procedure may be potentially useful in autologous bone marrow transplantation of B-lymphomas and non-T-leukemias with poor prognosis.

Antibodies, Monoclonal↗

Cyclic AMP-mediated suppression of normal and neoplastic B cell proliferation is associated with regulation of myc and Ha-ras protooncogenes.

Cyclic AMP functions as a negative regulator of cell proliferation in a variety of cell systems. We show here that the proliferation of normal and neoplastic B cells can be inhibited by high intracellular levels of cAMP. Thus forskolin treatment of the neoplastic B precursor cell line Reh induced a rapid increase in the cAMP level, which was followed by an accumulation of cells in the G0/G1 phase of the cell cycle over a period of 2-3 days. Similar inhibition of Reh cell proliferation after 3 days was observed whether forskolin was present continuously or only during the first 5 hr. Both c-myc and c-Ha-ras protein levels were transiently down-regulated at 4 hr of forskolin treatment, suggesting that these protooncogenes play a role in the process leading to cAMP-mediated growth cessation. Northern-blot analysis showed that the steady-state levels of c-myc RNA rapidly declined in all phases of the cell cycle, to return to control levels within a time period of 24 hr. In contrast, the c-Ha-ras mRNA level was steadily maintained. Thus the expression of c-myc and c-Ha-ras protein was regulated at different metabolic levels. The reduced proliferative capacity of the B precursor cell line in the presence of forskolin was not linked to induced differentiation. This was judged from the lack of appearance of three different B cell differentiation markers; cytoplasmic immunoglobulin heavy chain and two antigens recognized by the monoclonal antibodies B1 (CD20) and HH1 (CD37). We also showed that forskolin partially inhibited the proliferation of normal B lymphocytes stimulated by anti-immunoglobulins (anti-mu) and B cell growth factor (BCGF). The burst of c-myc mRNA during activation of normal B cells was also reduced by forskolin.

8-Bromo Cyclic Adenosine Monophosphate↗

Transforming growth factor type beta (TGF beta) inhibits G1 to S transition, but not activation of human B lymphocytes.

Type beta transforming growth factor (TGF beta) is a polypeptide that may influence the growth of a variety of cell types in a positive or negative fashion. In this study we show that TGF beta markedly inhibits DNA synthesis in normal and neoplastic human B lymphocytes stimulated to proliferate with anti-immunoglobulins and B-cell growth factor (BCGF). Although TGF beta was needed during the initial 12 h of the culture to promote optimal inhibition, we found that it had little or no effect on several early to intermediate parameters of cell activation [( Ca2+]i increase, c-myc mRNA increase, cellular enlargement, RNA increase, and the increase in the expression of the 4F2 activation antigen). In contrast, TGF beta almost completely blocked the induction of transferrin receptor expression, which normally occurs in the late G1 phase of the cell cycle. Therefore, we conclude that TGF beta treatment leads to arrest of the cells in the middle to late G1 phase, prior to transferrin receptor expression.

Antibodies, Anti-Idiotypic↗

New monoclonal antibodies specific for human sarcomas.

Monoclonal antibodies (MAbs) against sarcoma-associated cell membrane antigens were prepared by immunizing BALB/c mice with tumor cells from a human osteosarcoma, TPX, grown as a xenograft in athymic BALB/c nude mice. Spleen cells from immunized mice were hybridized with X-63 Ag. 8.653 mouse myeloma cells which yielded 260 growing hybridomas. Seven of these produced antibodies that bound to TPX cells and to cells from another osteosarcoma, but not to autologous skin fibroblasts. MAbs from 2 (TP-1 and TP-3) of these 7 clones did not cross-react with non-sarcomatous tumor cells or peripheral blood lymphocytes. Immunohistochemical studies on frozen tissue sections showed that the TP-1 (IgG-2a) and TP-3 (IgG-2b) antibodies had characteristic and identical specificity profiles. Binding of TP-1 (TP-3) was demonstrated to 15/15 (15/15) osteosarcomas, 3/3 (2/2) synovial sarcomas, 7/9 (6/8) malignant fibrous histiocytomas, 2/2 (1/1) malignant hemangiopericytomas, 1/2 (1/2) chondrosarcomas and 3/6 (1/3) unclassified sarcomas. The antibodies did not bind to any of 16 sarcomas belonging to other histological subtypes, including liposarcomas and leio- and rhabdomyosarcomas. Moreover, they failed to bind to sections of 66 different non-sarcomatous malignancies, or to any of a range of normal adult and fetal tissues, although some weak staining of proximal kidney tubules was seen. The restricted specificity of these antibodies to some major subtypes of human sarcomas makes them promising tools for identification and subclassification of sarcomas.

Animals↗