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Regulation of antibody secretion by hybridoma cells. I. Suppression of antibody secretion by coculture of hybridoma cells with idiotype-induced suppressor cells.

In this study, we have demonstrated that antibody secretion by hybridoma cell lines can be down-regulated by idiotype-specific immune spleen cells or by nylon wool nonadherent spleen cells. This suppression of antibody secretion can be abolished by treating the idiotype-specific immune spleen cells with anti-Thy 1.2 plus complement. The hybridoma we used for most of our experiments secretes IgM specific for the cross-reacting haptens 2,4,6-trinitrophenyl (TNP) and 2,4-dinitrophenyl (DNP). Suppression was achieved by direct coculture of hybridoma cells with immune cells from animals which were injected with affinity-purified hybridoma antibody-coupled syngeneic spleen cells. The suppressed and control cultures contained similar numbers of viable hybridoma cells, suggesting that a simple cytotoxic effect is not responsible. Idiotype specificity was established in experiments showing that two idiotype immune animals immunized with antibody from two different IgM anti-TNP hybridomas could suppress the hybridoma to which they were immunized but could not affect the other hybridoma. Immune spleen cells required 3-4 days of coculture with hybridoma cells before maximum suppression was achieved. The kinetics of the response suggest that the final effector suppressor cell is generated during the coculture period and that a second signal, perhaps a product of the hybridoma cells, may be required.

Animals

Characterization of mouse-human hybridoma as a useful fusion partner for the establishment of mouse-human-human hybridoma secreting anti-tetanus toxoid human monoclonal antibody of IgM or IgG class.

We succeeded in establishing a mouse-human (M-H) heterohybridoma clone which provides parental cells useful for human monoclonal antibody (hMoAb) production. Electron micrographs show that the M-H hybridoma cells retain characteristics of murine origin with regard to chromatin patterns, small granules, granular endoplasmic reticulum and Golgi apparatus. The human DNA incorporated into the M-H hybridoma is estimated to be about 1% of the total human chromosomal DNA. Mouse-human-human (M-H-H) hybridomas obtained by hybridization of the M-H hybridoma cells with Epstein-Barr virus(EBV)-transfected human B cells secrete immunoglobulin (Ig) in amounts comparable to those of murine hybridomas. Also the M-H-H hybridomas grow in nude mice and are capable of producing ascites containing large quantities of Ig. The Ig class switching takes place in the M-H-H hybridomas at a much higher frequency than in the original EBV transformant and the M-H hybridoma. Cells secreting specific monoclonal antibody of different Ig classes could be separated and concentrated by the use of fluorescence activated cell sorter (FACS).

Animals

Increased proportion of B cell hybridomas secreting monoclonal antibodies of desired specificity in cultures containing macrophage-derived hybridoma growth factor (IL-6).

The addition of macrophage feeder cells or conditioned medium has been shown to increase the yield of murine hybridomas obtained after the fusion of myeloma cells and activated B lymphocytes. It has been shown recently that the conditioned medium contains a growth factor (HGF) active on newly formed hybridomas and that the human HGF is similar to B cell stimulatory factor 2 which can induce the synthesis of antibodies in transformed B cells. We have compared in several fusion experiments the stimulatory effects of HGF both on the yield of hybridomas and on the number of antibody-secreting hybridomas. The results obtained clearly showed that while the stimulatory effect of HGF on the yield of growth-positive wells was variable and sometimes barely detectable, the proportion of growth-positive wells containing monoclonal antibodies was consistently much higher in the HGF-containing cultures. These results suggest that the majority of the antibody-secreting newly formed hybridomas are sensitive to HGF and indicate that HGF is a very useful culture supplement for the generation of a high number of antibody-producing hybridomas even if it may not increase significantly the yield of viable hybridomas.

Animals

T hybridoma alpha/beta gene transfected in a murine T cell hybridoma: role of CD4 molecule in vitro and in vivo--engraftment in SCID mice induces T cell maturation.

In the present work, we tested in SCID and Balb/c mice the activity of T hybridoma transfected with T cell receptor (TCR) alpha/beta chain genes. A T cell hybridoma denoted D011107 was used as recipient for transfection of cytotoxic KB5C20 TCR alpha/beta heterodimer genes by protoplast fusion or electroporation. After transfection, the parental D011107 T cell line reexpressed CD5 and CD4 surface molecules. In vitro, we noted strong proliferation and unusual cytotoxic reactivities against H-2k target cells although the transfected cell line does not express the CD8 molecule. The fate of parental and transfected cells was examined in severe combined immunodeficient (SCID) and Balb/c mice at Day 16 after intravenous injection. Cells from bone marrow, thymus, and spleen tissues were analyzed by immunofluorescence. The transfected T cell hybridoma was CD3+ Desire 1+ CD4+ Thy1.2. The SCID mice grafted with the transfected T cell hybridoma presented a high percentage of CD3+ (15%), CD4+ (27%), Thy1.2+ (27.52%), and Desire 1+ (8.74%) cells in the spleen. The percentages of CD3+ (6.2%) and Thy1.2+ (5.06%) cells in the spleen from SCID mice grafted with parental T cell D011107 and from untreated SCID were similar and lower (CD3+, 3.52%; Thy1.2+, 4.34%). It seems that transfected T cells hybridoma grafted in the SCID mice induce significant expression of CD4+ Thy1.2+ Desire 1- cells (17%) in the spleen. These results indicate that transfected T cells graft may allow T cell differentiation. In Balb/c mice, the percentage of different T cell subsets in bone marrow, thymus, or spleen cells in mice injected with transfected T cells was similar to that in untreated mice. We did not observe any cytotoxic or significant allogeneic proliferation in vitro.

Animals

Screening for hybridomas producing antibodies to steroid hormone receptors: interference from phenol red in the hybridoma culture supernates.

The culture supernates from a variety of mouse hybridomas which were known to secrete antibodies to antigens unrelated to steroid hormone receptors were examined for routine use as experimental controls for monoclonal anti-oestrogen receptor (ER) antibodies. During this process, we made an observation which is important for all investigations on monoclonal anti-receptor antibodies. Our results indicated that the phenol red dye present in these hybridoma culture fluids by binding to the immunoglobulins (Ig) secreted by the hybridoma cells, may impart to the Ig-dye complex, a capacity to interact with ER/progesterone receptors(PR) which are present in the cytosols or in the sections of ER+ tumors. The Ig-dye may thus mimic anti-receptor antibody activity. Growth media containing phenol red and Ig-free bovine calf serum supplement or culture fluids from a non-Ig secreting hybridoma failed to show similar binding to ER+ tissues. This observation documents the need for Ig-dye complex formation to obtain such ER-Ig interaction. Complete dialysis of phenol red from the Ig positive supernates removed the observed interference of the dye. In this report we describe the nature of this interference and the results obtained before and after the removal of the dye from Ig+ culture fluids. In addition, we suggest some remedial measures that should be considered, while screening and testing the specificity of any hybridoma culture product for anti-receptor antibody activity (particularly, anti-ER or anti-PR antibodies).

Animals

TMA-specific first-order T-suppressor hybridoma. I. Characterization of the hybridoma-derived single-chain inducer suppressor factor, TsF1.

Experiments described in this report will characterize a monoclonal phenyltrimethylammonium (TMA) specific, first-order T-suppressor factor (TsF1) produced by a T-cell hybridoma, 8A.3. The hybridoma expressed the Thy-1, Lyt-1, Lyt-2 antigens as well as cross-reactive idiotypic (CRI) determinants but did not express I-J encoded epitopes. It was also found to bear determinants recognized by a monoclonal antibody raised against single-chain GAT-specific TsF1. The hybridoma-derived factor was capable of suppressing primary in vitro trinitrophenol (TNP)-specific responses induced with the Brucella abortus antigen, conjugated with TMA and TNP haptens (TMA-BA-TNP). In addition, in vivo administration of 8A.3 culture supernatant resulted in the specific suppression of TMA-specific delayed-type hypersensitivity (DTH) responses. Analysis of this factor revealed it to be an induction-phase, antigen-binding, CRI+, and I-J+ single chain polypeptide. Our results represent only the second such described single chain, antigen binding, I-J+ suppressor factor derived from a monoclonal T-cell hybridoma.

Animals

Regulation of antibody production by hybridoma cultures. I. Anti-idiotype antibody-mediated down-regulation of anti-DNA antibody production by hybridoma cells.

A series of anti-DNA antibody-producing hybridomas were obtained by fusing spleen cells from 6-month-old MRL/lpr, autoimmune prone, mice with P3X63-Ag8 myeloma cells. Rabbit anti-idiotype (id) antibodies specific for several of the hybridoma proteins were prepared. It was shown that the anti-id antibody inhibited immunoglobulin in secretion by the hybridoma cells in an id-specific manner. Inhibition of antibody production was not due to a cytotoxic effect, since the anti-id, in fact, stimulated proliferation of the hybridoma cells.

Animals

Effects of culture media on murine hybridomas: definition of optimal conditions for hybridoma viability, cellular proliferation, and antibody production.

Different cell culture media were compared for their ability to support and promote the growth of stable hybridoma cell lines derived from three commonly used parental murine myelomas. Supplemented Dulbecco's modified Eagle's media (DMEM) and RPMI 1640 media were studied. The DMEM-based media were found to support greater numbers of cells for longer time periods than were the RPMI 1640-based media. Aminopterin supplemented medium was shown to be significantly less effective in supporting hybridoma reproduction and viability than medium without aminopterin. Antibody levels were directly related to cell concentration and viability regardless of the medium used for the hybridoma culture. An optimally formulated DMEM-based medium is suggested as the medium of choice for hybridoma propagation and maintenance.

Animals

Hybridomas using athymic nude mouse injected with Crohn's disease (CD) tissue filtrate. Immunoreactivity of the hybridomas with CD sera.

Injections of Crohn's disease (CD) tissue filtrates produce lymphoma and hyperplastic lymph nodes from plasma cell hyperplasia (PCH) in athymic nude (nu/nu) mice; these lymphoid tissue contain an antigen(s) recognized by CD serum/gamma G immunoglobulin (IgG). To immortalize the "CD-reactive antigen(s)," the authors fused the lymphoid cells from a CD tissue filtrate primed nu/nu mouse with nonsecretory mouse myeloma cells. Hybrids were screened and selected based on their reactivity with CD serum IgG, but not with control serum IgG in an indirect immunofluorescence assay (IF). Two CD-positive hybridomas were examined by IF with sera from 47 CD, 38 ulcerative colitis (UC), 13 controls with other gastrointestinal diseases, 19 with autoimmune diseases, and 21 normal subjects. Sera from 16 CD patients (34%) reacted with the two hybridomas, but only one of 38 UC sera and none of the 53 other disease or normal control sera reacted. The immunoreactivity of CD sera was significantly higher than UC sera (P less than 0.01) and each of the other groups (P less than 0.007). Using immunoperoxidase techniques at light and electron microscopic levels, the authors localized CD-associated antigen(s) in the plasma membrane of the two hybridomas. Further characterization of these hybridomas and the immunoreactive protein(s) may provide an important probe(s) for the diagnosis and the understanding of the pathogenesis of CD.

Animals

Immunoglobulin K chain genes in mouse hybridoma PTF-02 and parent myeloma. Insertion of hybridoma K gene into the plasmid pSV2-gpt.

The mouse myeloma line P3-X63-Ag8.653 currently used as the parent line for hybridoma construction contains only one (non-productive) gene for immunoglobulin K chains. The allelic gene is lost. In the mouse hybridoma PTF-02 two K genes can be found. One is identical with the gene of the myeloma parent line, the other originates in lymphocytes and is transcribed and translated in the K chain of the antibody secreted by the hybridoma. From the gene library of hybridoma PTF-02 in phage Charon 28 both K genes were isolated. Restriction endonuclease mapping and Southern blot hybridization demonstrated that the fragment comprising the lymphocyte gene was of the size (7.5 kb) sufficient to carry all exons, transcription and translation units. This gene was then recloned in the plasmid pBR322 and shuttle plasmid pSV2-gpt, which opens up possibilities for transfection of lymphoid cells and for study of the regulation of individual gene expression.

Animals

Immunoglobulin chain recombination among antidigoxin antibodies by hybridoma-hybridoma fusion.

Conditions necessary for in vitro chain recombination of high affinity (10(9) to 10(12) M-1) antidigoxin monoclonal antibodies resulted in decreased affinity for both intact "native" and chain recombinant molecules. Chain recombination by somatic cell fusion was used instead to study the effects on antigen specificity and idiotypy of recombinants in which an homologous light (L) chain substituted for the parental L chain. The antidigoxin antibody 26-10 utilizes a VL sequence highly homologous to that of antibody 40-20, an antidigoxin antibody which uses a different VH gene than does 26-10 and lacks significant reactivity with an anti-26-10 idiotypic serum. The drug-marked antidigoxin cell line 26-10 (gamma 2a, kappa) and a drug-marked light chain producing variant of antidigoxin hybridoma 45-20 (lambda 1) which lacks both digoxin binding and idiotypy were fused. The fusion progeny (gamma 2a, kappa, lambda 1) which binds digoxin and is idiotype-positive, was selected for kappa loss (resulting in loss of digoxin and idiotype binding) and then fused with a heavy (H) chain loss variant of antidigoxin hybridoma 40-20 (kappa, digoxin nonbinding, idiotype negative). The resultant cell line CR-57 (gamma 2a, kappa, lambda) secretes antibodies which assemble the 26-10 H chain with both the 40-20 kappa-chain and the 45-20 lambda 1-chain. The affinity purified recombinant species consisting of 26-10 H chain and 40-20 kappa-chain expresses complete 26-10 idiotypic determinants. However, this recombinant antibody binds digoxin with decreased affinity and altered specificity relative to native 26-10. The binding specificity pattern nonetheless is most similar to the H chain donor. Amino acid and nucleotide sequence analyses of the respective light chains demonstrate six variable region differences between them, two of which are in complementarity-determining regions and the remainder in the framework. Hybridoma-hybridoma fusion provides an alternative to in vitro chain recombination for studying the contribution of chain combinational diversity to antibody diversity, antigen binding, and idiotypy.

Amino Acid Sequence

Development of a mouse antiperoxidase secreting hybridoma for use in the production of a mouse PAP complex for immunocytochemistry and as a parent cell line in the development of hybrid hybridomas.

Mouse antibodies are increasingly used as primary antibodies for immunocytochemistry as more mouse monoclonal antibodies are being produced. The localisation of these antibodies by the PAP technique requires mouse antiperoxidase antibody. A monoclonal antiperoxidase would obviate the limitations of production of a polyclonal mouse antiperoxidase. This paper describes the development of a mouse hybridoma producing such an antibody (MAP A6-2) and the use of this antibody to localise a number of mouse primary antibodies by the PAP technique for both light and electron microscopy. The antibodies localised include monoclonal antienkephalin and antityrosine hydroxylase. MAP A6-2 had a higher affinity in immuno-diffusion experiments and gives slightly better staining with an horse radish peroxidase of a different type from that used for immunisation. Staining was optimum with horse radish peroxidase type X whereas horse radish peroxidase type VI was used for immunisation. Also described is the production of a HAT sensitive variant cell line allowing the possibility of using this hybridoma as a parent cell line for the production of hybrid hybridomas secreting bi-specific antibodies.

Animals

Generation of human hybridomas producing migration inhibitory factor (MIF) and of murine hybridomas secreting monoclonal antibodies to human MIF.

Human T-cell hybridomas were established by hybridization of concanavalin A (Con A)-stimulated human peripheral blood T lymphocytes with cells from a 6-thioguanine-resistant, aminopterin-sensitive mutant line designated CEM-WH4, derived from the continuously growing human T cell line, CEM. High levels of MIF activity were demonstrated in the supernatants of two hybridoma lines, T-CEMA and T-CEMB but not of CEM-WH4 when stimulated with phorbol myristate acetate and phytohemagglutinin. In comparison, MIF derived from Con A-stimulated peripheral blood mononuclear cells showed 100 times less activity. Upon isoelectrofocusing, MIF activity of T-CEMB was found exclusively between pH 4.6 and 5.3 whereas MIF derived from T-CEMA showed heterogeneity with a major peak of MIF recovered at pH 4.6-5.3 and a minor peak at pH 2.4-3.3. These molecules, however, were all found to have an apparent MW of 68,000 and were resistant to trypsin. Most of these characteristics are in accordance with second day pH 3- and pH 5-MIF derived from peripheral blood mononuclear cells. When spleen cells from BALB/c mice immunized with T-CEMB-MIF were used to fuse with NS-1 mouse myeloma cells, nine hybridomas secreting antibodies to human MIF were obtained. Clone D112 which demonstrated the highest MIF-neutralizing activity was found to neutralize MIF derived from T-CEMA, peripheral blood mononuclear cells, and a T cell line, Mo.

Animals

The circular dichroism of phosphocholine-specific mouse hybridoma and myeloma proteins: unusual properties of the hybridoma protein 101.6G6.

The circular dichroism (CD) spectra of five myeloma and six hybridoma proteins specific for phosphocholine were measured in the 250-310-nm range. The effect on the CD spectra of adding phosphocholine was also examined. The five myeloma proteins all had distinctive native spectra and, except for M603 and W3207, unique changes occurred on ligand binding. The hybridomas were chosen as pairs from each of the three known families of phosphocholine-specific immunoglobulins. Those from the T15 or M603 families resembled the appropriate prototype. However, the proteins from the M167 family were all distinctively different in their CD properties. In particular, the hybridoma protein 101.6G6 showed large CD changes on hapten binding and values for the association constant for phosphocholine of 1.1 X 10(5) M-1 and of 5.8 X 10(2) M-1 for acetylcholine were obtained by CD spectrophotometric titration. The CD properties of the proteins are interpreted in the light of the sequence data so far available, including the possible role of the D-segment.

Acetylcholine

Enhanced transfection of a bacterial plasmid into hybridoma cells by electroporation: application for the selection of hybrid hybridoma (quadroma) cell lines.

A procedure was investigated to transduce a bacterial plasmid containing a specific drug resistance marker (pSV2-neo), into a hybridoma cell line using electroporation. The effect of several buffers and the form of plasmid DNA (circular or linearized) on the stable transfection frequency were examined. When complete cell culture medium (DMEM) was used as electroporation buffer, we observed a two-fold increase in post-pulse viability and a ten- to thirty-fold increase in the transfection frequency of pSV2-neo, as compared with HEPES buffered 0.15 M sodium chloride. Supplementing DMEM with fetal bovine serum (DMEM + FBS) had some beneficial effect on post-pulse viability of the cells after electroporation, but did not markedly increase stable transfection frequency as compared with DMEM alone. Furthermore, with DMEM + FBS, the intact plasmid was transfected as effectively as linearized PSV2-neo. However, when using HEPES buffered saline, the transfection frequency of pSV2-neo increased two-fold after linearization as compared with intact plasmid. The drug resistance was used successfully as a marker for the selection of hybrid hybridoma (quadroma) cell lines after fusing two different hybridoma cell lines, producing anti-fibrin and anti-plasminogen activator antibodies respectively. The quadroma cells produced bispecific antibodies that are capable of accumulating plasminogen activator on a fibrin surface.

Antibodies, Monoclonal

Studies on immunity in hybridoma-bearing mice. A. Immune response to antigens. II. inhibition of production of anti-dinitrophenyl antibodies in mice which have rejected the B 53 anti-dinitrophenyl-producing IgE hybridoma.

When BALB/c mice, which had rejected the anti-dinitrophenyl (DNP) IgE-producing hybridoma B 53, were immunized with DNP proteins, they produced much less anti-DNP antibodies than control (normal) mice. The anti-DNP plaque-forming cell (PFC) number was much less when spleen cells from mice immunized with DNP proteins were treated with sera of mice which had rejected the hybridoma B 53 than the PFC number from the same spleen cells not treated by the sera. The sera of mice which had rejected the hybridoma B 53 contained an inhibitor which was adsorbed and eluted from an anti-mouse immunoglobulin column and also a mouse anti-DNP IgG2a column. The inhibition of PFC was hapten-reversible. In Western blotting the eluates from the anti-DNP IgG2a column reacted as well with the blotted anti-DNP IgE B 53 as an anti-idiotypic antibody to anti-DNP IgE B 53. These criteria establish that the inhibitor in the sera of the mice which had rejected the B 53 tumor was an anti-idiotypic antibody of the type which mimics the epitope (DNP) of the immunizing antigen.

Animals

Studies on immunity in hybridoma-bearing mice. B. Immunity against the hybridoma. II. The phenotype and specificity of the immune cell.

When appropriate numbers of anti-dinitrophenyl (DNP) immunoglobulin (Ig) E-secreting hybridoma (B 53) cells were injected s.c. into normal BALB/c mice, some of the recipients rejected the tumors. These mice were shown to be immune to B 53 as they withstood, without any ill effect, the i.p. injection of lethal doses of B 53 cells. In previous studies, it was shown that the spleen cells of these mice protected against the growth of B 53 cells. In this study, the characteristics and specificity of the immune spleen cells were examined. The cells responsible for this immunity were shown to be T cells that express Ly-2 on their surface. These cells were shown in in vivo and in vitro assays to limit the growth of the immunizing hybridoma, as well as some but not all BALB/c plasmacytomas and hybridomas.

Animals

Role of the macrophage-derived hybridoma growth factor in the in vitro and in vivo proliferation of newly formed B cell hybridomas.

It has been shown recently that monocyte-macrophage cells produce a growth factor (HGF) active on newly formed B cell hybridomas. We have studied the effect of HGF on the proliferation of an HGF-sensitive clone of B cell hybridoma. Results obtained showed that the murine P388D1 cell-derived HGF has a m.w. of 29,000 and an isoelectric point (pI) of 6.2 whereas the human monocyte-derived HGF has a m.w. of 34,000 and a pI of 4.9. The HGF activity was not mediated by interleukin 1 because the two activities could be completely separated by gel filtration. Results obtained in in vivo experiments showed that HGF-sensitive cells are tumorigenic in mice. The finding that the HGF biochemical parameters (m.w. and pI) are similar to the ones of a recently described plasmacytoma growth factor suggests that HGF and the plasmacytoma growth factor are similar and that the HGF sensitivity of SP 2/O myeloma cells is reactivated after fusion with normal B lymphocytes.

Animals