Search PubMed⌕ Search

Biomedical subjects

S Canevari

Publications and source records attributed to S Canevari.

At least 91 records · Page 5Linked to original sources

The Ca-MOv18 molecule, a cell-surface marker of human ovarian carcinomas, is anchored to the cell membrane by phosphatidylinositol.

The structure of the 38 kD cell surface glycoprotein identified by the monoclonal antibody MOv18 and specifically expressed by human ovarian carcinomas has been investigated at a molecular level. The ovarian carcinoma cell line IGROV-1, which expresses high levels of Ca-MOv18, was treated with the phosphatidylinositol-specific phospholipase C from B. thuringiensis. The phospholipase C specifically released most of the Ca-MOv18 molecules as shown by flow cytometric analysis of the treated cells and by radioimmunometric assays of the corresponding supernatants. Consistent with the known structure of other phosphatidylinositol-linked molecules, Ca-MOv18 was biosynthetically labeled by [3H]ethanolamine and the labeled molecules were immunoprecipitated from the supernatant fo the phospholipase C treated cells. Evidence that Ca-MOv18 is anchored to the cell membrane via phosphatidylinositol may prove to be relevant in current investigations regarding the biological and clinical significance of this tumor marker.

Antibodies, Monoclonal↗

Antibody transport and internalization into tumours.

Internalization of monoclonal antibody (MAb) conjugates is an important feature of tumour targeting, both with respect to the therapeutic action of substances coupled to the antibody and to retention of radionuclides. Problems of analysing internalization in vitro and in vivo, of manipulating internalization, and of evaluating the involvement of normal tissues are illustrated by recent experimental data and are discussed in the light of published evidence.

Animals↗

The Aspergillus toxin restriction is a suitable cytotoxic agent for generation of immunoconjugates with monoclonal antibodies directed against human carcinoma cells.

The protein toxin restriction, isolated from the mould Aspergillus restrictus, inactivates protein synthesis in eukaryotic cells by blocking the ribosome elongation cycle. This protein acts as a specific nuclease that cuts off a small fragment from the 28-S rRNA. Biochemical and biological characterization of this toxin indicated that it is a non-glycosylated polypeptide of Mr 16836, exhibiting in cell-free systems a protein synthesis inhibition capacity similar to that of the ricin A chain. This polypeptide seemed unable to penetrate most of the cancer cell lines tested, as measured by its low in vitro cytotoxicity. In addition in vivo studies in BALB/c mice demonstrated that restriction toxicity was very low and that in rabbits, after intravenous injection 15% of the toxin was still present in the blood stream 24 h later. After derivatization with N-succinimidyl 3-(2-pyridyldithio)propionate and reduction by dithiothreitol, the restrictocin maintained its protein synthesis inhibitory activity, as assayed in a cell-free system. This derivatized toxin was then coupled to monoclonal antibodies (MBr1, MLuC1, MLuC2, MOv17, MOv18, MOv19) which exhibited a restricted spectrum of reactivity against human carcinomas. The biochemical and biological characterization of the immunoconjugates indicated that (a) when restrictocin was coupled to monoclonal antibodies with an average molar ratio of about 2, the immunoconjugates maintained the binding activity of the antibody and protein synthesis inhibition activity of the toxin; (b) four immunoconjugates were tested for cytotoxicity and three of them obtained with the MBr1, MLuC1 and MOv17 monoclonal antibodies exhibited a good level of cytotoxicity for relevant target cells and low or no toxicity for the irrelevant cell lines. The MLuC2 monoclonal antibody which gave rise to a completely ineffective immunoconjugate, induced internalization of less than one tenth of the antigenic sites whereas the MBr1, MLuC1 and MOv17 monoclonal antibodies exhibited about one third of the antigenic sites interanalized. From these data it is concluded that, providing an appropriate target antigen and coupling procedure are selected, restrictocin can be considered a suitable toxin for immunoconjugate generation.

Allergens↗

Activation of mononuclear cells to be used for hybrid monoclonal antibody-induced lysis of human ovarian carcinoma cells.

Recently we reported that cytotoxic T-cell clones can be retargeted to unrelated tumor cells by bispecific monoclonal antibodies (MAbs), anti-CD3 and anti-ovarian carcinoma (alpha OC/TR) (Mezzanzanica et al., 1988). In the perspective of in vivo tumor immunotherapy, as an alternative to cytotoxic T lymphocytes (CTL) from T-cell clones, since human peripheral blood mononuclear cells (PBMCs) without stimulation were quite ineffective, a suitable in vitro activation method was developed to render PBMCs lytic for relevant targets in the presence of the bispecific hybrid MAb alpha OC/TR. This activation protocol was applied to PBMCs from 9 healthy donors (HD) and 6 ovarian carcinoma patients (P) and to tumor-associated lymphocytes (TAL) from 4 ovarian carcinoma P. The method consisted of in vitro stimulation with phytohemagglutinin (PHA) for 2 days, followed by culture with a low dose of recombinant human interleukin-2 (rIL-2) for 6 to 10 days. The antibody-mediated lysis of CTL from HD PBMCs was found to be specifically directed against cells expressing the relevant ovarian tumor antigen when different tumor cell lines and short-term cultures of tumor and normal cells were tested. The antibody-mediated lysis of CTL from P PBMCs or TAL was efficient both on autologous and allogeneic ovarian tumor cells, whereas no reactivity with autologous normal cells was observed and LAK activity was only evident in 1 out of 4 cases. The hybrid antibody induced cytotoxic activity of CTL from P was, however, lower than that of CTL from HD.

Antibodies, Monoclonal↗

Human ovarian carcinoma lysis by cytotoxic T cells targeted by bispecific monoclonal antibodies: analysis of the antibody components.

In the perspective of in vivo therapeutic applications, the monoclonal antibody (MAb) MOv18 was selected for its restricted reactivity with human ovarian carcinoma. Using the pH 2.8 desorption assay, we found that the antigen recognized by MOv18 had a high stability on the cell membrane and poor internalization. Therefore, a therapeutic approach which does not require internalization, i.e., the re-targeting of cytotoxic T lymphocytes (CTL) by bispecific MAbs, was investigated. MOv18 and anti-CD3 MAbs were used to produce bispecific reagents, obtained either by chemical cross-linkage (hetero-conjugates) or by somatic hybridization techniques (hybrid MAbs). The maintenance of the binding reactivity and specificity of the bispecific MAbs was analyzed by solid-phase radioimmunoassay, immunofluorescence and cross-competition tests on the relevant target cells (ovarian carcinoma cell line OVCA 432 for MOv18 and PHA-stimulated peripheral blood mononuclear cells for anti-CD3 MAbs), and on 2 irrelevant tumor cell lines. Bv a 51Cr-release assay the bispecific MAbs were found to efficiently promote, at picomolar concentration, cell lysis by CTL clones, but the specificity pattern was wider than that predicted by the binding studies. The F(ab')2 fragment of one hybrid MAb mediated a lysis which was just as efficient as the entire MAb on the relevant target cells and allowed specific lysis to be distinguished from Fc-receptor-mediated lysis. Human immunoglobulins were unable to compete with the Fc receptor binding of the hybrid MAbs and therefore, in the perspective of in vivo applications, Fc fragment removal seems to be an essential step. Analysis of the bispecific reagents indicated that hybrid MAbs are superior to the heteroconjugate as far as storage stability is concerned.

Animals↗

Anti-ovarian carcinoma anti-T3 heteroconjugates or hybrid antibodies induce tumor cell lysis by cytotoxic T-cells.

In the perspective of therapeutic in vivo targeting for T-cell attack, the monoclonal antibody (MAb) MOv18, selected for its restricted reactivity with human ovarian carcinoma, and an anti-T3 MAb were used to produce heteroconjugate or hybrid antibodies derived by fusion of relevant hybridomas. Specificity and activity of bispecific MAbs were analyzed by solid-phase RIA, immunofluorescence and a 51Cr-release assay on the ovarian carcinoma cell line OVCA 432, which expresses the relevant tumor-associated antigen, and on several irrelevant tumor cell lines. Both reagents efficiently promoted, at picomolar concentration, target cell lysis by cytotoxic T-cell (CTL) clones. Although the pattern of tumor cell lines which were lysed was wider than that predicted by binding studies, further studies using a double-determinant immunoradiometric assay confirmed the specificity of MAb targeting. Analysis of reagents indicated that the hybrid MAb was superior to the heteroaggregate as far as purification recovery and storage stability were concerned. Besides CTL clones, peripheral blood lymphocytes could also be used as cytolytic effectors, provided that a suitable in vitro activation scheme was used.

Antibodies, Heterophile↗

Immunoconjugate generation between the ribosome inactivating protein restrictocin and an anti-human breast carcinoma MAB.

In the perspective of therapeutic approaches the monoclonal antibody, MBrl, with a quite restricted spectrum of reactivity for human breast carcinoma, was coupled to restrictocin (Res), a ribosome inactivating protein produced by Aspergillus restrictus. In a cell-free system this toxin was found to have an activity comparable to that of other plant toxins, but its in vitro toxicity was shown to be low on different cell lines. Three batches of MBr1-Res conjugate were prepared and their specificity, efficiency, and maximum level of cytotoxicity were analyzed on the cell line MCF-7 expressing the relevant antigen, on several irrelevant tumor cell lines, and on normal cells. Conjugates were from 600 to 1500 times more efficient than the uncoupled derivatized Res towards MCF-7 cells and were completely ineffective on the other target cells. The antigen-driven cytotoxicity was confirmed by the nontoxicity of an irrelevant conjugate on MCF-7 cells. The cytotoxic efficiency of MBr1-Res was low when compared to the binding level of MBr1 at the same concentration and a portion of treated cells (from 10% to 30%) survived the treatment. The heterogeneity of expression of the relevant antigen, together with its only partial internalization, could account for these limitations. The lysosomotropic agent ammonium chloride and the carboxylic ionophore monensin were tested as potentiating agents but in both cases the cytotoxicity remained unmodified. A neutralization assay performed on a xenogenic model indicated that the MBr1-Res conjugate was capable of reducing the tumor take. These data indicate the possibility of using the Res to prepare a reproducible and highly selective breast cancer conjugate. However, there are still a number of problems which must first be solved before we can consider its clinical application.

Allergens↗

The antitumor monoclonal antibody MOv2 recognizes the Lewis A hapten.

Monoclonal antibody MOv2, produced against ovarian carcinoma, was previously found to bind a carbohydrate epitope (CAMOv2) present on mucins, glycoproteins and a neutral glycolipid. In this paper, the structure of the carbohydrate epitope is determined by immunological reactivity with purified glycolipids and oligosaccharides. Using solid-phase radioimmunoassay and immunostaining of thin layer chromatograms, MOv2 binds strongly to Le(a)-active pentasaccharide ceramide. A smaller neutral glycolipid also weakly binds MOv2. Fifty percent inhibition of binding to Le(a)-active pentasaccharide ceramide is achieved with approximately 8 microM concentration of lacto-N-fucopentaose II (LNF II). Lacto-N-tetraose (LNT) also partially inhibits at about 10(3) times higher concentration suggesting that the faster migrating glycolipid antigen contains this carbohydrate sequence. Binding to Le(a)-active hapten is further confirmed by the specific inhibition of binding by authentic anti-Le(a) monoclonal antibodies but not by anti-Le(b) MOv2 antibody in a serum assay among healthy blood donors also supports these results. In conclusion, we have obtained direct evidence from several independent experiments that antibody MOv2 recognizes the Le(a)-active hapten.

Antibodies, Monoclonal↗

Monoclonal antibodies against NIH 3T3 cells transformed by human thyroid carcinoma DNA.

First cycle transformants of NIH 3T3 cells transfected with metastatic human thyroid carcinoma DNA were used as immunogen to obtain monoclonal antibodies (MAbs) against normal and transformation-related antigens. The transformed cell line (M33) was shown to contain Alu sequences. Two MAbs were selected on the basis of their differential reactivity toward untreated NIH 3T3 cells or the transformed M33 cell line. By immunofluorescence, immunoelectronmicroscopy and biochemical analysis, the first MAb (MTr1) was demonstrated to recognize an epitope on cytoskeletal filaments of proliferating murine fibroblasts. Similar MTr1-labelled filaments were also found to accumulate into cytoplast-like structures spontaneously produced by M33 cells. The characterization by immunofluorescence of MTr2, the second MAb, indicates that it recognizes a specific human antigen associated with normal thyroid epithelial cells and differentiated thyroid tumors.

Antibodies, Monoclonal↗

The effect of human serum on the binding activity of radiolabelled monoclonal antibodies.

Three murine monoclonal antibodies (MoAbs), MBr1 and MOv2 of IgM isotype and MOv8 of IgG isotype, with restricted reactivity for breast or ovarian carcinomas, were labelled with 125I in the perspective of obtaining specific and stable radioimmunopharmaceutical reagents. The radiolabelled MoAbs were analyzed for their "in vitro" stability in human blood. They were incubated at 37 degrees C for various lengths of time in human or, as a control, in murine blood and their binding capacity was evaluated by solid-phase RIA and compared with that obtained after incubation with buffer. In human blood, serum and plasma, but not with other components such as erythrocytes, leukocytes, HSA and IgG, the MoAbs revealed a loss of binding reactivity which was marked and constant for the IgM MoAbs, and only occasional for the IgG MoAb. In murine serum the decrease was not so rapid. The same change in the binding capacity was observed when the MoAbs were labelled with 3H or 35S, excluding the involvement of dehalogenating mechanisms. In the perspective of using MoAbs for intracavity therapy the effect of ascitic or pleural fluids on their binding activity was also evaluated. The inhibition of the binding reactivity was not as evident and was not related to the MoAb isotype.

Animals↗

Immunochemical characterization and radioimmunometric detection of molecules shed by human ovarian cancer.

Monoclonal antibodies (MAbs) OC125, MOv2 and MOv8 recognize the CA125, CAMOv2 and CAMOv8 epitopes, respectively, which are associated with human ovarian carcinomas and are shed by these tumors. The biochemical analysis of the recognized antigens and epitopes has been performed to investigate the possibility of exploiting their expression, if any, on the same molecules. Cross-competition experiments clearly indicated that the 3 epitopes are distinct. Biochemical analysis was performed on a cyst fluid from an ovarian cystadenoma. Heat treatment and periodate oxidation indicated that CAMOv2 and CAMOv8 are saccharidic and suggested that CA125 is a conformational epitope to which both saccharides and the protein backbone could contribute. By gel-filtration chromatography CA125 activity was eluted into 2 peaks of high molecular weight, whereas CAMOv2 and CAMOv8 activities were associated with a single broad peak which included CA125-positive fractions. Isopycnic centrifugation showed that CA125, CAMOv2 and CAMOv8 carrying molecules had the same high density (1.46 g/ml) in the first peak, whereas CA125 molecules had a lower density (1.41 g/ml) in the second peak. Double-determinant immunoradiometric assays, carried out using different combinations of the MAbs, indicated that in the cyst fluid molecules expressing both CAMOv2 and CAMOv8 could be detected, whereas CA125 was carried by different molecules. CAMOv2 and CA125 could however be expressed on the same molecule in 2 out of 9 ascitic fluids from ovarian carcinoma patients. Taken together, these data indicate that CA125 and CAMOv2-CAMOv8 were only occasionally expressed on the same molecules. Therefore, the use of the CA125-CAMOv2 combination could not increase the sensitivity achievable by using each respective simultaneous immunoradiometric assay.

Antigens, Neoplasm↗

Characterization of human ovarian carcinoma-associated antigens defined by novel monoclonal antibodies with tumor-restricted specificity.

Three new monoclonal antibodies (MAbs) (MOv16, MOv18 and MOv19) were raised against human ovarian carcinoma. To obtain more specific reagents than those produced so far, we adopted the following experimental approach which consisted of: the selection of a poorly differentiated ovarian carcinoma which was unreactive with all the MAb previously selected in our laboratory; and the application of a particular immunization protocol. The reactivity of the selected MAbs was studied by solid-phase RIA on live and fixed cells from tumor cell lines and by immunofluorescence on frozen sections from surgical specimens. The MAb MOv16 reacted with 60% of ovarian carcinomas as well as with a high percentage of other carcinomas and with some normal tissues. In contrast, MOv18 and MOv19 appeared to have restricted specificities for ovarian carcinomas and cystadenomas. Reactivity on other carcinomas was only observed in a few cases and no reactivity was found on non-epithelial tumors or normal tissues. Immunoprecipitation experiments indicated that MOv16 recognizes a 48-50-kDA protein, whereas MOv18 and MOv19 both identify a 38-40 kDA glycoprotein band. Cross-competition experiments, together with a double-determinant immunoradiometric assay which uses MOv18 as catcher and MOv19 as tracer, suggested that they recognize different epitopes carried by the same molecule. The affinity constants of MOv18 and MOv19 were estimated to be in the range of 10(8)-10(9) M-1. Taken together, the properties of these antibodies, their restricted ovarian tumor specificities and relative high affinity constants, suggest that they could represent promising tools for in vivo applications.

Antibodies, Monoclonal↗

Human carcinoma cell lines xenografted in athymic mice: biological and antigenic characteristics of an intraabdominal model.

In order to investigate in vivo clinical applications of murine monoclonal antibodies directed against human ovarian carcinoma a preclinical in vivo model was developed using BALB/c athymic mice. Three human carcinoma cell lines (MCF7, HT29, and SW626) were injected into the peritoneal cavity of pristane-primed animals and the biological and antigenic characteristics of the i.p. grown tumors were studied. The animals were killed when moribund or 6-8 weeks after tumor injection. At autopsy tumor take was observed in 85% of the injected animals, whereas palpable nodules were evident in only 83%. Examination of the peritoneal cavity revealed intraabdominal carcinomatosis with tumor masses varying in size between 0.2 and 0.5 cm in diameter and tumor sheets. The most frequently affected organs were the diaphragm, the liver, and the reproductive system. Ascitic fluid formation was rare and no animal developed tumors outside the peritoneal cavity. To determine whether the in vivo tumors retained the same antigenic characteristics as the in vitro cell lines, four monoclonal antibodies (MBr1, MOv2, MOv8, and MOv15) directed against ovarian carcinoma-associated antigens and two different experimental approaches (immunofluorescence and immunoblotting) were used. Variations at either a quantitative or a qualitative level were observed for some antigens, whereas no evident changes were apparent for others. In particular, the antigens detected by MBr1 and MOv15 on the MCF7 line both maintained high levels of expression and immunoblotting staining pattern, whereas the antigens detected by MOv2 on the HT29 and SW626 lines, although present at a high level, clearly changed their staining pattern. As regards the antigens recognized by MOv8 and MOv15 on the HT29 and SW626 lines, we observed a drastic decrease in the level of their expression and in many cases a drop below the threshold of detectability of the test. The intraabdominal carcinomatosis described partially mimics the growth characteristics of human ovarian cancer and maintains the expression of some antigenic markers associated with epithelial tumors of the ovary and may therefore be useful in devising immunodiagnostic and/or immunotherapeutic strategies for ovarian carcinoma.

Animals↗

Internalization of a monoclonal antibody against human breast cancer by immunoelectron microscopy.

Using an avidin-gold conjugate, the binding and internalization of the biotinylated anti-breast cancer monoclonal antibody MBr1 in MCF-7 cells were examined. After labelling MCF-7 cells at 0 degrees C, MBr1 was found to specifically bind to the entire cell surface. MBr1 distribution was diffused in cells fixed before labelling, but appeared in patches of different sizes in cells immediately fixed after labelling. On warming prelabelled cells at 37 degrees C for 2 min, MBr1 was internalized through non-coated small invaginations and vesicles an also through smooth invaginations with coated regions at the bottom. After warming for 15 and 30 min to 37 degrees C, the MBr1 internalization sites were observed as large membrane invaginations, large vesicular structures and lysosomes. The early steps of MBr1 internalization which consists of non-coated micro-invaginations seem to be correlated to the glycolipidic nature of the MBr1 recognized molecule. The MBr1 ability to enter MCF-7 cells suggests that this anti-tumour monoclonal antibody may be used as a toxin ability to enter MCF-7 cells suggests that this anti-tumour monoclonal antibody may be used as a toxin carrier agent.

Antibodies, Monoclonal↗

Change in binding reactivity of an anti-tumor monoclonal antibody after the introduction of 2-pyridyl disulphide groups.

The use of monoclonal antibodies for in vivo therapeutic approaches depends largely on their specificity. During the characterization of ricin A-chain-murine monoclonal antibody conjugates we found that the binding specificity of a monoclonal antibody raised against human ovarian carcinoma (MOv2) seemed altered. Therefore, the binding reactivity of the unmodified antibody (MOv2), the conjugation intermediate (MOv2-PDP) and the conjugate (MOv2-A chain) was titrated by solid-phase radioimmunoassay on 11 human tumor cell lines belonging to seven different histotypes. The three reagents bound with the two reference cell lines (SW626:ovary carcinoma and HT-29:colon carcinoma). The MOv2-PDP and the Mov2-A chain also reacted with seven other cell lines which were unreactive with the unmodified MOv2. In addition MOv2-PDP exhibited reactivity on all normal cells tested (peripheral blood lymphocytes and skin fibroblasts). To elucidate the significance of these findings the following experiments were performed: cross inhibitions between the unmodified and modified monoclonal antibodies; comparative absorption tests with different cell lines; and immunoblotting analysis of the target antigens. The results suggest that after chemical modification with SPDP the monoclonal antibody MOv2 increases its binding activity, so that even a low number of antigenic sites can be detected. This study underlines the need to redefine the specificity of a conjugate before considering therapeutic applications.

Animals↗