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Biomedical subjects

S Ménard

Publications and source records attributed to S Ménard.

At least 163 records · Page 9Linked to original sources

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↗

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↗

Anti-human tumor antibodies induced in mice and rabbits by "internal image" anti-idiotypic monoclonal immunoglobulins.

MBr1 is a murine monoclonal antibody, defining a saccharidic epitope [CaMBr1] of a human tissue-specific, tumor-associated globoside, present on the mammary carcinoma cell line MCF-7. The same epitope is shared by glycoproteins present on normal and neoplastic mammary epithelial cells, and by mucins from some ovarian cyst fluids. We have used MBr1 as the monoclonal antitumor antibody in an idiotypic sequence of immunizations in order to obtain and characterize "internal images" of the original epitope to be used as substitutes of the nominal antigen in serologic immunoassays. Two monoclonal anti-idiotypic antibodies (beta-1 and beta-2), which reacted with paratope-related idiotopes on MBr1, were obtained. The analysis of the antigenic and immunogenic properties of these molecules by both "antigen" and "antibody" competition assays provided evidence that both beta-1 and beta-2 bear "internal images" of the MBr1-defined epitope. Moreover, when injected in mice and rabbits both beta-1 and beta-2 induced anti anti-idiotypic antibodies, which mimicked MBr1 in binding MCF-7 as well as normal and neoplastic mammary gland epithelial cells. These data are discussed in terms of their possible application to the production of tumor-associated antigen substitutes and their use in serologic immunoassays.

Animals↗

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↗

Evaluation of toxic effects following administration of monoclonal antibody MBr1 in patients with breast cancer.

Twelve patients with disseminated breast cancer were injected with monoclonal antibody MBr1 at the National Cancer Institute of Milan, Italy, from January 1983 to March 1985. The first seven patients had advanced disease and the remaining five operable breast cancer. In the first seven patients the initial dosage of MBr1 was 0.5 mg and was doubled in the next patient up to 16 mg. The last five women received 10 mg of MBr1. No general side effects such as bronchospasm, hypotension, immediate or delayed allergic reactions were observed. Four patients who were injected with 10 mg or more experienced fever, shudder and vague abdominal and articular pain. The following tests were monitored: R.B.C., W.B.C., percentage of lymphocytes, blood glucose, urea nitrogen and creatinine, serum levels of Na+, K+, Cl-, total proteins levels, albumins and globulins, bilirubin, GOT, GPT, alkaline phosphatase, LDH, amylase, gamma GT and CPK. No major modifications were observed: a limited increase of the transaminases, LDH and gamma GT was evident at the last check. An early temporary alteration of CPK was observed in the four patients who had symptoms. Serum levels of MBr1 are detectable immediately after injection starting from 4 mg, and all sera were negative 48 hours later. It is concluded that the scanty toxicity allows to continue clinical investigations to verify the linkage between MBr1 and Ca-MBr1 "in vivo" after a single injection of no more than 16 mg of the MoAb. The increase of this dosage as well as multiple injections do not seem safe at present.

Alanine Transaminase↗

Influence of in vitro culture conditions on tumor cell differentiation.

We studied the influence of different in vitro culture conditions on the growth characteristics of certain human and murine tumor cell lines maintained in either conventional medium supplemented with FCS or in serum-free synthetic medium. A lower growth rate was observed for all of the cell lines maintained in serum-free conditions. Three human melanoma cell lines which were Ia-positive and showed an absence of pigmentation in the presence of FCS, without it produced melanin and lost their Ia antigens. In serum-free conditions, a murine hybridoma lost its membrane IgM and two human carcinoma cell lines expressed and secreted an increased amount of several tumor markers identified by monoclonal antibodies. The results of the study are in keeping with the hypothesis that tumor cell lines cultured in serum-free medium acquire differentiation characteristics.

Animals↗

Improvement of tumor cell detection using a pool of monoclonal antibodies.

It has been proven that monoclonal antibodies which are not strictly tumor specific may be useful in clinical oncology for diagnosis and in in vitro therapy. These applications, however, are hampered by the heterogeneous expression on tumor cells of the epitopes defined by the majority of monoclonal antibodies produced so far. The use of combined monoclonals could complement their antitumor specificity and solve the problem. In this perspective we selected nine monoclonal antibodies directed against different antigens of primary and metastatic breast cancer cells. The reactivity of the pool of these nine monoclonals versus a single antibody (MBr1) was determined by immunofluorescence on tumor cell lines, on frozen sections of various carcinomas, and on live cells obtained from malignant effusions. The results obtained with the pool, compared to those using MBr1 alone, showed a remarkable increase in the number of immunopositive breast and other carcinomas and the number of immunopositive cells within each positive tumor. In fact, the percentage of immunoreactive breast carcinomas increased from 79% to 100%, and the percentage of immunoreactive carcinomas of other sites from 61% to 89%. In addition, the number of positive breast carcinomas showing 100% immunoreactive cells increased from 5% with MBr1 to 71% when the pool was used.

Antibodies, Monoclonal↗

Characterization of the specificity by immunohistology of a monoclonal antibody to a novel epithelial antigen of ovarian carcinomas.

An immunohistological study, using the avidin-biotin-peroxidase complex method, was carried out to define the reactivity profile of a murine monoclonal antibody, MOv2, which recognizes a novel glycoprotidic antigen associated with ovarian epithelial tumors. Among the primary ovarian tumors tested, MOv2 immunostained 93% of mucinous and 75% of serous cystadenomas, 100% of mucinous, 81% of serous and 73% of endometrioid carcinomas. Undifferentiated and clear cell tumors revealed more limited reactivity with the antibody, whereas ovarian sex cord-stromal and germinal tumors were immunonegative. Positive reactions were also documented in omental metastases from primary ovarian carcinomas. No immunoreactivity was detected in normal ovarian epithelium, whereas the cells lining Walthard's nests adjacent to the fallopian tubes and a variety of normal epithelia were consistently immunolabeled. These included the lining epithelia of the gastrointestinal tract, bronchi and endocervix, and the epithelium of salivary, biliary and pancreatic ducts and sweat glands. To a lesser extent, positive reactions were detected in other surface epithelia, such as squamous and transitional epithelia. Among tumors other than ovarian, MOv2 consistently reacted with adenocarcinomas and squamous cell carcinomas from different sites, most notably breast, lung and gastrointestinal tract, and with transitional cell carcinomas. In contrast, no staining was demonstrated in non-epithelial malignancies. The antigen defined by MOv2 may be operationally useful as a marker of epithelial lineage in tumor histopathology. Its pattern of immunohistochemical distribution indicates that an antigenic phenotype shared by normal surface epithelia and non-ovarian carcinomas is strongly associated with common epithelial neoplasms of the ovaries.

Animals↗

Sensitivity enhancement of the cytologic detection of cancer cells in effusions by monoclonal antibodies.

Cells from 229 pleural and peritoneal spontaneous fluids and 51 peritoneal lavage fluids from patients with neoplastic and nonneoplastic diseases were studied by indirect immunofluorescence with two monoclonal antibodies; MBr1, prepared against breast carcinoma, and MOv2, prepared against ovarian carcinoma. The results were correlated with those obtained by conventional cytologic methods. A cytologic diagnosis of metastatic carcinoma was established in about 50% of the fluids examined. Sixty percent of the cytologically malignant fluids contained tumor cells reactive with at least one of the two monoclonal antibodies tested. The specificity of the labeling was confirmed by immunoelectron microscopy. In addition, 16 fluids with a negative cytologic diagnosis contained cells strongly immunopositive with MBr1 and/or MOv2. Reactive mesothelial cells were consistently negative. These results suggest that antibodies MBr1 and MOv2 are able to identify cancer cells that do not fully meet conventional morphologic criteria for malignancy. The two reagents, when used in support of cytologic analysis, may substantially reduce the number of false negative cytologic diagnoses of fluids from patients with breast and ovarian carcinomas.

Antibodies, Monoclonal↗

Reactivity of a monoclonal antibody with tissues and tumors from the human breast. Immunohistochemical localization of a new antigen and clinicopathologic correlations.

The reactions of a monoclonal antibody to the MCF7 breast cancer cell line were immunohistochemically studied on a variety of breast tumors, primary and metastatic, on mammary epithelium and on nonneoplastic breast lesions. A high proportion of positive reactions was observed in ductal, lobular, and tubular carcinomas as well as in mammary Paget's disease. Mucinous, medullary, and papillary carcinomas showed a low incidence of reactivity. Carcinomas with metaplasia, carcinoids, and nonepithelial breast tumors were unreactive with the antibody. Positive immunostaining was documented also in nodal and extranodal metastatic lesions. The staining of nodal metastases was correlated with the positive reaction of the primary tumor. Reactivity was widely distributed in normal breast epithelial cells and in benign breast lesions. Staining of nonneoplastic mammary epithelial was associated with reactivity of adjacent neoplastic tissues. Staining differences between nonneoplastic and neoplastic mammary tissues were related to the intensity and cytologic distribution of the labeling. Heterogeneous reactivity of morphologically similar cells was documented in nonneoplastic and neoplastic breast epithelial cells as well as in nodal and extranodal breast carcinoma metastases. Immunohistologically detectable antigen was not correlated with prognostic factors such as histologic grade or nodal status. A retrospective study of T1NO cases failed to substantiate any prognostic value for the reactivity of primary breast tumors with this monoclonal antibody.

Antibodies, Monoclonal↗

Correlation between the presence of natural antitumor antibodies and activation of MuLV endogenous virus in BALB/c mice.

Individual 3-month-old or 12-month-old BALB/c mice, as well as 5-month-old nu/nu or nu/ + BALB/c mice, showed a direct correlation between the serum level of natural antitumor cytotoxic antibodies and the capacity of spleen cells to infect SC-1 cells permissive for murine ecotropic viruses. Pooled or individual sera from 3-month-old BALB/c mice, negative for the presence of natural antitumor cytotoxic antibodies and whose spleen cells were unable to infect the SC-1 cells, were negative both for SC-1 cells and SC-1 cells infected by MuLV. On the contrary, pooled or individual sera from 15-month-old BALB/c mice, positive for the presence of natural antitumor antibodies and with infecting spleen cells, were cytotoxic for infected SC-1 cells but not for the uninfected ones. The infection of SC-1 cells by MuLV could be inhibited by 3-month-old spleen cells, and this effect was suppressed by depriving the inhibiting spleen cells of T cells by means of an anti-Thy-1 antibody plus complement. The cells with infectious capacity did not belong to the T-cell compartment, as demonstrated by the lack of infection after passing the infecting spleen cells through an anti-Ig column, whereas T-deprivation did not modify the infectious capacity. A natural anti-gp70 monoclonal antibody, which exerted a complement-dependent cytotoxic effect on tumor cells, strongly inhibited the infection of the permissive SC-1 cells by MuLV.

Animals↗