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S Canevari

Publications and source records attributed to S Canevari.

At least 55 records · Page 3Linked to original sources

Growth of ovarian-carcinoma cell lines at physiological folate concentration: effect on folate-binding protein expression in vitro and in vivo.

Ovarian-carcinoma cell lines (OVCAR3, IGROVI, OVCA432, SW626 and SKOV3), grown in standard medium containing supra-physiological (2.3 microM) folate concentration, display different levels of reactivity with the anti-folate-binding-protein (FBP) monoclonal antibody MOv18, which recognizes the alpha-isoform of the protein. Gel-filtration and absorption experiments indicated that on IGROVI cells this molecule accounts for all folic-acid binding at nanomolar concentrations. The aim of the study was to investigate the effect of extracellular folate levels on cells adapted to grow in medium containing physiological folate concentration (20 nM). By the ternary complex assay, all cell lines showed a marked depletion of intracellular reduced folates, compared with those in standard folate medium. The monitoring of FBP by MOv18 showed on IGROVI cells a transient up-regulation of the protein, whereas on the other cell lines, except SKOV3, no changes were detected. These data suggest that in these cells further over-expression of the molecule cannot generally be induced by lowering the extracellular folate concentration. On SKOV3, Scatchard analysis of 125I-MOv18 binding, as well as the evaluation of total folate binding capacity, showed a 2- to 3-fold stable increase of FBP expression after long-term growth in low-folate medium. Reverse transcriptase-polymerase chain reaction (RT-PCR) analysis indicated in these cells a 1.5-fold increase in alpha-FBP mRNA. SKOV3 cells, maintained in vitro in medium containing supraphysiological and physiological (i.e., low-folate) concentrations were injected into nude mice. Weight differences, though not statistically significant, were observed in favour of low-folate-derived tumors. Immunohistochemical and immunochemical analysis of the tumor samples showed that in SKOV3 cells the receptor modulation can also be induced by restoring the physiological folate concentration in vivo.

Animals↗

Regression of advanced ovarian carcinoma by intraperitoneal treatment with autologous T lymphocytes retargeted by a bispecific monoclonal antibody.

BACKGROUND: The high frequency of relapse after induction chemotherapy of advanced ovarian carcinoma calls for new therapeutic approaches. Lysis of ovarian carcinoma cells can be achieved by retargeting of T lymphocytes using F(ab')2 fragments of the bispecific monoclonal antibody (MAb) OC/TR, which is directed to the CD3 molecule on T lymphocytes and to the folate receptor on ovarian carcinoma cells. PURPOSE: Our purpose was to assess in ovarian carcinoma patients the antitumor activity of in vitro-activated autologous peripheral blood T lymphocytes retargeted with OC/TR. METHODS: Patients with epithelial ovarian cancer (International Federation of Gynecology and Obstetrics stages III and IV) meeting specific criteria were eligible to enter a phase II immunotherapy trial. Before immunotherapy, the 28 patients who entered the trial underwent laparotomy to reduce their tumor load and to allow measurement of all indicator lesions. They then received two cycles of five daily intraperitoneal infusions of autologous in vitro activated peripheral blood T lymphocytes retargeted with OC/TR plus recombinant interleukin 2 (IL-2) with (n = 11) or without (n = 17) a second daily infusion of OC/TR F(ab')2 and IL-2. Response to treatment could be assessed in 26 patients following explorative laparotomy; time to progression could be assessed in 27 patients. RESULTS: Seven patients had clinical evidence of progressive disease after treatment and therefore did not undergo laparotomy. Of the 19 patients evaluated by surgery and histology, three showed complete response, one showed complete intraperitoneal response with progressive disease in retroperitoneal lymph nodes, three showed partial response, seven had stable disease, and five had progressive disease. The overall intraperitoneal response rate was 27% (95% confidence interval [CI] = 10%-44%). The complete responses seen in three patients lasted 26 months in one patient, 23 months in the second, and 18 months in the third. Two patients were not assessable for response. One of these patients had bowel perforation during catheter removal, which precluded further evaluation. The second patient was positive only by cytologic examination before immunotherapy, was tumor free at laparotomy after immunotherapy, and remained so for the entire 21 months of follow-up, as determined by cytologic examination of random biopsy specimens. The median time to disease progression in the 15 assessable patients plus those who had stable disease was 11 months (95% CI = 6-18 months). Immunotherapy-related toxic effects included mild to moderate fever, nausea, emesis, and fatigue. Anti-mouse antibodies were detectable by the end of the treatment in 21 of 25 patients tested. CONCLUSIONS: Locoregional immunotherapy of ovarian cancer with bispecific MAb-retargeted T lymphocytes can result in tumor regression. Toxicity was mild to moderate and only transient. IMPLICATIONS: Improvement in systemic antitumor responses is needed before this approach can prove useful as adjunctive treatment following induction chemotherapy in patients with minimal residual disease.

Adult↗

Anti-tumor efficacy of an anti-epidermal-growth-factor-receptor monoclonal antibody and its F(ab')2 fragment against high- and low-EGFR-expressing carcinomas in nude mice.

Monoclonal antibody (MAb) MINT5 specifically detects the epidermal-growth-factor receptor (EGFR). In vitro analyses of intact MINT5 (IgG1) and its F(ab')2 fragment indicated that both forms of the MAb inhibited binding of 125I-mEGF to EGFR, induced receptor internalization and blocked EGF-induced EGFR tyrosine-kinase activation in A431 cells. Both forms of the MAb also inhibited to the same extent the proliferation of the carcinoma cell lines A431 and IGROVI, despite the difference in EGFR levels on the cells. The detection of TGF alpha mRNA and the inhibition of cell growth in EGF-free conditions by anti-EGFR MAb indicated the involvement of an EGFR/TGF alpha autocrine/paracrine pathway in the in vitro growth of both cell lines. Analysis of mice xenotransplanted s.c. with A431 cells and treated with MINT5 revealed a block in A431 tumor take in 6 of 10 animals when intact MAb was administered from day 0 to day 11. On a molar basis, F(ab')2 at the same dose was ineffective, although at a 7-fold higher dose F(ab')2 reduced s.c. tumor growth by 80%. At the same dose, intact MINT5 MAb reduced s.c. growth of the EGFR-negative MeWo cell line by 5%. Survival of mice bearing IGROVI i.p. xenotransplants and treated locally with either form of MAb was significantly prolonged even when treatment was initiated on day 3. Corrected doses of intact and F(ab')2 fragment, which accounted for the difference in serum half-lives of the MAb forms, resulted in similar survival rates in the tumor-bearing mice. These pre-clinical results suggest that MINT5 MAb might be safely used for systemic therapy of EGFR-over-expressing tumors. Loco-regional therapy might be contemplated in the case of tumors with moderate/low EGFR expression.

Animals↗

Unidirectional potentiation of binding between two anti-FBP MAbs: evaluation of the involved mechanisms.

The monoclonal antibody MOv19 directed to a folate binding protein shows temperature-dependent potentiation of binding of the noncompeting monoclonal antibody MOv18 to the relevant antigen, but the mechanism involved in this phenomenon had remained unclear. Use of chimeric versions of both monoclonal antibodies and the F(ab')2 and Fab fragments of MOv19 revealed an increment in MOv18 binding in all combinations irrespective of the origin of the Fc portion of the monoclonal antibody. The potentiating effect of bivalent MOv19 fragments on 125I-MOv18 binding was similar to that of the entire monoclonal antibody and occurred at saturating concentrations of both reagents at which monovalent binding prevails. Similarly, the monovalent fragment also induced a significant increase in MOv18 binding. However, the potentiation occurred only at very high concentrations of antibody fragment. Homologous inhibition was drastically reduced using MOv19 Fab fragment, suggesting a low binding stability of the monovalent reagent. Immunoblotting analysis and binding in the presence of exogenous purified folate binding protein indicated a cross-linking between soluble and cell surface molecules mediated by the bivalent monoclonal antibodies. The extent of the increase in MOv18 binding at 0 degrees C with high amounts of exogenous folate binding protein was lower than that obtained at 37 degrees C in the absence of added molecule. Release of 125I-MOv18 from the cell surface was significantly higher in the absence of MOv19 than in its presence.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Membrane vesicles shed into the extracellular medium by human breast carcinoma cells carry tumor-associated surface antigens.

We have compared the pattern of surface antigen expression, as detected by monoclonal antibodies (mAbs), in plasma membranes vs shed membrane vesicles of two human breast carcinoma cell lines, MCF-7 and 8701-BC. Antigen expression was detected on cells by immunofluorescence (IF) analysis, whilst, due to their small dimensions, the same technique was not applicable to vesicles. For these structures dot-blot analysis and immunoelectron microscopy (IEM) were employed. When applicable, both cell membranes and membrane vesicles were immunoprecipitated and the precipitate (IP) was analyzed by SDS-PAGE. Cells of both lines expressed HLA class I antigens, epithelial cytokeratins, beta 1 integrins, CEA and the glycoprotein detected by mAb 19.9, but only MCF-7 cells expressed Lewis Y, episialin and globo-H antigens and only 8701-BC cells expressed folate receptor. Membrane vesicles of both cell lines appeared to be rich in beta 1, alpha 3 and alpha 5 integrin chains, expressed HLA class I antigens and carried most of the plasma membrane antigens found in the cell membranes. Overall we have analyzed 17 antigens on the two cell lines and on their vesicles. The results obtained for cells (IF and IP) and those for vesicles (dot-blot and IP) were generally concordantly positive or concordantly negative. We obtained a total of 26 clearly concordant combinations on 34 analyses. In three cases we found discordant results, whereas in the remaining combinations we observed slight reactivity and we found difficulties in determining concordance. Discordant results concerned the expression of the following antigens: folate receptors, which were clearly expressed in 8701-BC cells but not detected by dot-blot analysis or IEM on their shed membrane vesicles; neu (c-erb-B2) receptor found in MCF-7 cell membranes but not in their vesicles; and the globo-H antigen recognized by mAb MBr1, detected at low levels on 8701-BC plasma membranes but undetectable on their membrane vesicles. Like vesicles shed in vitro by cultured cells, the vesicles shed in vivo by human breast carcinoma cells could be tagged with several antibodies against tumor-associated antigens. The vesicles shed in vivo were found in association with a fiber network. Some of the fibers had the characteristic fibrin periodicity. These data suggest that tumor markers detected in the circulation of carcinoma patients, at least in part, are carried by shed membrane vesicles. Moreover the observation that membrane vesicles carry both tumor-associated antigens and HLA class I molecules indicate that these structures could in principle present antigens to the immune system.(ABSTRACT TRUNCATED AT 400 WORDS)

Antigens, Neoplasm↗

Preclinical evaluation of the ribosome-inactivating proteins PAP-1, PAP-S and RTA in mice.

In a preclinical mouse model the plant ribosome-inactivating proteins (RIPs) pokeweed antiviral proteins PAP-1, and PAP-S and ricin A-chain (RTA) induced a pathological elevation of serum concentrations of glutamate pyruvate transaminase (GPT) and blood urea nitrogen (BUN) and had a significant immunosuppressive effect on B- and T-lymphocytes. The present analysis and comparison of the biodistribution and systemic/organ toxicity associated with RIP injection suggest a possible in vivo mechanism of action of PAP-1 and PAP-S and identify several limitations in the clinical use of these two toxins and RTA. When administered intravenously, PAP-1 and PAP-S consistently accumulated in kidneys and induced histologically documented damage to kidney and liver, with a LD50 of 3.3 mg/kg and 1.6 mg/kg for PAP-1 and PAP-S, respectively. In mice injected with PAP-S after chlorpromazine (CPZ) administration, GPT levels returned to normal between 24 and 72 h after toxin injection, while the BUN levels remained elevated. Mortality of the animals was delayed but all mice eventually succumbed. All the three toxins inhibited the expansion of anti-sheep red blood cells (SRBC) antibody-forming cells and the production of anti-SRBC antibody levels, although PAP-S showed the most potent activity. Despite the immunosuppressive activity, all toxins were highly immunogenic.

Alanine Transaminase↗

In vitro and in vivo stability and anti-tumour efficacy of an anti-EGFR/anti-CD3 F(ab')2 bispecific monoclonal antibody.

The in vitro and in vivo stability and anti-tumour efficacy of the anti-EGFR/anti-CD3 bispecific monoclonal antibody (biMAb), M26.1, were analysed. The interaction of the intact biMAb with Fc receptor I (Fc gamma RI) present on human leucocytes was not observed when the antibody was used as an F(ab')2 fragment. A CD8+ T-cell clone coated with M26.1 F(ab')2 was as effective as the intact biMAb in inducing IGROV1 target cell lysis when tested in a 51Cr-release assay. Variable levels of reduction of F(ab')2 to monovalent F(ab') were observed upon incubation with human ovarian cancer ascitic fluid (OCAF) or with human glioblastoma cavity fluid (GCF), but not with mouse or human sera. Activated lymphocytes coated with F(ab')2 and incubated in vitro with GCF or OCAF for 24 and 48 h respectively maintained their targeting. Thus, the F(ab')2, when present as a soluble molecule, but not when bound to T cells, might lose some functional activity as a consequence of partial reduction to F(ab'). In normal mice, M26.1 F(ab')2 retained full cytotoxic activity in the circulation, and clearance values were similar to those obtained with parental and other MAb F(ab')2. Treatment of IGROV1 tumour-bearing mice with activated human lymphocytes coated with the M26.1 F(ab')2 significantly prolonged survival of the animals compared with tumour-bearing untreated and control mice treated with lymphocytes or F(ab')2 alone. Together, these results suggest the clinical usefulness of bispecific M26.1 F(ab')2 as a targeting agent for local treatment of tumours such as glioma and ovarian cancers that express variable levels of epidermal growth factor receptor (EGFR).

Animals↗

Bispecific antibody targeted T cell therapy of ovarian cancer: clinical results and future directions.

The high frequency of relapse after induction chemotherapy in advanced ovarian carcinoma patients calls for new therapeutic modalities. Retargeted T cell-mediated lysis can be achieved using the bispecific antibody (BsmAb) OCTR, directed to CD3 on T cells and to the folate receptor on ovarian carcinoma cells. Twenty-eight patients with limited intraperitoneal disease after first-line therapy entered a phase II study. They received two i.p. 5 day cycles of activated PBMC retargeted with OCTR. Despite unfavorable tumor characteristics, 7 of 26 patients (27%) showed complete or partial intraperitoneal responses with strict surgicopathologic evaluation. In most cases, the disease relapsed outside the peritoneal cavity, and in 1 case complete intraperitoneal response was accompanied by progression in retroperitoneal lymph nodes. The morbidity was mild to moderate and transient. Combination of i.v. and i.p. administration of OCTR-retargeted lymphocytes will possibly lead to extraperitoneal cure. Ongoing clinical studies indicate that the i.v. infusion of up to 8 x 10(8) OCTR-retargeted T lymphocytes does not induce a higher toxicity than the i.p. treatment. To avoid PBMC preactivation, new approaches for delivering accessory signals are under investigation. Preliminary results indicate that nonactivated PBMC retargeted by OCTR in the presence of an anti-CD28 monoclonal antibody (mAb) are able to significantly inhibit tumor growth.

Antibodies, Bispecific↗

The LFA-1/ICAM cell adhesion pathway is involved in tumor-cell lysis mediated by bispecific monoclonal-antibody-targeted T lymphocytes.

We investigated the role of the LFA-1/ICAM, VLA-4/VCAM-1 and CD2/LFA-3 adhesion pathways in the cytolysis of tumor cells mediated by an anti-EGF-R/anti-CD3 bispecific monoclonal antibody (biMAb). The biMAb induced efficient lysis of EGF-R+ tumor cells (A431, HT-29, IGROV-1 and MDA-MB468) by cytotoxic T lymphocytes (CTL) cultured in IL-2. Pretreatment of effector cells by anti-LFA-1 alpha (CD11a) and anti-LFA-1 beta (CD18) MAbs significantly inhibited cytolysis of all types of EGF-R+ tumor cells, while anti-CD2 and anti-VLA-4 MAbs were virtually ineffective. We investigated the expression of adhesion-molecule counter-receptors on tumor target cells by indirect immunofluorescence. HT-29, A431 and MDA-MB 468 tumor cells expressed an ICAM-1+2-3- VCAM-1- LFA-3+ phenotype, while IGROV-1 was ICAM-1-2+3- VCAM-1- LFA-3+. Pre-treatment of A431, HT-29 and MDA-MB468 with anti-ICAM-1 MAb inhibited cytolysis, further supporting the functional involvement of the LFA-1/ICAM adhesion pathway in biMAb-targeted tumor-cell lysis. In addition, treatment of target cells with TNF alpha or IFN gamma for 24 hr increased the expression of ICAM-1 in HT-29, A431 and MDA-MB468 (ICAM-2 was induced on IGROV-1) and also enhanced the sensitivity of these target cells to biMAb-targeted cytotoxicity. These data suggest that up-regulation of ICAM-molecule expression by inflammatory cytokines may increase susceptibility of tumor cells to biMAb-targeted lysis. Anti-LFA-1 MAbs did not significantly inhibit the formation of conjugates between biMAb-coated T lymphocytes and tumor cells. Co-aggregation of LFA-1 molecules with biMAb-bound CD3 molecules resulted in a more sustained and prolonged increase in the intracellular concentration of free Ca++ in CD8+ cultured CTL lines. These findings indicate that in T cells targeted by anti-CD3/anti-TAA biMAb LFA-1 may act as a co-receptor molecule which enhances signal transduction through the CD3/TCR complex.

Antibodies, Bispecific↗

Folate binding protein distribution in normal tissues and biological fluids from ovarian carcinoma patients as detected by the monoclonal antibodies MOv18 and MOv19.

Folate-binding proteins (FBP), which are molecules relevant in folate metabolism, are overexpressed in ovarian carcinomas, as detected by the monoclonal antibodies (MAb) MOv18 and MOv19, which recognise two different epitopes of the gp38/FBP. In this paper, features of the FBP such as the distribution on normal tissues and the release in biological fluids of normal and tumour origin have been investigated. Immunohistochemical analyses on frozen sections of normal tissues showed the presence of the gp38/FBP on some epithelia. The reactivity of both the MAb on Fallopian tubes was intense and comparable to that observed on ovary carcinoma sections. The kidney, bronchial glands, alveolar epithelium of the lung, oesophagus, stomach, pancreas, breast and thyroid showed different levels of staining. By MOv18/MOv19 double-determinant immunoradiometric assay (DDIRMA), the gp38/FBP was found in soluble form in ascitic fluid, serum and urine of nude mice in which the human ovary carcinoma cell line IGROV1 grew as ascitic carcinomatosis. In human biological fluids, the gp38/FBP was detected in ascites of 60% of ovarian carcinoma patients, and in 29% of those with other carcinomas, but not in patients with non-epithelial tumours or with other non-tumoral pathologies. The mean serum arbitrary units (a.u.)/ml values of ovary carcinoma patients were significantly different to those of healthy donors or patients with endometriosis (P < 0.005 and P < 0.01, respectively), but not when compared to the sera of lung carcinoma patients. In addition, the sensitivity of DDIRMA was poor, since only 24% of the ovary carcinoma patients were positive with this assay. When a restricted number of cases selected for the presence of tumour cells in the ascites was examined, the percentage of DDIRMA-positive sera and ascites rose to 41 and 94%, respectively. In the urine, a strong reactivity was observed in the samples of both normal and tumour origin.

Animals↗

Immunoconjugates: lessons from animal models.

Monoclonal antibody-mediated cancer therapy has evolved through a challenging chain of problems and solutions. The very limited therapeutic success obtained with unarmed monoclonal antibodies has increased the interest in different antibody-based targeting strategies, and numerous preclinical and even clinical studies with immunoconjugates have now been conducted. We comment here on the messages implicit in a recent report on a doxorubicin-anti-carcinoma antibody conjugate and from several other studies.

Animals↗

Targeting of T lymphocytes against EGF-receptor+ tumor cells by bispecific monoclonal antibodies: requirement of CD3 molecule cross-linking for T-cell activation.

Targeting of T lymphocytes against epidermal growth-factor-receptor (EGF-R)+ tumor cells was achieved by constructing a hybrid hybridoma which secretes an anti-EGF-R/anti-CD3 bispecific monoclonal antibody (biMAb) of hybrid isotype (IgG1/IgG2a). Purification of biMAb molecules from parental anti-EGF-R and anti-CD3 MAbs was performed by protein-A chromatography. The purified biMAb was able to trigger the lysis of EGF-R+ tumor cell lines (A431, IGROV-1, MDA-468 and U-87) and of NIH-3T3 transfectants expressing human EGF-R by cytolytic T lymphocytes, but it was ineffective in the case of EGF-R-negative tumor targets. Normal EGF-R+ cells (keratinocytes and endometrial cells) were also susceptible to biMAb-targeted cytolysis. However, the amount of biMAb required to induce half-maximal cytolysis of tumor cells over-expressing the EGF-R molecule (A431) was considerably lower than that required to induce lysis of EGF-R+ tumor or normal cells which express EGF-R at considerably lower density. The ability of such biMAbs to deliver activation signals to T cells was evaluated by Ca++ mobilization and lymphokine production experiments. The soluble anti-EGF-R/anti-CD3 biMAb failed to induce intracellular Ca++ increases, which occurred only after cross-linking induced by an anti-mouse IgG antibody. Secretion of lymphokines (IFN-gamma, TNF-alpha and GM-CSF) was induced by contact of the biMAb-coated effector cells with the relevant tumor target, whereas the soluble biMAb was virtually ineffective. In addition, biMAb-coated effector cells retained the ability to recognize and to lyse EGF-R+ tumor cells for a prolonged period of time. Our data indicate that activation of effector cells targeted by biMAbs can only occur at the tumor site, where cross-linking of surface CD3 molecules is induced by contact with the tumor cells.

Antibodies, Bispecific↗

Gene transfection and expression of the ovarian carcinoma marker folate binding protein on NIH/3T3 cells increases cell growth in vitro and in vivo.

The glycoprotein gp38 is overexpressed in 90% of ovarian carcinomas and recognized by monoclonal antibodies MOv18 and MOv19. This molecule is a high affinity folate binding protein (FBP) and a potential marker for ovarian carcinoma. We have developed a model to investigate the biochemical and biological properties of this folate receptor by transfecting NIH/3T3 cells, which do not endogenously express FBP, with a vector containing the complementary DNA for the gp38 cloned from the ovarian carcinoma cell line IGROV1. The FBP expressed shows features identical to those of the protein produced by IGROV1 cell. The FBP is expressed on the cell membrane in a glycosylphosphatidylinositol-linked form, since it is released by treatment with phosphatidylinositol-specific phospholipase C, and is shed into the culture medium of the NIH/3T3 transfectants. Immunoblot analysis with MAbs MOv18 and MOv19 showed that both the glycosylphosphatidylinositol-linked and the soluble FBP migrate at the same apparent molecular weight as the respective IGROV1 proteins. The FBP-transfected NIH/3T3 cells bound folic acid and internalized about 30-fold more folic acid than mock-transfected cells. Growth analysis revealed that FBP-transfected NIH/3T3 cells like IGROV1 maintained their growth rate after 10 days of culture in medium containing physiological or low folate concentration, and tumors arising after transplanting FBP-tNIH/3T3 cells in nude mice were 3-fold heavier than those arising after transplantation of non-FBP-expressing NIH/3T3 cells. These results suggest a correlation between human ovarian carcinoma growth and FBP overexpression.

3T3 Cells↗

Effect of hydrostatic pressure and cholesterol depletion on the expression of a tumor-associated antigen.

The molecular events related to the expression of three tumor-associated epitopes, Ca-MOv17, Ca-MOv18 and Ca-MOv19 have been addressed. The epitopes are carried by a 38-kDa glycoprotein (gp38), recently cloned and identified as a human folate-binding protein. They were found to be coexpressed on the surface of the ovarian carcinoma cell line OVCA432, while they are not coordinately expressed on other adenocarcinoma cell lines (IGROV1, HT-29). This lack of coexpression was investigated from a molecular point of view. We studied three carcinoma cell lines, characterized by a different reactivity with the three relevant monoclonal antibodies MOv17, MOv18 and MOv19. The epitope expression was examined after modifying the membrane properties by using hydrostatic pressure and/or the variation of cholesterol content. Measurement of the expression after cell labelling by mAbs was performed by indirect immunofluorescence, using both fluorescence microscopy and flow cytometry. At variance with HT-29 cells, treatment of ovarian carcinoma IGROV1 cells with hydrostatic pressure failed to exert any effect. On IGROV1, instead, cholesterol depletion affected the expression Ca-MOv17, increasing, in the indirect immunofluorescence tests, the proportion of positive cells from 0 to 66 +/- 9%. Moreover, restoring the cholesterol content of the plasma membrane did not reverse the induced epitope expression. In parallel, immunoprecipitation experiments confirmed that, on IGROV1 surface, gp38 was recognized by all three mAbs. The data presented suggest that in IGROV1 cells the selective lacking of the epitope expression is related to the physical state of the plasma membrane. An explanation is provided by the model of membrane microdomains in which epitope expression may be influenced by the cholesterol level of different plasma membrane regions.

Adenocarcinoma↗

Isolation and biochemical characterization of the soluble and membrane forms of folate binding protein expressed in the ovarian carcinoma cell line IGROV1.

The human ovarian carcinoma cell line, IGROV1, produces two forms of folate binding protein (FBP), the membrane form that is anchored to the cell surface by a glycosylphosphatidylinositol tail and the soluble form that is shed into the tissue culture medium. Both forms are recognized by the monoclonal antibodies MOv18 and MOv19. Here we describe their purification and biochemical characterization. The purified soluble protein appeared as a single band with an apparent Mr of 36 kDa after SDS-PAGE, whereas the membrane form appeared as a single band with an apparent Mr of 38 kDa. The size difference between the two forms of FBP was confirmed by gel filtration of both the native and the N-glycanase-treated proteins. Both purified proteins had equal capacity to bind folic acid. The immunological cross-reactivity and the folic acid binding capability of the FBPs extracted from IGROV1 gave more evidence of the possible existence of a precursor-product relationship between them.

Carrier Proteins↗

A critical comparison of three internalization assays applied to the evaluation of a given mAb as a toxin-carrier candidate.

In the attempt to define a strategy for screening new monoclonal antibodies (mAb) that could be appropriate for clinical application in oncology, we evaluated the suitability of three methods: a direct internalization assay (DIA), an indirect internalization assay (IIA) and an indirect cytotoxicity assay (ICA), by applying them to already selected mAb. The latter were directed against three antigenic systems [38-kDa glycoprotein (gp38), epidermal growth factor receptor, and the neu oncogene product], which, according to their tumor selectivity, could be considered suitable for mAb-guided therapy. The dose-dependent and time-dependent binding, as well as the low intra-assay variability, demonstrated the reliability of the three tests. However, a certain degree of inter-assay variability was observed in each one, the highest value being that found when IIA was applied. Furthermore, the degree of variability, as well as the predictability, seemed to be more related to the mAb/antigen (Ag) combination used rather than to the test applied. From the overall data we suggest a procedure to be applied for screening purposes. As a first approach applied to the raw material, ICA is only suitable for screening in the case of an already selected toxin whereas IIA may be helpful to eliminate the true negative mAb. After purification of the relevant mAb a repeated analysis using DIA could allow the selection of true internalizing mAb. However, this second screening should be followed by a further analysis of the fate of the Ag-Ab complex after internalization.

Antibodies, Monoclonal↗

Prognostic significance of the CaMBr1 antigen on breast carcinoma: relevance of the type of recognised glycoconjugate.

An extensive study of the expression of the blood group-related antigen CaMBr1 has been performed by immunohistochemistry, immunoblotting and high performance thin layer chromatography both on frozen and paraffin-embedded (paraffin) samples from normal and neoplastic breast tissues. The glycolipid antigenic fraction (from frozen samples) was preferentially expressed on functioning breast epithelium. In a prospective series of 143 breast cancer cases CaMBr1 expression was associate, on frozen sections, with the transferrin receptor (P = 0.01), the positivity with oestrogen receptor immunochemical assay (P = 0.06), premenopausal status (P = 0.06) and node negativity (P = 0.07). Non-significant correlation with longer disease-free survival (DFS) was observed. In a retrospective series of 862 cases on paraffin sections the glycoproteic antigenic fraction was significantly associated with premenopausal status (P < 0.05) and lobular histotype (P < 0.01), but failed to predict survival, although a trend for longer DFS was observed for positive cases.

Antigens, Neoplasm↗