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Biomedical subjects

S Ferrone

Publications and source records attributed to S Ferrone.

At least 163 records · Page 9Linked to original sources

Regression of human melanoma xenografts in nude mice injected with methotrexate linked to monoclonal antibody 225.28 to human high molecular weight-melanoma associated antigen.

Intravenous injections into nude mice of 5 mg/kg methotrexate (MTX) linked to the antibody to human high molecular weight-melanoma associated antigen (HMW-MAA), monoclonal antibody (mAb) 225.28, an IgG2a, on days 1, 4, 7, 10 and 14, starting 24 h after subcutaneous inoculation of 2 x 10(6) cultured human M21 melanoma cells inhibited mean tumor volume by 90% on day 14 and by 65% on day 50 after the beginning of the treatment. Injections of equimolar amounts of free MTX and MTX linked to normal mouse IgG or to an isotype-matched myeloma protein did not inhibit tumor growth significantly. MTX linked to mAb 225.28 did not inhibit the xenograft of a subline of human melanoma cell line M21 without detectable expression of HMW-MAA. In a clonogenic assay, the MTX-225.28 conjugate was three times more potent in inhibiting the growth of M21 melanoma cells than free MTX, but did not inhibit the growth of kidney carcinoma cells Caki-1, which do not express high-Mr MAA. In contrast, MTX linked to the mAb DAL K29, reacting with kidney carcinoma cells Caki-1, inhibited their growth but did not affect that of melanoma cells. M21 melanoma cells isolated from the residual tumor of a mouse treated with the MTX-225.28 conjugate did not differ in their reactivity with mAb 225.28 and in their sensitivity to MTX when compared with M21 cells from an untreated mouse.

Animals↗

Immunochemical and functional characterization of anti-idiotypic antibodies to a mouse anti-CD4 monoclonal antibody.

Immunization of BALB/c mice with the mouse anti-CD4 monoclonal antibody (mAb) HP2/6 resulted in the production of anti-idiotypic antibodies. Analysis of the kinetics of the development of anti-idiotypic antibodies showed a homogeneous response among the immunized animals. Cross-blocking assays performed with anti-CD4 mAbs OKT4, OKT4c and OKT4d showed that syngeneic anti-idiotypic antiserum elicited with mAb HP2/6 recognizes idiotope(s) expressed only on the immunizing mAb. The idiotope(s) is (are) located within or closely related to the antigen-combining site of mAb HP2/6. Hybridization with the myeloma cell line NSO of splenocytes from a BALB/c mouse hyperimmunized with mAb HP2/6 generated the anti-idiotypic mAbs F11-2113, F11-2302 and F11-2444 which recognize idiotope(s) outside the antigen-combining site of mAb HP2/6. Although the anti-idiotypic mAbs cross-inhibit each other in their binding to mAb HP2/6, they differ in the ability to elicit anti-anti-idiotypic antisera. Furthermore, mAb F11-2113 enhances CD4 down-regulation in the presence of mAb HP2/6 to a larger extent than mAbs F11-2302 and F11-2444. The latter results suggest an additional mechanism by which anti-idiotypic antibodies may induce functional abnormalities of CD4+ T cells in human immunodeficiency virus-infected T cells.

Animals↗

Reactivity of monoclonal antibody (mAb) GD9 with a cytoplasmic antigen preserved in formalin-fixed, paraffin-embedded gastrointestinal tumors.

In order to develop monoclonal antibodies to tumor associated antigens which are preserved in formalin-fixed, paraffin-embedded tissues, BALB/c mice were immunized with a formalin-fixed paraffin-embedded melanoma lesion. One of the resulting monoclonal antibodies, monoclonal antibody (mAb) GD9, stained formalin-fixed, paraffin-embedded melanoma lesions. When tested with a large panel of normal tissues from adults and from two fetuses of 4 and 16 week gestation and of benign and malignant tumors of different embryological origin, the mAb GD9 stained normal small bowel mucosa, areas of gastric intestinal metaplasia, the 6 pancreatic carcinoid tumors tested and a high percentage of gastrointestinal tumors. In the latter group, the reactivity with well differentiated tumors was higher than with poorly differentiated ones. Furthermore, the percentage of malignant cells stained by mAb GD9 in differentiated tumors was higher than in poorly differentiated ones. In the latter, the staining was diffuse and granular, while in the former, the staining was located in the cytoplasm close to the glandular lumen. The reactivity of mAb GD9 with colon carcinomas did not correlate with the Duke's staging and with the clinical course of the disease. The results of the immunohistochemical staining of normal tissues and benign and malignant lesions suggest that the specificity of mAb GD9 is different from that of previously described monoclonal antibodies which recognize tumor associated antigens expressed by tumors of the gastrointestinal tract.

Animals↗

Lack of HLA class I antigen expression by cultured melanoma cells FO-1 due to a defect in B2m gene expression.

The melanoma cell line FO-1 does not express HLA class I antigens and does not acquire them on the cell surface after incubation with IFN-gamma. Immunochemical studies showed that FO-1 cells synthesize HLA class I heavy chain, but do not synthesize beta 2-microglobulin (beta 2-mu). The latter abnormality is associated with lack of beta 2-mu mRNA which remains undetectable in FO-1 cells incubated with IFN-gamma. The defect was identified as a genetic lesion in the B2m gene, since DNA hybridization analysis detected a deletion of the first exon of the 5'-flanking region, and of a segment of the first intron of the B2m gene. HLA class I antigen expression was reconstituted on melanoma cells FO-1 after transfection with the wild-type mouse B2m gene, thereby confirming the abnormality of the endogenous B2m gene. The defect identified in FO-1 cells is distinct from that underlying the lack of HLA class I antigen expression by lymphoblastoid cells Daudi, but is remarkably similar to that causing lack of H-2 class I antigen expression by mouse lymphoblastoid cells R1 (TL-). These results suggest that genetic recombination in the 5' region of the B2m gene is a recurrent mechanism in B2m gene defects. In addition to contributing to our understanding of molecular abnormalities in HLA class I antigen expression by melanoma cells, FO-1 cells represent a useful model for analyzing the role of HLA class I antigens in the biology of melanoma cells and in their interaction with cells of the immune system.

Animals↗

Reduction in susceptibility to natural killer cell-mediated lysis of human FO-1 melanoma cells after induction of HLA class I antigen expression by transfection with B2m gene.

Induction of HLA class I antigens on cultured melanoma cells FO-1 after transfection with a human or a mouse B2m gene was associated with a statistically significant reduction in their susceptibility to natural killer (NK) cell-mediated lysis. These results indicate that the structural differences between human and mouse beta 2-mu do not abolish the ability of the HLA class I molecular complex to modulate NK cell-mediated lysis of melanoma cells FO-1. The role of HLA class I antigens in the phenomenon is corroborated by the ability of anti-HLA class I MAb to enhance, although to a different extent, the susceptibility of transfected FO-1 cells to NK cell-mediated lysis. Gamma interferon (IFN-gamma) and tumor necrosis factor-alpha (TNF-alpha) significantly reduced the susceptibility to NK cell-mediated lysis of transfected FO-1 cells. Surprisingly, TNF-alpha reduced the extent of lysis more than IFN-gamma, although the latter cytokine enhanced HLA class I antigen expression more than the former one. This finding, in conjunction with a reduction in the susceptibility to NK cell-mediated lysis of untransfected FO-1 cells incubated with IFN-gamma or TNF-alpha, suggests that the two cytokines reduce NK cell-mediated lysis of transfected cells by modulating not only the expression of HLA class I antigens, but also that of other structures. Induction of HLA class I antigens and their modulation with IFN-gamma did not affect the susceptibility to lymphokine-activated killer (LAK) cell-mediated lysis of transfected FO-1 cells. Characterization of the molecular mechanism(s) underlying abnormalities in HLA class I antigen expression by melanoma cells and of the role of these molecules in the interactions of melanoma cells with various types of effector cells may suggest novel immunotherapeutic approaches to melanoma.

Animals↗

Anti-idiotypic monoclonal antibodies reacting with idiotope on isolated-denatured chains of an anti-CD4 monoclonal antibody.

Hybridization of a non-secreting mouse myeloma cell line NSO with splenocytes from a BALB/c mouse hyperimmunized with the anti-CD4 monoclonal antibody (mAb) HP2/6 generated the anti-idiotypic (anti-id) mAb F11-2113, F11-2302 and F11-2444, which recognize idiotope(s) (id) that are the same or spatially close to each other and are located outside the antigen-combining site of the immunizing mAb. Binding and inhibition assay showed that id are not expressed either on other mouse anti-CD4 mAb or polyclonal immunoglobulins (Ig). Western blotting analysis showed that the id defined by anti-id mAb F11-2113, F11-2302 and F11-2444 are similarly expressed on separated heavy and light chains of mAb HP2/6 and suggested they are likely to be 'sequence-dependent' since their expression is conserved following SDS and reducing reagents treatment. This finding is unique inasmuch as 'sequence-dependent' id similarly expressed on heavy and light chains have been described only on a mouse monoclonal auto-antibody with immunoregulatory properties.

Animals↗

MHC antigens in human melanomas.

The distribution of MHC antigens in human melanocytic lesions, i.e. HLA class I and HLA class II antigens is reviewed. HLA class I antigens have a broad distribution, but may be lost during tumor progression. In contrast, HLA class II antigen expression appears with neoplastic transformation. The mode of regulation of HLA antigens in melanoma lesions is complex. Immunohistochemical demonstration of HLA antigen expression in primary melanoma lesions and in locoregional metastases has prognostic relevance. Expression of HLA-DR in primary melanoma lesions is associated with an unfavorable prognosis, as is a decreased expression of HLA-A,B,C antigens in locoregional metastases.

Gene Expression Regulation, Neoplastic↗

Expression and modulation by cytokines of the intercellular adhesion molecule-1 (ICAM-1) in human central nervous system tumor cell cultures.

The intercellular adhesion molecule (ICAM-1) has been shown to be important in interactions involving cells of the immune system and to be upregulated in a number of cell culture systems by cytokines, including immune interferon (IFN-gamma) and tumor necrosis factor-alpha (TNF-alpha). In the present study, we have determined by fluorescence-activated cell sorter (FACS) analysis and the anti-ICAM-1 monoclonal antibody (MAb) CL203.4 the base-line expression of ICAM-1 and its modulation by recombinant IFN-beta, IFN-gamma and TNF-alpha in early passage (less than 15) human central nervous system (CNS) tumor-derived cell cultures. These cultures were established from various malignancies, including glioblastoma multiforme (GBM), astrocytoma (AST), ganglioglioma, medulloblastoma, meningioma and a pineal tumor. ICAM-1 expression was highest in the GBM- and AST-derived cell cultures and was lowest in the ganglioglioma and normal pineal cell cultures. Variable ICAM-1 expression was found, however, in tumors of the same histological group. In several cell cultures the variable expression observed by FACS was substantiated by the intensity of the molecular species immunoprecipitated by the anti-ICAM-1 MAb CL203.4 from these cells. All the cell cultures displayed variable but consistent increases in ICAM-1 expression following treatment with IFN-gamma or TNF-alpha. In general, the degree of increase in ICAM-1 expression was greatest in cultures exposed to TNF-alpha. Upregulation of ICAM-1 expression in an established glioblastoma multiforme cell line was of greater magnitude and more rapid following TNF-alpha treatment (within 2 to 3 hr) than exposure to IFN-gamma (by 24 hr). In several cultures, IFN-beta also increased ICAM-1 expression and enhanced the increase induced by TNF-alpha. The results of the present study indicate that variable expression of ICAM-1 is a common property of early passage cultures of CNS tumors and recombinant interferons and TNF-alpha can differentially upregulate ICAM-1 expression in these CNS tumor cell cultures.

Antibodies, Monoclonal↗

Inhibition by anti-HLA class II monoclonal antibodies of monoclonal antibody OKT3-induced T cell proliferation. Studies at the mRNA level.

mAb to monomorphic determinants of HLA class II Ag have been shown to inhibit monocyte-dependent OKT3-induced T cell proliferation, indicating that MHC class II molecules play a regulatory role also in Ag nonrestricted, CD3-induced T cell proliferation. This effect involves several steps in the process of T cell activation and proliferation, including IL-1 beta, IL-6, and IL-2 secretion and IL-2R alpha expression. In the present study, we analyzed the effect of an anti-HLA class II mAb (Q5/6) on the mRNA expression of genes related to monocyte and T cell activation. mRNA levels for early (early c-myc, c-fos) and late (late c-myc, N-ras, c-myb) genes involved in T cell activation were determined as well as mRNA levels for IL-1 beta, IL-6, IFN-gamma, IL-2, and IL-2R alpha. The kinetics of mRNA induction for ICAM-1 was also investigated. The results show that in T lymphocytes the expression of c-fos and early c-myc mRNA was unaffected by mAb Q5/6, whereas the c-myb and N-ras mRNA levels were strongly diminished as well as those of IL-2, IL-2R alpha, and IFN-gamma mRNA. An early increase of ICAM-1 mRNA was partially inhibited. In monocytes, a marked reduction of IL-1 beta and IL-6 mRNA was found. It is concluded that the HLA class II determinant involved in the inhibition mechanism can be engaged in the control of IL-1 beta and IL-6 mRNA levels and constitute an accessory signal up-regulating IL-2 and IL-2R alpha gene activation, through a pathway not affecting c-myc and c-fos expression.

Antibodies, Monoclonal↗

Fine specificity and idiotype diversity of a murine anti-HLA-DQw3 monoclonal antibody elicited with a syngeneic antiidiotypic monoclonal antibody.

A total of 469 hybridomas was generated from a BALB/c mouse immunized with the syngeneic antiidiotypic mAb KO3-34 that recognizes an idiotope within the Ag-combining site of the immunizing syngeneic anti HLA-DQw3 mAb KS13. One of the hybridomas, named S2B154, was shown with a number of serologic and immunochemical assays to mimic the specificity of anti HLA-DQw3 mAb KS13. This result was unexpected, because the antiidiotypic mAb had been classified as gamma because of the lack of detection of anti-HLA-DQw3 antibodies in sera from BALB/c mice immunized with the antiidiotypic mAb KO3-34. The antiidiotypic mAb S2B154, an IgG1, displays a lower affinity constant to HLA-DQw3 Ag-bearing lymphoid cells than mAb KS13, an IgG2b, but a higher one to antiidiotypic mAb KO3-34. Testing with a panel of antiidiotypic mAb elicited with the mAb KS13 showed that both antiidiotypic mAb S2B154 and mAb KS13 express in their Ag-combining site the idiotopes recognized by the antiidiotypic mAb KO3-256, KO3-335, and R1-38. However, the antiidiotypic mAb S2B154 does not react with the mAb R18-9 that recognizes an idiotope outside the Ag-combining site of mAb KS13. The results we have presented question the validity of the classification of antiidiotypic antibodies based on their ability to inhibit the binding of the corresponding antibodies to Ag and on the specificity of antisera elicited with antiidiotypic antibodies. Furthermore, the hybridomas we have developed in this Id cascade provide us the opportunity to analyze the structural basis of idiotypic Ag mimicry and to evaluate the regulatory properties of antiidiotypic antibodies in the immune response to HLA class II Ag.

Animals↗

Inhibition by anti-HLA class I mAb of IL-2 and IL-2 receptor synthesis in lymphocytes stimulated with PHA-P.

Inhibition by anti-HLA Class I monoclonal antibody (mAb) Q6/64 of phytohemagglutinin (PHA)-P-induced peripheral blood mononuclear cell (PMBC) proliferation is associated with a reduction of Tac expression and interleukin 2 (IL-2) secretion. To analyze the mechanism(s) underlying the latter phenomena, the Tac gene and IL-2 gene transcription was analyzed by a nuclear transcription assay. No synthesis of Tac and IL-2 mRNA was detected in PBMC stimulated with PHA-P in the presence of mAb Q6/64. In conjunction with our recently published data, these results indicate that the blocking by anti-HLA Class I mAb of PHA-P-induced PBMC proliferation reflects an inhibitory effect within the signal transduction pathway leading to transcriptional activation of IL-2 and IL-2 receptor genes.

Antibodies, Monoclonal↗

Purification of human immunoglobulins by sequential precipitation with caprylic acid and ammonium sulphate.

We have tested the usefulness of sequential precipitation with caprylic acid and ammonium sulfate to purify human monoclonal and polyclonal immunoglobulins from sera of 11 patients with monoclonal gammapathy (4 IgG kappa, 2 IgG lambda, 2 IgM kappa, 1 IgA kappa, 2 IgA lambda), four patients with autoimmune diseases and four healthy donors. In terms of purity and activity of Ig as well as execution time and cost, this two-step non-chromatographic procedure is highly efficient for the purification of IgG, IgA and IgM, thus offering several advantages over other methods of purification. Therefore, this procedure may have useful application in the preparation of human Ig for structural studies and therapeutic purposes.

Ammonium Sulfate↗

MHC-like molecules in some nonmammalian vertebrates can be detected by some cross-reactive monoclonal antibodies.

mAb to human and mouse MHC molecules were tested for binding to blood or spleen cells of various nonmammalian vertebrates by immunofluorescence and flow cytometry. Those that bound were used to immunoprecipitate cross-reactive molecules from biosynthetically or cell surface-labeled spleen or blood cells. In addition, mAb to human MHC molecules were screened by Western blots. As expected from the results with xenoantisera, there were few mAb that cross-reacted, and many of these cross-reactions were not specific for MHC-like molecules. Less than 10% of the mAb tested bound to the cells of any particular species, with very few positive for more than one species. Of those mAb that bound cells, many failed to precipitate any radioactive bands, and most bands precipitated were not recognizable as MHC-like molecules. Five mAb reacted with Xenopus class II, one of which also immunoprecipitated axolotl class II. Another of these reacted with a candidate for class II in the lamprey, but this molecule had features unlike those expected for mammalian class II molecules. Four other mAb reacted with candidate molecules. in the trout and shark. None of the mouse alloantibodies immunoprecipitated nonmammalian vertebrate MHC-like molecules. In contrast to the results with most xenoantisera, the mAb cross-reacting with amphibian class II molecules recognized a number of different linear epitopes on the surface of the polymorphic non-Ig beta 1 domain of class II molecules. Few mAb recognized bands in Western blots of nonmammalian vertebrate cells and the candidate molecules from fish had features different from known mammalian MHC molecules.

Amphibians↗

Interspecific DNA-mediated transfer and amplification of a gene specifying a Mr 100,000 human melanoma-associated cell surface glycoprotein.

The gene that encodes the membrane-bound Mr 100,000 human melanoma-associated antigen (MAA) defined by mouse mAb 376.96, a leukocyte and fibroblast interferon-modulated glycoprotein having preferential distribution on melanoma and carcinoma cells, has been transfected into the mouse melanoma cell line B78H1 as a step toward molecular cloning and characterization of the MAA. Primary, secondary, and tertiary B78H1 transfectants expressing the Mr 100,000 MAA gene were generated by treatment with coprecipitated DNA from Mr 100,000 MAA+ human or transfectant mouse cells and they were detected by an indirect RBC rosetting assay. The Mr 100,000 MAA gene was also transferred into K-1735 mouse melanoma cells and into nonmalignant and malignant mouse fibroblast lines. The species immunoprecipitated by mAb 376.96 from human melanoma cells (Mr 100,000) and from mouse melanoma transfectant cells (Mr 97,000-100,000) were both converted to molecule(s) having an Mr of approximately 70,000 by enzymatic removal of asparagine-linked carbohydrate residues. Two independent secondary transformant clones of B78H1 cells express Mr 100,000 MAA antigenicity at levels significantly higher than those observed when one or two copies of the gene are present. Clone Mr 100,000 secondary-A spontaneously overexpresses Mr 100,000 MAA at least 5-fold and has greater than or equal to 10 times elevated levels of putatively Mr 100,000 MAA gene-associated human alu family repeat element (h-alu)-positive restriction fragments relative to "single" copy secondary transfectant cells. Clone Mr 100,000 secondary-B has increased copy number and expression of Mr 100,000 MAA as a consequence of a selective co-amplification procedure which is targeted to a mouse wild type dihydrofolate reductase (dhfr) gene expression vector. This vector was co-introduced into B78H1 cells in addition to the DNA of Mr 100,000 MAA+ primary transfectant cells and the initially selected aminoglycoside phosphotransferase (neo) gene vector. Stepwise selections of a secondary Mr 100,000 MAA+ transfectant clone with increasing concentrations of the dihydrofolate reductase-inhibitory antimetabolite methotrexate led to progressive increases in copy numbers of the introduced dhfr gene and to parallel increases in h-alu sequences, in cellular levels of dihydrofolate reductase protein, and in cellular mAb 376.96 reactivity. Levels of these entities ultimately reached 50-fold, relative to levels expressed prior to amplification. The array of h-alu+ restriction fragments amplified in Mr 100,000 secondary-B cell DNA is very similar to that observed in Mr 100,000 secondary-A cell DNA.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Differential expression of intercellular adhesion molecule 1 in primary and metastatic melanoma lesions.

Immunochemical studies have shown that the monoclonal antibody (MoAb) CL203.4, elicited with immune interferon treated cultured human melanoma cells Colo 38, recognizes intercellular adhesion molecule 1 (ICAM-1). The determinant defined by MoAb CL203.4 is distinct and spatially distant from that defined by anti-ICAM-1 MoAb RR1/1, which had been elicited with Epstein-Barr virus-transformed B-lymphocytes from a lymphocyte function associated antigen 1 deficient patient. Immunohistochemical testing with MoAb CL203.4 of surgically removed lesions of melanocyte origin has shown a markedly lower reactivity with benign than with malignant lesions. Among the latter, a higher percentage of metastatic than of primary lesions was stained by MoAb CL203.4. The higher expression of ICAM-1 in metastases than in primary lesions is unique to melanoma, since no difference was found in its distribution in primary and metastatic lesions of a variety of malignancies of different embryological origin. Reactivity with MoAb CL203.4 of primary lesions removed from patients with stage I melanoma showed a highly significant correlation with the lesion thickness and with the clinical course of the disease. The disease free interval in patients without detectable reactivity of their primary lesion with MoAb CL203.4 was significantly (P = 0.004) longer than that of patients whose primary lesion was stained with MoAb CL203.4. These results suggest that ICAM-1 may be a useful marker in the analysis of the molecular mechanism underlying the association between lesion thickness and clinical course of the disease.

Adolescent↗

Purification of immunoreactive radiolabeled monoclonal antibodies with anti-idiotypic monoclonal antibodies.

A method is described to purify immunoreactive monoclonal antibodies from radiolabeled monoclonal antibody preparations. The method is based on incubation of radiolabeled monoclonal antibodies with insolubilized anti-idiotypic monoclonal antibodies to idiotopes within the antigen-combining site of monoclonal antibodies to be purified and elution of bound monoclonal antibodies with a low pH buffer. The immunoreactive fraction of the purified monoclonal antibodies was at least 82%; the yield was at least 73%. The purification procedure did not cause any detectable change in the affinity constant of the eluted monoclonal antibodies. The method is simple and rapid; the requirement for anti-idiotypic monoclonal antibodies to idiotopes within the antigen-combining site of the antibodies to be purified is not likely to represent a major limitation in the broad application of the present method, since the hybridoma technology has greatly facilitated the development of anti-idiotypic monoclonal antibodies.

Antibodies, Anti-Idiotypic↗

European multicentre study on melanoma immunoscintigraphy by means of 99mTc-labelled monoclonal antibody fragments. The European Multicentre Study Group.

A total of 493 melanoma patients were investigated by 20 European nuclear medicine departments by means of the same 99mTc-labelled immunoradiopharmaceutical and the same immunoscintigraphy (ISG) protocol. (i) No chemical or clinical toxicity was detected during or following the studies. (ii) Positive results were obtained in 287/363 (79%) patients (321 carrying known lesions and 42 carrying previously occult lesions): in 231 (80%) of them, 402/402 lesions were imaged; in the remaining 56 ISG-positive patients, 108/204 lesions were imaged; in 76 patients 0/122 lesions were imaged. (iii) The fraction of melanoma lesions visualized by ISG was 510/728 (70.1%); 605 of these lesions were already documented at the time of the study, and 123 were previously occult. (iv) A total of 218 documented melanoma lesions (30%) were not visualized by ISG in 132 patients: about 70% of the ISG-negative lesions were of small size (less than 2 cm diameter). (v) The melanoma nature of 69/123 previously occult lesions was confirmed by clinical criteria and/or additional investigations in follow-up studies. The results obtained in this study are similar to those obtained in the Italian Multicentre Study which had previously been carried out with 258 melanoma patients.

Antibodies, Monoclonal↗