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S Ferrone

Publications and source records attributed to S Ferrone.

At least 109 records · Page 6Linked to original sources

Differential expression of cell adhesion molecules CD54/CD11a and CD58/CD2 by human melanoma cells and functional role in their interaction with cytotoxic cells.

Immunohistochemical staining with monoclonal antibodies showed a differential distribution of intercellular adhesion molecule 1 (ICAM-1/CD54) and lymphocyte function-associated antigen 3 (LFA-3/CD58) and their respective counterreceptors lymphocyte function-associated antigens 1 (LFA-1/CD11a) and 2 (LFA-2/CD2) on ten melanoma cell lines and in 46 surgically removed metastatic melanoma lesions. CD11a and CD2 were not detected on melanoma cells while CD54 and CD58 were coexpressed on the majority of the melanoma cell populations investigated. CD54 showed a higher degree of intra- and intertumor heterogeneity than CD58. gamma-Interferon and/or tumor necrosis factor alpha upregulated the expression of CD54 by melanoma cells, but neither modulated that of CD58 nor induced that of CD11a and CD2. Anti-CD54 and anti-CD58 monoclonal antibodies partially inhibited the lysis of melanoma cells by allogeneic natural killer cells, lymphokine-activated killer cells and, to a greater extent, by autologous tumor-infiltrating lymphocytes. Soluble CD54 (cCD54) purified from serum of patients with melanoma inhibited the lysis of melanoma cells F0-1 by natural killer cells in a dose-dependent fashion. These results suggest that membrane-bound CD54 and CD58 and cCD54 play a role in host-tumor interactions in patients with malignant melanoma and may account for the relationship between CD54 expression in primary lesions and the clinical course of disease.

Antigens, CD↗

Selective loss of human leukocyte class I allospecificities and staining of melanoma cells by monoclonal antibodies recognizing monomorphic determinants of class I human leukocyte antigens.

Immunoperoxidase staining of frozen sections from surgically removed melanoma lesions showed that anti-human leukocyte antigen (HLA)-A2, A28 monoclonal antibody (mAb) stained keratinocytes, but did not stain melanoma cells in 21% of the 14 primary and 44% of the 9 metastatic lesions tested. The loss of HLA-A2 and/or A28 allospecificities did not affect the staining patterns with mAb recognizing monomorphic determinants of HLA Class I antigens, in terms of percentage of stained melanoma cells and intensity of staining. This finding is not likely to reflect the sensitivity of the immunoperoxidase technique, since cytofluorographic analysis detected no significant difference in the staining pattern by mAb to monomorphic determinants of HLA Class I antigens between a melanoma cell line and an autologous transfectant that had acquired HLA-A2 antigens following gene transfer. The results of the present study imply that the frequency of abnormalities in HLA Class I antigen expression by melanoma cells is higher than that described in the literature, since selective losses of HLA Class I allospecificities are not detected by staining of melanoma cells with mAb to monomorphic determinants of HLA Class I antigens. The latter reagents have been used in most of the published studies to characterize the expression of HLA Class I antigens in melanoma lesions. Furthermore, the present results provide a mechanism for the unexpected resistance to cytotoxic T-cell-mediated lysis and the unexpected poor clinical course of the disease in some patients despite a high expression of HLA Class I antigens as measured by staining of melanoma cells with mAb to monomorphic determinants.

Antibodies, Monoclonal↗

Association of high molecular weight melanoma-associated antigen expression in primary acral lentiginous melanoma lesions with poor prognosis.

In a recent study we detected marked differences in the antigenic profile of acral lentiginous melanoma (ALM) and nodular melanoma lesions. Furthermore, we showed that the human high molecular weight melanoma-associated antigen (HMW-MAA) is expressed with a significantly higher frequency in metastatic than in primary ALM lesions. Because of the potential role of HMW-MAA in the metastatic process of melanoma cells, in the present investigation we tested whether HMW-MAA represents a useful prognostic marker in ALM. Primary ALM lesions removed from 32 patients were stained with anti-HMW-MAA monoclonal antibody (mAb) in an immunoperoxidase reaction. The results were correlated with the expression of other markers defined by mAb, with clinical parameters of the disease, and with histopathological characteristics of the lesions. Only 9 of the 32 primary ALM lesions tested were stained by anti-HMW-MAA mAb. Expression of HMW-MAA was the only variable associated with patients' survival and disease-free survival. Both were significantly shorter in patients with HMW-MAA expression in their primary lesions. These results suggest that HMW-MAA may represent a novel prognostic marker in ALM, since phenotyping of primary ALM lesions with anti-HMW-MAA mAb may provide information about the prognosis of the disease which cannot be obtained with known prognostic parameters.

Adult↗

Characterization of anti-HLA class II monoclonal antibody LGII-612.14 reacting with formalin fixed tissues.

mAb LGII-612.14 derived from a BALB/c mouse immunized with interferon-gamma (IFN-gamma) treated cultured human B lymphoid cells LG-2 has been shown with serological and immunochemical assays to recognize a monomorphic determinant expressed on the beta chain of HLA-DR, -DQ and -DP antigens. The linear nature of the determinant, which is likely to be formed by residues 19-25, is indicated by the reactivity of mAb LGII-612.14 with HLA-DR, -DQ and -DP beta chains purified by electrophoresis in presence of SDS. An unusual characteristic of mAb LGII-612.14 is its reactivity with fixed tissue sections. The intensity of staining is affected by the incubation temperature, the incubation time and the fixative used. Maximal intensity of staining of formalin fixed, paraffin embedded tissue sections required an incubation time of 16 h. The intensity of staining of paraffin embedded tissues initially fixed with Bouin's solution, formalin or ethanol was similar to that of frozen tissue sections and stronger than that of tissues fixed with B5 solution. No staining was detected of paraffin embedded tissues fixed with glutaraldehyde or Zenker's solution. Comparison of the staining patterns with mAb LGII-612.14 of frozen and fixed tissue sections showed that the latter substrates provide a superior detail of tissue architecture and cellular morphology without significant loss of sensitivity. Furthermore, comparison of the characteristics of mAb LGII-612.14 with the few previously published anti-HLA class II mAb reacting with fixed tissues indicates that mAb LGII-612.14 stains formalin fixed, paraffin embedded tissues, while mAb 910D7 and TAL-1B5 stain tissues fixed with less commonly used fixatives. Furthermore, mAb LGII-612.14 is likely to yield more sensitive staining results than anti-HLA-DR, -DQ and -DP mAb KUL/05. The present results indicate that mAb LGII-612.14 represents a useful probe to apply immunohistochemical techniques to the analysis of the distribution of HLA class II antigens in fixed tissues. This will greatly facilitate the use of readily available collections of fixed tissue specimens in retrospective studies to assess the clinical significance of changes in HLA class II antigen expression which occur in various disease states.

Animals↗

Modulation by adjuvants and carriers of the immunogenicity in xenogeneic hosts of mouse anti-idiotypic monoclonal antibody MK2-23, an internal image of human high molecular weight-melanoma associated antigen.

The mouse anti-idiotypic monoclonal antibody (mAb) MK2-23 recognizes an idiotope in the antigen-combining site of the immunizing anti-human high-molecular-weight melanoma-associated antigen (HMW-MAA) mAb 763.74. Administration with an adjuvant of mAb MK2-23 conjugated to a carrier has been shown to induce anti-HMW-MAA antibodies both in syngeneic hosts and in patients with malignant melanoma. Adjuvant and carrier are required for the induction of anti-HMW-MAA immunity in BALB/c mice immunized with mAb MK2-23. Whether both adjuvant and carrier are required also in patients with malignant melanoma is not known and cannot be deduced from results obtained in a syngeneic animal model system. Therefore the present study has evaluated for the first time the effect of a carrier and an adjuvant on the immunogenicity of mAb MK2-23 in a xenogeneic host. Rabbits were selected for this purpose, since they have a constitutive expression of HMW-MAA in their normal tissues with a distribution similar to that in humans. The combined use of an adjuvant and a carrier enhances the immunogenicity of mAb MK2-23 in rabbits markedly more than each of them individually. Specifically, all the rabbits immunized with mAb MK2-23 conjugated to keyhole limpet hemocyanin (KLH) and mixed with Freund's adjuvant (FA) produced antibodies which were shown with serological and immunochemical assays to be specific for HMW-MAA and to be both IgG and IgM. In contrast anti-HMW-MAA antibodies were detected in only one of the 3 rabbits immunized with mAb MK2-23 mixed with FA and were not detected in the rabbits immunized with mAb MK2-23 conjugated to KLH or with mAb MK2-23 without KLH and FA. These results indicate that active specific immunotherapy with mAb MK2-23 in patients with malignant melanoma is likely to benefit from the use of a carrier and an adjuvant, provide additional evidence that mAb MK2-23 bears the internal image of HMW-MAA, and suggest that the immune response elicited by mAb MK2-23 is T-cell dependent.

Adjuvants, Immunologic↗

Idiotypic cascade in the human high molecular weight melanoma-associated antigen system: fine specificity and idiotypic profile of anti-anti-idiotypic monoclonal antibodies.

The mouse anti-idiotypic (anti-id) monoclonal antibody (mAb) MK2-23 bears the internal image of the determinant defined by the syngeneic immunizing anti-human high molecular weight melanoma-associated antigen (HMW-MAA) mAb 763.74, since it induces anti-HMW-MAA antibodies in syngeneic and xenogeneic hosts. To dissect the humoral immune response induced by mAb MK2-23 at the clonal level, 1351 hybridomas were generated from a BALB/c mouse immunized with mAb MK2-23. Serological and immunochemical assays showed that the anti-anti-idiotypic (anti-anti-id) mAb GH827, GH1002 and GH1081 react only with the immunizing anti-id mAb MK2-23 and that the anti-anti-id mAb GH149, GH368, GH464, GH518, GH586, GH704, GH786 and GH1151 react with both mAb MK2-23 and HMW-MAA. The eight HMW-MAA binding anti-anti-id mAb resembled mAb 763.74 in their reactivity patterns with a panel of cell lines, although the extent of reactivity was lower. Staining of surgically removed melanoma lesions detected subtle differences in the reactivity patterns of the eight HMW-MAA binding anti-anti-id mAb. This finding in conjunction with the differential ability of the eight anti-anti-id mAb to inhibit the binding of anti-HMW-MAA mAb 763.74 to melanoma cells and to mAb MK2-23 and with the different avidity of the binding to mAb MK2-23 suggest diversity in the fine specificity of the eight HMW-MAA binding anti-anti-id mAb. Like mAb 763.74, the eight HMW-MAA binding anti-anti-id mAb express the idiotopes recognized by the anti-id mAb MK2-23 and MK2-120. In contrast, the three anti-anti-id mAb GH827, GH1002 and GH1081, which do not bind HMW-MAA binding anti-anti-id mAb to the antibodies elicited by the membrane-bound HMW-MAA corroborates the validity of the use of anti-id mAb MK2-23 as an immunogen to implement active specific immunotherapy in patients with malignant melanoma.

Animals↗

Serological and molecular characterization of mouse anti-idiotypic monoclonal antibodies elicited with the syngeneic anti-HLA-A2,28 monoclonal antibody CR11-351.

The molecular basis of the differential specificity of seven mouse anti-id mAb elicited with the syngeneic anti-HLA-A2,28 mAb CR11-351 was analyzed by comparing their specificity with their heavy and light chain variable region sequences. Of the six mAb recognizing idiotopes within the antigen combining site of mAb CR11-351, mAb T10-352, T10-440 and T10-505 recognize the same (or spatially close) idiotope(s) since they cross-inhibit each other in their binding to mAb CR11-351 and elicit syngeneic anti-anti-id antibodies with similar specificity. On the other hand, mAb T10-421, T10-649 and T10-938 appear to recognize spatially close but distinct idiotopes since they cross-inhibit each other, but elicit anti-anti-id antibodies which inhibit only the binding of the respective immunizing anti-id mAb to mAb CR11-351. mAb T8-203 is the only anti-id mAb which recognizes an idiotope outside the antigen combining site of mAb CR11-351 since it does not inhibit the binding of the latter to target cells and binds to mAb CR11-351 coated B lymphoid cells. In addition, mAb T8-203 defines an idiotope which is shared by seven anti-HLA mAb, while the remaining six anti-id mAb recognize idiotopes which are not detectable on the panel of anti-HLA mAb. mAb T10-352, T10-440 and T10-505 are highly homologous in their VH and VL regions and in their V(D)J junctions suggesting that they may be clonally related. On the other hand, mAb T8-203, T10-649 and T10-938 share some degree of homology in their VH region as all of them use J558 VH genes but differ considerably in their VL regions. Finally, mAb T10-421 is the most unrelated mAb as it utilizes VH, D, JH, VK and JK gene segments different from those of all the other anti-id mAb. These findings indicate that in the HLA-A antigenic system defined by mAb CR11-351 the main mechanism underlying the differential target specificity of syngeneic anti-id mAb is the combinatorial diversity together with the differential pairing of heavy and light chains.

Amino Acid Sequence↗

HLA class II molecules transduce accessory signals affecting the CD3 but not the interleukin-2 activation pathway in T blasts.

MHC class II molecules play a central role in the control of the immune response, but their biologic function and mechanism of action on the surface of activated human T lymphocytes are not entirely understood. In our study, the functional role of HLA class II molecules in T-blast proliferation was investigated by analyzing in parallel the IL-2- and CD3-driven activation pathways. The results indicate that the cross-linking of class II and CD3 molecules significantly increased the CD3-mediated T-blast proliferation, while no effect was observed on the IL-2-driven cell activation. This phenomenon was not confined to either CD4+ or CD8+ subsets nor was specifically affected by CD45 triggering. Biochemical studies showed that signaling via MHC class II molecules in T blasts led to PKC membrane translocation and IP accumulation. The simultaneous triggering of CD3 and HLA class II molecules led to a synergistic effect on IP accumulation but did not increase the CD3-mediated PKC membrane translocation. Our data suggest that HLA class II molecules are involved in T-cell-T-cell interactions and can mediate accessory signals, affecting the T-lymphocyte activation state.

CD3 Complex↗

Preferential selection of a subset of anti-HLA-DR monoclonal antibodies by a syngeneic antiidiotypic monoclonal antibody.

In spite of the potential role of antiidiotypic (anti-id) antibodies in the immune response to mismatched HLA antigens and in the outcome of renal allografts, the idiotypic cascade in the HLA system has been characterized to a limited extent. For instance, it is not known whether anti-id antibodies defining idiotopes coexpressed in the combining site of the original anti-HLA antibody selectively stimulate distinct subsets of B cell clones. Since this information contributes to our understanding of the role of anti-id antibodies in the generation of diversity in anti-HLA immune response, we have determined whether a preferential recognition of the immunizing anti-id mAb is displayed by the two subsets of anti-HLA-DR mAb elicited with anti-id mAb F5-444 and F5-830. The latter two mAb recognize idiotopes coexpressed in the antigen-combining site of the immunizing anti-HLA-DR1,4,w14,w8,9 mAb AC1.59. All the anti-HLA-DR mAb elicited with mAb F5-830 displayed a higher functional affinity for the immunizing anti-id mAb than the anti-HLA-DR mAb elicited with mAb F5-444. This finding reflects the higher reactivity of the subset of anti-HLA-DR mAb elicited with mAb F5-830 with the light chain of the immunizing mAb. The present study, therefore, shows for the first time that distinct anti-id mAb recognizing idiotopes coexpressed in the combining site of anti-HLA-DR mAb stimulate different subsets of idiotope positive B cell clones in a nonrandom fashion. This preferential selection by anti-id mAb affects the characteristics of the immune response, as the two subsets of anti-HLA-DR mAb display differences in their fine specificity. These results are consistent with the possibility that anti-id antibodies may play a role in the changes in the specificity of anti-HLA antibodies that may occur in the course of an immune response to mismatched HLA alloantigens.

Animals↗

Active specific immunotherapy of malignant melanoma with anti-idiotypic monoclonal antibodies.

In this study, we have utilized the human high molecular weight-melanoma associated antigen (HMW-MAA) as a target for active specific immunotherapy with mouse anti-idiotypic (anti-id) monoclonal antibodies (mAb) in patients with malignant melanoma. After having summarized the characteristics of HMW-MAA which account for its selection as a target for immunotherapy, we describe the development and characterization of mouse anti-id mAb MK2-23 which bears the internal image of HMW-MAA. Furthermore, we describe the results of the first clinical trial performed with mouse anti-id mAb MK2-23 in patients with malignant melanoma.

Animals↗

Typing of serum-soluble HLA-B27 antigen by ELISA.

An ELISA using serum as soluble HLA antigen source was developed for HLA-B27 typing. Two sandwich assays were run in parallel. The first assay utilized a monoclonal antibody (mAb) reacting with a determinant expressed by both HLA-B7 and B27 antigens; the other assay utilized a mAb reactive with HLA-B7 antigens but not with HLA-B27 antigens. After incubation with serum samples, bound HLA antigen was detected using an anti-beta 2m antibody conjugated to peroxidase and a chromogenic substrate. Absorbance of each well was measured at 490 nm. Based on analysis of absorbances obtained with panels of specimens of known HLA phenotypes, a mathematical algorithm was developed to derive the specimen HLA-B27 phenotype from its ELISA absorbance values. Despite the lack of monospecific mAb, an accurate HLA-B27 typing was possible. 362 specimens (including 151 HLA-B27-positive) were tested. Agreement between microlymphocytotoxicity and ELISA was 99.2%. No correlation between the level of HLA-B27 antigen reactivity and the amount of total HLA class I antigen in serum was observed. This report demonstrates the possibility of using serum-soluble HLA antigen and ELISA technology for histocompatibility testing. The assay offers several significant advantages over microlymphocytotoxicity: no need for cell preparation, batch testing capabilities and objective, reproducible interpretation of results.

Algorithms↗

Summary report from the first international workshop on soluble HLA antigens. Paris, August 1992.

The First International Workshop on Soluble HLA antigens focused on the comparison of immunoassay procedures for quantitation of soluble HLA (sHLA) class I antigens and the selection of a sHLA class I antigen international standard. Several sets of serum, plasma, and cell culture supernatant specimens were assayed blindly for levels of sHLA class I antigens by 15 participating laboratories using different immunoassay formats. The sandwich ELISA using (i) for antigen capture: an anti-HLA class I heavy chain monoclonal antibody (mAb) specific for a monomorphic epitope, and (ii) for antigen detection: an anti-beta 2 microglobulin antibody-enzyme conjugate, was the assay format of choice. There was a high inter-laboratory correlation among the majority of laboratories. All serum and plasma specimens from normal donors, and from a single transplant patient, had detectable levels of sHLA class I antigens. Paired serum and plasma specimens had similar levels of sHLA class I antigens, although plasma sHLA antigens seemed more stable than serum sHLA antigens. sHLA-A2 and sHLA-B7 antigens were detected in all specimens from HLA-A2 and HLA-B7 donors, respectively, using allele-specific ELISAs. No difference in reactivity was observed for quantitation of native sHLA class I antigens whether the capture mAb was TP25.99 (alpha 3 domain-specific) or W6/32 (alpha 2 + alpha 3-specific). However, a human-mouse chimeric sHLA class I antigen reacted weakly in assays which used TP25.99 mAb. The wide variation among laboratories in their reporting of micrograms/ml units pointed to the need for an inter-laboratory standardization based on a calibrated sHLA antigen preparation. T.sB7, an sHLA-B7 antigen derived from a cell line transfected within human beta 2 microglobulin and HLA-B7 genes, was accepted as the First sHLA class I Antigen International Standard at the workshop meeting.

Alleles↗

Organ-specific metastases in melanoma: experimental animal models.

Metastases from certain primary tumors frequently exhibit specific organ preference. Animal models have been developed to induce in a reproducible fashion the formation of organ-specific metastases by malignant melanoma cells. Some of these models rely on the use of immunodeficient mice, which can support the growth of murine as well as human malignant melanomas. Moreover, immunodeficient mice, because of their diminished ability to mount an effective immune response, allow the expression of malignant properties (e.g., preferential colonization of certain organs), which are intrinsic to transplanted melanoma cells. This review discusses the relevant factors (and limitations) of some of the animal models used to study the in vivo properties of melanoma cells.

Animals↗

Lack of HLA class I antigen expression by melanoma cells SK-MEL-33 caused by a reading frameshift in beta 2-microglobulin messenger RNA.

The lack of HLA class I antigen expression by the melanoma cell line SK-MEL-33 is caused by a unique lesion in beta 2-microglobulin (beta 2-mu). Sequencing of beta 2-mu mRNA detected a guanosine deletion at position 323 in codon 76 that causes a frameshift with a subsequent introduction of a stop codon at a position 54 base upstream of the normal position of the stop codon in the message. The loss of 18 amino acids and the change of 6 amino acids, including a cysteine at position 80 in the carboxy terminus of beta 2-mu, are likely to cause marked changes in the structure of the polypeptide. The latter may account for the inability of beta 2-mu to associate with HLA class I heavy chains and for its lack of reactivity with the anti-beta 2-mu mAb tested. HLA class I antigen expression on SK-MEL-33 cells was reconstituted after transfection with a wild-type B2m gene, therefore indicating that the abnormality of endogenous B2m gene is the only mechanism underlying lack of HLA class I antigen expression by SK-MEL-33 cells. The guanosine deletion in B2m gene was detected also in the melanoma tissue from which SK-MEL-33 cells had originated. Therefore, the molecular lesion identified in the SK-MEL-33 melanoma cell line is not caused by a mutation acquired during growth in vitro but is likely to reflect a somatic mutation during tumor progression.

Aged↗

Modulation by MHC class I antigens of the biology of melanoma cells. Non-immunological mechanisms.

Many human as well as experimental tumours, including melanoma, express reduced levels of major histocompatibility complex (MHC) Class I antigens. Decreased MHC Class I antigen expression may be selected during neoplastic progression because it allows tumour cells to escape killing by cytotoxic T lymphocytes. Furthermore, the regulatory role of MHC Class I antigens in the proliferation of T cells suggests that abnormalities in MHC Class I antigen expression may play a role in the disordered proliferation of malignant cells and in their metastatic potential by non-immunological mechanisms. This paper reviews some of the available evidence supporting the concept of non-immune functions of MHC Class I antigens in the biology of malignant cells, with emphasis on experimental models for metastatic melanoma.

Animals↗

A transcriptional inhibitor induced in human melanoma cells upon ultraviolet irradiation.

Nuclear proteins from human melanoma cells exhibit strong binding activity to the UV response element (TGACAACA); however, this binding is inhibited following UV-C irradiation. In contrast, the binding of nuclear proteins from rodent fibroblasts and human keratinocytes to the UV-responsive element is initially weak and increases significantly upon UV irradiation. The addition of nuclear proteins from UV-irradiated melanoma cells to those prepared from nonirradiated cells inhibited the binding to the UV-responsive element in a concentration-dependent manner. Fast protein liquid chromatographic analysis of nuclear proteins from UV-irradiated melanoma cells revealed 12 and 14 kilodalton proteins within a fraction which also contained the inhibitory activity. The inhibitor blocks the binding of proteins to three other target sequences, AP1, CREB, and PEBP2, as well as the in vitro transcription of SV40 promoter sequences. The inhibitor was also found in UV-irradiated melanocytes, suggesting that it is tissue specific. The induction of a transcriptional inhibitor in response to UV irradiation represents a regulatory event that may play an important role in the transcriptional response of both normal and malignant melanocytes to UV irradiation.

Base Sequence↗