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Biomedical subjects

Emanuela Salati

Publications and source records attributed to Emanuela Salati.

6 recordsLinked to original sources

Identification of a sperm protein 17 CTL epitope restricted by HLA-A1.

Sperm protein 17 (Sp17) is a novel cancer-testis antigen. We previously reported the successful generation of Sp17-specific HLA-A1-restricted cytotoxic T-lymphocytes (CTLs) from the peripheral blood of a healthy donor using a recombinant Sp17 protein. These CTLs were able to kill not only target cells pulsed with the recombinant protein but also fresh Sp17+ tumor cells. In the present study, we have identified a nonapeptide sequence within the Sp17 protein that is predicted to have a high binding affinity for the HLA-A1 molecules. We generated the synthetic nonapeptide and successfully propagated a peptide-specific CTL line. We confirmed that peptide Sp17(103-111) (ILDSSEEDK) contains an Sp17 CTL epitope restricted by HLA-A1 and identified amino acid residues 104, 107, 109 and 110 as crucial for the CTL lysis. Our findings therefore provide the tool for the characterization of CD8 T-cell function in vivo and generation of epitope-specific treatment strategies.

Cytotoxicity, Immunologic↗

Gene expression and immunologic consequence of SPAN-Xb in myeloma and other hematologic malignancies.

Recent studies in tumor immunology indicate that malignant cells frequently express normal testicular-specific proteins. Because these proteins show restricted normal tissue distribution, they are usually highly immunogenic and may be potential targets for immunotherapy. In the present study, we have used a pair of sequence-specific primers in reverse transcription-polymerase chain reaction (RT-PCR) and sequence analysis to demonstrate that the X-linked gene encoding SPAN-Xb is expressed in multiple myeloma and other hematologic malignancies such as chronic lymphocytic leukemia (CLL), chronic myeloid leukemia (CML), and acute myeloid leukemia (AML). RT-PCR analysis demonstrates that SPAN-Xb is a cancer/testis antigen and shows a restricted normal tissue expression. It is not expressed in any normal tissue except testis. SPAN-Xb recombinant protein was produced and used in enzyme-linked immunosorbent assay (ELISA) and Western blot analysis. High-titer immunoglobulin G (IgG) antibodies, of IgG3 or IgG2 subclass, against SPAN-Xb were detectable in the sera of these patients. In contrast, SPAN-Xb mRNA or antibodies could not be detected in any of the healthy donors. There was a good correlation between SPAN-Xb gene expression and B-cell immune responses. These results suggest the in vivo immunogenicity of the SPAN-Xb protein. The presence of high-titer IgG responses suggests that the B-cell responses are likely to have been generated with CD4 T-cell cognitive help. Based on these data, we conclude that SPAN-Xb is a novel member of the family of cancer/testis antigens aberrantly expressed by, and capable of inducing, immune responses in patients with multiple myeloma and other hematologic malignancies.

Antibodies, Neoplasm↗

Sperm protein 17 (Sp17) is a suitable target for immunotherapy of multiple myeloma.

Sperm protein 17 (Sp17) is a protein recently identified as a novel cancer-testis (CT) antigen in multiple myeloma (MM). Because this tumor antigen demonstrates a very restricted normal tissue expression, Sp17 may be an excellent target for tumor vaccine of MM. In this study, we determined the ability to generate Sp17-specific HLA class I-restricted cytotoxic T lymphocytes (CTLs) from the peripheral blood of 4 patients with MM, 3 consecutive Sp17(+) patients, and 1 Sp17(-) patient. Dendritic cells were generated from monocytes of 4 patients with MM and used to present a recombinant Sp17 protein to autologous T cells. Following 4 rounds of antigen stimulation, the CTLs were tested for their ability to kill autologous targets in an Sp17-dependent and HLA-class I- restricted manner in standard cytotoxicity assays. Despite previous chemotherapy and the immunosuppression so often associated with MM, CTL generation was successful in all 4 patients, irrespective of the Sp17 status of their tumors. Most importantly, the CTLs were able to lyse autologous tumor cells that expressed Sp17. Tumor cell lysis in all cases appeared to be mainly mediated by perforin and could be blocked by concanamycin A. We conclude that Sp17 is a suitable target for immunotherapy of MM. Our findings provide the basis for a clinical study aimed at inducing a cellular immune response directed at Sp17(+) MM.

Antigen Presentation↗

Tumor vaccine for ovarian carcinoma targeting sperm protein 17.

BACKGROUND: The authors previously identified sperm protein 17 (Sp17) as being expressed in patients with multiple myeloma. The restricted expression of Sp17 in normal tissue makes it an ideal target for tumor vaccine. In the current study, the authors extended their research to include ovarian carcinoma. METHODS: A pair of sequence specific primers was used in reverse transcriptase-polymerase chain reaction to determine the gene expression of Sp17. A recombinant Sp17 protein was used with monocyte-derived dendritic cells and autologous peripheral blood mononuclear cells to generate Sp17 specific cytotoxic T-lymphocytes (CTLs). The successful generation of Sp17 specific CTLs was confirmed using standard (51)chromium-release assays. RESULTS: Sp17 was found to be expressed in the primary tumor cells from 70% of the patients with ovarian carcinoma. Human leukocyte antigen (HLA) class I- restricted Sp17 specific CTLs were generated successfully from the peripheral blood of three patients with ovarian carcinoma at the time of disease presentation. These CTLs were able to lyse autologous Epstein-Barr virus-transformed lymphoblastoid cells in a Sp17-dependent manner. Target lysis was HLA class I-dependent and could be blocked by antibodies against monomorphic HLA class I but not HLA class II molecules. The CTLs also lysed Sp17-positive autologous tumor cells, suggesting that Sp17 is processed and presented in association with the HLA class I molecules in Sp17- positive tumor cells in a concentration and configuration that could be recognized by recombinant protein-primed CTLs. Tumor cell killing by the CTLs appeared to be mediated through the perforin pathway. Flow cytometric analysis of the CTLs indicated that they predominantly were CD8 in phenotype and produced interferon-gamma and scant amounts of interleukin-4. CONCLUSIONS: The results of the current study suggest the potential of Sp17 as a target for immunotherapy in patients with ovarian carcinoma.

Antigens, Surface↗

Efficient generation of cytotoxic T lymphocytes against cervical cancer cells by adeno-associated virus/human papillomavirus type 16 E7 antigen gene transduction into dendritic cells.

Adeno-associated virus (AAV) is able to efficiently deliver a cytokine gene into dendritic cells (DC). Improvements in T cell priming by DC might be effected by the delivery of antigen genes into DC, resulting in continuous protein expression, as most proteins have short half-lives. In this study, a recombinant AAV vector containing the human papillomavirus (HPV)-16 E7 gene was used to pulse/infect DC and compared to the pulsing of DC by the lipofection of bacterially produced E7 protein. Pulsing of DC with AAV/antigen (Ag) gene was found to be superior to pulsing with protein in six different assay systems: (1) the level of antigen transfer into DC as determined by intracellular staining; (2) the level of MHC class I-restricted killing in cytotoxic T lymphocyte (CTL) assays; (3) the level of IFN-gamma expression; (4) the level of DC-T cell priming clusters generated; (5) the level of CD80 and CD83 expression on DC; and (6) in the resulting CD8:CD4 ratio. Finally, AAV/Ag gene pulsing resulted in strong CTL activity after only 7 days of priming. These data suggest that AAV vectors may offer advantages over the commonly used protein-pulsing technique and that AAV vectors may be useful for the stimulation of CTL activity and adoptive immunotherapy protocols.

Antigens↗