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Preparation of Tumor Antigen-loaded Mature Dendritic Cells for Immunotherapy
Published on: August 1, 2013
Chaperone-rich cell lysates, immune activation and tumor vaccination
Yi Zeng1, Michael W Graner, Emmanuel Katsanis
1Department of Pediatrics, Steele Memorial Children's Research Center, University of Arizona, 1501 N. Campbell Ave., PO Box 245073, Tucson, AZ 85724-5073, USA.
Insights
Chaperone-rich cell lysates (CRCL) from tumors effectively activate dendritic cells and T cells, inducing robust anti-tumor immunity. These CRCL show promise as cancer vaccines, especially when used with dendritic cell-based therapies.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Tumor lysates contain antigenic peptides crucial for anti-cancer immunity.
- Current methods for isolating immunogenic tumor material can be complex and time-consuming.
- Chaperones play a role in antigen presentation and immune response modulation.
Purpose of the Study:
- To develop an efficient method for isolating immunogenic tumor fractions.
- To evaluate the anti-cancer potential of chaperone-rich cell lysates (CRCL).
- To investigate CRCL as a source for dendritic cell (DC)-based cancer immunotherapy.
Main Methods:
- Free-solution isoelectric focusing (FS-IEF) was used to obtain CRCL from tumor homogenates.
- CRCL were analyzed for antigenic peptide content and immunogenicity.
- The ability of CRCL to activate dendritic cells and T cells was assessed in vitro and in vivo.
- CRCL-based vaccines were compared to other immunotherapeutic approaches.
Main Results:
- FS-IEF rapidly yielded CRCL with sufficient immunogenic material for potential clinical use.
- Tumor-derived CRCL carry antigenic peptides that are cross-presented by dendritic cells to T cells.
- CRCL demonstrated superior ability to activate/mature DCs and induce potent, long-lasting, tumor-specific T-cell immunity compared to controls.
- CRCL enhanced the immunogenicity of apoptotic tumor cells and showed adjuvant effects.
Conclusions:
- Tumor-derived CRCL are effective anti-cancer vaccines and promising antigen sources for DC-based immunotherapies.
- CRCL exhibit potent adjuvant properties and can be combined with chemotherapy.
- The broad antigenic repertoire and immune activation capacity of CRCL contribute to their enhanced immunogenicity.
- CRCL warrant further clinical research and development as anti-cancer vaccines.
Abstract:
We have utilized a free-solution-isoelectric focusing technique (FS-IEF) to obtain chaperone-rich cell lysates (CRCL) fractions from clarified tumor homogenates. The FS-IEF technique for enriching multiple chaperones from tumor lysate is relatively easy and rapid, yielding sufficient immunogenic material for clinical use. We have shown that tumor-derived CRCL carry antigenic peptides. Dendritic cells (DCs) uptake CRCL and cross-present the chaperoned peptides to T cells. Tumor-derived CRCL induce protective immune responses against a diverse range of murine tumor types in different genetic backgrounds. When compared to purified heat shock protein 70 (HSP70), single antigenic peptide or unfractionated lysate, CRCL have superior ability to activate/mature DCs and are able to induce potent, long lasting and tumor specific T-cell-mediated immunity. While CRCL vaccines were effective as stand-alone therapies, the enhanced immunogenicity arising from CRCL-pulsed DC as a vaccine indicates that CRCL could be the antigen source of choice for DC-based anti-cancer immunotherapies. The nature of CRCL's enhanced immunogenicity may lie in the broader antigenic peptide repertoire as well as the superior immune activation capacity of CRCL. Exongenous CRCL also supply danger signals in the context of apoptotic tumor cells and enhance the immunogenicity of apoptotic tumor cells, leading to tumor-specific T cell dependent long-term immunity. Moreover, CRCL based vaccines can be effectively combined with chemotherapy to treat cancer. Our findings indicate that CRCL have prominent adjuvant effects and are effective sources of tumor antigens for pulsing DCs. Tumor-derived CRCL are promising anti-cancer vaccines that warrant clinical research and development.
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