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Development of a cancer vaccine: peptides, proteins, and DNA
1Second Department of Internal Medicine, Mie University School of Medicine, Tsu, Mie, Japan.
Abstract:
Genetic changes leading to protooncogene activation qualitatively and/or quantitatively alter their gene products and are exclusively or largely restricted to transforming cells and their precursors. The overexpression of HER2 is among those changes and is often detected in adenocarcinomas such as breast, ovarian, lung, and gastric cancer. This provides a rationale for exploring the possibility that HER2 is a target of host immune responses against cancer cells. We have recently demonstrated that HER2 can be a target for tumor-rejecting immune responses against syngeneic murine HER2+ tumor cells. We defined two different peptides, HER2p63-71 and HER2p780-788, with a Kd anchor motif that can induce CD8+ cytotoxic T lymphocytes (CTLs). The growth of HER2+ syngeneic tumors was suppressed in mice immunized with HER2p63-71 or p780-788. Since murine Kd and human HLA-A24 share a similar anchor motif for peptides, HER2p63 71 and HER2p780-788 were examined for induction of CTLs in HLA-A24+ individuals. CD8+ CTL clones specific for these peptides were established and they lysed HER2+ tumor cells in a human leukocyte antigen (HLA)-A24-restricted manner. To elicit specific CD8+ T cell immune responses against cancer, the development of efficient devices to deliver tumor antigen peptides to the major histocompatibility complex (MHC) class I pathway constitutes a central issue. We have developed a novel formula of hydrophobized polysaccharide nanoparticles which can deliver a HER2 oncoprotein containing an epitope peptide to the MHC class I pathway. We designed a simple protein delivery system: cholesteryl group-bearing polysaccharides, mannan or pullulan (CHM or CHP, respectively), complexed with the truncated HER2 protein containing the 147 N-terminal amino acids. These complexes were able to induce CD8+ CTLs against HER2+ tumors. CTLs were MHC class I restricted and specifically recognized HER2p63-71, a part of a truncated HER2 protein used as an immunogen. The complete rejection of tumors also occurred when CHM-HER2 was applied early after tumor implantation. In the effector phase of in vivo tumor rejection, CD8+ T cells played a major role. The results suggest that this unique hydrophobized polysaccharide may help soluble proteins to induce cellular immunity. Such a novel vaccine may be of potential benefit in cancer prevention and cancer therapy.
Insights
This study shows that specific HER2 peptides can trigger immune responses against cancer cells. Novel nanoparticle delivery systems effectively induce CD8+ cytotoxic T lymphocytes (CTLs), leading to tumor rejection and potential cancer therapy.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Protooncogene activation, like HER2 overexpression in adenocarcinomas, presents a target for anti-cancer immune responses.
- HER2 is frequently overexpressed in various cancers, including breast, ovarian, lung, and gastric cancer, making it a relevant target for immunotherapy.
Purpose of the Study:
- To investigate HER2 as a target for host immune responses against cancer cells.
- To develop and evaluate novel delivery systems for HER2-derived peptides to induce cellular immunity for cancer therapy.
Main Methods:
- Identification of HER2 peptides (HER2p63-71, HER2p780-788) capable of inducing CD8+ cytotoxic T lymphocytes (CTLs).
- Testing peptide efficacy in suppressing tumor growth in murine models.
- Development of hydrophobized polysaccharide nanoparticles (cholesteryl group-bearing polysaccharides) for delivering HER2 protein fragments to the MHC class I pathway.
- Evaluation of nanoparticle-delivered HER2 complexes for their ability to induce CTLs and mediate tumor rejection in vivo.
Main Results:
- HER2 peptides HER2p63-71 and HER2p780-788 induced CD8+ CTLs and suppressed HER2+ tumor growth in mice.
- These peptides also induced HLA-A24-restricted CTLs in humans, which lysed HER2+ tumor cells.
- Hydrophobized polysaccharide nanoparticles effectively delivered HER2 protein fragments, inducing MHC class I-restricted CD8+ CTLs.
- Complete tumor rejection was observed with early administration of nanoparticle-delivered HER2, with CD8+ T cells playing a crucial role in the effector phase.
Conclusions:
- HER2-specific peptides can elicit potent anti-tumor immune responses mediated by CD8+ CTLs.
- Novel hydrophobized polysaccharide nanoparticles are effective in delivering tumor antigens for cellular immunity induction.
- This approach holds promise for cancer prevention and therapy by harnessing the immune system against HER2-expressing tumors.