研究概要
本研究的发现凸显了表达肿瘤抗原的aAVCs在诱导高效表位扩展和产生针对癌症的强效免疫应答方面具有前景广阔的作用。我们的结果还表明,表达多价抗原的aAVCs是一种有前景的治疗选择,可能成为治疗前列腺癌等冷肿瘤的更全面的疗法。
研究思路结论见上方概要
背景
癌症根据微环境分为两种类型:冷肿瘤和热肿瘤。前者难以通过免疫激发。癌症的免疫原性取决于癌症抗原的质量和数量,以及是否被 T 细胞识别。成功的癌症免疫治疗取决于癌细胞类型、抗原性及随后的免疫反应。T 细胞反应对于次级表位扩展尤为关键,尽管影响这些机制的因素仍不清楚。前列腺癌尽管已鉴定出多种抗原,但常对标准治疗产生耐药,使其属于免疫冷肿瘤。我们旨在利用前列腺癌抗原来研究冷肿瘤中表位扩展的潜在诱导。本研究特别关注基于人工佐剂载体细胞 (aAVC) 疗法识别参与次级表位扩展的因素,该方法已被建立为恒定自然杀伤 T (iNKT) 许可的 DC 疗法。
方法
我们聚焦于三种前列腺癌抗原(前列腺特异性膜抗原(PSMA)、前列腺特异性抗原(PSA)和前列腺酸性磷酸酶(PAP))。通过引入携带抗原的同种异体细胞和鼠源CD1d mRNA,随后负载α-半乳糖神经酰胺(α-GalCer),我们生成了五种类型的aAVCs,即单价、二价和三价抗原表达aAVCs,以及四种类型的前列腺抗原表达冷肿瘤。我们评估了由aAVCs引发的iNKT激活和针对肿瘤细胞的抗原特异性CD8+ T细胞反应。
结果
我们的研究揭示,表达单一前列腺抗原的单价 aAVC 能为主肿瘤抗原致敏 T 细胞,并通过触发肿瘤抗原扩散反应,诱导针对其他肿瘤抗原的 T 细胞。当我们研究三价 aAVC(aAVC-PROS)的免疫反应时,aAVC-PROS 治疗同时引发了多种抗原特异性 CD8+ T 细胞。这些 CD8+ T 细胞对肿瘤进展表现出预防和治疗双重效果。
展开英文摘要原文
INTRODUCTION: Cancer is categorized into two types based on the microenvironment: cold and hot tumors. The former is challenging to stimulate through immunity. The immunogenicity of cancer relies on the quality and quantity of cancer antigens, whether recognized by T cells or not. Successful cancer immunotherapy hinges on the cancer cell type, antigenicity and subsequent immune reactions. The T cell response is particularly crucial for secondary epitope spreading, although the factors affecting these mechanisms remain unknown. Prostate cancer often becomes resistant to standard therapy despite identifying several antigens, placing it among immunologically cold tumors. We aim to leverage prostate cancer antigens to investigate the potential induction of epitope spreading in cold tumors. This study specifically focuses on identifying factors involved in secondary epitope spreading based on artificial adjuvant vector cell (aAVC) therapy, a method established as invariant natural killer T (iNKT) -licensed DC therapy.
METHODS: We concentrated on three prostate cancer antigens (prostate-specific membrane antigen (PSMA), prostate-specific antigen (PSA), and prostatic acid phosphatase (PAP)). By introducing allogeneic cells with the antigen and murine CD1d mRNA, followed by α-galactosylceramide (α-GalCer) loading, we generated five types of aAVCs, i.e, monovalent, divalent and trivalent antigen-expressing aAVCs and four types of prostate antigen-expressing cold tumors. We evaluated iNKT activation and antigen-specific CD8+ T cell responses against tumor cells prompted by the aAVCs.
RESULTS: Our study revealed that monovalent aAVCs, expressing a single prostate antigen, primed T cells for primary tumor antigens and also induced T cells targeting additional tumor antigens by triggering a tumor antigen-spreading response. When we investigated the immune response by trivalent aAVC (aAVC-PROS), aAVC-PROS therapy elicited multiple antigen-specific CD8+ T cells simultaneously. These CD8+ T cells exhibited both preventive and therapeutic effects against tumor progression.
CONCLUSIONS: The findings from this study highlight the promising role of tumor antigen-expressing aAVCs, in inducing efficient epitope spreading and generating robust immune responses against cancer. Our results also propose that multivalent antigen-expressing aAVCs present a promising therapeutic option and could be a more comprehensive therapy for treating cold tumors like prostate cancer.
论文信息
- 作者
- Yamasaki S、Shimizu K、Fujii SI
- 单位
- Laboratory for Immunotherapy, RIKEN Research Center for Integrative Medical Science (IMS), Yokohama, Japan.Japan
- 文献类型
- 非美国政府资助研究
- 期刊
- Frontiers in immunology2024