利用mRNA技术进行抗原免疫肿瘤治疗。

IF 10.6 1区 医学 Q1 IMMUNOLOGY Journal for Immunotherapy of Cancer Pub Date : 2025-01-22 DOI:10.1136/jitc-2024-010569
Charalampos S Floudas, Siranush Sarkizova, Michele Ceccarelli, Wei Zheng
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摘要

信使RNA (mRNA)技术在基于抗原的免疫肿瘤治疗中的应用代表了癌症治疗的重大进展。癌症疫苗是一种有效的组合伙伴,使宿主免疫系统对肿瘤敏感,提高免疫治疗的疗效。选择合适的肿瘤抗原是设计有效疫苗和增强免疫反应的关键步骤。肿瘤新抗原是源于体细胞突变的新表位,避免t细胞中心对自身表位的耐受性,并诱导对肿瘤的免疫反应。患者特异性肿瘤新抗原的鉴定和优先排序基于先进的计算算法,该算法利用了下一代测序分析的优势,考虑了涉及人类白细胞抗原(HLA)-肽- t细胞受体(TCR)复合物形成的因素,包括肽呈递、HLA-肽亲和力和TCR识别。这篇综述讨论了mRNA疫苗在肿瘤学中的发展和临床应用,特别侧重于最近的临床试验以及用于识别共享抗原和单个抗原的计算工作流程和方法。虽然本综述集中于针对现有肿瘤的治疗性mRNA疫苗,但不包括预防性疫苗。临床前实验验证在癌症疫苗开发中至关重要,但我们强调促进新抗原选择和设计的计算方法,强调它们在推进mRNA疫苗开发中的作用。mRNA的多功能性和快速发展潜力使其成为个性化新抗原免疫治疗的理想平台。我们探索了抗原靶标识别的各种策略,包括肿瘤相关和肿瘤特异性抗原,以及用于预测能够引发强烈免疫反应的表位的计算工具。我们讨论了增强mRNA疫苗的免疫原性和稳定性的关键设计考虑因素,以及该领域的新趋势和挑战。这一全面概述强调了基于mrna的癌症疫苗的治疗潜力,并强调了正在进行的旨在优化这些疗法以改善临床结果的研究工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Leveraging mRNA technology for antigen based immuno-oncology therapies.

The application of messenger RNA (mRNA) technology in antigen-based immuno-oncology therapies represents a significant advancement in cancer treatment. Cancer vaccines are an effective combinatorial partner to sensitize the host immune system to the tumor and boost the efficacy of immune therapies. Selecting suitable tumor antigens is the key step to devising effective vaccinations and amplifying the immune response. Tumor neoantigens are de novo epitopes derived from somatic mutations, avoiding T-cell central tolerance of self-epitopes and inducing immune responses to tumors. The identification and prioritization of patient-specific tumor neoantigens are based on advanced computational algorithms taking advantage of the profiling with next-generation sequencing considering factors involved in human leukocyte antigen (HLA)-peptide-T-cell receptor (TCR) complex formation, including peptide presentation, HLA-peptide affinity, and TCR recognition. This review discusses the development and clinical application of mRNA vaccines in oncology, with a particular focus on recent clinical trials and the computational workflows and methodologies for identifying both shared and individual antigens. While this review centers on therapeutic mRNA vaccines targeting existing tumors, it does not cover preventative vaccines. Preclinical experimental validations are crucial in cancer vaccine development, but we emphasize the computational approaches that facilitate neoantigen selection and design, highlighting their role in advancing mRNA vaccine development. The versatility and rapid development potential of mRNA make it an ideal platform for personalized neoantigen immunotherapy. We explore various strategies for antigen target identification, including tumor-associated and tumor-specific antigens and the computational tools used to predict epitopes capable of eliciting strong immune responses. We address key design considerations for enhancing the immunogenicity and stability of mRNA vaccines, as well as emerging trends and challenges in the field. This comprehensive overview highlights the therapeutic potential of mRNA-based cancer vaccines and underscores ongoing research efforts aimed at optimizing these therapies for improved clinical outcomes.

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来源期刊
Journal for Immunotherapy of Cancer
Journal for Immunotherapy of Cancer Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
17.70
自引率
4.60%
发文量
522
审稿时长
18 weeks
期刊介绍: The Journal for ImmunoTherapy of Cancer (JITC) is a peer-reviewed publication that promotes scientific exchange and deepens knowledge in the constantly evolving fields of tumor immunology and cancer immunotherapy. With an open access format, JITC encourages widespread access to its findings. The journal covers a wide range of topics, spanning from basic science to translational and clinical research. Key areas of interest include tumor-host interactions, the intricate tumor microenvironment, animal models, the identification of predictive and prognostic immune biomarkers, groundbreaking pharmaceutical and cellular therapies, innovative vaccines, combination immune-based treatments, and the study of immune-related toxicity.
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