利用强大的异体树突状细胞系开发基于新抗原的癌症疫苗。

Q2 Biochemistry, Genetics and Molecular Biology Genes and Cancer Pub Date : 2023-01-01 DOI:10.18632/genesandcancer.229
Dalil Hannani, Estelle Leplus, Karine Laulagnier, Laurence Chaperot, Joël Plumas
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引用次数: 1

摘要

近年来,免疫疗法终于在抗癌治疗武器库中找到了自己的位置,甚至成为转移性肿瘤的一线治疗标准。检查点阻断剂如抗pd -1/PD-L1在许多癌症中提供的临床益处彻底改变了该领域。然而,由于基线抗癌免疫能力较弱,许多患者对这些治疗仍然难以治愈。因此,需要使用有效的疫苗接种平台,通过靶向免疫原性和肿瘤限制性抗原(如新抗原)来提高患者细胞毒性CD8+细胞效应物的频率和功能。树突状细胞(DC)是触发细胞免疫反应的最强大的免疫细胞亚群。然而,基于dc的自体疫苗显示出一些局限性,例如缺乏可重复性和可制造的细胞数量有限。本文讨论了基于同种异体浆细胞样DC细胞系的新型治疗性疫苗的优势,该疫苗易于生产,并且代表了启动和扩增抗新抗原细胞毒性CD8+ t细胞的强大平台。
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 a powerful allogeneic dendritic cell line towards neoantigen-based cancer vaccines.

In recent years, immunotherapy has finally found its place in the anti-cancer therapeutic arsenal, even becoming standard of care as first line treatment for metastatic forms. The clinical benefit provided by checkpoint blockers such as anti-PD-1/PD-L1 in many cancers revolutionized the field. However, too many patients remain refractory to these treatments due to weak baseline anti-cancer immunity. There is therefore a need to boost the frequency and function of patients' cytotoxic CD8+ cellular effectors by targeting immunogenic and tumor-restricted antigens, such as neoantigens using an efficient vaccination platform. Dendritic cells (DC) are the most powerful immune cell subset for triggering cellular immune response. However, autologous DC-based vaccines display several limitations, such as the lack of reproducibility and the limited number of cells that can be manufactured. Here we discuss the advantages of a new therapeutic vaccine based on an allogeneic Plasmacytoid DC cell line, which is easy to produce and represents a powerful platform for priming and expanding anti-neoantigen cytotoxic CD8+ T-cells.

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来源期刊
Genes and Cancer
Genes and Cancer Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.90
自引率
0.00%
发文量
6
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