基于脂质纳米颗粒的多尺度系统性免疫编程用于癌症治疗
Lipid nanoparticle-based multi-scale systemic immune programming for cancer therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Advancing personalized medicine in brain cancer: exploring the role of mRNA vaccines.
Advancing personalized medicine in brain cancer: exploring the role of mRNA vaccines.
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推动脑癌个性化医疗的发展依赖于创新策略,其中 mRNA 疫苗正成为一条有前景的途径。尽管 mRNA 疫苗最初应用于肿瘤学,但其在 COVID-19 中的惊人成功引发了广泛关注,既有正面的也有负面的。抛开带有政治偏见的观点——这些观点更多涉及抗原来源而非递送形式——我们认为有必要客观地审视这一模式在脑癌方面的应用。这类疫苗通过 MHC-I 和 MHC-II 通路触发强大的免疫反应,在预防性和治疗性环境中均如此。mRNA 平台具有快速开发、高效力、成本效益和安全性等优势。本综述概述了 mRNA 疫苗递送技术、肿瘤抗原鉴定、联合治疗以及近期治疗结果,特别聚焦于脑癌。联合策略对于最大化 mRNA 癌症疫苗疗效至关重要,目前正在进行的临床试验正在探索与佐剂、检查点抑制剂乃至过继性细胞治疗的联合应用。本文重点介绍了高效递送、新抗原鉴定、临床前研究和临床试验结果,强调了 mRNA 疫苗在推动脑癌个性化医疗方面的潜力。协同联合治疗发挥着关键作用,凸显了该领域持续研究和合作的必要性。
Advancing personalized medicine in brain cancer relies on innovative strategies, with mRNA vaccines emerging as a promising avenue. While the initial use of mRNA vaccines was in oncology, their stunning success in COVID-19 resulted in widespread attention, both positive and negative. Regardless of politically biased opinions, which relate more to the antigenic source than form of delivery, we feel it is important to objectively review this modality as relates to brain cancer. This class of vaccines trigger robust immune responses through MHC-I and MHC-II pathways, in both prophylactic and therapeutic settings. The mRNA platform offers advantages of rapid development, high potency, cost-effectiveness, and safety.
This review provides an overview of mRNA vaccine delivery technologies, tumor antigen identification, combination therapies, and recent therapeutic outcomes, with a particular focus on brain cancer. Combinatorial approaches are vital to maximizing mRNA cancer vaccine efficacy, with ongoing clinical trials exploring combinations with adjuvants and checkpoint inhibitors and even adoptive cell therapy.
Efficient delivery, neoantigen identification, preclinical studies, and clinical trial results are highlighted, underscoring mRNA vaccines' potential in advancing personalized medicine for brain cancer. Synergistic combinatorial therapies play a crucial role, emphasizing the need for continued research and collaboration in this area.
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