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基于 mRNA 的恶性脑肿瘤新抗原和肿瘤相关抗原精准靶向治疗

英文原题:mRNA-based precision targeting of neoantigens and tumor-associated antigens in malignant brain tumors.

PubMed 2024/01/25(内容时间) Genome Med Q1 · IF 10.8(JCR 2025)

研究概要

我们已建立了一种个性化且可定制的 mRNA 治疗方法,能够有效靶向多种肿瘤抗原,并在临床前脑肿瘤模型中展示了强效的抗肿瘤反应。该平台 mRNA 技术独特地解决了肿瘤异质性和低抗原负荷的难题,这两个关键缺陷是靶向经典免疫治疗耐药的 CNS 恶性肿瘤以及可能的其他冷肿瘤类型时所面临的。

研究思路结论见上方概要

尽管免疫治疗在多种实体瘤治疗中的成功应用取得了进展,但在脑肿瘤治疗中的应用却明显滞后。这至少部分是由于缺乏在脑肿瘤中表达的、能够介导肿瘤排斥的充分表征的抗原;这些肿瘤的低突变负荷限制了可靶向新抗原的丰度;以及免疫“冷”肿瘤微环境阻碍了持续且有效的免疫应答的产生。在COVID-19 mRNA疫苗获得普遍批准后,基于mRNA的治疗领域迎来了蓬勃发展。基于mRNA的免疫治疗也因其可能彻底改变癌症治疗而引起了广泛兴趣。在本研究中,我们开发了一种新颖且可扩展的方法,用于生产个性化基于mRNA的治疗药物,该药物在单一疗法中靶向多种肿瘤排斥抗原,用于治疗难治性脑肿瘤。

利用我们称为开放阅读框抗原网络(O.R.A.N)的癌症免疫基因组学流程,在胶质母细胞瘤和髓母细胞瘤肿瘤中鉴定出肿瘤特异性新抗原和异常过表达的肿瘤相关抗原。采用选择性基因捕获和富集策略,为每个个体肿瘤模型开发了个性化肿瘤抗原特异性 mRNA 疫苗。在高度侵袭性小鼠 GBM 模型中,评估了个性化 mRNA 疫苗与抗 PD-1 免疫检查点阻断疗法或过继细胞疗法(使用体外扩增的肿瘤抗原特异性淋巴细胞)联合使用的免疫原性和疗效。

我们的结果证明了抗原特异性 mRNA 疫苗在 GBM 宿主体内引发强效抗肿瘤免疫应答的有效性。我们的发现证实,在抗原特异性 mRNA 导向的免疫治疗后,肿瘤内和全身范围内以效应功能增强为特征的TIL(肿瘤浸润淋巴细胞)增加,导致肿瘤微环境从免疫冷肿瘤向热肿瘤有利转变。针对人类 GBM 抗原的个性化 mRNA 疫苗的生成能力也得到了证明。

展开英文摘要原文

BACKGROUND: Despite advancements in the successful use of immunotherapy in treating a variety of solid tumors, applications in treating brain tumors have lagged considerably. This is due, at least in part, to the lack of well-characterized antigens expressed within brain tumors that can mediate tumor rejection; the low mutational burden of these tumors that limits the abundance of targetable neoantigens; and the immunologically "cold" tumor microenvironment that hampers the generation of sustained and productive immunologic responses. The field of mRNA-based therapeutics has experienced a boon following the universal approval of COVID-19 mRNA vaccines. mRNA-based immunotherapeutics have also garnered widespread interest for their potential to revolutionize cancer treatment. In this study, we developed a novel and scalable approach for the production of personalized mRNA-based therapeutics that target multiple tumor rejection antigens in a single therapy for the treatment of refractory brain tumors. METHODS: Tumor-specific neoantigens and aberrantly overexpressed tumor-associated antigens were identified for glioblastoma and medulloblastoma tumors using our cancer immunogenomics pipeline called Open Reading Frame Antigen Network (O.R.A.N). Personalized tumor antigen-specific mRNA vaccine was developed for each individual tumor model using selective gene capture and enrichment strategy. The immunogenicity and efficacy of the personalized mRNA vaccines was evaluated in combination with anti-PD-1 immune checkpoint blockade therapy or adoptive cellular therapy with ex vivo expanded tumor antigen-specific lymphocytes in highly aggressive murine GBM models. RESULTS: Our results demonstrate the effectiveness of the antigen-specific mRNA vaccines in eliciting robust anti-tumor immune responses in GBM hosts. Our findings substantiate an increase in tumor-infiltrating lymphocytes characterized by enhanced effector function, both intratumorally and systemically, after antigen-specific mRNA-directed immunotherapy, resulting in a favorable shift in the tumor microenvironment from immunologically cold to hot. Capacity to generate personalized mRNA vaccines targeting human GBM antigens was also demonstrated. CONCLUSIONS: We have established a personalized and customizable mRNA-therapeutic approach that effectively targets a plurality of tumor antigens and demonstrated potent anti-tumor response in preclinical brain tumor models. This platform mRNA technology uniquely addresses the challenge of tumor heterogeneity and low antigen burden, two key deficiencies in targeting the classically immunotherapy-resistant CNS malignancies, and possibly other cold tumor types.

论文信息

作者
Trivedi V、Yang C、Klippel K、Yegorov O、von Roemeling C、Hoang-Minh L、Fenton G、Ogando-Rivas E
第一作者单位
University of Florida, 1333 Center Drive, BSB B1-118, Gainesville, FL, 32610, USA.United States
通讯作者单位
University of Florida, 1333 Center Drive, BSB B1-118, Gainesville, FL, 32610, USA. Duane.Mitchell@neurosurgery.ufl.edu.United States
文献类型
美国 NIH 资助研究 · 非美国政府资助研究
期刊
Genome medicine2024 Jan 25
原文标识
PubMed 38268001 · DOI 10.1186/s13073-024-01281-z