CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Autologous tumor lysate-loaded dendritic cell vaccination in glioblastoma patients: a systematic review of literature.
Autologous tumor lysate-loaded dendritic cell vaccination in glioblastoma patients: a systematic review of literature.
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胶质母细胞瘤(GBM)是最常见的原发性恶性脑肿瘤之一。每年每10万居民中约有6例记录在案。GB的治疗进展并不大。近期已有新型药物被研究用于新诊断和复发性GBM的治疗。对于GBM,手术、放疗和烷化剂化疗是常用的治疗手段。免疫疗法利用患者自身对肿瘤的免疫反应,长期以来被视为一种潜在的癌症治疗方法。其中一种此类治疗是树突状细胞(DC)疫苗。这种基于细胞的疫苗通过刺激患者自身树突状细胞的抗原库,从而诱导多克隆T细胞反应。在PubMed、Embase和Google Scholar上进行了系统性的信息检索。使用特定关键词进行搜索,发表在同行评审科学期刊上的文章与脑GBM、癌症和自体肿瘤裂解物负载树突状细胞疫苗接种相关。
本手稿选用了90篇文章,其中30篇为临床试验。与共享肿瘤抗原肽疫苗相比,自体癌症DC具有更强的免疫系统刺激能力,这就是树突状细胞融合疫苗在多项临床研究中显示出早期前景的原因。与匹配或历史对照组相比,接种疫苗患者的生存率显著更好。对于新诊断患者,中位总生存期(mOS)范围为15至41.4个月,而无进展生存期(PFS)范围为6至25.3个月。通过这项分析,我们发现DC疫苗的自体多组学分析显示出增强的抗肿瘤免疫,重点在于使用活化的、负载抗原的供体DC来触发针对癌症的T细胞反应,尤其是在胶质母细胞瘤中。它还显示出改善的患者生存率,特别是与标准化放疗联合使用时。DC疫苗通过提高生存率和减少肿瘤复发,在治疗GBM方面显示出前景。
然而,疫苗生产、抗原选择和肿瘤异质性方面的挑战凸显了需要继续研究和优化,以提高疗效和患者预后。
Glioblastoma (GBM) is one of the most common primary malignant brain tumors. Annually, there are about six instances recorded per 100,000 inhabitants. Treatment for GB has not advanced all that much. Novel medications have been investigated recently for the management of newly diagnosed and recurring instances of GBM. For GBM, surgery, radiation therapy, and alkylating chemotherapy are often used therapies. Immunotherapies, which use the patient's immune reaction against tumors, have long been seen as a potential cancer treatment. One such treatment is the dendritic cell (DC) vaccine. This cell-based vaccination works by stimulating the patient's own dendritic cells' antigenic repertoire, therefore inducing a polyclonal T-cell response. Systematic retrieval of information was performed on PubMed, Embase, and Google Scholar.
Specified keywords were used to search, and the articles published in peer-reviewed scientific journals were associated with brain GBM, cancer, and Autologous Tumor Lysate-Loaded Dendritic Cell Vaccination. Selected 90 articles were used in this manuscript, of which 30 articles were clinical trials.
Compared to shared tumor antigen peptide vaccines, autologous cancer DCs have a greater ability to stimulate the immune system, which is why dendritic cell fusion vaccines have shown early promise in several clinical studies. Survival rates for vaccinated patients were notably better compared to matched or historical controls. For newly diagnosed patients, the median overall survival (mOS) ranged from 15 to 41. 4 months, while the progression-free survival (PFS) ranged from 6 to 25. 3 months.
We discovered through this analysis that autologous multiomics analysis of DC vaccines showed enhanced antitumor immunity with a focus on using activated, antigen-loaded donor DCs to trigger T-cell responses against cancer, particularly in glioblastoma. It also showed improved patient survival, especially when combined with standard chemoradiotherapy. DC vaccines show promise in treating GBM by enhancing survival and reducing tumor recurrence.
However, challenges in vaccine production, antigen selection, and tumor heterogeneity highlight the need for continued research and optimization to improve efficacy and patient outcomes.
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