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.
我们的工作确立了CD81作为连接放射抵抗与免疫逃逸的关键桥梁,其通过维持GBM中CD274的丰度发挥作用,并突显CD81作为优化放射免疫治疗的有前景的治疗靶点。
英文原题:A Systematic Review of Mesenchymal Stem Cell-Derived Extracellular Vesicles: A Potential Treatment for Glioblastoma.
MSC 来源的 EVs 是治疗 GBM 的一种有前景的策略,可通过多种机制抑制肿瘤生长并增强治疗效果。
背景:胶质母细胞瘤(GBM)是一种侵袭性极强的脑肿瘤,可用治疗选择有限,预后极差。近期研究指出,间充质干细胞来源细胞外囊泡(MSC-EV)可能成为治疗GBM的新途径。MSC-EV包括外泌体、微囊泡和凋亡小体,在细胞通讯中发挥重要作用,并显示出介导抗肿瘤效应的潜力。 目的:本系统性文献综述旨在汇总MSC-EV治疗GBM的现有研究结果及其治疗潜力。 方法:研究系统检索PubMed、Web of Science和Scopus等主要医学数据库,检索截至2024年9月,寻找采用MSC来源EV治疗GBM的研究。检索关键词包括“细胞外囊泡”“间充质干细胞”“靶向治疗”“结局”“不良事件”“胶质母细胞瘤”和“外泌体”。纳入标准为英文发表、涉及GBM体内和体外模型,并报告MSC-EV治疗结局的研究。提取数据并依据EV特征、作用机制和治疗效力进行分析。 结果:综述发现多项关键研究显示MSC-EV在GBM模型中具有抗肿瘤作用。共纳入3项临床研究,研究开展于2021至2023年,合计纳入18例患者。其中2项发表于2023年(66.7%),1项发表于2021年(33.3%)。参与者平均年龄范围为37至57岁;所有研究中男性均占多数。所有患者在接受MSC-EV治疗前均已接受GBM标准治疗,包括手术、化疗(CT),部分患者还接受放疗(RT)。三项研究采用的靶向治疗均为向肿瘤部位递送单纯疱疹病毒胸苷激酶(HSVtk)基因治疗,随后给予14天更昔洛韦。各研究报告的MSC-EV疗效不一。2023年规模较大的研究结果不太理想,中位无进展生存期(PFS)为11.0个月(95% CI:8.3–13.7),中位总生存期(OS)为16.0个月(95% CI:14.3–17.7)。仅2021年研究报告不良反应,患者出现轻至中度副作用,包括发热、头痛和脑脊液白细胞增多。另纳入11项截至2010至2024年发表的临床前研究,采用体外及体内模型。这些研究将MSC用作多种治疗药物的递送系统,包括白细胞介素12、白细胞介素7、多柔比星和紫杉醇,体现了MSC在靶向癌症治疗中的多功能性。 结论:MSC来源EV是治疗GBM的一种有前景的方法,可通过多种机制抑制肿瘤生长并提高治疗效力。其递送生物活性分子及调节肿瘤微环境的能力,凸显了其作为新型无细胞治疗策略的潜力。未来研究应优化EV制备和递送方法,并充分了解其在临床环境中的长期影响,以发挥其治疗GBM的潜力。
BACKGROUND: Glioblastoma (GBM) is an extremely aggressive brain tumor that has few available treatment options and a dismal prognosis. Recent research has highlighted the potential of extracellular vesicles (MSC-EVs) produced from mesenchymal stem cells as a potential treatment approach for GBM. MSC-EVs, including exosomes, microvesicles, and apoptotic bodies, perform a significant function in cellular communication and have shown promise in mediating anti-tumor effects. PURPOSE: This systematic literature review aims to consolidate current findings on the therapeutic potential of MSC-EVs in GBM treatment. METHODS: A systematic search was conducted across major medical databases (PubMed, Web of Science, and Scopus) up to September 2024 to identify studies investigating the use of MSC-derived EVs in GBM therapy. Keywords included "extracellular vesicles", "mesenchymal stem cells", "targeted therapies", "outcomes", "adverse events", "glioblastoma", and "exosomes". Inclusion criteria were studies published in English involving GBM models both in vivo and in vitro and those reporting on therapeutic outcomes of MSC-EVs. Data were extracted and analyzed based on EV characteristics, mechanisms of action, and therapeutic efficacy. RESULTS: The review identified several key studies demonstrating the anti-tumor effects of MSC-EVs in GBM models. A total of three studies were included, focusing on studies conducted between 2021 and 2023. The review included three studies that collectively enrolled a total of 18 patients. These studies were distributed across two years, with two trials published in 2023 (66.7%) and one in 2021 (33.3%). The mean age of the participants ranged from 37 to 57 years. In terms of gender distribution, males were the predominant group in all studies. Prior to receiving MSC-EV therapy, all patients had undergone standard treatments for GBM, including surgery, chemotherapy (CT), and, in some cases, radiation therapy (RT). In all three studies, the targeted treatment involved the administration of herpes simplex virus thymidine kinase (HSVtk) gene therapy delivered to the tumor site, then 14 days of ganciclovir treatment. Outcomes across the studies indicated varying levels of efficacy for the MSC-EV-based therapy. The larger 2023 study reported fewer encouraging outcomes, with a median PFS of 11.0 months (95% CI: 8.3-13.7) and a median OS of 16.0 months (95% CI: 14.3-17.7). Adverse effects were reported in only one of the studies, the 2021 trial, where patients experienced mild-to-moderate side effects, including fever, headache, and cerebrospinal fluid leukocytosis. A total of 11 studies on preclinical trials, using in vitro and in vivo models, were included, covering publications from 2010 to 2024. The studies utilized MSCs as delivery systems for various therapeutic agents (interleukin 12, interleukin 7, doxorubicin, paclitaxel), reflecting the versatility of these cells in targeted cancer therapies. CONCLUSIONS: MSC-derived EVs represent a promising therapeutic approach for GBM, offering multiple mechanisms to inhibit tumor growth and enhance treatment efficacy. Their ability to deliver bioactive molecules and modulate the tumor microenvironment underscores their potential as a novel, cell-free therapeutic strategy. Future studies should optimize EV production and delivery methods and fully understand their long-term effects in clinical settings to harness their therapeutic potential in GBM treatment.
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