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:Individualized Multimodal Immunotherapy (IMI): Scientific Rationale and Clinical Experience from a Single Institution.
Individualized Multimodal Immunotherapy (IMI): Scientific Rationale and Clinical Experience from a Single Institution.
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溶瘤病毒和癌症组合免疫治疗(本期特刊)都是IOZK癌症治疗的一部分。本综述聚焦于德国科隆IOZK开发的一种个体化多模式癌症免疫治疗概念。阐述了采用三个主要组成部分的科学依据:(i)溶瘤新城疫病毒,(ii)调制电热疗和(iii)个体化肿瘤抗原和溶瘤病毒修饰的树突状细胞疫苗(IO-VAC R)。该策略涉及通过全身性溶瘤病毒暴露加高热预处理诱导免疫原性细胞死亡,随后进行皮内IO-VAC R 疫苗接种,从而在癌症患者中反复引发癌症-免疫循环。作为IOZK经验的示例,我们展示了将免疫治疗与标准治疗联合用于多形性胶质母细胞瘤患者的最新结果。本文呈现了附加个体化多模式免疫治疗在总生存期获益方面的有前景的临床结果。10年前提出的癌症-免疫循环描述了局部发生在肿瘤部位和引流淋巴结部位的关键重要步骤。这一观点在此扩展至血液中发生的全身性事件,其中免疫原性细胞死亡诱导的肿瘤抗原被转运至骨髓。20年来已知骨髓是一个抗原反应性器官,其中树突状细胞将肿瘤抗原呈递给T细胞,导致免疫突触形成、肿瘤抗原特异性T细胞活化和记忆T细胞形成。已知骨髓是体内从头细胞生成的最主要来源,并在免疫记忆的储存和维持中发挥重要作用。建议对其进行全身性激活以增强癌症-免疫循环。
Oncolytic viruses and combinatorial immunotherapy for cancer (this Special Issue) are both part of cancer treatment at IOZK. This review focusses on an individual multimodal cancer immunotherapy concept developed by IOZK, Cologne, Germany. The scientific rationale for employing three main components is explained: (i) oncolytic Newcastle disease virus, (ii) modulated electrohyperthermia and (iii) individual tumor antigen and oncolytic virus modified dendritic cell vaccine (IO-VAC R ). The strategy involves repeated cancer-immunity cycles evoked in cancer patients by systemic oncolytic virus exposure plus hyperthermia pretreatment to induce immunogenic cell death followed by intradermal IO-VAC R vaccination. As an example of the experience at IOZK, we present the latest results from combining the immunotherapy with standard treatment of patients suffering from glioblastoma multiforme.
The promising clinical results in terms of overall survival benefit of additional individualized multimodal immunotherapy are presented. The cancer-immunity cycle, as introduced 10 years ago, describes key important steps occurring locally at the sites of both tumor and draining lymph nodes. This view is extended here towards systemic events occuring in blood where immunogenic cell death-induced tumor antigens are transported into the bone marrow.
For 20 years it has been known that bone marrow is an antigen-responsive organ in which dendritic cells present tumor antigens to T cells leading to immunological synapse formation, tumor antigen-specific T cell activation and memory T cell formation. Bone marrow is known to be the most prominent source of de novo cellular generation in the body and to play an important role for the storage and maintenance of immunological memory. Its systemic activation is recommended to augment cancer-immunity cycles.
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