免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
英文原题:The science of tumor-infiltrating lymphocytes (TIL): perspectives from the SITC Surgery Committee.
The science of tumor-infiltrating lymphocytes (TIL): perspectives from the SITC Surgery Committee.
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实体瘤免疫与癌症相关炎症的标志以及免疫机制限制肿瘤进展的能力相关。扩增的TIL(肿瘤浸润淋巴细胞)过继性T细胞疗法(TIL ACT)在临床试验中的应用现已在全球许多中心开展。在免疫检查点阻断(ICB)之前,多个机构在黑色素瘤患者中一致观察到约50%的客观缓解率。这一现已获批的策略在美国最近的研究中接近35%,而在欧洲对患者进行更严格筛选后达到49%。
在此,我们聚焦于非黑色素瘤上皮性肿瘤的早期TIL研究。对癌症免疫学理解的加深使得TIL扩增过程的改变成为可能,包括:(1)从组织碎片中初步生成TIL,(2)使用专门的大规模培养容器,(3)使用快速扩增方案以实现“年轻”TIL的制备,(4)采用非清髓性(NMA)化疗后短暂给予白细胞介素-2的治疗方案。NMA导致转移T细胞的稳态增殖、植入、深度中性粒细胞减少和淋巴细胞减少,并改善临床结局。TIL ACT的关键成功依赖于预先存在的TIL的质量、特异性和数量。而这又高度受到抑制性肿瘤微环境的影响。
因此,任何将“冷肿瘤(非T细胞炎症型)”转变为“热肿瘤(T细胞炎症型)”的手段,在理论上都有望改善收获前所获得TIL的质量和数量。其他免疫疗法的联合应用,如ICB的应用、共刺激分子激动剂抗体、自噬抑制和树突状细胞支持策略,可为TIL疗法提供额外的改进,并能够利用适应性免疫反应来增强TIL-ACT患者的临床结局。
Immunity to solid tumors is associated with the hallmarks of cancer-associated inflammation and the ability of immune mechanisms to limit tumor progression. Application of expanded tumor-infiltrating lymphocyte adoptive T cell therapy (TIL ACT) in clinical trials is now practiced at many sites around the world.
Prior to immune checkpoint blockade (ICB), an approximate 50% objective response rate was consistently observed across multiple institutions for patients with melanoma. This now-approved strategy approaches 35% in recent studies from the USA and 49% with more highly selected patients in Europe.
Here, we focus on early TIL studies in non-melanoma epithelial neoplasms. Increased understanding of cancer immunology has allowed changes in the TIL expansion process to include: (1) initial generation of TIL from fragments, (2) use of specialized large-scale culture vessels, (3) use of the rapid expansion protocol to enable 'young' TIL prosecution, and (4) treatment regimens employing non-myeloablative (NMA) chemotherapy followed by brief interleukin-2 administration.
NMA leads to homeostatic proliferation of the transferred T cells, engraftment, profound neutropenia and lymphopenia, and improved clinical outcome. A key success of TIL ACT relies on the quality, specificity, and number of pre-existing TIL. This, in turn, is highly influenced by the suppressive tumor microenvironment.
Thus, any means to alter 'cold tumor (non-T cell inflamed)' to 'hot tumor (T cell inflamed)' is theoretically desirable to improve both the quality and quantity of TIL obtained before harvest. Combinations of other immunotherapies such as application of ICB, co-stimulatory molecule agonist antibodies, autophagy inhibition, and dendritic cell support strategies could provide additional- improvements in TIL therapy and enable harnessing of the adaptive immune response to enhance the clinical outcome of TIL-ACT patients.
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