决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Translational landscape of glioblastoma immunotherapy for physicians: guiding clinical practice with basic scientific evidence.
尽管癌症治疗近期取得进展,胶质母细胞瘤(GBM)仍然是原发和复发情况下最难治疗的癌症之一。
尽管癌症治疗近期取得进展,无论原发还是复发胶质母细胞瘤(GBM)仍是最难治疗的癌症之一。由于大脑具有免疫豁免环境且疾病侵袭性强,GBM 治疗面临独特挑战。此外,GBM 在病程中可改变表型,在间充质、神经和经典基因特征之间切换,每种状态均有特定标志物和耐药机制。免疫疗法旨在重新激活或调节免疫系统以靶向癌症,近期进展已在多种恶性肿瘤患者中显示出显著疗效。免疫检查点抑制剂、过继性细胞治疗、细胞和肽疫苗及其他技术,为临床医师提供了丰富工具,可制定高度个体化治疗并探索联合策略。目前有 80 多项活跃临床试验正在评估 GBM 免疫疗法,常与二线标准治疗(包括再次切除和抗血管生成药物 bevacizumab)联合。本综述从临床角度概述 GBM 免疫环境;该环境通常具有免疫抑制性,并以 M2 巨噬细胞、T 细胞耗竭、转化生长因子信号增强等为特征。我们还介绍现有免疫治疗策略,特别关注免疫检查点抑制剂、嵌合抗原受体疗法和树突状细胞疫苗。最后总结该领域重要发现,并讨论当前活跃的临床试验,包括联合策略、核酸和纳米颗粒疗法等新兴技术以及新型抗癌疫苗。本综述旨在提供 GBM 免疫治疗领域的最新总结,并结合历史视角和未来方向,为临床实践提供参考。
Despite recent advances in cancer therapeutics, glioblastoma (GBM) remains one of the most difficult cancers to treat in both the primary and recurrent settings. GBM presents a unique therapeutic challenge given the immune-privileged environment of the brain and the aggressive nature of the disease. Furthermore, it can change phenotypes throughout the course of disease-switching between mesenchymal, neural, and classic gene signatures, each with specific markers and mechanisms of resistance. Recent advancements in the field of immunotherapy-which utilizes strategies to reenergize or alter the immune system to target cancer-have shown striking results in patients with many types of malignancy. Immune checkpoint inhibitors, adoptive cellular therapy, cellular and peptide vaccines, and other technologies provide clinicians with a vast array of tools to design highly individualized treatment and potential for combination strategies. There are currently over 80 active clinical trials evaluating immunotherapies for GBM, often in combination with standard secondary treatment options including re-resection and anti-angiogenic agents, such as bevacizumab. This review will provide a clinically focused overview of the immune environment present in GBM, which is frequently immunosuppressive and characterized by M2 macrophages, T cell exhaustion, enhanced transforming growth factor- signaling, and others. We will also outline existing immunotherapeutic strategies, with a special focus on immune checkpoint inhibitors, chimeric antigen receptor therapy, and dendritic cell vaccines. Finally, we will summarize key discoveries in the field and discuss currently active clinical trials, including combination strategies, burgeoning technology like nucleic acid and nanoparticle therapy, and novel anticancer vaccines. This review aims to provide the most updated summary of the field of immunotherapy for GBM and offer both historical perspective and future directions to help inform clinical practice.
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