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:Adoptive Cell Therapy for Nonhematologic Solid Tumors.
Adoptive Cell Therapy for Nonhematologic Solid Tumors.
免疫疗法在部分肿瘤中展现的长期益处未能推广到大多数非血液系统实体瘤。
免疫疗法在部分肿瘤中展现的长期获益未能推广至大多数非血液系统实体瘤。过继细胞疗法(ACT)——一种基于分离和改造活性T细胞及其他免疫细胞的治疗方法——已显示出早期临床进展。通过TIL(肿瘤浸润淋巴细胞)疗法,ACT已在黑色素瘤和宫颈癌等传统免疫原性肿瘤中显示出活性,并有望在传统疗法失败的这类肿瘤中提高免疫反应性。工程化T细胞受体和CAR-T 细胞疗法也在部分非血液系统实体瘤中显示出活性。通过受体工程化以及对肿瘤抗原认识的提高,这些疗法有望靶向免疫原性较差的肿瘤,从而实现持久缓解。此外,非T细胞疗法如NK 细胞疗法可能实现同种异体形式的ACT。每种ACT形式各有取舍,这很可能将其应用限制在特定的临床场景中。ACT面临的关键挑战包括生产制造方面的后勤难题、准确的抗原鉴定以及脱靶毒性的风险。ACT的成功建立在数十年肿瘤免疫学、抗原鉴定和细胞工程学进展的基础之上。随着这些过程的不断完善,ACT有望将免疫疗法的获益扩展至更多晚期非血液系统实体瘤患者。本文中,我们综述了ACT的主要形式、其成功经验以及克服当前ACT局限性的策略。
The long-term benefits demonstrated by immunotherapy in select tumors have failed to generalize to most nonhematologic solid tumors. Adoptive cell therapy (ACT)-a treatment on the basis of the isolation and engineering of living T cells and other immune cells-has shown early clinical advances. ACT, through tumor-infiltrating lymphocyte therapy, has shown activity in traditionally immunogenic tumors such as melanoma and cervical cancers, and has the potential to improve immune reactivity in these tumor types where traditional therapies have failed. Engineered T-cell receptor and chimeric antigen receptor T-cell therapies have also shown activity in select nonhematologic solid tumors. Through receptor engineering, and improved understanding of tumor antigens, these therapies have the potential to target poorly immunogenic tumors to deliver long-lasting responses. Additionally, non-T-cell therapies such as natural killer-cell therapy may allow for allogeneic forms of ACT. Each form of ACT has trade-offs that will likely limit their application to specific clinical settings. Key challenges with ACT include the logistical challenges of manufacturing, accurate antigen identification, and the risk of on-target, off-tumor toxicity. The successes of ACT are built on decades of advances in cancer immunology, antigen identification, and cell engineering. With continued refinements in these processes, ACT may extend the benefits of immunotherapy to more patients with advanced nonhematologic solid tumors. Herein, we review the major forms of ACT, their successes, and strategies to overcome the trade-offs of current ACTs.
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