CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Chimeric Antigen Receptor (CAR) T-Cell Therapy for Patients with Lung Cancer: Current Perspectives.
Chimeric Antigen Receptor (CAR) T-Cell Therapy for Patients with Lung Cancer: Current Perspectives.
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嵌合抗原受体(CAR)工程化T细胞免疫疗法在部分血液系统恶性肿瘤中取得前所未有的疗效。然而,肺癌等实体瘤带来了额外挑战,使这一新兴疗法难以取得临床成功。肺癌是全球癌症相关死亡的首要原因,每年约造成180万人死亡。开发肺癌CAR-T 免疫疗法面临的障碍包括选择安全且肿瘤选择性强的靶点;迄今已评估的候选靶点数量众多。肿瘤异质性也是关键障碍,单靶点策略可能因抗原缺失肿瘤出现而治疗失败。
此外,CAR-T 细胞需要有效迁移至病灶、浸润肿瘤组织,并在实体瘤形成的不利微环境中发挥作用和抵抗耗竭。恶性病灶内部存在多种免疫、代谢、物理和化学屏障,并可能在选择性治疗压力下进一步异质化和演进。尽管近期揭示了肺癌极强的适应性,免疫检查点阻断疗法仍可使少数患者获得长期疾病控制,为免疫疗法控制晚期肺癌提供了临床概念验证。本综述总结肺癌相关临床前CAR-T 研究、已发表及正在进行的临床试验,并介绍多种先进工程策略,旨在弥合基因工程T细胞与实现有意义疗效之间的差距。
Immunotherapy using chimeric antigen receptor (CAR)-engineered T-cells has achieved unprecedented efficacy in selected hematological cancers.
However, solid tumors such as lung cancer impose several additional challenges to the attainment of clinical success using this emerging therapeutic modality. Lung cancer is the biggest cause of cancer-related mortality worldwide, accounting for approximately 1. 8 million deaths worldwide each year. Obstacles to the development of CAR T-cell immunotherapy for lung cancer include the selection of safe tumor-selective targets, accounting for the large number of candidates that have been evaluated thus far. Tumor heterogeneity is also a key hurdle, meaning that single target-based approaches are susceptible to therapeutic failure through the emergence of antigen null cancers. There is also a need to enable CAR T-cells to traffic efficiently to sites of disease, to infiltrate tumor deposits and to operate within the hostile tumor microenvironment formed by solid tumors, resisting the onset of exhaustion.
Multiple immune, metabolic, physical and chemical barriers operate at the core of malignant lesions, with potential for further heterogeneity and evolution in the face of selective therapeutic pressures. Although the extraordinarily adaptable nature of lung cancers has recently been unmasked, immunotherapy using immune checkpoint blockade can achieve long-term disease control in a small number of patients, establishing clinical proof of concept that immunotherapies can control advanced lung carcinomas.
This review summarizes pre-clinical CAR T-cell research that is specifically focused on lung cancer in addition to published and ongoing clinical trial activity. A number of advanced engineering strategies are also described which are designed to bridge the gap to the attainment of meaningful efficacy using genetically engineered T-cells.
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