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:Targeted cellular therapy for treatment of relapsed or refractory leukemia.
Targeted cellular therapy for treatment of relapsed or refractory leukemia.
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历史上,高危或复发/难治性白血病的主要治疗方式一直是异基因造血干细胞移植(allo-HSCT);对于 allo-HSCT 后复发、预后较差的患者,靶向免疫疗法已成为一种有前景的治疗选择。新型细胞免疫疗法以靶向方式利用免疫系统的细胞毒能力,通常称为“过继性”细胞疗法,已改变复发/难治性血液系统恶性肿瘤的治疗方式。随着这些强效而复杂的精准疗法快速演进,治疗格局仍在持续变化;与传统挽救治疗相比,它们通常毒性较低。
值得注意的是,对于适合移植的患者,过继性细胞疗法可为 allo-HSCT 创造条件;对于移植失败或移植禁忌的患者,也可作为治疗选择。鉴于这类疗法与移植领域密切相关,且其合规生产、临床应用和风险缓解存在内在复杂性,造血干细胞移植医师、护士及辅助人员需要扎实理解过继性细胞疗法的核心概念。本文综述靶向细胞疗法在复发/难治性白血病中的应用,重点讨论CAR-T(CAR-T)细胞;CAR-T 已在包括白血病在内的多种血液系统恶性肿瘤适应证中实现商业化,并能带来显著、持久的临床缓解。文章还简要讨论其他有前景的研究性细胞免疫疗法,以及如何实现疗法的可持续性和规模化应用。
While the mainstay of treatment for high-risk or relapsed, refractory leukemia has historically revolved around allogeneic hematopoietic stem cell transplant (allo-HSCT), targeted immunotherapies have emerged as a promising therapeutic option, especially given the poor prognosis of patients who relapse after allo-HSCT.
Novel cellular immunotherapies that harness the cytotoxic abilities of the immune system in a targeted manner (often called "adoptive" cell therapy), have changed the way we treat r/r hematologic malignancies and continue to change the treatment landscape given the rapid evolution of these powerful, yet sophisticated precision therapies that often offer a less toxic alternative to conventional salvage therapies.
Importantly, adoptive cell therapy can be allo-HSCT-enabling or a therapeutic option for patients in whom transplantation has failed or is contraindicated. A solid understanding of the core concepts of adoptive cell therapy is necessary for stem cell transplant physicians, nurses and ancillary staff given its proximity to the transplant field as well as its inherent complexities that require specific expertise in compliant manufacturing, clinical application, and risk mitigation.
Here we will review use of targeted cellular therapy for the treatment of r/r leukemia, focusing on chimeric antigen receptor T-cells (CAR T-cells) given the remarkable sustained clinical responses leading to commercial approval for several hematologic indications including leukemia, with brief discussion of other promising investigational cellular immunotherapies and special considerations for sustainability and scalability.
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